Digital wiring device information processing system and method
Patent Information
- Application Number
- CN202310416998.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-18
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2043-04-18
AI Technical Summary
[0004]本发明实施例提供了一种数字走线装置信息处理系统及方法,解决了现有技术中,多分支的低压线路查找缓慢,耗时长,管理不便,无法为巡检和故障定位提供精准的地理信息的问题
[0020] In this embodiment of the invention, the wiring information and location information uploaded by the digital wiring device are detected in real time. Upon detection of the uploaded wiring and location information, the device identifier recorded in the wiring information is obtained; the corresponding line path is read based on the device identifier; the line path is adjusted and updated according to the location information and the wiring information, and then saved accordingly. This solution can automatically generate a line routing map. After installation, it can automatically form a line topology diagram. During operation and maintenance, line information and path routing can be read by long-distance scanning of the positioning chip, solving problems such as rapid location and management of multi-branch low-voltage lines, and providing accurate geographic information for inspection and fault location.
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Figure CN116644539B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of cable technology, and in particular to a digital wiring device information processing system and method. Background Technology
[0002] With the development of technology, the application of digital wiring devices and management systems is becoming increasingly widespread. Digital wiring devices and management systems can be applied to integrated wiring and cable management systems for low-voltage overhead lines. They feature full insulation, color-coding, and phase separation. The devices contain wireless passive temperature monitoring chips for online temperature monitoring, and the leakage current monitoring module in the management system can detect leakage current. If external force damage or wire insulation failure occurs, resulting in leakage, an early warning will be issued.
[0003] Currently, line path updates still rely on manual updates based on change information. This is slow, time-consuming, and inconvenient for managing multi-branch low-voltage lines, and fails to provide accurate geographic information for inspections and fault location. Summary of the Invention
[0004] This invention provides a digital wiring device information processing system and method, which solves the problems in the prior art of slow, time-consuming, and inconveniently managed searching of multi-branch low-voltage lines, and the inability to provide accurate geographic information for inspection and fault location.
[0005] In a first aspect, embodiments of the present invention provide a digital wiring device information processing method, including:
[0006] Real-time monitoring of wiring and positioning information uploaded by the digital wiring device;
[0007] Upon detecting the routing information and positioning information uploaded by the digital routing device, the device identifier recorded in the routing information is obtained;
[0008] Read the corresponding line path based on the device identifier;
[0009] The route path is adjusted and updated based on the location information and the routing information, and the updated path is saved accordingly.
[0010] Secondly, embodiments of the present invention also provide a digital wiring device information processing system, comprising:
[0011] The information detection module is used to detect the wiring information and positioning information uploaded by the digital wiring device in real time;
[0012] The device identifier acquisition module is used to acquire the device identifier recorded in the wiring information when the wiring information and positioning information uploaded by the digital wiring device are detected.
[0013] The line path reading module is used to read the corresponding line path based on the device identifier;
[0014] The update path generation module is used to adjust the route path according to the positioning information and the routing information, generate an updated path, and save it accordingly.
[0015] Thirdly, embodiments of the present invention also provide a digital wiring device information processing apparatus, the apparatus comprising:
[0016] One or more processors;
[0017] Storage device for storing one or more programs.
[0018] When the one or more programs are executed by the one or more processors, the one or more processors implement the digital wiring device information processing method described in the embodiments of the present invention.
[0019] Fourthly, embodiments of the present invention also provide a storage medium for storing computer-executable instructions, which, when executed by a computer processor, are used to execute the digital wiring device information processing method described in the embodiments of the present invention.
