Power distribution terminal warehouse debugging method and device based on remote signal

By using remote signal adjustment and NB-IoT wireless communication technology, automated commissioning of power distribution terminals has been achieved, solving the problems of low commissioning efficiency and errors caused by differences in terminals in different regions, and improving the operational reliability and efficiency of the power distribution network.

CN119401646BActive Publication Date: 2026-05-05国网陕西省电力有限公司西安供电公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
国网陕西省电力有限公司西安供电公司
Filing Date
2024-10-25
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

The existing grid connection and commissioning of power distribution terminals relies on manual operation, resulting in low commissioning efficiency, inability to achieve batch closed-loop testing, and high experimental errors and additional communication costs due to differences in protection settings and control words in different regions.

Method used

The distribution terminal warehouse commissioning method using remote adjustment signals involves sending remote adjustment information from the master station, using remote signaling, telemetry, and remote control task sheets for automated testing, and combining NB-IoT wireless communication to enable simultaneous commissioning of multiple distribution terminals, reducing manual intervention.

Benefits of technology

It enables efficient and reliable commissioning of power distribution terminals, reduces the need for manual operation, improves commissioning efficiency and accuracy, and ensures the safe and reliable operation of the power distribution network.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

This invention discloses a method and apparatus for remote signal debugging of distribution terminals, belonging to the field of power systems. The method includes: after the master station sends remote signaling information to the distribution terminal and completes remote signaling testing with the distribution terminal, downloading a remote signaling debugging task sheet from the master station; obtaining a pre-stored remote signaling test template according to the remote signaling debugging task sheet, and outputting the corresponding experimental signal for remote signaling debugging to the distribution terminal according to the remote signaling test template; receiving remote signaling response data forwarded by the distribution terminal from the master station, the remote signaling response data being generated by the distribution terminal after applying the experimental signal; and verifying the remote signaling response data according to the test data in the remote signaling test template to determine the remote signaling debugging result. This method solves the problem of batch closed-loop testing being impossible due to different protection settings and control words of distribution terminals originating from different regions, facilitating simultaneous debugging of multiple distribution terminals, ensuring the correctness and efficiency of debugging, and guaranteeing the safe and reliable operation of the distribution network.
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Description

Technical Field

[0001] This invention relates to the field of power systems, and in particular to a method and apparatus for commissioning a distribution terminal warehouse based on remote adjustment signals. Background Technology

[0002] As a crucial piece of equipment in distribution network automation, the stability and reliability of distribution automation terminals directly impact the electricity safety and property security of industries and residents. To ensure the safety and reliability of the distribution network, relevant enterprises and units must invest significant human and material resources in the testing and inspection of distribution terminals, from factory testing by distribution terminal manufacturers to acceptance testing by power companies and annual routine maintenance tests.

[0003] Currently, in the commissioning of distribution automation terminals, the main method involves sending fault settings to the terminal under test using a relay protection tester. Personnel at both the terminal under test and the master station then communicate to confirm the accuracy of the data transmission. Specifically, this testing method requires on-site application of relay protection testers to the distribution terminal to ensure correct device activation, and also requires personnel on both the terminal under test and the master station to be responsible for operation and communication. It can be seen that this testing method currently has the following problems: it requires a high level of proficiency from on-site personnel; it is time-consuming and inefficient during batch commissioning or large-scale maintenance; it incurs additional wireless communication costs due to different locations; and it introduces experimental errors caused by information transmission errors. Summary of the Invention

[0004] The main purpose of this invention is to solve the problem that closed-loop commissioning cannot be performed during centralized warehouse commissioning due to the different protection settings and control words of the power distribution terminals from different regions, as well as the problem of low commissioning efficiency caused by the current reliance on manual commissioning of power distribution terminals.

