US20190272194A1 - Systems and methods that effectuate transmission of workflow between computing platforms - Google Patents
Systems and methods that effectuate transmission of workflow between computing platforms Download PDFInfo
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- US20190272194A1 US20190272194A1 US16/418,047 US201916418047A US2019272194A1 US 20190272194 A1 US20190272194 A1 US 20190272194A1 US 201916418047 A US201916418047 A US 201916418047A US 2019272194 A1 US2019272194 A1 US 2019272194A1
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- image
- computing platform
- proxy
- client computing
- edits
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F9/00—Arrangements for program control, e.g. control units
- G06F9/06—Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
- G06F9/46—Multiprogramming arrangements
- G06F9/48—Program initiating; Program switching, e.g. by interrupt
- G06F9/4806—Task transfer initiation or dispatching
- G06F9/4843—Task transfer initiation or dispatching by program, e.g. task dispatcher, supervisor, operating system
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F9/00—Arrangements for program control, e.g. control units
- G06F9/06—Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
- G06F9/46—Multiprogramming arrangements
- G06F9/50—Allocation of resources, e.g. of the central processing unit [CPU]
- G06F9/5005—Allocation of resources, e.g. of the central processing unit [CPU] to service a request
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06T—IMAGE DATA PROCESSING OR GENERATION, IN GENERAL
- G06T11/00—2D [Two Dimensional] image generation
- G06T11/60—Editing figures and text; Combining figures or text
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- H04L67/2804—
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- H04L67/36—
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L67/00—Network arrangements or protocols for supporting network services or applications
- H04L67/50—Network services
- H04L67/56—Provisioning of proxy services
- H04L67/561—Adding application-functional data or data for application control, e.g. adding metadata
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L67/00—Network arrangements or protocols for supporting network services or applications
- H04L67/50—Network services
- H04L67/75—Indicating network or usage conditions on the user display
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06T—IMAGE DATA PROCESSING OR GENERATION, IN GENERAL
- G06T2210/00—Indexing scheme for image generation or computer graphics
- G06T2210/22—Cropping
Definitions
- the disclosure relates to systems and methods that effectuate transmission of workflow between computing platforms.
- the images may not have been captured in the most ideal way.
- the device may have been tilted while capturing an image and/or insufficient lighting may have been available at the time of capturing the image.
- Users may want to edit and/or enhance the images.
- the system may receive, from a client computing platform, a first command.
- the first command may include proxy visual content.
- the proxy visual content may represent visual content stored on the client computing platform.
- the proxy visual content may be associated with an identifier which may be transmitted from an application programming interface (API) to the client computing platform.
- API application programming interface
- a task may be associated with the proxy visual content.
- the task may be transmitted from the API to a remote computing platform for processing based upon the proxy visual content.
- Processing may include determining edits to the visual content based upon the proxy visual content, including an angle to rotate the visual content and/or determining an area to crop the visual content.
- Instructions including the edits may be transmitted from the remote computing platform to client computing platform via the API, such that the instructions may be applied to the visual content at the client computing platform.
- the system may include one or more servers.
- the server(s) may be configured to communicate with one or more client computing platforms according to a client/server architecture.
- the users of the system may access the system via the client computing platform.
- the server(s) may be configured to execute computer readable instructions.
- Computer readable instructions may include one or more of a first command component, an identifier component, an edits component, an instructions component, and/or other components.
- the first command component may be configured to receive a first command from a client computing platform.
- the first command may be received from the client computing platform.
- the first command may include proxy visual content.
- the proxy visual content may represent visual content stored on the client computing platform.
- the proxy visual content may be stored by the server(s), the client computing platform, and/or other storage locations.
- the proxy visual content may be a downsample of the visual content stored on the client computing platform, such that the proxy visual content may be a lower resolution visual content than the visual content stored on the client computing platform, may include some but not all of the content in the proxy visual content, and/or be a proxy for the visual content stored on the client computing platform in other ways.
- the proxy visual content may be generated in such a way to maintain an aspect ratio in relation to the visual content stored on the client computing platform.
- the first command may include an upload of the proxy visual content via an application programming interface.
- the identifier component may be configured to associate an identifier with the proxy visual content.
- the identifier may be associated with the proxy visual content via the API.
- the identifier may include any identifier that may be associated with the proxy visual content and the visual content stored on the client computing platform such that the visual content and/or proxy visual content may not be confused for another visual content and/or proxy visual content stored by the server(s) and/or the client computing platform.
- the identifier component may be configured to effectuate transmission of the identifier to the client computing platform.
- the system may transmit the identifier to the client computing platform via the API, and/or via other mechanisms.
- the identifier may be associated with the visual content stored on the client computing platform.
- the system may associate a task with the proxy visual content via the API.
- the task may include a request to determine and/or recommend edits to be made to the visual content stored on the client computing platform, and/or other operations or processing.
- the task may include the identifier associated with the proxy visual content.
- the system may effectuate transmission of the task from the API to a queue.
- the queue may manage one or more tasks to be processed by the remote computing platform.
- the system may queue the task at the queue until a remote computing platform is available to receive the task.
- the system may effectuate transmission of the task to the remote computing platform when the remote computing platform is available to receive the task.
- the edits component may be configured to determine edits, at the remote computing platform, to the visual content based upon the proxy visual content.
- the remote computing platform may determine edits to the visual content based upon the proxy visual content including one or more of an angle to rotate the visual content and an area to crop the visual content. For example, a device which captured the visual content may have been tilted at the time of capturing the visual content. As such, content and/or objects captured in the visual content may appear to be tilted.
- the remote computing platform may determine an angle to rotate the visual content based upon the proxy visual content such that the content and/or objects captured in the visual content appear level.
- the remote computing platform may determine an area to crop the visual content.
- Visual content cropping may refer to removing outer parts of visual content to improve framing, accentuate content captured in the visual content, and/or change an aspect ratio associated with the visual content. While rotating and/or cropping have been discussed as edits that may be determined by the remote computing platform to apply to the visual content based upon the proxy visual content, the edits component may be configured to determine other edits based upon visual content manipulation processes to the visual content based upon the proxy visual content including one or more of enhancing colors, lighting, and/or brightness, applying filters, and/or other edits based upon visual content manipulation processes. The edits component may be configured to determine classifications to associate with the visual content based upon object recognition within the proxy visual content. Individual classifications may be associated with a confidence score. The confidence score may quantify a likelihood of success for the object recognition.
- the instructions component may be configured to effectuate transmission of instructions from the remote computing platform to the client computing platform.
- the instructions may include the identifier.
- the instructions may include the classifications to associate with the visual content (and/or the confidence score associated with the individual classifications).
- the instructions may be configured to cause client computing platform to process the edits on the visual content.
- the instructions component may be configured to effectuate transmission of instructions from the remote computing platform to the queue.
- the instructions component may effectuate transmission of the instructions from the queue to the API.
- the instructions component may be configured to effectuate transmission of the instructions directly from the remote computing platform to the API.
- the instructions component may be configured to effectuate transmission of the instructions via a JavaScript Object Notation (JSON) data format.
- JSON JavaScript Object Notation
- JSON representation of the instructions may include the identifier associated with the proxy visual content, the edits to be processed on the visual content, and/or the classifications to associate with the visual content. While a JSON data format may be used for transmission of the instructions, this is for exemplary purposes only. Any other data format and/or data interchange format may be used.
- FIG. 1 illustrates a system that effectuates transmission of workflow between computing platforms, in accordance with one or more implementations.