[0020] In this embodiment of the invention, the wiring information and location information uploaded by the digital wiring device are detected in real time. Upon detection of the uploaded wiring and location information, the device identifier recorded in the wiring information is obtained; the corresponding line path is read based on the device identifier; the line path is adjusted and updated according to the location information and the wiring information, and then saved accordingly. This solution can automatically generate a line routing map. After installation, it can automatically form a line topology diagram. During operation and maintenance, line information and path routing can be read by long-distance scanning of the positioning chip, solving problems such as rapid location and management of multi-branch low-voltage lines, and providing accurate geographic information for inspection and fault location. Attached Figure Description
[0021] Figure 1 A flowchart of an information processing method for a digital wiring device provided in an embodiment of the present invention;
[0022] Figure 2 A flowchart for reading the corresponding line path based on the device identifier provided in an embodiment of the present invention;
[0023] Figure 3 A flowchart of a method for updating a path based on positional relationships is provided in an embodiment of the present invention;
[0024] Figure 4 This is an illustration of updating a path based on positional relationships provided in an embodiment of the present invention. Figure 1;
[0025] Figure 5 This is an illustration of updating a path based on positional relationships provided in an embodiment of the present invention. Figure 2 ;
[0026] Figure 6 This is an illustration of updating a path based on positional relationships provided in an embodiment of the present invention. Figure 3 ;
[0027] Figure 7 A flowchart of another method for updating a path based on positional relationships provided in an embodiment of the present invention;
[0028] Figure 8 This is a schematic diagram of another path update based on positional relationship provided by an embodiment of the present invention;
[0029] Figure 9 A block diagram of a digital wiring device information processing system provided in an embodiment of the present invention;
[0030] Figure 10 This is a schematic diagram of the structure of a digital wiring device information processing equipment provided in an embodiment of the present invention. Detailed Implementation
[0031] The embodiments of the present invention will be further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and not intended to limit the scope of the invention. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the embodiments of the present invention, and not all structures.
[0032] Figure 1 A flowchart of an information processing method for a digital wiring device provided in an embodiment of the present invention is shown below. Figure 1 As shown, it specifically includes:
[0033] Step S101: Real-time detection of wiring information and positioning information uploaded by the digital wiring device.
[0034] The routing information can be information about the series of operating routes formed by connecting digital routing devices and wires in series, such as device identification and routing direction. The positioning information can be the real-time detected location information of the digital routing devices. The series connection of digital routing devices and wires forms a series of operating routes. The system processes and analyzes these routes, using all the information obtained as the routing information of the digital routing devices. The system sends a positioning request to the digital routing devices. Upon receiving the positioning request, the satellite positioning system sends a positioning signal to the system, which then analyzes the positioning signal to obtain the positioning information of the digital routing devices.
[0035] Step S102: If the routing information and positioning information uploaded by the digital routing device are detected, obtain the device identifier recorded in the routing information.
[0036] The device identifier can be one of the pieces of information recorded in the real-time detected wiring information. After the real-time detection of the wiring information uploaded by the digital wiring device, the system will search for the device identifier information that needs to be obtained in the detected wiring information.
[0037] Step S103: Read the corresponding line path based on the device identifier.
[0038] The route path can be a path formed by connecting digital wiring devices and wires in series. After obtaining the device identifier recorded in the wiring information, the system analyzes the obtained device identifier to find the line number marked on the device identifier. Based on the line number mark on the device identifier recorded in the wiring information, it searches for whether there is a route path corresponding to the device identifier. If a corresponding route path is found, the found route path is identified as the route path corresponding to the device identifier.
[0039] Step S104: Adjust the route path according to the positioning information and the routing information to generate an updated path and save it accordingly.
[0040] The updated path is generated by adjusting the relationship between the positioning information uploaded by the digital cabling device and the actual cabling path. The system analyzes the detected positioning information uploaded by the digital cabling device to determine its virtual location. There are two corresponding positional relationships between the virtual location and the cabling path: a first positional relationship and a second positional relationship. Different positional relationships result in different updated paths. The first positional relationship can be that the virtual location is on the extension of the cabling path, while the second positional relationship can be that the virtual location overlaps the cabling path. Based on the positional relationship between the virtual location and the cabling path, the cabling path is adjusted to generate the updated path, which is then saved accordingly.
[0041] As described above, the system monitors the wiring and location information uploaded by the digital wiring device in real time. Upon detecting this information, it obtains the device identifier recorded in the wiring information. Based on the device identifier, it reads the corresponding line path. The system then adjusts the line path according to the location and wiring information, generates an updated path, and saves it accordingly. This solution can automatically generate a line routing map. After installation, it can automatically form a line topology diagram. During maintenance, line information and path routing can be read by scanning the positioning chip at a distance, solving problems such as rapid location and management of multi-branch low-voltage lines, and providing accurate geographic information for inspection and fault location.