[0005] This invention provides a method for debugging a distribution terminal warehouse based on remote adjustment signals, comprising: sending remote adjustment information to the distribution terminal from the master station and completing remote adjustment tests with the distribution terminal; downloading a remote signal debugging task sheet from the master station; obtaining a pre-stored remote signal testing template according to the remote signal debugging task sheet, and outputting an experimental signal corresponding to the remote signal debugging to the distribution terminal according to the remote signal testing template; receiving remote signal response data forwarded by the distribution terminal via the master station, wherein the remote signal response data is generated by the distribution terminal after applying the experimental signal; verifying the remote signal response data according to the test data in the remote signal testing template, and determining the remote signal debugging result; wherein the master station stores a template setting sheet, and when the master station performs remote adjustment tests with the distribution terminal, the setting of each distribution terminal is modified according to the template setting sheet, and the setting in the test template is pre-set according to the template setting sheet.

[0006] In the distribution terminal warehouse debugging method based on remote adjustment signals of the present invention, after judging the remote signal debugging result, the method further includes: downloading a telemetry debugging task sheet from the master station; obtaining a pre-stored telemetry test template according to the telemetry debugging task sheet; and outputting the experimental signal corresponding to the telemetry debugging to the distribution terminal according to the telemetry test template; receiving telemetry response data forwarded by the distribution terminal via the master station, wherein the telemetry response data is generated by the distribution terminal after applying the experimental signal corresponding to the telemetry debugging; and verifying the telemetry response data according to the test data in the telemetry test template to judge the telemetry debugging result.

[0007] In the remote signal-based power distribution terminal warehouse debugging method of the present invention, after the remote signal debugging is completed and the result is qualified, the method further includes: downloading the remote debugging task sheet from the master station; waiting for the master station to issue a remote command to the power distribution terminal, and after the power distribution terminal sends the internal remote node data generated after executing the remote command to the master station, receiving the remote node data forwarded by the master station; verifying the remote node data according to the expected value of the remote data, and judging the remote debugging result, wherein the expected value of the remote data is determined according to the remote debugging task sheet.

[0008] In the remote signal-based power distribution terminal warehouse commissioning method of the present invention, the remote signal commissioning task sheet, remote measurement commissioning task sheet or remote control commissioning task sheet is a commissioning task sheet common to each power distribution terminal.

[0009] In the distribution terminal warehouse debugging method based on remote adjustment signal of the present invention, the remote adjustment test includes the distribution terminal modifying the internal protection settings and control words according to the remote adjustment setting sheet issued by the master station.

[0010] In the power distribution terminal warehouse commissioning method based on remote adjustment signals of the present invention, the joint commissioning device and the master station are wirelessly connected via NB-IoT.

[0011] In the distribution terminal warehouse debugging method based on remote adjustment signals of the present invention, when there are multiple joint debugging devices, after downloading the remote signaling or telemetry debugging task sheet from the main station, the method further includes: each joint debugging device sending the remote signaling or telemetry debugging task sheet to the host computer; correspondingly, according to the remote signaling or telemetry debugging task sheet, obtaining the pre-stored remote signaling or telemetry test template, specifically receiving the remote signaling or telemetry test template sent by the host computer; after receiving the debugging start signal sent by the host computer, outputting the experimental signal to the distribution terminal according to the remote signaling or telemetry test template.

[0012] This invention also provides a distribution terminal warehouse debugging device based on remote adjustment signals, comprising: an extraction module, used to send remote adjustment information to the distribution terminal from the master station, and after completing the remote adjustment test with the distribution terminal, download a remote signal debugging task sheet from the master station; an output module, used to obtain a pre-stored remote signal test template according to the remote signal debugging task sheet, and output the experimental signal corresponding to the remote signal debugging to the distribution terminal according to the remote signal test template; a receiving module, used to receive remote signal response data forwarded by the distribution terminal via the master station, the remote signal response data being generated by the distribution terminal after applying the experimental signal; and a judgment module, used to verify the remote signal response data according to the test data in the remote signal test template, and judge the remote signal debugging result; wherein, the master station stores a template setting sheet, and when the master station performs remote adjustment tests with the distribution terminal, the setting of each distribution terminal is modified according to the template setting sheet, and the setting in the test template is pre-set according to the template setting sheet.