- FIG. 2 illustrates an exemplary flowchart of workflow between computing platforms, in accordance with one or more implementations.
- FIG. 3 illustrates an exemplary diagram of edits to an image, in accordance with one or more implementations.
- FIG. 4 illustrates an exemplary diagram of edits to an image, in accordance with one or more implementations.
- FIG. 5 illustrates a method that effectuates transmission of workflow between computing platforms, in accordance with one or more implementations.
- FIG. 1 illustrates a system 100 that effectuates transmission of workflow between computing platforms, in accordance with one or more implementations.
- System 100 may receive, from a client computing platform, a first command.
- the first command may include a proxy image.
- the proxy image may represent an image stored on the client computing platform.
- the proxy image may be associated with an identifier which may be transmitted from an application programming interface (API) to the client computing platform.
- API application programming interface
- a task may be associated with the proxy image.
- the task may be transmitted from the API to a remote computing platform for processing based upon the proxy image.
- Processing may include determining edits to the image based upon the proxy image, including an angle to rotate the image and/or determining an area to crop the image.
- Instructions including the edits may be transmitted from the remote computing platform to client computing platform via the API, such that the instructions may be applied to the image at the client computing platform.
- system 100 may include one or more servers 102 .
- Server(s) 102 may be configured to communicate with one or more client computing platforms (e.g., client computing platform 104 ) according to a client/server architecture. The users of system 100 may access system 100 via client computing platform 104 .
- Server(s) 102 may be configured to execute computer readable instructions 105 .
- Computer readable instructions 105 may include one or more of first command component 106 , identifier component 108 , edits component 110 , instructions component 112 , and/or other components.
- first command component 106 may be configured to receive a first command from a client computing platform.
- the first command may be received from client computing platform 104 .
- the first command may include a proxy image.
- the proxy image may represent an image stored on client computing platform 104 .
- Client computing platform 104 may include one or more of a cellular telephone, a smartphone, a digital camera, a laptop, a tablet computer, a desktop computer, a television set-top box, a smart TV, a gaming console, and/or other client computing platforms.
- the proxy image may be stored by server(s) 102 , client computing platform 104 , and/or other storage locations.
- the proxy image may be a downsample of the image stored on client computing platform 104 , such that the proxy image may be a lower resolution image than the image stored on client computing platform 104 , may include some but not all of the content in the proxy visual content, and/or be a proxy for the visual content stored on client computing platform 104 in other ways.
- the proxy image may be generated in such a way to maintain an aspect ratio in relation to the image stored on client computing platform 104 .
- the first command may include an upload of the proxy image via an application programming interface.
- application programming interface e.g., API 202
- queue 204 may refer to functionalities of server(s) 102 .
- API 202 may include functionalities similar to those of identifier component 108 .
- API 202 may include a set of programming instructions and/or standards for accessing a web-based software application and/or a web-tool.
- API 202 may allow client computing platform 104 to interact with system 100 in a limited way based upon the programming instructions and/or standards of API 202 .
- API 202 may receive the first command including an upload of the proxy image from client computing platform 104 .
- the proxy image may be stored by server(s) 102 and/or other storage locations.
- Identifier component 108 may be configured to associate an identifier with the proxy image.
- the identifier may be associated with the proxy image via API 202 .
- the identifier may include any identifier that may be associated with the proxy image and the image stored on client computing platform 104 such that the image and/or proxy image may not be confused for another image and/or proxy image stored by server(s) 102 and/or client computing platform 104 .
- Identifier component 108 may be configured to effectuate transmission of the identifier to the client computing platform.
- System 100 may transmit the identifier to client computing platform 104 via API 202 , and/or via other mechanisms.
- the identifier may be associated with the image stored on client computing platform 104 .
- System 100 may associate a task with the proxy image via API 202 .
- the task may include a request to determine and/or recommend edits to be made to the image stored on client computing platform 104 , and/or other operations or processing.
- the task may include the identifier associated with the proxy image.
- System 100 may effectuate transmission of the task from API 202 to a queue (e.g., queue 204 ). Queue 204 may manage one or more tasks to be processed by remote computing platform 206 .
- System 100 may include one or more remote computing platforms (e.g., remote computing platform 206 ). System 100 may queue the task at queue 204 until a remote computing platform 206 is available to receive the task. Remote computing platform 206 may be busy processing other tasks and/or jobs. Remote computing platform 206 may include functionalities similar to those of edits component 110 and/or instructions component 112 .
- remote computing platform 206 may include functionalities similar to those of edits component 110 and/or instructions component 112 .
- System 100 may effectuate transmission of the task to remote computing platform 206 when remote computing platform 206 is available to receive the task.
- System 100 may receive a notification from remote computing platform 206 that it is available to receive and/or process the task.
- the task received by remote computing platform 206 may include the proxy image and/or the identifier associated with the proxy image.
- Edits component 110 may be configured to determine edits, at remote computing platform 206 , to the image based upon the proxy image.
- remote computing platform 206 may determine edits to the image based upon the proxy image including one or more of an angle to rotate the image and an area to crop the image. For example, a device which captured the image may have been tilted at the time of capturing the image. As such, content and/or objects captured in the image may appear to be tilted.
- remote computing platform 206 may determine an angle to rotate the image based upon the proxy image such that the content and/or objects captured in the image appear level. The angle to rotate the image may be represented by a number of degrees to rotate the image clockwise or counterclockwise. Referring to FIG.
- remote computing platform 206 may determine an area to crop the image.
- Image cropping may refer to removing outer parts of an image to improve framing, accentuate content captured in the image, and/or change an aspect ratio associated with the image. If it is determined and/or recommended that the image be rotated by an angle and/or a number of degrees in a particular direction, it may be determined and/or recommended that the image be cropped in one or more areas such that the image may fit within particular dimensions.
- edits component 110 may be configured to determine other edits based upon image manipulation processes to the image based upon the proxy image including one or more of enhancing colors, lighting, and/or brightness, applying filters, and/or other edits based upon image manipulation processes.
- Edits component 110 may be configured to determine classifications to associate with the image based upon object recognition within the proxy image. Many images may be stored on client computing platform 104 . Various content and/or objects may be captured and/or depicted in various images. It may be beneficial to identify content and/or objects that have been captured and/or depicted within individual images. The identification of content and/or objects may be associated with classifications, which may include tags and/or labels associated with the individual images. Edits component 110 may be configured to determine such classifications based upon object recognition algorithms.
- edits component 110 may be configured to determine classifications associated with the image (based upon the proxy image) including “beach”, “ocean”, “sun”, “birds”, “volleyball”, “fun”, and/or other classifications. Classifications associated with other images may be used to identify and/or determine classifications to be associated with the image. The classifications associated with the image may be used to search, group, organize, sort, and/or filter images.
- Individual classifications may be associated with a confidence score.
- the confidence score may quantify a likelihood of success for the object recognition.
- a confidence score may be associated with individual classifications associated with the image. Continuing with the above example, if classifications associated with the image included “pool” and “ocean”, a confidence score may be associated with “pool” and “ocean” based upon analysis of context of the image (e.g., based upon other objects depicted in the image) and/or analysis of the image in comparison to other images including similar content and/or objects.
- the classification of “pool” may be associated with a lower confidence score (e.g., 0.02) than the classification of “ocean” (e.g., 0.98) based upon “beach” having a confidence score of 0.99 and/or based upon previous classifications of other images including both “beach” and “ocean”, rather than a combination of “beach” and “pool”.