[0042] In one embodiment, a specific method for reading the corresponding line path based on the device identifier is provided, such as... Figure 2 A flowchart for reading the corresponding line path based on the device identifier provided in this embodiment of the invention includes the following steps in one embodiment:
[0043] Step S201: Real-time detection of wiring information and positioning information uploaded by the digital wiring device.
[0044] Step S202: If the routing information and positioning information uploaded by the digital routing device are detected, obtain the device identifier recorded in the routing information.
[0045] Step S203: Based on the line number marker of the device identifier, check if a corresponding line path exists. If a line path is found, determine the found line path as the line path corresponding to the device identifier. If no line path is found, create a line path to obtain the line path corresponding to the device identifier.
[0046] The system searches for a corresponding line path based on the line number on the device identifier. If a line path is found, it is used as the line path read based on the device identifier. If no corresponding line path is found, the system executes a creation command to create a line path corresponding to the device identifier. In one example, the system monitors the wiring information uploaded by the digital wiring device in real time. This wiring information records the device identifier. The system analyzes the device identifier to obtain the line number marking on the device identifier. It then searches for a corresponding line path based on the line number on the device identifier. If a corresponding line path is found, it is determined as the line path read based on the device identifier. If no corresponding line path is found, a new line path is created as the line path read based on the device identifier.
[0047] Step S204: Adjust the route path according to the positioning information and the routing information to generate an updated path and save it accordingly.
[0048] As described above, the system monitors the wiring and location information uploaded by the digital wiring device in real time. Upon detecting this information, it obtains the device identifier recorded in the wiring information. Based on the device identifier, it reads the corresponding line path. The system then adjusts the line path according to the location and wiring information, generates an updated path, and saves it accordingly. This solution can automatically generate a line routing map. After installation, it can automatically form a line topology diagram. During maintenance, line information and path routing can be read by scanning the positioning chip at a distance, solving problems such as rapid location and management of multi-branch low-voltage lines, and providing accurate geographic information for inspection and fault location.
[0049] Figure 3 This invention provides a flowchart of a method for updating a path based on positional relationships. One embodiment of this application specifically includes the following steps:
[0050] Step S301: Real-time detection of wiring information and positioning information uploaded by the digital wiring device.
[0051] Step S302: If the routing information and positioning information uploaded by the digital routing device are detected, obtain the device identifier recorded in the routing information.
[0052] Step S303: Read the corresponding line path based on the device identifier.
[0053] Step S304: Determine the virtual position of the digital wiring device based on the positioning information. The positional relationship between the virtual position and the line path includes a first positional relationship and a second positional relationship. If the positional relationship is the first positional relationship, generate an updated path that extends and connects the line path to the virtual position. If the positional relationship is the second positional relationship, and the virtual position is on the line path, add a topology point to the virtual position in the line path to obtain an updated path. If the virtual position is not on the line path, generate an updated path that runs through the virtual position.
[0054] like Figure 4 As shown, Figure 4 This is an illustration of updating a path based on positional relationships provided in an embodiment of the present invention. Figure 1 301 is the route path, 302 is the virtual location, 303 is the extension line, and 304 is the update path.
[0055] In one example, after obtaining the corresponding line path 301 based on the device identifier, the virtual position 302 of the digital wiring device is determined according to the detected positioning information. The relationship between the two is a first positional relationship, such as... Figure 4As shown, the virtual location 302 is on the extension line 303 of the line path 301, and an updated path 304 is generated by connecting the virtual location 302 along the extension line 303 of the line path 301.
[0056] like Figure 5 As shown, Figure 5 This is an illustration of updating a path based on positional relationships provided in an embodiment of the present invention. Figure 2 301 is the route path, 305 is the virtual location, 306 is the added topology point, and 307 is the updated path.
[0057] In one example, after obtaining the corresponding line path 301 based on the device identifier, the virtual position 305 of the digital wiring device is determined according to the detected positioning information. The relationship between the two is one of the second positional relationships, such as... Figure 5 As shown, when the virtual location 305 is on the line path 301, a topology point 306 is added to the virtual location 305 in the line path 301 to obtain the updated path 307.
[0058] like Figure 6 As shown, Figure 6 This is an illustration of updating a path based on positional relationships provided in an embodiment of the present invention. Figure 3 301 is the route path, 308 is the virtual location, and 309 is the update path.
