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CN111400828A - System and method for generating insertion prompt according to connecting line attribute data - Google Patents

System and method for generating insertion prompt according to connecting line attribute data Download PDF

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Publication number
CN111400828A
CN111400828A CN201811535365.9A CN201811535365A CN111400828A CN 111400828 A CN111400828 A CN 111400828A CN 201811535365 A CN201811535365 A CN 201811535365A CN 111400828 A CN111400828 A CN 111400828A
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CN
China
Prior art keywords
data
template
generating
module
attribute data
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CN201811535365.9A
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Chinese (zh)
Inventor
苑小伟
王宗兰
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Inventec Pudong Technology Corp
Inventec Corp
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Inventec Pudong Technology Corp
Inventec Corp
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Priority to CN201811535365.9A priority Critical patent/CN111400828A/en
Publication of CN111400828A publication Critical patent/CN111400828A/en
Pending legal-status Critical Current

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Abstract

The invention provides a system and a method for generating an insertion prompt according to connecting line attribute data, which can automatically set the assembling position data of connecting lines in a bill of materials by a technical means of generating the assembling position data of the connecting lines in the bill of materials according to the attribute data of the connecting lines in the bill of materials and template data corresponding to the connecting lines and generating the insertion prompt of the connecting lines according to the assembling position data, and achieve the technical effects of reducing the workload of operators and improving the installation correctness.