- Instructions component 112 may be configured to effectuate transmission of instructions from remote computing platform 206 to client computing platform 104 .
- the instructions may include the identifier.
- the instructions may include the classifications to associate with the image (and/or the confidence score associated with the individual classifications).
- the instructions may be configured to cause client computing platform 104 to process the edits on the image.
- Instructions component 112 may be configured to effectuate transmission of instructions from remote computing platform 206 to queue 204 .
- Instructions component 112 may effectuate transmission of the instructions from queue 204 to API 202 .
- instructions component 112 may be configured to effectuate transmission of the instructions directly from remote computing platform 206 to API 202 .
- instructions component 112 may be configured to effectuate transmission of the instructions via a JavaScript Object Notation (JSON) data format.
- JSON representation of the instructions may include the identifier associated with the proxy image, the edits to be processed on the image, and/or the classifications to associate with the image. While a JSON data format may be used for transmission of the instructions, this is for exemplary purposes only. Any other data format and/or data interchange format may be used.
- System 100 may receive a second command at API 202 .
- the second command may include the identifier associated with the image and/or proxy image.
- the second command may include a request for a status update regarding the task associated with the identifier.
- the status update may include one or more of whether the task associated with the identifier is still in queue 204 waiting for remote computing platform 206 to become available to process the task, an estimated wait time until remote computing platform 206 may be available to receive and/or process the task, whether the task associated with the identifier is currently being processed, an estimated time remaining to complete the task at remote computing platform 206 , whether API 202 is waiting to receive the instructions from remote computing platform 206 and/or queue 204 , an estimated wait time until the instructions may be received at API 202 , and/or other status updates associated with the task and/or identifier.
- API 202 may store the instructions received from queue 204 and/or remote computing platform 206 until the second command is received at API 202 .
- System 100 may effectuate transmission of the instructions to client computing platform 104 via API 202 in response to the second command. Alternatively, system 100 may automatically effectuate transmission of the instructions to client computing platform 104 via API 202 upon API 202 receiving the instructions from queue 204 and/or remote computing platform 206 .
- client computing platform 104 may process the edits on the image associated with the identifier included within the instructions.
- Client computing platform 104 may receive the instructions including the edits to be made to the image (e.g., one or more of an angle to rotate the image, an area to crop the image, and/or other edits to the image) and the classifications to be associated with the image.
- client computing platform may process the edits and/or classifications on the image. For example, client computing platform 104 may rotate the image store on client computing device 104 associated with the identifier by the angle specified in the instructions. Client computing platform 104 may crop the image in the area specified in the instructions.
- Client computing platform 104 may associate some or all of the classifications (e.g., via tags and/or labels) with the image. Users of client computing platform 104 may search for other images with similar classifications associated with the image, organize images based upon one or more classifications associated with the image, filter images based upon one or more classifications associated with the image, sort images by classifications associated with the image, and/or group images together based upon the classifications associated with the image.
- server(s) 102 , client computing platform 104 , and/or external resources 120 may be operatively linked via one or more electronic communication links.
- electronic communication links may be established, at least in part, via a network 130 such as the Internet and/or other networks. It will be appreciated that this is not intended to be limiting, and that the scope of this disclosure includes implementations in which server(s) 102 , client computing platform 104 , and/or external resources 120 may be operatively linked via some other communication media.
- a given client computing platform 104 may include one or more processors configured to execute computer program components.
- the computer program components may be configured to enable a producer and/or user associated with the given client computing platform 104 to interface with system 100 and/or external resources 120 , and/or provide other functionality attributed herein to client computing platform 104 .
- the given client computing platform 104 may include one or more of a desktop computer, a laptop computer, a handheld computer, a NetBook, a Smartphone, a gaming console, and/or other computing platforms.
- External resources 120 may include sources of information, hosts and/or providers of virtual environments outside of system 100 , external entities participating with system 100 , and/or other resources. In some implementations, some or all of the functionality attributed herein to external resources 120 may be provided by resources included in system 100 .
- Server(s) 102 may include electronic storage 122 , one or more processors 124 , and/or other components. Server(s) 102 may include communication lines, or ports to enable the exchange of information with a network and/or other computing platforms. Illustration of server(s) 102 in FIG. 1 is not intended to be limiting. Servers(s) 102 may include a plurality of hardware, software, and/or firmware components operating together to provide the functionality attributed herein to server(s) 102 . For example, server(s) 102 may be implemented by a cloud of computing platforms operating together as server(s) 102 .
- Electronic storage 122 may include electronic storage media that electronically stores information.
- the electronic storage media of electronic storage 122 may include one or both of system storage that is provided integrally (i.e., substantially non-removable) with server(s) 102 and/or removable storage that is removably connectable to server(s) 102 via, for example, a port (e.g., a USB port, a firewire port, etc.) or a drive (e.g., a disk drive, etc.).
- a port e.g., a USB port, a firewire port, etc.
- a drive e.g., a disk drive, etc.
- Electronic storage 122 may include one or more of optically readable storage media (e.g., optical disks, etc.), magnetically readable storage media (e.g., magnetic tape, magnetic hard drive, floppy drive, etc.), electrical charge-based storage media (e.g., EEPROM, RAM, etc.), solid-state storage media (e.g., flash drive, etc.), and/or other electronically readable storage media.
- the electronic storage 122 may include one or more virtual storage resources (e.g., cloud storage, a virtual private network, and/or other virtual storage resources).
- Electronic storage 122 may store software algorithms, information determined by processor(s) 124 , information received from server(s) 102 , information received from client computing platform(s) 104 , and/or other information that enables server(s) 102 to function as described herein.
- Processor(s) 124 may be configured to provide information processing capabilities in server(s) 102 .
- processor(s) 124 may include one or more of a digital processor, an analog processor, a digital circuit designed to process information, an analog circuit designed to process information, a state machine, and/or other mechanisms for electronically processing information.
- processor(s) 124 is shown in FIG. 1 as a single entity, this is for illustrative purposes only.
- processor(s) 124 may include a plurality of processing units. These processing units may be physically located within the same device, or processor(s) 124 may represent processing functionality of a plurality of devices operating in coordination.
- the processor(s) 124 may be configured to execute computer readable instruction components 106 , 108 , 110 , 112 , and/or other components.
- the processor(s) 124 may be configured to execute components 106 , 108 , 110 , 112 , and/or other components by software; hardware; firmware; some combination of software, hardware, and/or firmware; and/or other mechanisms for configuring processing capabilities on processor(s) 124 .
- components 106 , 108 , 110 , and 112 are illustrated in FIG. 1 as being co-located within a single processing unit, in implementations in which processor(s) 124 includes multiple processing units, one or more of components 106 , 108 , 110 , and/or 112 may be located remotely from the other components.
- the description of the functionality provided by the different components 106 , 108 , 110 , and/or 112 described herein is for illustrative purposes, and is not intended to be limiting, as any of components 106 , 108 , 110 , and/or 112 may provide more or less functionality than is described.
- processor(s) 124 may be configured to execute one or more additional components that may perform some or all of the functionality attributed herein to one of components 106 , 108 , 110 , and/or 112 .
- FIG. 5 illustrates a method 500 that effectuates transmission of workflow between computing platforms, in accordance with one or more implementations.
- the operations of method 500 presented below are intended to be illustrative. In some implementations, method 500 may be accomplished with one or more additional operations not described, and/or without one or more of the operations discussed. Additionally, the order in which the operations of method 500 are illustrated in FIG. 5 and described below is not intended to be limiting.