[0059] In one example, after obtaining the corresponding line path 301 based on the device identifier, the virtual position 308 of the digital wiring device is determined according to the detected positioning information. The relationship between the two is another type of second positional relationship, such as... Figure 6 As shown, when the virtual location 308 is not on the line path 301, a line path passing through the virtual location 308 is generated to obtain the updated path 309.
[0060] As described above, the system monitors the wiring and location information uploaded by the digital wiring device in real time. Upon detecting this information, it obtains the device identifier recorded in the wiring information. Based on the device identifier, it reads the corresponding line path. The system then adjusts the line path according to the location and wiring information, generates an updated path, and saves it accordingly. This solution can automatically generate a line routing map. After installation, it can automatically form a line topology diagram. During maintenance, line information and path routing can be read by scanning the positioning chip at a distance, solving problems such as rapid location and management of multi-branch low-voltage lines, and providing accurate geographic information for inspection and fault location.
[0061] Figure 7 A flowchart of another method for updating paths based on positional relationships provided in an embodiment of the present invention is shown below. Figure 7 As shown, it specifically includes:
[0062] Step S401: Real-time detection of wiring information and positioning information uploaded by the digital wiring device.
[0063] Step S402: If the routing information and positioning information uploaded by the digital routing device are detected, obtain the device identifier recorded in the routing information.
[0064] Step S403: Read the corresponding line path based on the device identifier.
[0065] Step S404: When the first routing information, first positioning information, second routing information, and second positioning information uploaded by the two digital routing devices are detected respectively, a first virtual location and a second virtual location are generated according to the first positioning information and the second positioning information respectively; the connection order of the first virtual location and the second virtual location is determined according to the routing direction recorded in the first routing information and the second routing information; based on the connection order and the current line path, the path through the first virtual location and the second virtual location is sequentially used to generate an updated path.
[0066] like Figure 8 As shown, Figure 8 This is a schematic diagram of another path update based on positional relationship provided by an embodiment of the present invention. 401 is the line path, 402 is the first virtual position, 403 is the second virtual position, 404 is the line direction recorded in the first direction information, 405 is the line direction recorded in the second direction information, and 406 is the updated path.
[0067] In one example, when real-time monitoring of routing information and positioning information uploaded by digital routing devices, if two digital routing devices respectively upload first routing information, first positioning information, and second routing information and second positioning information, the first virtual position 402 and the second virtual position 403 are determined based on the first and second positioning information. The first routing information records the routing direction 404, and the second routing information records the routing direction 405. The connection order of the first virtual position 402 and the second virtual position 403 is determined based on the routing directions recorded in the first and second routing information. Finally, based on the connection order of the two virtual positions and the current line path 401, the paths of the first virtual position 402 and the second virtual position 403 are sequentially connected to generate an updated path 406.
[0068] As described above, the system monitors the wiring and location information uploaded by the digital wiring device in real time. Upon detecting this information, it obtains the device identifier recorded in the wiring information. Based on the device identifier, it reads the corresponding line path. The system then adjusts the line path according to the location and wiring information, generates an updated path, and saves it accordingly. This solution can automatically generate a line routing map. After installation, it can automatically form a line topology diagram. During maintenance, line information and path routing can be read by scanning the positioning chip at a distance, solving problems such as rapid location and management of multi-branch low-voltage lines, and providing accurate geographic information for inspection and fault location.
[0069] Figure 9 This is a block diagram of a digital wiring device information processing system provided in an embodiment of the present invention. The system is used to execute the digital wiring device information processing method provided in the above embodiment, and has corresponding functional modules and beneficial effects for executing the method. For example... Figure 9 As shown, the system specifically includes:
[0070] The information detection module 101 is used to detect the wiring information and positioning information uploaded by the digital wiring device in real time.
[0071] The device identifier acquisition module 102 is used to acquire the device identifier recorded in the wiring information when the wiring information and positioning information uploaded by the digital wiring device are detected.
[0072] The line path reading module 103 is used to read the corresponding line path based on the device identifier;
[0073] The update path generation module 104 is used to adjust the route path according to the positioning information and the routing information, generate an updated path, and save it accordingly.