[0013] In the distribution terminal warehouse debugging device based on remote adjustment signals of the present invention, the extraction module is further configured to download a telemetry debugging task sheet from the master station; the output module is further configured to obtain a pre-stored telemetry test template according to the telemetry debugging task sheet, and output the experimental signal corresponding to the telemetry debugging to the distribution terminal according to the telemetry test template; the receiving module is further configured to receive telemetry response data forwarded by the distribution terminal via the master station, the telemetry response data being generated by the distribution terminal after applying the experimental signal corresponding to the telemetry debugging; the judgment module is further configured to verify the telemetry response data according to the test data in the telemetry test template, and judge the telemetry debugging result.

[0014] In the distribution terminal warehouse debugging device based on remote adjustment signal of the present invention, the output module is further configured to download the remote debugging task sheet from the master station; the receiving module is further configured to wait for the master station to issue a remote control command to the distribution terminal, and after the distribution terminal sends the internal remote control node data generated after executing the remote control command to the master station, receive the remote control node data forwarded by the master station; the judgment module is further configured to check the remote control node data according to the expected value of the remote control data, and judge the remote debugging result, wherein the expected value of the remote control data is determined according to the remote debugging task sheet.

[0015] The beneficial effects of this invention are: it solves the problem of batch closed-loop testing being impossible due to different protection settings and control words of power distribution terminals from different regions, which facilitates the simultaneous commissioning of multiple power distribution terminals, and the test template does not require manual configuration, further ensuring the correctness and efficiency of commissioning. In addition, this method can be implemented through wireless communication without the need for personnel communication and confirmation, further improving commissioning efficiency and reliability, and ensuring the safe and reliable operation of the power distribution network. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This is a flowchart illustrating the power distribution terminal warehouse commissioning method based on remote adjustment signals according to an embodiment of the present invention.

[0018] Figure 2 This is a flowchart of the power distribution terminal warehouse debugging method based on remote adjustment signals according to an embodiment of the present invention;

[0019] Figure 3 This is a schematic diagram of the debugging process of remote signaling signals according to an embodiment of the present invention;

[0020] Figure 4 This is a schematic diagram of the telemetry signal debugging process according to an embodiment of the present invention;

[0021] Figure 5 This is a schematic diagram of the debugging process of the remote control signal according to an embodiment of the present invention. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0023] In power distribution network systems, distribution terminal units (PDUs) often come from different regions and brands, with varying protection settings and control words. Currently, protection function debugging can only be performed by connecting to the actual PDUs through the manufacturer's host computer software and manually entering settings and data for each unit. This heavily relies on the field personnel's familiarity with different PDU brands and their expertise in entering protection settings and control words. Batch debugging of PDUs requires continuous adjustments and settings, which is inefficient when large-scale testing is needed. Currently, communication between the experimental site and the main station relies solely on manual methods, and most commercially available wireless communication methods are relatively expensive. Furthermore, current PDU debugging methods demand a high level of proficiency from field personnel. Therefore, this invention provides a PDU warehouse debugging method and device based on remote adjustment signals.

[0024] The following is combined Figures 1 to 5 The present invention describes the distribution terminal warehouse commissioning method and apparatus based on remote adjustment signals. Figure 1This is a flowchart illustrating a power distribution terminal warehouse commissioning method based on remote adjustment signals, according to an embodiment of the present invention. This method is applied to joint commissioning devices, such as... Figure 1 As shown, the present invention provides a method for commissioning a power distribution terminal warehouse based on remote adjustment signals, comprising:

[0025] S1. After the master station sends remote adjustment information to the distribution terminal and completes the remote adjustment test with the distribution terminal, it downloads the remote signaling debugging task sheet from the master station. The master station stores a template setting sheet. During the remote adjustment test between the master station and the distribution terminal, the settings of each distribution terminal are modified according to the template setting sheet.

