US20200191585A1 - System and Method for Facilitating Location of Driver-Participants of Car Transportation Systems - Google Patents
System and Method for Facilitating Location of Driver-Participants of Car Transportation Systems Download PDFInfo
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- US20200191585A1 US20200191585A1 US16/797,094 US202016797094A US2020191585A1 US 20200191585 A1 US20200191585 A1 US 20200191585A1 US 202016797094 A US202016797094 A US 202016797094A US 2020191585 A1 US2020191585 A1 US 2020191585A1
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01C—MEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
- G01C21/00—Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00
- G01C21/26—Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00 specially adapted for navigation in a road network
- G01C21/34—Route searching; Route guidance
- G01C21/3407—Route searching; Route guidance specially adapted for specific applications
- G01C21/3438—Rendezvous; Ride sharing
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- G—PHYSICS
- G08—SIGNALLING
- G08G—TRAFFIC CONTROL SYSTEMS
- G08G1/00—Traffic control systems for road vehicles
- G08G1/123—Traffic control systems for road vehicles indicating the position of vehicles, e.g. scheduled vehicles; Managing passenger vehicles circulating according to a fixed timetable, e.g. buses, trains, trams
- G08G1/127—Traffic control systems for road vehicles indicating the position of vehicles, e.g. scheduled vehicles; Managing passenger vehicles circulating according to a fixed timetable, e.g. buses, trains, trams to a central station ; Indicators in a central station
- G08G1/13—Traffic control systems for road vehicles indicating the position of vehicles, e.g. scheduled vehicles; Managing passenger vehicles circulating according to a fixed timetable, e.g. buses, trains, trams to a central station ; Indicators in a central station the indicator being in the form of a map
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01C—MEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
- G01C21/00—Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00
- G01C21/20—Instruments for performing navigational calculations
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01C—MEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
- G01C21/00—Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00
- G01C21/26—Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00 specially adapted for navigation in a road network
- G01C21/34—Route searching; Route guidance
- G01C21/36—Input/output arrangements for on-board computers
- G01C21/3667—Display of a road map
- G01C21/367—Details, e.g. road map scale, orientation, zooming, illumination, level of detail, scrolling of road map or positioning of current position marker
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- G—PHYSICS
- G08—SIGNALLING
- G08G—TRAFFIC CONTROL SYSTEMS
- G08G1/00—Traffic control systems for road vehicles
- G08G1/005—Traffic control systems for road vehicles including pedestrian guidance indicator
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- G06Q50/30—
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q50/00—Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
- G06Q50/40—Business processes related to the transportation industry
Definitions
- the present invention relates to mobile car transportation systems. More specifically, the present invention relates to a system and method that facilitates the location of driver-participants of car transportation systems by providing a driver-locating means using a network-independent signal emitting device and a passenger-to-driver navigation platform that directs a passenger-participant to the location of the signal emitting device.
- car transportation systems and networks such as Uber and Lyft, to obtain rides to desired destinations.
- These car transportation systems utilize networks to automatically match drivers and passengers based on various criteria, such as route, availability, and location.
- the car transportation system assigns a driver to the passenger, notifies the driver of the passenger's pick-up location, and notifies the passenger of an estimated time of arrival.
- the car transportations system employing its global positioning system (GPS), automatically sets a pick-up location based on a proximate physical address that is not necessarily the exact location in which the passenger wishes to be picked up.
- GPS global positioning system
- This automatic GPS-determined pick-up location setting is a flaw in the car transportation system, because passengers do not always request rides exactly where they want to be picked up, and thus end up waiting for drivers at a location different than where the driver ends up going to pick up the passenger. Additionally, it is often the case in busy commercial areas, such as hotels, airports, stadiums, and highly populated urban areas, that drivers are unable to drive exactly to the pick-up location, either because the commercial area does not allow it, or because it is simply an area in which a vehicle may not access.
- car transportations systems typically provide interfaces, wherein the driver and passengers can call or text each other to provide updates regarding their status, or changes in pick-up locations.
- having to manually check on the status of other participants by calling or texting is inconvenient and time consuming. Not only that, but repeatedly calling or texting to send or receive status updates has been perceived as disruptive and annoying.