[0074] As described above, the solution involves real-time detection of routing and location information uploaded by the digital routing device. Upon detection of this information, the device identifier recorded in the routing information is obtained. The corresponding line path is read based on the device identifier. The line path is adjusted and updated according to the location and routing information, and then saved accordingly. This solution can automatically generate a line routing map. After installation, it can automatically form a line topology diagram. During maintenance, line information and path direction can be read by long-distance scanning of the positioning chip, solving problems such as rapid location and management of multi-branch low-voltage lines, and providing accurate geographic information for inspection and fault location.
[0075] In one possible embodiment, the line path reading module is specifically used for:
[0076] The device identifier is used to check if a corresponding line path exists. If a line path is found, the found line path is identified as the line path corresponding to the device identifier.
[0077] If no route path is found, a route path is created to obtain the route path corresponding to the device identifier.
[0078] In one possible instance, the update path generation module is specifically used for:
[0079] The virtual position of the digital wiring device is determined based on the positioning information, and the line path is adjusted to generate an updated path based on the positional relationship between the virtual position and the line path. The positional relationship includes a first positional relationship and a second positional relationship.
[0080] In one possible instance, the update path generation module is further configured to:
[0081] When the positional relationship is the first positional relationship, an updated path is obtained by generating a path that connects the line path with the virtual location extension.
[0082] When the location relationship is the second location relationship, the updated path is obtained by generating the path that connects the line path with the virtual location coverage.
[0083] In one possible instance, the update path generation module is further configured to:
[0084] When the virtual location is on the route path, a topology point is added to the virtual location in the route path to obtain an updated path;
[0085] If the virtual location is not on the route path, an updated route is obtained by generating a route path that passes through the virtual location.
[0086] In one possible instance, the update path generation module is further configured to:
[0087] When the first routing information, first positioning information and second routing information and second positioning information uploaded by the two digital routing devices are detected respectively, a first virtual position and a second virtual position are generated according to the first positioning information and the second positioning information respectively.
[0088] The connection order of the first virtual position and the second virtual position is determined based on the routing directions recorded in the first routing information and the second routing information.
[0089] The line path is adjusted based on the connection order to generate an updated path.
[0090] In one possible instance, the update path generation module is further configured to:
[0091] Based on the connection order and the current line path, the path through the first virtual location and the second virtual location is sequentially used to generate an updated path.
[0092] Figure 10 This is a schematic diagram of the structure of a digital wiring device information processing equipment provided in an embodiment of the present invention, as shown below. Figure 10 As shown, the device includes a processor 201, a memory 202, an input device 203, and an output device 204; the number of processors 201 in the device can be one or more. Figure 8 Taking a processor 201 as an example; the processor 201, memory 202, input device 203, and output device 204 in the device can be connected via a bus or other means. Figure 10 Taking a bus connection as an example, the memory 202, as a computer-readable storage medium, can be used to store software programs, computer-executable programs, and modules, such as the program instructions / modules corresponding to the digital wiring device information processing method in this embodiment of the invention. The processor 201 executes various functional applications and data processing of the device by running the software programs, instructions, and modules stored in the memory 202, thereby realizing the aforementioned digital wiring device information processing method. The input device 203 can be used to receive input digital or character information and generate key signal inputs related to user settings and function control of the device. The output device 204 may include a display screen or other display device.
[0093] This invention also provides a storage medium containing computer-executable instructions. When executed by a computer processor, the computer-executable instructions are used to perform a digital routing device information processing method. The method includes: real-time detection of routing information and positioning information uploaded by the digital routing device; upon detecting the routing information and positioning information uploaded by the digital routing device, obtaining a device identifier recorded in the routing information; reading the corresponding line path based on the device identifier; adjusting the line path according to the positioning information and the routing information to generate an updated path and saving it accordingly.
[0094] It is worth noting that in the embodiments of the above-mentioned digital wiring device information processing system, the various units and modules included are only divided according to functional logic, but are not limited to the above division, as long as the corresponding functions can be realized; in addition, the specific names of each functional unit are only for easy differentiation and are not used to limit the protection scope of the embodiments of the present invention.
[0095] Note that the above are merely preferred embodiments and the technical principles applied in this invention. Those skilled in the art will understand that the embodiments of this invention are not limited to the specific embodiments described herein, and various obvious changes, readjustments, and substitutions can be made without departing from the protection scope of this invention. Therefore, although the embodiments of this invention have been described in detail above, the embodiments of this invention are not limited to the above embodiments. More other equivalent embodiments may be included without departing from the concept of the embodiments of this invention, and the scope of the embodiments of this invention is determined by the scope of the appended claims.