Description

System and method for generating insertion prompt according to connecting line attribute data
Technical Field
The present invention relates to a system and a method for prompting a connection cable installation location, and more particularly, to a system and a method for generating an insertion prompt according to connection cable attribute data.
Background
At present, the installation work of the computing devices mostly defines corresponding installation rules for each computing device, and an operator completes the installation of each material in the bill of materials according to the defined installation rules and installation experience. However, such installation methods often require sufficient experience of the operator, and also require careful confirmation of the specifications and installation rules of the respective materials, or it is easy for the materials to be installed in incorrect positions or not in compliance with the installation rules.
In order to solve the problem, auxiliary software for giving installation prompts during the process of installing materials by operators is also available at present. When an operator installs materials, the operator can scan the material numbers of the materials to be installed, the auxiliary software can read the position information of the materials according to the scanned material numbers and display the read position information so as to give corresponding installation prompts to the operator, and therefore the auxiliary software can give direct and effective help when the operator installs the materials.
However, before the operator installs the materials, the position information of each material in the bill of materials needs to be set in the auxiliary software, otherwise, the auxiliary software cannot give an installation prompt when the operator installs the connecting line. Therefore, the auxiliary software still needs to be used for setting the position information of each material after the installation rules are carefully confirmed by an experienced operator. Once the number of connecting lines in the bill of material is very large, it will take a lot of time to set the position information of the material.
In summary, it is known that there is a problem that the current material installation auxiliary software needs to set the position information of the material first in the prior art for a long time, and therefore, an improved technical means is needed to solve the problem.
Disclosure of Invention
In view of the problem existing in the prior art that the current auxiliary software for installing the connecting wires needs to set the position information of the connecting wires in advance, the invention provides a system and a method for generating an insertion prompt according to attribute data of the connecting wires, wherein:
the system for generating an insertion prompt according to the connection line attribute data provided by the invention at least comprises: the data acquisition module is used for establishing attribute data of the connecting lines; the bill definition module is used for generating a bill of materials, and the bill of materials comprises connecting lines; the template loading module is used for loading template data corresponding to the connecting line, and the template data comprises interface parameters; the position judging module is used for generating the assembling position data of the connecting line according to the attribute data and the interface parameter of the connecting line; and the plug-in mounting prompt module is used for generating plug-in mounting prompt of the connecting line according to the assembling position data.
The invention provides a method for generating an insertion prompt according to connecting line attribute data, which at least comprises the following steps: establishing attribute data of a plurality of connecting lines; generating a bill of materials, wherein the bill of materials comprises connecting lines; loading template data corresponding to the connecting line, wherein the template data comprises interface parameters; generating the assembly position data of the connecting line according to the attribute data and the interface parameter of the connecting line; and generating insertion prompt of the connecting line according to the assembling position data.
The system and the method provided by the invention have the difference from the prior art that the system and the method provided by the invention generate the assembling position data of the connecting lines in the bill of materials according to the attribute data of the connecting lines in the bill of materials and the template data corresponding to the connecting lines, and generate the insertion prompt of the connecting lines according to the assembling position data, so that the problems in the prior art are solved, and the technical effects of reducing the workload of operators and improving the installation correctness can be achieved.
Drawings
FIG. 1 is a diagram of a system architecture for generating instrumentation hints according to connection line attribute data in accordance with the present invention.
FIG. 2 is a flowchart of a method for generating an insertion prompt according to connection line attribute data according to the present invention.
Description of the symbols:
110 data acquisition module
120 inventory definition module
130 template definition module
150 template loading module
160 position judging module
170 plug-in prompting module
Step 201 establishes attribute data of the connection line
Step 210 generates a bill of materials for the target device, the bill of materials including the connection line
Step 230 loads template data corresponding to the connection lines, the template data including interface parameters
Step 250 generates the assembling position data of the connecting line according to the attribute data and the interface parameter of the connecting line
Step 260 generates insertion prompt of connecting line according to the assembling position data
Detailed Description
The features and embodiments of the present invention will be described in detail with reference to the accompanying drawings and examples, which are sufficient for those skilled in the art to easily understand the technical means applied to solve the technical problems of the present invention and to implement the technical means, thereby achieving the effects achieved by the present invention.
The method is applied to computing equipment, can generate the assembly position data of the connecting line (cable) installed in the target device, and can generate the insertion prompt of the connecting line in the target device according to the assembly position data and the template data corresponding to the connecting line, so that an operator can install the connecting line in the target device according to the insertion prompt.
The system operation of the present invention will be described with reference to FIG. 1, which is a system architecture for generating instrumentation hints based on connection line attribute data. As shown in FIG. 1, the system of the present invention comprises a data acquisition module 110, a manifest definition module 120, a template loading module 150, a location determination module 160, an instrumentation prompt module 170, and an attachable template definition module 130.
The data obtaining module 110 is responsible for establishing attribute data of a plurality of materials, and the attribute data of the materials established by the data obtaining module 110 includes attribute data of the connecting lines. In the present invention, the attribute data of the material is data that can be used to describe the material, wherein the attribute data of the connection line includes, but is not limited to, material number, length, interface information of the transmitting end, interface information of the receiving end, priority, data transmission speed, etc. The material number is usually unique and used for identifying the corresponding material, and the material number can be formed by randomly arranging any number of characters, letters, numbers and symbols.