- drivers may be prohibited from texting while driving or talking on the phone without a hands-free communication device.
- network signals may be bad or jammed, thereby not allowing the participants to communicate with each other.
- the present invention provides a system and method for facilitating the location of driver-participants of car transportation systems wherein the same can be utilized for providing convenience for the user when employing car transportation systems.
- the system and method comprises a signal emitting device and an electronic device, each in communication with a car transportation system.
- the signal emitting device corresponds to a vehicle of a driver-participant of the car transportation system and is configured to transmit a signal to an electronic device that corresponds to a passenger-participant of the car transportation system.
- the signal includes a unique identifier for identifying the signal emitting device.
- the signal-emitting device includes a first processor, a first memory, and a first logic configured to transmit a number corresponding to the unique identifier of the signal emitting device to the electronic device, retrieve location data of the signal emitting device, and transmit the location data of the signal emitting device to the electronic device.
- the electronic device includes a graphic user interface, a wireless transceiver configured to receive the signal, a second processor, a second memory in operative communication with the second processor, and a second logic configured to store the number corresponding to the unique identifier in the second memory, retrieve the number from second memory upon the wireless transceiver receiving the signal from the signal emitting device, and match the retrieved number with the unique identifier transmitted with the received signal. If there is no match, then the logic does not recognize the signal emitting device. If there is a match, then the logic recognizes the signal emitting device and ascertains the location of the signal emitting device based on the location data transmitted therewith. The logic is further configured to provide navigation directions towards the signal emitting device via the graphic user interface of the electronic device.
- FIG. 1 shows a diagram by which the system operates to facilitate location of driver-participants of car transportation systems according to one embodiment of the present invention.
- FIG. 2 shows a block diagram of an electronic device of a passenger-participant communicating with a signal emitting device of a driver-participant according to one embodiment of the present invention.
- FIG. 3 shows a flow chart by which the system operates to facilitate location of driver-participants of car transportation systems according to one embodiment of the present invention.
- FIG. 4 shows a diagram of the electronic device's navigation platform for providing compass navigation to the signal emitting device according to one embodiment of the present invention
- logic refers to (i) logic implemented as computer instructions and/or data within one or more computer processes and/or (ii) logic implemented in electronic circuitry.
- the present disclosure refers to “a logic,” “a processor,” and so on. However, this should not be read as limiting in any way as the present disclosure contemplates embodiments of the present invention utilizing “one or more logic,” “one or more processors,” and so on. Unless specifically limited to a single unit, “a” is intended to be equivalent to “one or more” throughout the present disclosure.
- the present invention provides a system and method for aiding passenger-participants of car transportation systems in locating driver-participants of car transportation systems, particularly in commercial areas.
- the system includes a signal emitting device 10 and an electronic device 25 in communication with a car transportation system 15 , such as Uber or Lyft.
- the signal emitting device 10 is configured to transmit a signal 20 including location data and a unique identifier that identifies the location of a driver-participant of the car transportation system 15 .
- the electronic device 25 is configured to receive the signal 20 and display the driver-participant's location.
- a logic 70 of the electronic device 25 is configured to recognize the unique identifier transmitted by the signal emitting device 10 and direct the passenger-participant to a location provided by the location data transmitted by the signal emitting device 10 , using compass direction, or an indoor navigation system.
- the signal emitting device 10 includes a beacon, or beacon-like device configured to send a signal.
- the signal emitting device 10 comprises an electronic device, such as a smart phone or computer tablet, through which a driver-participant utilizes the car transportation system 15 .
- the signal 20 transmitted by the signal emitting device 10 includes high frequency radio waves transmitting at a transmitter power output (TPO), or Tx power, ranging from 4-8 decibel-milliwatts (dBm), which translates to a signal range of 50-90 meters, such that the signal 20 transmitted by the signal emitting device 10 may reach longer distances when informing the passenger-participant of the signal emitting device's 10 location.
- TPO transmitter power output
- dBm decibel-milliwatts
- the signal emitting device 10 is configured to continuously transmit the signal 20 over intervals ranging from ten times per second (i.e., one time per every 100 milliseconds) to one time per second, such that the signal emitting device 10 is continuously pulsating a signal, thereby facilitating the reception/location of the signal 20 by the passenger-participant.