Claims
1. A digital wiring device information processing method, characterized in that, include: The system monitors the routing information and positioning information uploaded by the digital routing device in real time. The routing information is a series of information on the running route formed by connecting the digital routing device and the conductor in series, and the positioning information is the position information of the digital routing device detected in real time. Upon detecting the routing information and positioning information uploaded by the digital routing device, the device identifier recorded in the routing information is obtained; The corresponding line path is read based on the device identifier. The line path is a path formed by connecting the digital wiring device and the wire in series. The route path is adjusted and updated based on the positioning information and the routing information, and the updated route path is saved accordingly. The updated route path is generated by adjusting the relationship between the positioning information uploaded by the digital routing device and the route path.
2. The information processing method for the digital wiring device according to claim 1, characterized in that, The step of reading the corresponding line path based on the device identifier includes: The device identifier is used to check if a corresponding line path exists. If a line path is found, the found line path is identified as the line path corresponding to the device identifier. If no route path is found, a route path is created to obtain the route path corresponding to the device identifier.
3. The information processing method for the digital wiring device according to claim 2, characterized in that, If a route path is found, the step of adjusting the route path and generating an updated path based on the location information and the routing information includes: The virtual position of the digital wiring device is determined based on the positioning information, and the line path is adjusted to generate an updated path based on the positional relationship between the virtual position and the line path. The positional relationship includes a first positional relationship and a second positional relationship.
4. The information processing method for the digital wiring device according to claim 3, characterized in that, The step of adjusting the route path and generating an updated path based on the positional relationship between the virtual location and the route path includes: When the positional relationship is the first positional relationship, an updated path is obtained by generating a path that connects the line path to the virtual location. The first positional relationship is that the virtual location is on the extension of the line path. When the positional relationship is the second positional relationship, an updated path is obtained by generating a path that connects the line path to the virtual location, where the second positional relationship is that the virtual location covers the line path.
5. The information processing method for the digital wiring device according to claim 4, characterized in that, The process of generating the updated path by connecting the route path to the virtual location coverage includes: When the virtual location is on the route path, a topology point is added to the virtual location in the route path to obtain an updated path; If the virtual location is not on the route path, an updated route is obtained by generating a route path that passes through the virtual location.
6. The information processing method for a digital wiring device according to any one of claims 1-5, characterized in that, When it is detected that two digital routing devices have respectively uploaded first routing information, first positioning information, and second routing information and second positioning information, the step of adjusting the route path and generating an updated path based on the positioning information and the routing information includes: A first virtual location and a second virtual location are generated based on the first location information and the second location information, respectively. The connection order of the first virtual position and the second virtual position is determined based on the routing directions recorded in the first routing information and the second routing information; The line path is adjusted based on the connection order to generate an updated path.
7. The information processing method for the digital wiring device according to claim 6, characterized in that, The step of adjusting the line path based on the connection order to generate an updated path includes: Based on the connection order and the current line path, the path through the first virtual location and the second virtual location is sequentially used to generate an updated path.
8. A digital wiring device information processing system, characterized in that, include: The information detection module is used to detect the wiring information and positioning information uploaded by the digital wiring device in real time. The wiring information is a series of information on the running route formed by connecting the digital wiring device and the wire in series. The positioning information is the position information of the digital wiring device detected in real time. The device identifier acquisition module is used to acquire the device identifier recorded in the wiring information when the wiring information and positioning information uploaded by the digital wiring device are detected. The line path reading module is used to read the corresponding line path based on the device identifier. The line path is a path formed by connecting the digital wiring device and the wire in series. The update path generation module is used to adjust the route path according to the positioning information and the routing information, generate an updated path, and save it accordingly. The updated path is generated by adjusting the updated route path based on the relationship between the positioning information uploaded by the digital routing device and the route path.
9. A digital wiring device information processing equipment, the equipment comprising: One or more processors; A storage device for storing one or more programs, which, when executed by one or more processors, cause the one or more processors to implement the digital wiring device information processing method as described in any one of claims 1-7.
10. A storage medium storing computer-executable instructions, which, when executed by a computer processor, are used to perform the digital wiring device information processing method as described in any one of claims 1-7.
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