[0026] Prior to S1, additional wiring can be performed on the distribution terminals and joint commissioning devices. After the test begins, the master station can issue remote commissioning commands to the distribution terminals. In this invention, the protection settings and control words of all distribution terminals to be tested are modified according to the same setting sheet, i.e., the master station's template setting sheet. This avoids the problem of different settings for distribution terminals in different regions. Subsequently, the master station generates a universal remote signaling commissioning task sheet for distribution terminals based on the work standards and requirements. Figure 2 This is a flowchart of the power distribution terminal warehouse commissioning method based on remote adjustment signals according to an embodiment of the present invention, as follows: Figure 2 As shown, multiple commissioning devices and power distribution terminals can be used for simultaneous commissioning.

[0027] S2. According to the remote signaling commissioning task sheet, obtain the pre-stored remote signaling test template, and output the experimental signal corresponding to the remote signaling commissioning to the power distribution terminal according to the remote signaling test template. The settings in the test templates (including the remote signaling test template and the test template used for telemetry mentioned later) are pre-set according to the template setting sheet.

[0028] Test templates are configured on the commissioning unit. The settings of the test templates are pre-modified according to the template setting sheet from the main station. The test templates reduce the pre-test data configuration work for on-site commissioning personnel. The test templates can be continuously improved or modified according to the requirements of the current region to achieve customization for different transformer ratios and different test purposes. The test templates can also contain multiple sub-templates, respectively for remote commissioning and remote signaling tests, or set corresponding templates for each sub-item of remote commissioning and remote signaling. The specific templates can be found according to the commissioning task sheet to be processed.

[0029] Figure 3 This is a schematic diagram of the debugging process of remote signaling signals according to an embodiment of the present invention. In S2, the joint debugging device searches for the required remote signaling test template from the test template according to the remote signaling debugging task sheet, reads the signal data therein, applies experimental signals to carry out debugging operations, and the experimental signals may include status information such as simulated alarm conditions, switch positions or valve positions.

[0030] S3. Receive remote signaling response data forwarded by the power distribution terminal via the master station. The remote signaling response data is generated by the power distribution terminal after applying the experimental signal.

[0031] like Figure 3 As described above, after receiving the experimental signal, the power distribution terminal responds and sends the response data (i.e., remote signaling response data) to the master station via the dedicated power distribution network. The master station then transmits the remote signaling response data to the debugging device via wireless communication. This can be achieved using methods such as... Figure 2 The NB-IoT network in the middle.

[0032] S4. Based on the test data in the remote signaling test template, verify the remote signaling response data and determine the remote signaling debugging result.

[0033] The debugging device compares and judges the experimental data (i.e., remote signaling response data) transmitted from the main station to the power distribution terminal and the test data (based on the experimental signal applied by the test template) of the debugging device itself, and finally realizes the remote signaling adaptive debugging of the power distribution terminal. After completion, an experimental report can be generated.

[0034] The present invention discloses a distribution terminal warehouse commissioning method based on remote adjustment signals. During remote adjustment testing between the master station and the distribution terminal, the settings of each distribution terminal are modified according to the template setting sheet of the master station. This solves the problem that batch closed-loop testing is impossible due to the different protection settings and control words of the distribution terminals originating from different regions. The remote signaling commissioning task sheet determines the remote signaling test template and applies the corresponding signal, which is conducive to the simultaneous commissioning of multiple distribution terminals. Moreover, the test template does not require manual configuration, further ensuring the correctness and efficiency of commissioning. In addition, this method can be implemented through wireless communication without the need for personnel communication and confirmation, further improving commissioning efficiency and reliability, and ensuring the safe and reliable operation of the power distribution network.