- the signal emitting device 10 is configured to be positioned in or on the driver-participant's vehicle, thereby transmitting the signal 20 directly from the driver-participant's vehicle. In this way, the signal emitting device 10 is in signal range when transmitting the signal 20 to a passenger-participant.
- the signal emitting device 10 is independent of any telecommunications, mobile, or internet network, such that the signal emitting device 10 can transmit the signal 20 when there is poor network service and/or no internet connection.
- the signal emitting device 10 includes a wireless transmitter 40 for transmitting the signal 20 , a wireless receiver 42 in communication with the car transportation system 15 , a memory 45 configured to store location data, a logic 50 stored on the memory 45 , and a processor 52 in communication with the memory 45 and configured to execute the logic 50 .
- the logic 50 is configured to retrieve location data from the car transportation system 15 , such as coordinates, obtained by a global positioning system of the car transportation system 15 , and store it on the memory 45 .
- the logic 50 is configured to cause the signal 20 to transmit the retrieved location data along with it, thereby sending a driver-participant's exact location.
- the unique identifier of the signal 20 includes a number that is unique to and/or corresponds to the driver-participant of the car transportation system 15 , such that the number identifies the signal emitting device 10 with the driver-participant.
- the electronic device 25 includes a graphic user interface (GUI) 30 having a display 54 and an input 56 for manipulating the GUI 30 , a processor 60 , a memory 65 in communication with the processor 60 , a logic 70 stored on the memory 65 and configured to be executed by the processor 60 , and a wireless transceiver 75 configured to receive the signal 20 of the signal emitting device 10 .
- GUI graphic user interface
- FIG. 3 there is shown a flow chart of the process by which the system operates to facilitate location of driver-participants of car transportation systems according to one embodiment of the present invention.
- the car transportation system assigns a driver-participant to pick up the passenger-participant at a requested pick-up location, as shown by step 100 .
- the car transportations system is configured to transmit the number corresponding to the unique identifier of the driver-participant's signal emitting device to the passenger-participant, as shown by steps 105 and 110 .
- the logic of the signal emitting device is configured to transmit the number corresponding to the unique identifier thereof to the passenger-participant.
- the processor Upon reception of the unique identifying number, the processor stores the number on the memory of the passenger-participant's electronic device, as shown by step 115 .
- the car transportation system activates the signal emitting device and transmits a signal, as shown by steps 120 and 125 .
- the signal emitting device is configured to be manually activated by the driver-participant.
- the wireless transceiver picks up the signal from the signal emitting device, which includes the unique identifying number, as shown by step 130 .
- the logic is then configured to retrieve the unique identifying number provided by the car transportation system from the memory and match the unique identifying number with the unique identifier of the signal, as shown by step 135 .
- the logic does not recognize the signal emitting device, as shown by step 140 . If there is a match, the logic recognizes the signal emitting device, as shown by step 145 . Once the signal emitting device is recognized, the logic generates directions to the signal emitting device based on the location data accompanying the signal of the signal emitting device, as shown by step 150 . In one embodiment, the turn-by-turn directions are displayed by the GUI of the electronic device.
- the logic of the electronic device 25 is configured to provide a navigational path to the location provided by the signal 20 of the signal emitting device 10 via compass navigation.
- the graphic user interface 30 includes a navigation platform configured to display a map 200 and a compass 205 on the display 52 thereof.
- the logic is configured to pinpoint and display the location of the signal emitting device 10 and the passenger-participant on the map 200 .
- the navigation platform includes the location of the passenger-participant with a directional arrow 210 coupled to the compass 205 , such that the directional arrow 210 always points north. Using the compass 205 and directional arrow 210 a user may navigate a path towards the signal emitting device 10 and driver-participant's vehicle.