The data obtaining module 110 may provide the attribute data of the input material through an input device of the computing apparatus executing the present invention, but the present invention is not limited thereto, wherein the input device provided by the present invention is, for example, a keyboard, a mouse, a touch pad, and the like. The data obtaining module 110 can provide the corresponding input interface to provide the attribute data of the input material. The data retrieval module 110 may also provide for selecting or uploading one or more documents to load attribute data of the assets contained in the selected or uploaded documents.
The data obtaining module 110 may also convert the attribute data of the material inputted or loaded from the document into a predetermined format and store it. For example, the data obtaining module 110 may store the attribute data of the material in a database, or store the attribute data of the material using one or more documents, which is not limited in the invention.
The manifest definition module 120 is responsible for generating a bill of materials for the target device. The bill of materials generated by the bill of materials definition module 120 includes data such as the material number and the quantity of each material to be installed in the target device, but the invention is not limited thereto. The bill of materials generated by the bill of materials definition module 120 also includes data of one or more connection lines.
Similar to the data acquisition module 110, the manifest definition module 120 can provide an input bill of materials through an input device of a computing device implementing the present invention, but the present invention is not limited thereto. The manifest definition module 120 may provide a corresponding input interface to provide an input bill of materials, or may provide a selection or upload of documents containing bills of materials.
Template definition module 130 may define template data corresponding to the material. The template data defined by the template definition module 130 includes identification data, base map corresponding to the material, and interface parameters of various connection interfaces on the material. The identification data of the template data may be generally used as a name of the template data. Generally, the identification data of the template data corresponding to the connection lines may be generated by the type of the target device, the height of the target device, and the number of memory slots of the motherboard of the target device, but the invention is not limited thereto.
The template loading module 150 is responsible for loading template data corresponding to the connection lines defined by the template definition module 130. More specifically, the template loading module 150 may read the attribute data, such as the type and height of the target device (material) included in the bill of materials established by the bill definition module 120 and the number of memory slots of the motherboard (material) of the target device, from the attribute data established by the data acquisition module 110, and search for template data corresponding to the identification data in each template data defined by the template definition module 130 according to the read attribute data.
In some embodiments, the template loading module 150 may load one or more sub-template data corresponding to the interface parameters in the loaded template data and the attribute data of one or more materials in the bill of materials established by the list definition module 120. More specifically, the search list definition module 120 searches one or more materials in the material list whose attribute data matches the interface parameters included in the template data, reads the sub-template data corresponding to the searched materials, and adds the read sub-template data to the template data corresponding to the connection lines according to the matching interface parameters. The sub-template data provided in the present invention is also the template data defined by the template definition module 130.
The location determining module 160 is responsible for generating the connection line assembly location data according to the connection line attribute data in the bill of material generated by the bill of material defining module 120 and the interface parameters in the template data loaded by the template loading module 150. The mounting position data generated by the position determination module 160 may indicate the position at which the selected connection line is mounted in the target device.
More specifically, the position determining module 160 may read the material numbers of all the materials read from the material list established by the list defining module 120, and read the attribute data of the materials corresponding to the read material numbers one by one from the attribute data of the materials established by the data obtaining module 110, when the materials in the material list are the connection lines, the position determining module 160 may search the interface parameters corresponding to the attribute data of the read transmission end interface information of the connection lines and the interface parameters corresponding to the attribute data of the read reception end interface information of the connection lines in the template data loaded by the template loading module 150, and generate the assembly position data corresponding to the connection lines according to the interface parameter pair corresponding to the transmission end interface information and the reception end interface information of the connection lines. For example, when the interface information of the transmitting end of the connection line indicates that the transmitting end of the connection line includes four NVME interfaces, and the interface information of the receiving end indicates that the receiving end of the connection line includes four FRONT BP NVME interfaces, the location determining module 160 may search the template data for the interface parameters including the four NVME interfaces and the interface parameters including the four FRONT BPNVME interfaces, and after searching the interface parameters including the four NVME interfaces and the interface parameters including the four FRONT BPNVME interfaces, define the mounting location of the connection line between the locations corresponding to the two searched interface parameters, and generate the mounting location data of the connection line accordingly.
The position determining module 160 may also select the interface parameter pair with the shortest connection length to generate the assembly position data when a plurality of interface parameters in the template data loaded by the template loading module 150 are consistent with the transmitting end interface information and/or the receiving end interface information of the connection line. For example, when the interface information of the transmitting end of the connection line indicates that the connection line includes four NVME interfaces, and the interface information of the receiving end indicates that the connection line includes four FRONT BP NVME interfaces, the position determining module 160 can search the template data for the interface parameters of a PCIE device connected to the motherboard including four NVME interfaces, and the FRONT backplane connected to the motherboard including two sets of interface parameters of four FRONT BP NVME interfaces, the position determining module 160 can calculate the distances from the four NVME interfaces of the PCIE device to the two sets of FRONT BP NVME interfaces on the FRONT backplane, respectively, select one set of FRONT BP NVME interfaces having a shorter distance, and generate the assembly position data of the connection line according to the four NVME interfaces of the PCIE device and the one set of FRONT BP NVME interfaces on the FRONT backplane having a shorter distance from the PCIE device.