- method 500 may be implemented in one or more processing devices (e.g., a digital processor, an analog processor, a digital circuit designed to process information, an analog circuit designed to process information, a state machine, and/or other mechanisms for electronically processing information).
- the one or more processing devices may include one or more devices executing some or all of the operations of method 500 in response to instructions stored electronically on an electronic storage medium.
- the one or more processing devices may include one or more devices configured through hardware, firmware, and/or software to be specifically designed for execution of one or more of the operations of method 500 .
- a first command may be received from a client computing platform.
- the first command may include a proxy image.
- the proxy image may represent an image stored on the client computing platform.
- Operation 502 may be performed by a first command component that is the same as or similar to first command component 106 , in accordance with one or more implementations.
- an identifier may be associated with the proxy image.
- the identifier may be transmitted to the client computing platform.
- edits to the image may be determined based upon the proxy image.
- the edits may be determined at a remote computing platform. Operation 508 may be performed by an edits component that is the same as or similar to edits component 110 , in accordance with one or more implementations.
- instructions may be transmitted from the remote computing platform to the client computing platform.
- the instructions may include the identifier and may be configured to cause the client computing platform to process the edits on the image.
- Operation 510 may be performed by an instructions component that is the same as or similar to instructions component 112 , in accordance with one or more implementations.
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Abstract
Description
- The disclosure relates to systems and methods that effectuate transmission of workflow between computing platforms.
- Users often take multiple images with a smart device. The images may not have been captured in the most ideal way. For example, the device may have been tilted while capturing an image and/or insufficient lighting may have been available at the time of capturing the image. Users may want to edit and/or enhance the images.
- One aspect of the disclosure relates to a system that effectuates transmission of workflow between computing platforms. The system may receive, from a client computing platform, a first command. The first command may include proxy visual content. The proxy visual content may represent visual content stored on the client computing platform. The proxy visual content may be associated with an identifier which may be transmitted from an application programming interface (API) to the client computing platform. A task may be associated with the proxy visual content. The task may be transmitted from the API to a remote computing platform for processing based upon the proxy visual content. Processing may include determining edits to the visual content based upon the proxy visual content, including an angle to rotate the visual content and/or determining an area to crop the visual content. Instructions including the edits may be transmitted from the remote computing platform to client computing platform via the API, such that the instructions may be applied to the visual content at the client computing platform.
- In some implementations, the system may include one or more servers. The server(s) may be configured to communicate with one or more client computing platforms according to a client/server architecture. The users of the system may access the system via the client computing platform. The server(s) may be configured to execute computer readable instructions. Computer readable instructions may include one or more of a first command component, an identifier component, an edits component, an instructions component, and/or other components.
- The first command component may be configured to receive a first command from a client computing platform. The first command may be received from the client computing platform. The first command may include proxy visual content. The proxy visual content may represent visual content stored on the client computing platform. The proxy visual content may be stored by the server(s), the client computing platform, and/or other storage locations. The proxy visual content may be a downsample of the visual content stored on the client computing platform, such that the proxy visual content may be a lower resolution visual content than the visual content stored on the client computing platform, may include some but not all of the content in the proxy visual content, and/or be a proxy for the visual content stored on the client computing platform in other ways. The proxy visual content may be generated in such a way to maintain an aspect ratio in relation to the visual content stored on the client computing platform. The first command may include an upload of the proxy visual content via an application programming interface.
- The identifier component may be configured to associate an identifier with the proxy visual content. The identifier may be associated with the proxy visual content via the API. The identifier may include any identifier that may be associated with the proxy visual content and the visual content stored on the client computing platform such that the visual content and/or proxy visual content may not be confused for another visual content and/or proxy visual content stored by the server(s) and/or the client computing platform. The identifier component may be configured to effectuate transmission of the identifier to the client computing platform. The system may transmit the identifier to the client computing platform via the API, and/or via other mechanisms. The identifier may be associated with the visual content stored on the client computing platform.
- The system may associate a task with the proxy visual content via the API. The task may include a request to determine and/or recommend edits to be made to the visual content stored on the client computing platform, and/or other operations or processing. The task may include the identifier associated with the proxy visual content. The system may effectuate transmission of the task from the API to a queue. The queue may manage one or more tasks to be processed by the remote computing platform. The system may queue the task at the queue until a remote computing platform is available to receive the task. The system may effectuate transmission of the task to the remote computing platform when the remote computing platform is available to receive the task.
- The edits component may be configured to determine edits, at the remote computing platform, to the visual content based upon the proxy visual content. Upon receiving the task, the remote computing platform may determine edits to the visual content based upon the proxy visual content including one or more of an angle to rotate the visual content and an area to crop the visual content. For example, a device which captured the visual content may have been tilted at the time of capturing the visual content. As such, content and/or objects captured in the visual content may appear to be tilted. The remote computing platform may determine an angle to rotate the visual content based upon the proxy visual content such that the content and/or objects captured in the visual content appear level. The remote computing platform may determine an area to crop the visual content. Visual content cropping may refer to removing outer parts of visual content to improve framing, accentuate content captured in the visual content, and/or change an aspect ratio associated with the visual content. While rotating and/or cropping have been discussed as edits that may be determined by the remote computing platform to apply to the visual content based upon the proxy visual content, the edits component may be configured to determine other edits based upon visual content manipulation processes to the visual content based upon the proxy visual content including one or more of enhancing colors, lighting, and/or brightness, applying filters, and/or other edits based upon visual content manipulation processes. The edits component may be configured to determine classifications to associate with the visual content based upon object recognition within the proxy visual content. Individual classifications may be associated with a confidence score. The confidence score may quantify a likelihood of success for the object recognition.
- The instructions component may be configured to effectuate transmission of instructions from the remote computing platform to the client computing platform. The instructions may include the identifier. The instructions may include the classifications to associate with the visual content (and/or the confidence score associated with the individual classifications). The instructions may be configured to cause client computing platform to process the edits on the visual content. The instructions component may be configured to effectuate transmission of instructions from the remote computing platform to the queue. The instructions component may effectuate transmission of the instructions from the queue to the API. Alternatively, the instructions component may be configured to effectuate transmission of the instructions directly from the remote computing platform to the API. In some embodiments, the instructions component may be configured to effectuate transmission of the instructions via a JavaScript Object Notation (JSON) data format. JSON representation of the instructions may include the identifier associated with the proxy visual content, the edits to be processed on the visual content, and/or the classifications to associate with the visual content. While a JSON data format may be used for transmission of the instructions, this is for exemplary purposes only. Any other data format and/or data interchange format may be used.
- These and other objects, features, and characteristics of the system and/or method disclosed herein, as well as the methods of operation and functions of the related elements of structure and the combination of parts and economies of manufacture, will become more apparent upon consideration of the following description and the appended claims with reference to the accompanying drawings, all of which form a part of this specification, wherein like reference numerals designate corresponding parts in the various figures. It is to be expressly understood, however, that the drawings are for the purpose of illustration and description only and are not intended as a definition of the limits of the invention. As used in the specification and in the claims, the singular form of “a”, “an”, and “the” include plural referents unless the context clearly dictates otherwise.