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- Engineering & Computer Science (AREA)
- Radar, Positioning & Navigation (AREA)
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- General Physics & Mathematics (AREA)
- Automation & Control Theory (AREA)
- Traffic Control Systems (AREA)
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Abstract
A system and method for facilitating location of driver-participants in car transportation systems is provided. The system includes a network-independent signal emitting device and an electronic device, each in communication with a car transportation system. The signal emitting device corresponds to a driver-participant of the car transportation system while the electronic device corresponds to a passenger-participant of the car transportation system. The signal emitting device is configured to transmit a signal including location data. The signal includes a unique identifier that associates the signal emitting device with the driver-participant of the car transportation system. The electronic device is configured to receive the signal and display the driver-participant's location. A logic is configured to recognize the unique identifier transmitted by the signal emitting device, ascertain the location of the signal emitting device based on the location data transmitted by the signal, and direct the passenger-participant to that location.
Description
- This application is a Continuation of U.S. Nonprovisional application Ser. No. 15/692,119, filed on Aug. 31, 2017, which claims the benefit of U.S. Provisional Application No. 62/381,779, filed on Aug. 31, 2016. The above identified patent application is herein incorporated by reference in its entirety to provide continuity of disclosure.
- The present invention relates to mobile car transportation systems. More specifically, the present invention relates to a system and method that facilitates the location of driver-participants of car transportation systems by providing a driver-locating means using a network-independent signal emitting device and a passenger-to-driver navigation platform that directs a passenger-participant to the location of the signal emitting device.
- Individuals often utilize car transportation systems and networks, such as Uber and Lyft, to obtain rides to desired destinations. These car transportation systems utilize networks to automatically match drivers and passengers based on various criteria, such as route, availability, and location. Once a passenger requests a ride, the car transportation system assigns a driver to the passenger, notifies the driver of the passenger's pick-up location, and notifies the passenger of an estimated time of arrival. Often times a passenger requests a ride inside of a large commercial area, so the car transportations system, employing its global positioning system (GPS), automatically sets a pick-up location based on a proximate physical address that is not necessarily the exact location in which the passenger wishes to be picked up. This automatic GPS-determined pick-up location setting is a flaw in the car transportation system, because passengers do not always request rides exactly where they want to be picked up, and thus end up waiting for drivers at a location different than where the driver ends up going to pick up the passenger. Additionally, it is often the case in busy commercial areas, such as hotels, airports, stadiums, and highly populated urban areas, that drivers are unable to drive exactly to the pick-up location, either because the commercial area does not allow it, or because it is simply an area in which a vehicle may not access.
- In order to overcome these problems, car transportations systems typically provide interfaces, wherein the driver and passengers can call or text each other to provide updates regarding their status, or changes in pick-up locations. However, having to manually check on the status of other participants by calling or texting is inconvenient and time consuming. Not only that, but repeatedly calling or texting to send or receive status updates has been perceived as disruptive and annoying. Additionally, drivers may be prohibited from texting while driving or talking on the phone without a hands-free communication device. Furthermore, depending on the commercial area in which the car transportation system participants are located, network signals may be bad or jammed, thereby not allowing the participants to communicate with each other.
- Therefore, issues arise when passenger-participants request a ride in commercial areas because drivers may simply be unable to get to a scheduled pick-up location and unable to advise their passengers of their whereabouts, and because drivers are frequently ticketed due to illegal standing or parking in unauthorized areas while waiting for passengers to locate them. Ultimately, these issues cause delays in pick-up times, driver and passenger frustration, and overall poor customer satisfaction.
- Therefore, there is a need for system and method for facilitating the location of driver-participants of car transportation systems by employing a driver-locating means using a network-independent signal emitting device and a passenger-to-driver navigation platform that directs a passenger-participant to the signal emitting device.
- In view of the foregoing disadvantages inherent in the known types of car transportation systems now present in the prior art, the present invention provides a system and method for facilitating the location of driver-participants of car transportation systems wherein the same can be utilized for providing convenience for the user when employing car transportation systems.
- In one embodiment of the preset invention, the system and method comprises a signal emitting device and an electronic device, each in communication with a car transportation system. The signal emitting device corresponds to a vehicle of a driver-participant of the car transportation system and is configured to transmit a signal to an electronic device that corresponds to a passenger-participant of the car transportation system. The signal includes a unique identifier for identifying the signal emitting device. The signal-emitting device includes a first processor, a first memory, and a first logic configured to transmit a number corresponding to the unique identifier of the signal emitting device to the electronic device, retrieve location data of the signal emitting device, and transmit the location data of the signal emitting device to the electronic device.