The insertion prompt module 170 is responsible for generating insertion prompts of the connection lines according to the assembly position data generated by the position determination module 160. The instrumentation prompts generated by the instrumentation prompt module 170 may represent the mounting locations of the connection lines in the target device.
The instrumentation prompt module 170 may read the base map corresponding to the connecting lines according to the template data loaded by the template loading module 150 when generating the instrumentation prompt, so that the generated instrumentation prompt includes the loaded base map.
The instrumentation prompt module 170 may also output the generated instrumentation prompts. Instrumentation prompt module 170 may output the generated instrumentation prompts via an output device of a computing device executing the present invention. For example, the instrumentation prompt module 170 may display a base map corresponding to the connection lines through a display or a touch screen of the computing device, and mark the installation positions of the connection lines in the base map; for another example, instrumentation prompt module 170 may generate print data including instrumentation prompts and print the instrumentation prompts via a printer or a peripheral connected to the computing device, i.e., print a base map corresponding to the connecting lines and identify the installation locations of the connecting lines in the base map. However, the manner in which the insertion prompt module 170 outputs the insertion prompt is not limited to the above.
Next, an embodiment of an operating system and a method of the present invention are described with reference to fig. 2, which is a flowchart illustrating a method for generating an insertion prompt according to connection attribute data.
First, the data obtaining module 110 may first establish attribute data of materials including connection lines (step 201). In this embodiment, it is assumed that the data obtaining module 110 can provide a document with an uploaded predetermined format, and can convert the content of the uploaded document into attribute data of a material, for example, the document includes description information of materials such as a hard disk, a PCIE device, and a link, and after the data obtaining module 110 converts the content of the document, the attribute data of the material such as the link can be obtained.
After the data obtaining module 110 establishes the connection line attribute data (step 201), the list definition module 120 may generate a bill of materials of the target device (step 210). In this embodiment, it is assumed that the bill of materials contains the material number of the connecting line.
After the inventory definition module 120 generates the bill of materials for the target device (step 210), the template loading module 150 may load template data corresponding to the connection lines defined by the template definition module 130 (step 230). The template loading module 150 may read corresponding sub-template data according to the loaded template data and the attribute data of one or more materials in the bill of materials, and add the read sub-template data to the template data.
After the template loading module 150 loads the template data corresponding to the connection lines (step 230), the position determining module 160 may generate the assembly position data of the connection lines in the bill of material according to the attribute data of the connection lines in the bill of material generated by the list defining module 120 and the interface parameters in the template data loaded by the template loading module 150 (step 230). In this embodiment, it is assumed that the position determining module 160 can read the material number of the connection line from the material list, and then the position determining module 160 can read the attribute data of the connection line from the attribute data established by the data obtaining module 110, and can generate the assembly position data of the connection line according to the read attribute data, such as the transmitting interface information and the receiving interface information of the connection line, and the interface parameters in the template data loaded by the template loading module 150. If the position determining module 160 determines that the transmitting-end interface information of the connecting line conforms to the plurality of interface parameters and/or the receiving-end interface information conforms to the plurality of interface parameters, the interface parameter pair with the shortest connection length can be selected from the interface parameters conforming to the transmitting-end interface information and the interface parameters conforming to the receiving-end interface information to generate the assembly position data of the connecting line.
After the position determining module 160 generates the assembly position data of the connecting lines in the bill of materials, the insertion prompting module 170 may generate an insertion prompt of the connecting lines according to the assembly position data generated by the position determining module 160 (step 290), and may display the insertion prompt. In this embodiment, the operator may input the material number of the connecting line by scanning the code, and the insertion prompt module 170 may generate the insertion prompt of the connecting line according to the assembly position data of the connecting line generated by the position determination module 160 after obtaining the assembly position data of the connecting line according to the material number of the input connecting line, load the corresponding base diagram according to the template data of the connecting line, and display the insertion prompt including the base diagram and the installation position of the connecting line through the display.
Therefore, the operator can install the connecting lines represented in the bill of materials one by one on the target device according to the insertion prompt generated by the invention.
In summary, it can be seen that the difference between the present invention and the prior art is that there is a technical means for generating the assembly position data of the connecting lines in the bill of materials according to the attribute data of the connecting lines in the bill of materials and the template data corresponding to the target device installed with the connecting lines, and generating the insertion prompt of the connecting lines according to the assembly position data, so that the technical means can solve the problem that the current auxiliary software for installing the connecting lines needs to set the position information of the material first, thereby achieving the technical effects of reducing the workload of the operator and improving the installation accuracy.
Furthermore, the method for generating insertion prompts according to the connection line attribute data can be realized in hardware, software or a combination of hardware and software, and can also be realized in a centralized manner in a computer system or in a distributed manner in which different elements are scattered in a plurality of interconnected computer systems.
Although the embodiments of the present invention have been described above, the description is not intended to limit the scope of the invention. It will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the invention as defined by the appended claims. The scope of the present invention is defined by the appended claims.