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FIG. 1 illustrates a system that effectuates transmission of workflow between computing platforms, in accordance with one or more implementations. -
FIG. 2 illustrates an exemplary flowchart of workflow between computing platforms, in accordance with one or more implementations. -
FIG. 3 illustrates an exemplary diagram of edits to an image, in accordance with one or more implementations. -
FIG. 4 illustrates an exemplary diagram of edits to an image, in accordance with one or more implementations. -
FIG. 5 illustrates a method that effectuates transmission of workflow between computing platforms, in accordance with one or more implementations. -
FIG. 1 illustrates asystem 100 that effectuates transmission of workflow between computing platforms, in accordance with one or more implementations.System 100 may receive, from a client computing platform, a first command. The first command may include a proxy image. The proxy image may represent an image stored on the client computing platform. The proxy image may be associated with an identifier which may be transmitted from an application programming interface (API) to the client computing platform. A task may be associated with the proxy image. The task may be transmitted from the API to a remote computing platform for processing based upon the proxy image. Processing may include determining edits to the image based upon the proxy image, including an angle to rotate the image and/or determining an area to crop the image. Instructions including the edits may be transmitted from the remote computing platform to client computing platform via the API, such that the instructions may be applied to the image at the client computing platform. - In some implementations,
system 100 may include one ormore servers 102. Server(s) 102 may be configured to communicate with one or more client computing platforms (e.g., client computing platform 104) according to a client/server architecture. The users ofsystem 100 may accesssystem 100 viaclient computing platform 104. Server(s) 102 may be configured to execute computerreadable instructions 105. Computerreadable instructions 105 may include one or more offirst command component 106,identifier component 108,edits component 110,instructions component 112, and/or other components. - Referring to
FIGS. 1 and 2 ,first command component 106 may be configured to receive a first command from a client computing platform. The first command may be received fromclient computing platform 104. The first command may include a proxy image. The proxy image may represent an image stored onclient computing platform 104.Client computing platform 104 may include one or more of a cellular telephone, a smartphone, a digital camera, a laptop, a tablet computer, a desktop computer, a television set-top box, a smart TV, a gaming console, and/or other client computing platforms. The proxy image may be stored by server(s) 102,client computing platform 104, and/or other storage locations. The proxy image may be a downsample of the image stored onclient computing platform 104, such that the proxy image may be a lower resolution image than the image stored onclient computing platform 104, may include some but not all of the content in the proxy visual content, and/or be a proxy for the visual content stored onclient computing platform 104 in other ways. The proxy image may be generated in such a way to maintain an aspect ratio in relation to the image stored onclient computing platform 104. - The first command may include an upload of the proxy image via an application programming interface. Referring to
FIG. 2 , application programming interface (e.g., API 202),queue 204, andremote computing platform 206 may refer to functionalities of server(s) 102.API 202 may include functionalities similar to those ofidentifier component 108.API 202 may include a set of programming instructions and/or standards for accessing a web-based software application and/or a web-tool.API 202 may allowclient computing platform 104 to interact withsystem 100 in a limited way based upon the programming instructions and/or standards ofAPI 202. As shown inFIG. 2 ,API 202 may receive the first command including an upload of the proxy image fromclient computing platform 104. The proxy image may be stored by server(s) 102 and/or other storage locations. -
Identifier component 108 may be configured to associate an identifier with the proxy image. The identifier may be associated with the proxy image viaAPI 202. The identifier may include any identifier that may be associated with the proxy image and the image stored onclient computing platform 104 such that the image and/or proxy image may not be confused for another image and/or proxy image stored by server(s) 102 and/orclient computing platform 104. -
Identifier component 108 may be configured to effectuate transmission of the identifier to the client computing platform.System 100 may transmit the identifier toclient computing platform 104 viaAPI 202, and/or via other mechanisms. The identifier may be associated with the image stored onclient computing platform 104. -
System 100 may associate a task with the proxy image viaAPI 202. The task may include a request to determine and/or recommend edits to be made to the image stored onclient computing platform 104, and/or other operations or processing. The task may include the identifier associated with the proxy image.System 100 may effectuate transmission of the task fromAPI 202 to a queue (e.g., queue 204). Queue 204 may manage one or more tasks to be processed byremote computing platform 206. -
System 100 may include one or more remote computing platforms (e.g., remote computing platform 206).System 100 may queue the task atqueue 204 until aremote computing platform 206 is available to receive the task.Remote computing platform 206 may be busy processing other tasks and/or jobs.Remote computing platform 206 may include functionalities similar to those ofedits component 110 and/orinstructions component 112. -
System 100 may effectuate transmission of the task toremote computing platform 206 whenremote computing platform 206 is available to receive the task.System 100 may receive a notification fromremote computing platform 206 that it is available to receive and/or process the task. The task received byremote computing platform 206 may include the proxy image and/or the identifier associated with the proxy image. -
Edits component 110 may be configured to determine edits, atremote computing platform 206, to the image based upon the proxy image. Upon receiving the task,remote computing platform 206 may determine edits to the image based upon the proxy image including one or more of an angle to rotate the image and an area to crop the image. For example, a device which captured the image may have been tilted at the time of capturing the image. As such, content and/or objects captured in the image may appear to be tilted. Referring toFIG. 3 ,remote computing platform 206 may determine an angle to rotate the image based upon the proxy image such that the content and/or objects captured in the image appear level. The angle to rotate the image may be represented by a number of degrees to rotate the image clockwise or counterclockwise. Referring toFIG. 4 ,remote computing platform 206 may determine an area to crop the image. Image cropping may refer to removing outer parts of an image to improve framing, accentuate content captured in the image, and/or change an aspect ratio associated with the image. If it is determined and/or recommended that the image be rotated by an angle and/or a number of degrees in a particular direction, it may be determined and/or recommended that the image be cropped in one or more areas such that the image may fit within particular dimensions. While rotating and/or cropping have been discussed as edits that may be determined byremote computing platform 206 to apply to the image based upon the proxy image,edits component 110 may be configured to determine other edits based upon image manipulation processes to the image based upon the proxy image including one or more of enhancing colors, lighting, and/or brightness, applying filters, and/or other edits based upon image manipulation processes. -
Edits component 110 may be configured to determine classifications to associate with the image based upon object recognition within the proxy image. Many images may be stored onclient computing platform 104. Various content and/or objects may be captured and/or depicted in various images. It may be beneficial to identify content and/or objects that have been captured and/or depicted within individual images. The identification of content and/or objects may be associated with classifications, which may include tags and/or labels associated with the individual images.Edits component 110 may be configured to determine such classifications based upon object recognition algorithms. For example, if the proxy image depicts a beach with sand, water, a bird, the sun, a volleyball net, and a volleyball,edits component 110 may be configured to determine classifications associated with the image (based upon the proxy image) including “beach”, “ocean”, “sun”, “birds”, “volleyball”, “fun”, and/or other classifications. Classifications associated with other images may be used to identify and/or determine classifications to be associated with the image. The classifications associated with the image may be used to search, group, organize, sort, and/or filter images. - Individual classifications may be associated with a confidence score. The confidence score may quantify a likelihood of success for the object recognition. A confidence score may be associated with individual classifications associated with the image. Continuing with the above example, if classifications associated with the image included “pool” and “ocean”, a confidence score may be associated with “pool” and “ocean” based upon analysis of context of the image (e.g., based upon other objects depicted in the image) and/or analysis of the image in comparison to other images including similar content and/or objects. The classification of “pool” may be associated with a lower confidence score (e.g., 0.02) than the classification of “ocean” (e.g., 0.98) based upon “beach” having a confidence score of 0.99 and/or based upon previous classifications of other images including both “beach” and “ocean”, rather than a combination of “beach” and “pool”.