- The electronic device includes a graphic user interface, a wireless transceiver configured to receive the signal, a second processor, a second memory in operative communication with the second processor, and a second logic configured to store the number corresponding to the unique identifier in the second memory, retrieve the number from second memory upon the wireless transceiver receiving the signal from the signal emitting device, and match the retrieved number with the unique identifier transmitted with the received signal. If there is no match, then the logic does not recognize the signal emitting device. If there is a match, then the logic recognizes the signal emitting device and ascertains the location of the signal emitting device based on the location data transmitted therewith. The logic is further configured to provide navigation directions towards the signal emitting device via the graphic user interface of the electronic device.
- Although the characteristic features of this invention will be particularly pointed out in the claims, the invention itself and manner in which it may be made and used may be better understood after a review of the following description, taken in connection with the accompanying drawings wherein like numeral annotations are provided throughout.
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FIG. 1 shows a diagram by which the system operates to facilitate location of driver-participants of car transportation systems according to one embodiment of the present invention. -
FIG. 2 shows a block diagram of an electronic device of a passenger-participant communicating with a signal emitting device of a driver-participant according to one embodiment of the present invention. -
FIG. 3 shows a flow chart by which the system operates to facilitate location of driver-participants of car transportation systems according to one embodiment of the present invention. -
FIG. 4 shows a diagram of the electronic device's navigation platform for providing compass navigation to the signal emitting device according to one embodiment of the present invention - Reference is made herein to the attached drawings. Like reference numerals are used throughout the drawings to depict like or similar elements of the system and method for facilitating location of driver-participants of car transportation systems. The figures are intended for representative purposes only and should not be considered to be limiting in any respect.
- As used herein, “logic” refers to (i) logic implemented as computer instructions and/or data within one or more computer processes and/or (ii) logic implemented in electronic circuitry. In the interests of economy, the present disclosure refers to “a logic,” “a processor,” and so on. However, this should not be read as limiting in any way as the present disclosure contemplates embodiments of the present invention utilizing “one or more logic,” “one or more processors,” and so on. Unless specifically limited to a single unit, “a” is intended to be equivalent to “one or more” throughout the present disclosure.
- Referring now to
FIG. 1 , there is shown a diagram by which the system operates to facilitate location of driver-participants of car transportation systems. The present invention provides a system and method for aiding passenger-participants of car transportation systems in locating driver-participants of car transportation systems, particularly in commercial areas. The system includes asignal emitting device 10 and anelectronic device 25 in communication with acar transportation system 15, such as Uber or Lyft. Thesignal emitting device 10 is configured to transmit asignal 20 including location data and a unique identifier that identifies the location of a driver-participant of thecar transportation system 15. Theelectronic device 25 is configured to receive thesignal 20 and display the driver-participant's location. Alogic 70 of theelectronic device 25 is configured to recognize the unique identifier transmitted by thesignal emitting device 10 and direct the passenger-participant to a location provided by the location data transmitted by thesignal emitting device 10, using compass direction, or an indoor navigation system. - In one embodiment, the
signal emitting device 10 includes a beacon, or beacon-like device configured to send a signal. In yet another embodiment, thesignal emitting device 10 comprises an electronic device, such as a smart phone or computer tablet, through which a driver-participant utilizes thecar transportation system 15. Thesignal 20 transmitted by thesignal emitting device 10 includes high frequency radio waves transmitting at a transmitter power output (TPO), or Tx power, ranging from 4-8 decibel-milliwatts (dBm), which translates to a signal range of 50-90 meters, such that thesignal 20 transmitted by thesignal emitting device 10 may reach longer distances when informing the passenger-participant of the signal emitting device's 10 location. Thesignal emitting device 10 is configured to continuously transmit thesignal 20 over intervals ranging from ten times per second (i.e., one time per every 100 milliseconds) to one time per second, such that thesignal emitting device 10 is continuously pulsating a signal, thereby facilitating the reception/location of thesignal 20 by the passenger-participant. - The
signal emitting device 10 is configured to be positioned in or on the driver-participant's vehicle, thereby transmitting thesignal 20 directly from the driver-participant's vehicle. In this way, thesignal emitting device 10 is in signal range when transmitting thesignal 20 to a passenger-participant. Thesignal emitting device 10 is independent of any telecommunications, mobile, or internet network, such that thesignal emitting device 10 can transmit thesignal 20 when there is poor network service and/or no internet connection. - The