[0035] In one embodiment, after determining the telemetry debugging result, the method further includes: downloading a telemetry debugging task sheet from the main station; obtaining a pre-stored telemetry test template based on the telemetry debugging task sheet; and outputting the experimental signal corresponding to the telemetry debugging to the power distribution terminal based on the telemetry test template; receiving telemetry response data forwarded by the power distribution terminal via the main station, wherein the telemetry response data is generated by the power distribution terminal after applying the experimental signal corresponding to the telemetry debugging; and verifying the telemetry response data based on the test data in the telemetry test template to determine the telemetry debugging result.

[0036] Figure 4To guide the debugging process of telemetry signals during the experiment, the joint debugging device downloads the telemetry debugging task sheet from the master station. Subsequently, the joint debugging device determines the telemetry test template according to the experimental task sheet and outputs an experimental signal including analog quantities to the power distribution terminal. After receiving the experimental signal including analog quantities, the power distribution terminal uploads the internal telemetry actual value to the master station. The master station then forwards the power distribution terminal's telemetry actual value to the joint debugging device. After receiving the telemetry actual value sent by the master station, the joint debugging device compares it with the expected telemetry value in the internal telemetry test template to determine the experimental result and generates a report.

[0037] In one embodiment, after the remote signaling commissioning is completed and the result is qualified, the method further includes: downloading the remote control commissioning task sheet from the master station; waiting for the master station to issue the remote control command generated according to the commissioning task to the power distribution terminal, and for the power distribution terminal to send the internal remote control node data generated after executing the remote control command to the master station, and receiving the remote control node data forwarded by the master station; verifying the remote control node data according to the expected value of the remote control data, and judging the remote control commissioning result, wherein the expected value of the remote control data is determined according to the remote control commissioning task sheet.

[0038] Figure 5 This is a schematic diagram of the debugging process of the remote control signal according to an embodiment of the present invention, as shown below. Figure 5 As shown, the master station downloads remote adjustment information to the distribution terminal, modifies internal settings and control words, completes the remote adjustment test, and after the remote adjustment test is passed, the joint commissioning device downloads the remote control commissioning task sheet from the master station. After the experiment begins, the master station issues remote control commands to the distribution terminal, commanding the switches to operate. After the experiment ends, the distribution terminal sends its internal actual remote control values ​​to the master station, i.e., the remote control node data. The master station sends the remote control node data sent by the distribution terminal to the joint commissioning device. Finally, the joint commissioning device compares the actual remote control values ​​in the remote control node data sent by the master station with the expected remote control values ​​in the remote control commissioning task sheet, judges the experimental results, and generates an experimental report.

[0039] In one embodiment, the remote signaling commissioning task sheet, telemetry commissioning task sheet, or remote control commissioning task sheet is a common commissioning task sheet for each power distribution terminal. That is, each commissioning task sheet is a common task sheet for all power distribution terminals. The joint commissioning device can apply corresponding experimental signals to multiple power distribution terminals simultaneously according to the remote signaling and telemetry commissioning task sheet, thereby realizing the commissioning of multiple power distribution terminals in one operation.

[0040] In one embodiment, the remote adjustment test includes the power distribution terminal modifying the internal protection settings and control words according to the remote adjustment setting sheet issued by the master station, as shown in the steps of the above embodiment.

[0041] In one embodiment, the commissioning device and the master station are wirelessly connected via NB-IoT. The power distribution terminal unit and the master station are wirelessly connected via NB-IoT, a wireless communication method that offers advantages such as low power consumption, low cost, and suitability for large-scale IoT deployments, solving the problems of high power consumption and high deployment costs associated with ordinary wireless connections.

[0042] In one embodiment, when there are multiple commissioning devices, after downloading the remote signaling or telemetry commissioning task sheet from the main station, the process further includes: each commissioning device sending the remote signaling or telemetry commissioning task sheet to the host computer; correspondingly, obtaining a pre-stored remote signaling or telemetry test template according to the remote signaling or telemetry commissioning task sheet, specifically receiving the remote signaling or telemetry test template sent by the host computer; and after receiving the commissioning start signal sent by the host computer, outputting an experimental signal to the power distribution terminal according to the remote signaling or telemetry test template.