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Instructions component 112 may be configured to effectuate transmission of instructions fromremote computing platform 206 toclient computing platform 104. The instructions may include the identifier. The instructions may include the classifications to associate with the image (and/or the confidence score associated with the individual classifications). The instructions may be configured to causeclient computing platform 104 to process the edits on the image.Instructions component 112 may be configured to effectuate transmission of instructions fromremote computing platform 206 to queue 204.Instructions component 112 may effectuate transmission of the instructions fromqueue 204 toAPI 202. Alternatively,instructions component 112 may be configured to effectuate transmission of the instructions directly fromremote computing platform 206 toAPI 202. In some embodiments,instructions component 112 may be configured to effectuate transmission of the instructions via a JavaScript Object Notation (JSON) data format. JSON representation of the instructions may include the identifier associated with the proxy image, the edits to be processed on the image, and/or the classifications to associate with the image. While a JSON data format may be used for transmission of the instructions, this is for exemplary purposes only. Any other data format and/or data interchange format may be used. -
System 100 may receive a second command atAPI 202. The second command may include the identifier associated with the image and/or proxy image. The second command may include a request for a status update regarding the task associated with the identifier. The status update may include one or more of whether the task associated with the identifier is still inqueue 204 waiting forremote computing platform 206 to become available to process the task, an estimated wait time untilremote computing platform 206 may be available to receive and/or process the task, whether the task associated with the identifier is currently being processed, an estimated time remaining to complete the task atremote computing platform 206, whetherAPI 202 is waiting to receive the instructions fromremote computing platform 206 and/orqueue 204, an estimated wait time until the instructions may be received atAPI 202, and/or other status updates associated with the task and/or identifier.API 202 may store the instructions received fromqueue 204 and/orremote computing platform 206 until the second command is received atAPI 202.System 100 may effectuate transmission of the instructions toclient computing platform 104 viaAPI 202 in response to the second command. Alternatively,system 100 may automatically effectuate transmission of the instructions toclient computing platform 104 viaAPI 202 uponAPI 202 receiving the instructions fromqueue 204 and/orremote computing platform 206. - Upon receiving the instructions via
API 202,client computing platform 104 may process the edits on the image associated with the identifier included within the instructions.Client computing platform 104 may receive the instructions including the edits to be made to the image (e.g., one or more of an angle to rotate the image, an area to crop the image, and/or other edits to the image) and the classifications to be associated with the image. Based upon the received instructions, client computing platform may process the edits and/or classifications on the image. For example,client computing platform 104 may rotate the image store onclient computing device 104 associated with the identifier by the angle specified in the instructions.Client computing platform 104 may crop the image in the area specified in the instructions.Client computing platform 104 may associate some or all of the classifications (e.g., via tags and/or labels) with the image. Users ofclient computing platform 104 may search for other images with similar classifications associated with the image, organize images based upon one or more classifications associated with the image, filter images based upon one or more classifications associated with the image, sort images by classifications associated with the image, and/or group images together based upon the classifications associated with the image. - Referring again to
FIG. 1 , in some implementations, server(s) 102,client computing platform 104, and/orexternal resources 120 may be operatively linked via one or more electronic communication links. For example, such electronic communication links may be established, at least in part, via anetwork 130 such as the Internet and/or other networks. It will be appreciated that this is not intended to be limiting, and that the scope of this disclosure includes implementations in which server(s) 102,client computing platform 104, and/orexternal resources 120 may be operatively linked via some other communication media. - A given
client computing platform 104 may include one or more processors configured to execute computer program components. The computer program components may be configured to enable a producer and/or user associated with the givenclient computing platform 104 to interface withsystem 100 and/orexternal resources 120, and/or provide other functionality attributed herein toclient computing platform 104. By way of non-limiting example, the givenclient computing platform 104 may include one or more of a desktop computer, a laptop computer, a handheld computer, a NetBook, a Smartphone, a gaming console, and/or other computing platforms. -
External resources 120 may include sources of information, hosts and/or providers of virtual environments outside ofsystem 100, external entities participating withsystem 100, and/or other resources. In some implementations, some or all of the functionality attributed herein toexternal resources 120 may be provided by resources included insystem 100. - Server(s) 102 may include
electronic storage 122, one ormore processors 124, and/or other components. Server(s) 102 may include communication lines, or ports to enable the exchange of information with a network and/or other computing platforms. Illustration of server(s) 102 inFIG. 1 is not intended to be limiting. Servers(s) 102 may include a plurality of hardware, software, and/or firmware components operating together to provide the functionality attributed herein to server(s) 102. For example, server(s) 102 may be implemented by a cloud of computing platforms operating together as server(s) 102. -
Electronic storage 122 may include electronic storage media that electronically stores information. The electronic storage media ofelectronic storage 122 may include one or both of system storage that is provided integrally (i.e., substantially non-removable) with server(s) 102 and/or removable storage that is removably connectable to server(s) 102 via, for example, a port (e.g., a USB port, a firewire port, etc.) or a drive (e.g., a disk drive, etc.).Electronic storage 122 may include one or more of optically readable storage media (e.g., optical disks, etc.), magnetically readable storage media (e.g., magnetic tape, magnetic hard drive, floppy drive, etc.), electrical charge-based storage media (e.g., EEPROM, RAM, etc.), solid-state storage media (e.g., flash drive, etc.), and/or other electronically readable storage media. Theelectronic storage 122 may include one or more virtual storage resources (e.g., cloud storage, a virtual private network, and/or other virtual storage resources).Electronic storage 122 may store software algorithms, information determined by processor(s) 124, information received from server(s) 102, information received from client computing platform(s) 104, and/or other information that enables server(s) 102 to function as described herein. - Processor(s) 124 may be configured to provide information processing capabilities in server(s) 102. As such, processor(s) 124 may include one or more of a digital processor, an analog processor, a digital circuit designed to process information, an analog circuit designed to process information, a state machine, and/or other mechanisms for electronically processing information. Although processor(s) 124 is shown in