Claims (10)

1. A method for generating an insertion prompt according to connection line attribute data is characterized by at least comprising the following steps:
establishing attribute data of a plurality of connecting lines;
generating a bill of materials, wherein the bill of materials comprises at least one connecting line;
loading template data corresponding to the at least one connecting line, wherein the template data comprises a plurality of interface parameters;
generating the assembling position data of the at least one connecting line according to the attribute data of the at least one connecting line and the interface parameters; and
and generating an insertion prompt of the at least one connecting line according to the assembling position data.
2. The method as claimed in claim 1, wherein the step of generating the assembling location data of the at least one connection line according to the attribute data of the at least one connection line and the interface parameters further comprises the step of generating the assembling location data according to the interface parameters conforming to the transmitting interface information and the connection lengths between the interface parameters conforming to the receiving interface information when the transmitting interface information in the attribute data of the at least one connection line conforms to a plurality of the interface parameters and/or the receiving interface information in the attribute data of the at least one connection line conforms to a plurality of the interface parameters.
3. The method of claim 1, wherein the step of generating the instrumentation prompt for the at least one connection line based on the assembly location data further comprises the step of reading a base map corresponding to the target device based on the template data.
4. The method of claim 1, wherein the method further comprises the steps of defining the template data and generating identification data of the template data before the step of loading the template data corresponding to the at least one connection line.
5. The method of claim 1, wherein the step of loading the template data corresponding to the at least one connection line further comprises the step of loading at least one sub-template data corresponding to the interface parameters and the attribute data of at least one material in the bill of materials.
6. A system for generating an insertion prompt based on connection line attribute data, the system comprising:
the data acquisition module is used for establishing attribute data of the connecting lines;
the bill definition module is used for generating a bill of materials, and the bill of materials comprises at least one connecting line;
the template loading module is used for loading template data corresponding to the at least one connecting line, and the template data comprises a plurality of interface parameters;
the position judging module is used for generating the assembling position data of the at least one connecting line according to the attribute data of the at least one connecting line and the interface parameters; and
and the plug-in mounting prompt module is used for generating plug-in mounting prompt of the at least one connecting line according to the assembling position data.
7. The system of claim 6, wherein the position determining module is further configured to generate the assembly position data according to the connection lengths between the interface parameters corresponding to the transmission interface information and the interface parameters corresponding to the reception interface information when the transmission interface information in the attribute data of the at least one connection line matches a plurality of the interface parameters and/or the reception interface information in the attribute data of the at least one connection line matches a plurality of the interface parameters.
8. The system of claim 6, wherein the instrumentation hint module is further configured to read a base map corresponding to the target device according to the template data.
9. The system for generating instrumentation hints according to connection line attribute data of claim 6, further comprising a template definition module for defining the template data and generating identification data of the template data.
10. The system of claim 6, wherein the template loading module is further configured to load at least one sub-template data corresponding to the interface parameters and the attribute data of at least one material in the bill of materials.
CN201811535365.9A 2018-12-14 2018-12-14 System and method for generating insertion prompt according to connecting line attribute data Pending CN111400828A (en)

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Application publication date: 20200710