signal emitting device 10 includes awireless transmitter 40 for transmitting thesignal 20, awireless receiver 42 in communication with thecar transportation system 15, amemory 45 configured to store location data, alogic 50 stored on thememory 45, and aprocessor 52 in communication with thememory 45 and configured to execute thelogic 50. Thelogic 50 is configured to retrieve location data from thecar transportation system 15, such as coordinates, obtained by a global positioning system of thecar transportation system 15, and store it on thememory 45. When asignal 20 is transmitted by thesignal emitting device 10, thelogic 50 is configured to cause thesignal 20 to transmit the retrieved location data along with it, thereby sending a driver-participant's exact location. The unique identifier of thesignal 20 includes a number that is unique to and/or corresponds to the driver-participant of thecar transportation system 15, such that the number identifies thesignal emitting device 10 with the driver-participant. - Referring now to
FIG. 2 , there is shown a block diagram of an electronic device of a passenger-participant communicating with a signal emitting device of a driver-participant according to one embodiment of the present invention. Theelectronic device 25 includes a graphic user interface (GUI) 30 having adisplay 54 and aninput 56 for manipulating theGUI 30, aprocessor 60, amemory 65 in communication with theprocessor 60, alogic 70 stored on thememory 65 and configured to be executed by theprocessor 60, and awireless transceiver 75 configured to receive thesignal 20 of thesignal emitting device 10. - Referring now to
FIG. 3 , there is shown a flow chart of the process by which the system operates to facilitate location of driver-participants of car transportation systems according to one embodiment of the present invention. When a passenger-participant requests a ride or schedules a pick-up, the car transportation system assigns a driver-participant to pick up the passenger-participant at a requested pick-up location, as shown bystep 100. When the car transportation system assigns a driver-participant to a passenger-participant, the car transportations system is configured to transmit the number corresponding to the unique identifier of the driver-participant's signal emitting device to the passenger-participant, as shown by 105 and 110. In one embodiment, the logic of the signal emitting device is configured to transmit the number corresponding to the unique identifier thereof to the passenger-participant.steps - Upon reception of the unique identifying number, the processor stores the number on the memory of the passenger-participant's electronic device, as shown by
step 115. When a driver-participant has arrived at the pick-up location, the car transportation system activates the signal emitting device and transmits a signal, as shown by 120 and 125. In one embodiment, the signal emitting device is configured to be manually activated by the driver-participant. The wireless transceiver picks up the signal from the signal emitting device, which includes the unique identifying number, as shown bysteps step 130. The logic is then configured to retrieve the unique identifying number provided by the car transportation system from the memory and match the unique identifying number with the unique identifier of the signal, as shown bystep 135. If there is no match, the logic does not recognize the signal emitting device, as shown bystep 140. If there is a match, the logic recognizes the signal emitting device, as shown bystep 145. Once the signal emitting device is recognized, the logic generates directions to the signal emitting device based on the location data accompanying the signal of the signal emitting device, as shown bystep 150. In one embodiment, the turn-by-turn directions are displayed by the GUI of the electronic device. - Referring now to
FIG. 4 , there is shown a diagram of the electronic device's navigation platform for providing compass navigation to the signal emitting device according to one embodiment of the present invention. The logic of theelectronic device 25 is configured to provide a navigational path to the location provided by thesignal 20 of thesignal emitting device 10 via compass navigation. Thegraphic user interface 30 includes a navigation platform configured to display amap 200 and acompass 205 on thedisplay 52 thereof. The logic is configured to pinpoint and display the location of thesignal emitting device 10 and the passenger-participant on themap 200. The navigation platform includes the location of the passenger-participant with adirectional arrow 210 coupled to thecompass 205, such that thedirectional arrow 210 always points north. Using thecompass 205 and directional arrow 210 a user may navigate a path towards thesignal emitting device 10 and driver-participant's vehicle. - It is therefore submitted that the instant invention has been shown and described in various embodiments. It is recognized, however, that departures may be made within the scope of the invention and that obvious modifications will occur to a person skilled in the art. With respect to the above description then, it is to be realized that the optimum dimensional relationships for the parts of the invention, to include variations in size, materials, shape, form, function and manner of operation, assembly and use, are deemed readily apparent and obvious to one skilled in the art, and all equivalent relationships to those illustrated in the drawings and described in the specification are intended to be encompassed by the present invention.