[0043] When there are multiple commissioning devices, each device in the above embodiments can output corresponding experimental signals for remote signaling or telemetry debugging to the power distribution terminal according to the remote signaling or telemetry test template. Alternatively, in this embodiment, a single main control computer can simultaneously control multiple commissioning devices to achieve batch operation of the debugging template and thus batch debugging of the power distribution terminal. After multiple commissioning devices are connected to the host computer and a communication connection is established, each device sends a remote signaling or telemetry debugging task to the host computer. The host computer selects the remote signaling or telemetry test template and distributes it to the commissioning device. Then, the host computer sends a debugging start signal, and the commissioning device outputs experimental signals to the power distribution terminal according to the remote signaling or telemetry test template. Based on this, multiple commissioning devices and multiple power distribution terminals can be debugged by a single person, further improving debugging efficiency.

[0044] In summary, after the master station issues the remote adjustment command, the joint commissioning device and the master station can establish a wireless communication connection via NB-IoT. Subsequently, the master station issues a commissioning task sheet to the joint commissioning device according to the test requirements. The joint commissioning device then conducts experiments one by one according to the commissioning task sheet and test template. During the experiment, the master station transmits the expected results to the joint commissioning device via NB-IoT. Simultaneously, the master station receives 101 message data from the power distribution terminal device, which includes the actual results. The joint commissioning device compares the expected results with the actual results. Test points that meet the criteria are given a "correct" command, while test points that do not meet the criteria are given an "incorrect" command. Finally, after all test points are completed, the joint commissioning device generates a test report.

[0045] This invention also provides a distribution terminal warehouse debugging device based on remote adjustment signals, applied to a joint debugging device, comprising: an extraction module, used to send remote adjustment information to the distribution terminal from the master station, and after completing remote adjustment tests with the distribution terminal, download a remote signal debugging task sheet from the master station; an output module, used to obtain a pre-stored remote signal test template according to the remote signal debugging task sheet, and output the experimental signal corresponding to the remote signal debugging to the distribution terminal according to the remote signal test template; a receiving module, used to receive remote signal response data forwarded by the distribution terminal via the master station, the remote signal response data being generated by the distribution terminal after applying the experimental signal; and a judgment module, used to verify the remote signal response data according to the test data in the remote signal test template, and judge the remote signal debugging result; wherein, the master station stores a template setting sheet, and when the master station performs remote adjustment tests with the distribution terminal, the setting of each distribution terminal is modified according to the template setting sheet, and the setting in the test template is pre-set according to the template setting sheet.

[0046] In one embodiment, the extraction module is further configured to download a telemetry debugging task sheet from the main station; the output module is further configured to obtain a pre-stored telemetry test template according to the telemetry debugging task sheet, and output the experimental signal corresponding to the telemetry debugging to the power distribution terminal according to the telemetry test template; the receiving module is further configured to receive telemetry response data forwarded by the power distribution terminal via the main station, the telemetry response data being generated by the power distribution terminal after applying the experimental signal corresponding to the telemetry debugging; the judgment module is further configured to verify the telemetry response data according to the test data in the telemetry test template, and judge the telemetry debugging result.

[0047] In one embodiment, the output module is further configured to download a remote control debugging task sheet from the master station; the receiving module is further configured to wait for the master station to issue a remote control command to the power distribution terminal, and for the power distribution terminal to send the internal remote control node data generated after executing the remote control command to the master station, and then receive the remote control node data forwarded by the master station; the judging module is further configured to check the remote control node data according to the expected value of the remote control data, and judge the remote control debugging result, wherein the expected value of the remote control data is determined according to the remote control debugging task sheet.