FIG. 1 as a single entity, this is for illustrative purposes only. In some implementations, processor(s) 124 may include a plurality of processing units. These processing units may be physically located within the same device, or processor(s) 124 may represent processing functionality of a plurality of devices operating in coordination. The processor(s) 124 may be configured to execute computer 106, 108, 110, 112, and/or other components. The processor(s) 124 may be configured to executereadable instruction components 106, 108, 110, 112, and/or other components by software; hardware; firmware; some combination of software, hardware, and/or firmware; and/or other mechanisms for configuring processing capabilities on processor(s) 124.components - It should be appreciated that although
106, 108, 110, and 112 are illustrated incomponents FIG. 1 as being co-located within a single processing unit, in implementations in which processor(s) 124 includes multiple processing units, one or more of 106, 108, 110, and/or 112 may be located remotely from the other components. The description of the functionality provided by thecomponents 106, 108, 110, and/or 112 described herein is for illustrative purposes, and is not intended to be limiting, as any ofdifferent components 106, 108, 110, and/or 112 may provide more or less functionality than is described. For example, one or more ofcomponents 106, 108, 110, and/or 112 may be eliminated, and some or all of its functionality may be provided by other ones ofcomponents 106, 108, 110, and/or 112. As another example, processor(s) 124 may be configured to execute one or more additional components that may perform some or all of the functionality attributed herein to one ofcomponents 106, 108, 110, and/or 112.components -
FIG. 5 illustrates amethod 500 that effectuates transmission of workflow between computing platforms, in accordance with one or more implementations. The operations ofmethod 500 presented below are intended to be illustrative. In some implementations,method 500 may be accomplished with one or more additional operations not described, and/or without one or more of the operations discussed. Additionally, the order in which the operations ofmethod 500 are illustrated inFIG. 5 and described below is not intended to be limiting. - In some implementations,
method 500 may be implemented in one or more processing devices (e.g., a digital processor, an analog processor, a digital circuit designed to process information, an analog circuit designed to process information, a state machine, and/or other mechanisms for electronically processing information). The one or more processing devices may include one or more devices executing some or all of the operations ofmethod 500 in response to instructions stored electronically on an electronic storage medium. The one or more processing devices may include one or more devices configured through hardware, firmware, and/or software to be specifically designed for execution of one or more of the operations ofmethod 500. - At an
operation 502, a first command may be received from a client computing platform. The first command may include a proxy image. The proxy image may represent an image stored on the client computing platform.Operation 502 may be performed by a first command component that is the same as or similar tofirst command component 106, in accordance with one or more implementations. - At an
operation 504, an identifier may be associated with the proxy image. At anoperation 506, the identifier may be transmitted to the client computing platform. The identifier may be associated with the image stored on the client computing platform. 504 and 506 may be performed by an identifier component that is the same as or similar toOperations identifier component 108, in accordance with one or more implementations. - At an
operation 508, edits to the image may be determined based upon the proxy image. The edits may be determined at a remote computing platform.Operation 508 may be performed by an edits component that is the same as or similar toedits component 110, in accordance with one or more implementations. - At an
operation 510, instructions may be transmitted from the remote computing platform to the client computing platform. The instructions may include the identifier and may be configured to cause the client computing platform to process the edits on the image.Operation 510 may be performed by an instructions component that is the same as or similar toinstructions component 112, in accordance with one or more implementations. - Although the system(s) and/or method(s) of this disclosure have been described in detail for the purpose of illustration based on what is currently considered to be the most practical and preferred implementations, it is to be understood that such detail is solely for that purpose and that the disclosure is not limited to the disclosed implementations, but, on the contrary, is intended to cover modifications and equivalent arrangements that are within the spirit and scope of the appended claims. For example, it is to be understood that the present disclosure contemplates that, to the extent possible, one or more features of any implementation can be combined with one or more features of any other implementation.
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20240061565A1 (en) * | 2020-12-30 | 2024-02-22 | Beijing Bytedance Network Technology Co., Ltd. | Method and apparatus for generating image processing interface, device, and storage medium |
Family Cites Families (77)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH09181966A (en) | 1995-12-22 | 1997-07-11 | Olympus Optical Co Ltd | Image processing method and device |
| US6633685B1 (en) * | 1998-08-05 | 2003-10-14 | Canon Kabushiki Kaisha | Method, apparatus, and storage media for image processing |
| US7047201B2 (en) | 2001-05-04 | 2006-05-16 | Ssi Corporation | Real-time control of playback rates in presentations |
| US7970240B1 (en) | 2001-12-17 | 2011-06-28 | Google Inc. | Method and apparatus for archiving and visualizing digital images |
| KR100866790B1 (en) | 2002-06-29 | 2008-11-04 | 삼성전자주식회사 | Focusing method and apparatus therefor in interactive mode |
| JP4117616B2 (en) | 2003-07-28 | 2008-07-16 | ソニー株式会社 | Editing system, control method thereof and editing apparatus |
| US20050108031A1 (en) | 2003-11-17 | 2005-05-19 | Grosvenor Edwin S. | Method and system for transmitting, selling and brokering educational content in streamed video form |
| JP3915988B2 (en) | 2004-02-24 | 2007-05-16 | ソニー株式会社 | Information processing apparatus and method, recording medium, and program |
| JP4125252B2 (en) * | 2004-03-02 | 2008-07-30 | 株式会社東芝 | Image generation apparatus, image generation method, and image generation program |
| US7512886B1 (en) | 2004-04-15 | 2009-03-31 | Magix Ag | System and method of automatically aligning video scenes with an audio track |
| US8953908B2 (en) | 2004-06-22 | 2015-02-10 | Digimarc Corporation | Metadata management and generation using perceptual features |
| JP4707368B2 (en) | 2004-06-25 | 2011-06-22 | 雅貴 ▲吉▼良 | Stereoscopic image creation method and apparatus |
| JP2006053694A (en) | 2004-08-10 | 2006-02-23 | Riyuukoku Univ | Space simulator, space simulation method, space simulation program, recording medium |
| US20060080286A1 (en) | 2004-08-31 | 2006-04-13 | Flashpoint Technology, Inc. | System and method for storing and accessing images based on position data associated therewith |
| US8774560B2 (en) * | 2005-01-11 | 2014-07-08 | University Of Central Florida Research Foundation, Inc. | System for manipulation, modification and editing of images via remote device |
| US7735101B2 (en) | 2006-03-28 | 2010-06-08 | Cisco Technology, Inc. | System allowing users to embed comments at specific points in time into media presentation |
| JP4565115B2 (en) | 2006-08-30 | 2010-10-20 | 独立行政法人産業技術総合研究所 | Multifocal imaging device |
| US20080123976A1 (en) | 2006-09-22 | 2008-05-29 | Reuters Limited | Remote Picture Editing |
| US7885426B2 (en) | 2006-09-26 | 2011-02-08 | Fuji Xerox Co., Ltd. | Method and system for assessing copyright fees based on the content being copied |