- Therefore, the foregoing is considered as illustrative only of the principles of the invention. Further, since numerous modifications and changes will readily occur to those skilled in the art, it is not desired to limit the invention to the exact construction and operation shown and described, and accordingly, all suitable modifications and equivalents may be resorted to, falling within the scope of the invention.
Claims (13)
1) A method for facilitating location of driver-participants of car transportations systems, comprising:
transmitting a number corresponding to a unique identifier to an electronic device;
retrieving location data of a signal emitting device;
transmitting the location data of the signal emitting device to the electronic device;
wherein the electronic device is in communication with a car transportation system;
storing the number corresponding to the unique identifier in a memory;
retrieving the number from the memory upon the wireless transceiver receiving a radio signal from the signal emitting device;
comparing the retrieved number to the unique identifier transmitted with the received radio signal;
determining a match;
recognizing the signal emitting device and ascertaining the location of the signal emitting device based on the location data transmitted therewith.
2) The method of claim 1 , further comprising:
a driver-participant of the car transportation system;
a passenger-participant of the car transportation system;
wherein the signal emitting device corresponds to a vehicle of the driver-participant, the signal emitting device including the first processor, the first memory, and the first logic;
wherein the electronic device corresponds to the passenger-participant, the electronic device including the second processor, the second memory, and the second logic.
3) The method of claim 1 , wherein the signal emitting device is independent of a network or internet connection.
4) The method of claim 3 , wherein the signal emitting device is configured to transmit the radio signal absent a network or internet connection.
5) The method of claim 2 , wherein the signal emitting device includes an electronic device through which the driver-participant utilizes the car transportation system.
6) The method of claim 1 , wherein the signal emitting device comprises a beacon.
7) The method of claim 1 , wherein the signal transmitted by the signal emitting device includes high frequency radio waves transmitting at a transmit power ranging from 4-8 decibel-milliwatts (dBm).
8) The method of claim 6 , wherein the radio signal is configured to have a signal range of 50-90 meters.
9) The method and method of claim 1 , wherein the signal is transmitted over an interval between ten times per second and one time per second.
10) The method of claim 1 , wherein the signal emitting device includes a wireless transmitter for transmitting the signal and a wireless receiver in communication with the car transportation system.
11) The method of claim 1 , wherein the graphic user interface includes an input for controlling and manipulating the graphic user interface.
12) The method of claim 1 , further comprising displaying the location of the signal emitting device and the location of the electronic device on the map; and
providing navigation directions towards the signal emitting device via the graphic user interface.