[0048] The distribution terminal warehouse debugging device based on remote adjustment signal provided in this embodiment of the invention has the same implementation principle and technical effect as the aforementioned distribution terminal warehouse debugging method based on remote adjustment signal. For the sake of brevity, any parts not mentioned in the embodiment of the distribution terminal warehouse debugging device based on remote adjustment signal can be referred to the corresponding content in the aforementioned distribution terminal warehouse debugging method embodiment based on remote adjustment signal.

[0049] In the specific implementation plan, the joint debugging device can adopt a modular design. The overall structure includes analog voltage and multiple sets of analog current outputs, hard-node inputs, hard-node outputs, emergency stop buttons, wireless NB-IoT communication interface, USB interface, RJ45 interface, industrial control computer human-machine interface, AC 220V power supply interface, etc.

[0050] The device adopts a modular design, which effectively reduces the size and weight of the equipment, making it easy to carry. The remote adjustment function based on wireless communication solves the problem of batch closed-loop testing being impossible during the centralized warehouse commissioning of FTU devices due to differences in protection settings and control words from different regions of the power distribution terminals. Multiple power distribution terminal warehouse commissioning devices, in conjunction with test templates, improve the efficiency and accuracy of power distribution automation terminal commissioning, ensuring the safe and reliable operation of the power distribution network.

[0051] This invention also provides a computer-readable storage medium, such as flash memory, hard disk, multimedia card, card-type memory (e.g., SD or DX memory), random access memory (RAM), static random access memory (SRAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), programmable read-only memory (PROM), magnetic memory, disk, optical disk, server, app store, etc., which stores a computer program. When the program is executed by a processor, it performs a corresponding function. This embodiment describes a method for debugging a power distribution terminal warehouse based on remote adjustment signals when the computer-readable storage medium is executed by a processor.

[0052] It should be noted that, depending on the implementation needs, the various steps / components described in this application can be broken down into more steps / components, or two or more steps / components or parts of the operation of steps / components can be combined into new steps / components to achieve the purpose of this invention.

[0053] The order of the steps in the above embodiments does not imply the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of this application.

[0054] It should be understood that those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.

Claims

1. A method for commissioning a distribution terminal warehouse based on remote adjustment signals, applied to a joint commissioning device, characterized in that, include: After the main station sends remote adjustment information to the power distribution terminal and completes the remote adjustment test with the power distribution terminal, it downloads the remote signaling commissioning task sheet from the main station. According to the remote signaling commissioning task sheet, obtain the pre-stored remote signaling test template, and output the experimental signal corresponding to the remote signaling commissioning to the power distribution terminal according to the remote signaling test template; The power distribution terminal receives remote signaling response data forwarded by the master station, wherein the remote signaling response data is generated by the power distribution terminal after applying the experimental signal; Based on the test data in the remote signaling test template, the remote signaling response data is checked to determine the remote signaling debugging result; The master station stores a template setting sheet. When the master station performs remote adjustment tests with the power distribution terminal, the setting of each power distribution terminal is modified according to the template setting sheet. The setting in the test template is set in advance according to the template setting sheet.

2. The method for debugging a distribution terminal warehouse based on remote adjustment signals according to claim 1, characterized in that, After determining the remote signaling debugging result, the following is also included: Download the telemetry debugging task sheet from the main station, obtain the pre-stored telemetry test template according to the telemetry debugging task sheet, and output the experimental signal corresponding to the telemetry debugging to the power distribution terminal according to the telemetry test template. The power distribution terminal receives telemetry response data forwarded by the master station. The telemetry response data is generated by the power distribution terminal after applying the experimental signal corresponding to telemetry debugging. Based on the test data in the telemetry test template, the telemetry response data is checked to determine the telemetry debugging result.