| JP5007563B2 (en) | 2006-12-28 | 2012-08-22 | ソニー株式会社 | Music editing apparatus and method, and program |
| US20080183844A1 (en) | 2007-01-26 | 2008-07-31 | Andrew Gavin | Real time online video editing system and method |
| US20090027499A1 (en) | 2007-07-23 | 2009-01-29 | David Henry Nicholl | Portable multi-media surveillance device and method for delivering surveilled information |
| JP2009053748A (en) | 2007-08-23 | 2009-03-12 | Nikon Corp | Image processing apparatus, image processing program, and camera |
| WO2009040538A1 (en) | 2007-09-25 | 2009-04-02 | British Telecommunications Public Limited Company | Multimedia content assembling for viral marketing purposes |
| JP2009117974A (en) | 2007-11-02 | 2009-05-28 | Fujifilm Corp | Interest information creation method, apparatus and system |
| US8180161B2 (en) | 2007-12-03 | 2012-05-15 | National University Corporation Hokkaido University | Image classification device and image classification program |
| JP2009230822A (en) | 2008-03-24 | 2009-10-08 | Sony Corp | Device, and method for editing content and program |
| US8520979B2 (en) | 2008-08-19 | 2013-08-27 | Digimarc Corporation | Methods and systems for content processing |
| WO2010034063A1 (en) | 2008-09-25 | 2010-04-01 | Igruuv Pty Ltd | Video and audio content system |
| KR101499498B1 (en) | 2008-10-08 | 2015-03-06 | 삼성전자주식회사 | Apparatus and method for ultra-high resoultion video processing |
| US20100161720A1 (en) | 2008-12-23 | 2010-06-24 | Palm, Inc. | System and method for providing content to a mobile device |
| US8641621B2 (en) | 2009-02-17 | 2014-02-04 | Inneroptic Technology, Inc. | Systems, methods, apparatuses, and computer-readable media for image management in image-guided medical procedures |
| US8412729B2 (en) | 2009-04-22 | 2013-04-02 | Genarts, Inc. | Sharing of presets for visual effects or other computer-implemented effects |
| US20100316291A1 (en) * | 2009-06-11 | 2010-12-16 | Shulan Deng | Imaging terminal having data compression |
| US8516101B2 (en) | 2009-06-15 | 2013-08-20 | Qualcomm Incorporated | Resource management for a wireless device |
| JP5549230B2 (en) | 2010-01-13 | 2014-07-16 | 株式会社リコー | Ranging device, ranging module, and imaging device using the same |
| US20110206351A1 (en) | 2010-02-25 | 2011-08-25 | Tal Givoli | Video processing system and a method for editing a video asset |
| JP5565001B2 (en) | 2010-03-04 | 2014-08-06 | 株式会社Jvcケンウッド | Stereoscopic imaging device, stereoscopic video processing device, and stereoscopic video imaging method |
| JP4787905B1 (en) | 2010-03-30 | 2011-10-05 | 富士フイルム株式会社 | Image processing apparatus and method, and program |
| US8606073B2 (en) | 2010-05-12 | 2013-12-10 | Woodman Labs, Inc. | Broadcast management system |
| EP2588993B1 (en) * | 2010-06-30 | 2020-01-08 | Datalogic USA, Inc. | Adaptive data reader system and method of operating |
| JP4865068B1 (en) | 2010-07-30 | 2012-02-01 | 株式会社東芝 | Recording / playback device, tag list generation method for recording / playback device, and control device for recording / playback device |
| US8849879B2 (en) | 2010-07-30 | 2014-09-30 | Avaya Inc. | System and method for aggregating and presenting tags |
| US20140192238A1 (en) * | 2010-10-24 | 2014-07-10 | Linx Computational Imaging Ltd. | System and Method for Imaging and Image Processing |
| US8705866B2 (en) | 2010-12-07 | 2014-04-22 | Sony Corporation | Region description and modeling for image subscene recognition |
| WO2012086120A1 (en) | 2010-12-24 | 2012-06-28 | パナソニック株式会社 | Image processing apparatus, image pickup apparatus, image processing method, and program |
| WO2012109568A1 (en) | 2011-02-11 | 2012-08-16 | Packetvideo Corporation | System and method for using an application on a mobile device to transfer internet media content |
| US9997196B2 (en) | 2011-02-16 | 2018-06-12 | Apple Inc. | Retiming media presentations |
| US8954386B2 (en) * | 2011-03-22 | 2015-02-10 | Microsoft Corporation | Locally editing a remotely stored image |
| WO2012154216A1 (en) | 2011-05-06 | 2012-11-15 | Sti Medical Systems, Llc | Diagnosis support system providing guidance to a user by automated retrieval of similar cancer images with user feedback |
| KR101797041B1 (en) | 2012-01-17 | 2017-12-13 | 삼성전자주식회사 | Digital imaging processing apparatus and controlling method thereof |
| US8971623B2 (en) * | 2012-03-06 | 2015-03-03 | Apple Inc. | Overlaid user interface tools for applying effects to image |
| US9189876B2 (en) * | 2012-03-06 | 2015-11-17 | Apple Inc. | Fanning user interface controls for a media editing application |
| US20130330019A1 (en) | 2012-06-08 | 2013-12-12 | Samsung Electronics Co., Ltd. | Arrangement of image thumbnails in social image gallery |
| CN102768676B (en) | 2012-06-14 | 2014-03-12 | 腾讯科技(深圳)有限公司 | Method and device for processing file with unknown format |
| US8457367B1 (en) * | 2012-06-26 | 2013-06-04 | Google Inc. | Facial recognition |
| US9342376B2 (en) * | 2012-06-27 | 2016-05-17 | Intel Corporation | Method, system, and device for dynamic energy efficient job scheduling in a cloud computing environment |
| EP2680222A1 (en) | 2012-06-28 | 2014-01-01 | Nokia Corporation | Method, apparatus and computer program product for processing media content |
| US20150156247A1 (en) * | 2012-09-13 | 2015-06-04 | Google Inc. | Client-Side Bulk Uploader |
| US8990328B1 (en) | 2012-10-02 | 2015-03-24 | Amazon Technologies, Inc. | Facilitating media streaming with social interaction |
| JP2014106637A (en) | 2012-11-26 | 2014-06-09 | Sony Corp | Information processor, method and program |
| US9307269B2 (en) | 2013-03-14 | 2016-04-05 | Google Inc. | Determining interest levels in videos |
| KR102161230B1 (en) | 2013-05-28 | 2020-09-29 | 삼성전자주식회사 | Method and apparatus for user interface for multimedia content search |
| US9542488B2 (en) | 2013-08-02 | 2017-01-10 | Google Inc. | Associating audio tracks with video content |
| US20150071547A1 (en) | 2013-09-09 | 2015-03-12 | Apple Inc. | Automated Selection Of Keeper Images From A Burst Photo Captured Set |
| WO2015083575A1 (en) | 2013-12-06 | 2015-06-11 | シャープ株式会社 | Image decoding device, image encoding device, and encoded data conversion device |
| US20150205992A1 (en) * | 2014-01-21 | 2015-07-23 | Lumidigm, Inc. | Multispectral imaging biometrics |
| ES2730404T3 (en) | 2014-04-04 | 2019-11-11 | Red Com Llc | Camcorder with capture modes |
| US9984293B2 (en) | 2014-07-23 | 2018-05-29 | Gopro, Inc. | Video scene classification by activity |
| US9418283B1 (en) | 2014-08-20 | 2016-08-16 | Amazon Technologies, Inc. | Image processing using multiple aspect ratios |
| US20160094601A1 (en) | 2014-09-30 | 2016-03-31 | The Nielsen Company (Us), Llc | Methods and apparatus to measure exposure to streaming media |
| CN107077608B (en) * | 2014-11-13 | 2021-06-29 | 英特尔公司 | Facial Liveness Detection in Image Biometrics |
| US20160189752A1 (en) | 2014-12-30 | 2016-06-30 | Yaron Galant | Constrained system real-time capture and editing of video |
| US9886639B2 (en) * | 2014-12-31 | 2018-02-06 | Morphotrust Usa, Llc | Detecting facial liveliness |
| JP6455232B2 (en) * | 2015-03-02 | 2019-01-23 | 株式会社リコー | Image processing system, processing execution control device, image formation output control device, control program for image processing system, and control method for image processing system |
| WO2017000116A1 (en) * | 2015-06-29 | 2017-01-05 | 北京旷视科技有限公司 | Living body detection method, living body detection system, and computer program product |
| KR20180102637A (en) * | 2016-01-12 | 2018-09-17 | 프린스톤 아이덴티티, 인크. | Systems and methods of biometric analysis |
-
2015
- 2015-10-22 US US14/920,348 patent/US9639560B1/en not_active Expired - Fee Related
-
2017
- 2017-03-14 US US15/458,296 patent/US10338955B1/en active Active
-
2019
- 2019-05-21 US US16/418,047 patent/US20190272194A1/en not_active Abandoned
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20240061565A1 (en) * | 2020-12-30 | 2024-02-22 | Beijing Bytedance Network Technology Co., Ltd. | Method and apparatus for generating image processing interface, device, and storage medium |
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| US9639560B1 (en) | 2017-05-02 |
| US10338955B1 (en) | 2019-07-02 |
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