13) A method for facilitating location of driver-participants of car transportations systems, comprising:
transmitting a unique identifier to an electronic device;
retrieving location data of a signal emitting device;
transmitting the location data of the signal emitting device to the electronic device;
storing the unique identifier in a memory;
retrieving unique identifier upon the wireless transceiver receiving
a signal from the signal emitting device;
comparing retrieved unique identifier to the unique identifier transmitted with the received radio signal;
determining a match;
recognizing the signal emitting device and ascertaining the location of the signal emitting device based on the location data transmitted therewith.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
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| US11283877B2 (en) * | 2015-11-04 | 2022-03-22 | Zoox, Inc. | Software application and logic to modify configuration of an autonomous vehicle |
| US12265386B2 (en) | 2015-11-04 | 2025-04-01 | Zoox, Inc. | Autonomous vehicle fleet service and system |
| US9606539B1 (en) | 2015-11-04 | 2017-03-28 | Zoox, Inc. | Autonomous vehicle fleet service and system |
| US10783722B2 (en) * | 2018-06-28 | 2020-09-22 | Paypal, Inc. | Short range communications for specific device identification during multi-device proximity |
| US11269353B2 (en) * | 2019-03-28 | 2022-03-08 | Gm Cruise Holdings Llc | Autonomous vehicle hailing and pickup location refinement through use of an identifier |
| CN111784888B (en) * | 2020-07-21 | 2022-05-17 | 上海华虹计通智能系统股份有限公司 | Synchronization method and system of split type vehicle-mounted personnel positioning equipment |
| US20240410714A1 (en) * | 2023-06-12 | 2024-12-12 | Lyft, Inc. | Generating improved user interfaces for provider computing devices with compass, dynamic halo, and contextual information shapes |
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| US5448479A (en) * | 1994-09-01 | 1995-09-05 | Caterpillar Inc. | Remote control system and method for an autonomous vehicle |
| AU2003243646A1 (en) | 2002-06-21 | 2004-01-06 | Nuride, Inc. | System and method for facilitating ridesharing |
| US7062376B2 (en) | 2003-08-28 | 2006-06-13 | General Motors Corporation | Method and system for providing a carpool service using a telematics system |
| US7136747B2 (en) | 2005-01-08 | 2006-11-14 | Stephen Raney | Method for GPS carpool rendezvous tracking and personal safety verification |
| US8949023B2 (en) * | 2006-01-08 | 2015-02-03 | Bo-In Lin | Transmission of wireless messages of current vehicle location and estimated arrival time to requestors |
| DE102006061650A1 (en) * | 2006-09-20 | 2008-04-03 | Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. | Concept for locating a position on a path |
| DE102007023702A1 (en) * | 2007-05-22 | 2008-11-27 | Infineon Technologies Ag | A method for generating a Generic Object Exchange Profile message, method for providing navigation data, method for establishing a connection for transmitting navigation data, navigation terminal and navigation data insertion unit |
| US9311586B2 (en) * | 2011-03-22 | 2016-04-12 | Jamie Robinette | Apparatus and method for locating, tracking, controlling and recognizing tagged objects using active RFID technology |
| US9638537B2 (en) * | 2012-06-21 | 2017-05-02 | Cellepathy Inc. | Interface selection in navigation guidance systems |
| US9554244B2 (en) | 2013-01-24 | 2017-01-24 | Sap Se | Distribution of location and movement information of meeting participants |
| US8935089B2 (en) * | 2013-05-10 | 2015-01-13 | Blackberry Limited | Mobile mapping in underground or shielded environments |
| US9485647B2 (en) | 2013-06-25 | 2016-11-01 | IT Curves LLC | Providers of UBARR subscription-based services |
| WO2016038415A1 (en) * | 2014-09-12 | 2016-03-17 | Umm Al-Qura University | Automatic update of crowd and traffic data using device monitoring |
| US9823081B2 (en) * | 2014-12-03 | 2017-11-21 | Ford Global Technologies, Llc | Vehicle passenger identification |
| US10049505B1 (en) * | 2015-02-27 | 2018-08-14 | State Farm Mutual Automobile Insurance Company | Systems and methods for maintaining a self-driving vehicle |
| US9943262B2 (en) * | 2015-10-26 | 2018-04-17 | Sk Planet Co., Ltd. | System and method for providing walking path guidance service based on measurement of motion of user |
| US9858821B2 (en) * | 2016-02-26 | 2018-01-02 | Ford Global Technologies, Llc | Autonomous vehicle passenger locator |
| US10088846B2 (en) * | 2016-03-03 | 2018-10-02 | GM Global Technology Operations LLC | System and method for intended passenger detection |
| US10311370B2 (en) * | 2016-08-17 | 2019-06-04 | International Business Machines Corporation | Efficient reduction of resources for the simulation of Fermionic Hamiltonians on quantum hardware |
| US20190043001A1 (en) * | 2017-08-02 | 2019-02-07 | Microsoft Technology Licensing, Llc | Systems and methods for scheduling en route product delivery |
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| US10605613B2 (en) | 2020-03-31 |
| US20180058866A1 (en) | 2018-03-01 |
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