3. The method for debugging a distribution terminal warehouse based on remote adjustment signals according to claim 1, characterized in that, After the remote signaling debugging is completed and the result is satisfactory, the method further includes: Download the remote control debugging task sheet from the main site; Waiting for the master station to issue a remote control command to the power distribution terminal, and for the power distribution terminal to send the internal remote control node data generated after executing the remote control command to the master station, and then receiving the remote control node data forwarded by the master station; Based on the expected value of the remote control data, the data of the remote control node is checked to determine the remote control debugging result. The expected value of the remote control data is determined according to the remote control debugging task sheet.

4. The method for commissioning a distribution terminal warehouse based on remote adjustment signals according to any one of claims 1-3, characterized in that, The remote signaling commissioning task sheet, remote measurement commissioning task sheet, or remote control commissioning task sheet is a common commissioning task sheet for each power distribution terminal.

5. The method for debugging a distribution terminal warehouse based on remote adjustment signals according to claim 1, characterized in that, The remote adjustment test includes the power distribution terminal modifying internal protection settings and control words according to the remote adjustment setting sheet issued by the master station.

6. The method for debugging a distribution terminal warehouse based on remote adjustment signals according to claim 1, characterized in that, The joint debugging device and the main station are connected wirelessly via NB-IoT.

7. The method for commissioning a distribution terminal warehouse based on remote adjustment signals according to claim 1 or 2, characterized in that, When there are multiple joint debugging devices, after downloading the remote signaling or telemetry debugging task order from the main station, it also includes: Each joint debugging device sends a remote signaling or telemetry debugging task order to the host computer. Accordingly, based on the remote signaling or telemetry debugging task sheet, the pre-stored remote signaling or telemetry test template is obtained, specifically by receiving the remote signaling or telemetry test template sent by the host computer. After receiving the debugging start signal sent by the host computer, the experimental signal is output to the power distribution terminal according to the remote signaling or telemetry test template.

8. A power distribution terminal warehouse debugging device based on remote adjustment signals, characterized in that, include: The extraction module is used to send remote adjustment information to the power distribution terminal from the main station, and after completing the remote adjustment test with the power distribution terminal, download the remote signaling debugging task sheet from the main station. The output module is used to obtain the pre-stored remote signaling test template according to the remote signaling debugging task sheet, and output the experimental signal corresponding to the remote signaling debugging to the power distribution terminal according to the remote signaling test template. The receiving module is used to receive remote signaling response data forwarded by the power distribution terminal via the master station. The remote signaling response data is generated by the power distribution terminal after the experimental signal is applied. The judgment module is used to verify the remote signaling response data based on the test data in the remote signaling test template and to judge the remote signaling debugging result; The master station stores a template setting sheet. When the master station performs remote adjustment tests with the power distribution terminal, the setting of each power distribution terminal is modified according to the template setting sheet. The setting in the test template is set in advance according to the template setting sheet.

9. The distribution terminal warehouse debugging device based on remote adjustment signal according to claim 8, characterized in that, The extraction module is also used to download telemetry debugging task sheets from the main station; The output module is also used to obtain a pre-stored telemetry test template according to the telemetry debugging task sheet, and output the experimental signal corresponding to the telemetry debugging to the power distribution terminal according to the telemetry test template. The receiving module is also used to receive telemetry response data forwarded by the power distribution terminal via the master station. The telemetry response data is generated by the power distribution terminal after applying the experimental signal corresponding to telemetry debugging. The judgment module is also used to verify the telemetry response data based on the test data in the telemetry test template and to judge the telemetry debugging result.

10. The distribution terminal warehouse debugging device based on remote adjustment signal according to claim 8, characterized in that, The output module is also used to download remote debugging task sheets from the main station; The receiving module is also used to wait for the master station to issue a remote control command to the power distribution terminal, and after the power distribution terminal sends the internal remote control node data generated after executing the remote control command to the master station, it receives the remote control node data forwarded by the master station. The judgment module is also used to verify the remote control node data according to the expected value of the remote control data and judge the remote control debugging result. The expected value of the remote control data is determined according to the remote control debugging task sheet.

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