A method and device for monitoring and rectifying abnormal changes in a household relationship
By monitoring and rectifying the inconsistency between the transformer area codes in the marketing business application system and the electricity information collection system, the problem of abnormal transformer-household file relationships was resolved, and the accuracy of transformer area line loss calculation and the timeliness of user power outage notifications were achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- STATE GRID HEBEI ELECTRIC POWER CO LTD
- Filing Date
- 2022-10-31
- Publication Date
- 2026-05-29
AI Technical Summary
Abnormal information in the relationship between the marketing business application system and the electricity information collection system is not easily detected, leading to errors in the calculation of line loss in the transformer area and delays in notifying users of power outages.
By monitoring users whose transformer area codes do not match those in the marketing business application system and the electricity information collection system, online surveys and on-site verifications are conducted to correct any abnormal transformer-user relationships.
It enables precise identification and timely rectification of abnormal transformer-household relationships, reduces manual verification time, and improves the accuracy of transformer area line loss calculation and the timeliness of power outage notifications to users.
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Figure CN115905327B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of data processing application technology, and in particular to a method and apparatus for monitoring and rectifying abnormal household relationships. Background Technology
[0002] Transformer account relationships are a crucial aspect of lean distribution network operation and maintenance, supporting equipment management and high-quality service. Accurate and reliable transformer account relationships are a vital data source for lean distribution network operation and maintenance. In actual operation, failure to promptly maintain transformer account relationships for new user registrations, relocations, and account cancellations will lead to anomalies, affecting tasks such as calculating transformer area line losses and delivering power outage notifications to users. However, due to the large number of users, it is difficult to specifically identify transformer account anomalies. Often, transformer account relationship checks are only conducted when transformer area line losses are abnormal or users report power outages without receiving notification, making early detection and precise management difficult.
[0003] The application, published under CN114066670A, entitled "A Method for Verifying Equipment Relationships During Power Outages," is hereinafter referred to as Prior Artwork 1. It includes the following steps: S1 Power Outage Information Screening: Based on the marketing business application system, power outages are screened according to the cause of power outage to obtain the areas to be checked; S2 Screening of Areas That Should Have Been Stopped but Were Not Stopped: Power outage information of the areas to be checked is obtained from the electricity consumption information collection system, and the power outage information of the areas to be checked is compared with the power outage information of the areas to be checked in the marketing business application system to obtain the areas that should have been stopped but were not; S3 System Verification of Areas That Should Have Been Stopped but Were Not Stopped: Voltage and current data of the areas that should have been stopped but were not stopped are obtained from the electricity consumption information collection system. If the voltage and current data exist, the area is considered not to have been stopped and is confirmed as a suspected area; S4 Obtaining On-Site Information: On-site information includes the geographical location of the transformer, transformer connection point information, and terminal address of the meter; S5 On-Site Information Verification.
[0004] Application publication number CN114860751A, entitled "A Device and Method for Verifying Equipment Relationships," hereinafter referred to as Prior Art Document 2. The device includes first to third terminals, a forward verification module, and a reverse verification module. The method includes a forward verification step: the first terminal checks whether the corresponding transformer area in the first marketing business application system is in operation according to the transformer registration book and the pole-mounted transformer code, and checks whether the power consumption information collection system has a corresponding main table for the operating transformer area according to the transformer area registration book in the first marketing business application system. The reverse verification step involves the third terminal checking whether the corresponding transformer area in the first marketing business application system is in operation according to the main table of operating transformer areas in the power consumption information collection system, and checking whether the corresponding transformer in the Equipment Maintenance Lean Management System (PMS) has a corresponding operating transformer according to the transformer area registration book in the first marketing business application system.
[0005] Based on the two patent documents mentioned above and existing technical solutions, the inventors learned that:
[0006] In Comparison Document 1, the device relationships are verified efficiently through steps S1 to S5.
[0007] In Comparative Document 2, the verification of power equipment relationships is highly efficient through the use of first to third terminals, as well as forward and reverse verification modules.
[0008] The inventor, through analysis of his own work, discovered that:
[0009] In the field of power marketing technology, abnormal information in the relationship between the marketing business application system and the electricity information collection system is not easily detected. The relationship between the user files is only checked when there is a problem with the line loss in the distribution area or when users report that they have not received a power outage notification. Problems cannot be detected in time.
[0010] Existing technical issues and considerations:
[0011] How to solve the technical problem of the difficulty in detecting abnormal information in the relationship between the customer files of the marketing business application system and the electricity information collection system. Summary of the Invention
[0012] The technical problem to be solved by the present invention is to provide a method and apparatus for monitoring and rectifying abnormal customer relationships, thereby solving the technical problem that abnormal information in the customer file relationship between the marketing business application system and the electricity information collection system is not easily detected.
[0013] To solve the above-mentioned technical problems, the technical solution adopted by the present invention is as follows: A method for monitoring and rectifying abnormal household relationship includes the following steps:
[0014] The first step is to monitor and compare the transformer area code of the user's marketing business application system with the transformer area code of the user's electricity consumption information collection system;
[0015] The second step is to filter out users whose area codes in the marketing business application system and the electricity information collection system are inconsistent and appear repeatedly.
[0016] The third step is to conduct an online recall test on users whose transformer area codes are inconsistent between the two systems in the electricity information collection system. If the recall of users is successful, the reason for the inconsistency is that the user's transformer-meter relationship file in the marketing business application system is incorrect. It is necessary to maintain the transformer-meter box topology connection relationship in the equipment operation and maintenance lean management system, or maintain the transformer-transformer area correspondence relationship in the marketing business application system, or maintain the user meter-meter box relationship in the marketing business application system.
[0017] If the fourth step fails, the user's data collection system will be found to have an incorrect user relationship file, and the user's marketing business application system data relationship will be pushed to the electricity information collection system.
[0018] A further technical solution includes the following steps:
[0019] If the fifth step still fails to resolve the issue, indicating an error in the file relationships between the user's marketing business application system and the electricity information collection system, on-site verification of the user's electricity meter is required. Based on the actual on-site connection, the file relationships between the transformer, distribution area, meter box, and user meter should be maintained in the equipment operation and maintenance lean management system, marketing business application system, and electricity information collection system.
[0020] A further technical solution is to: in the second step, filter out users whose area codes in the marketing business application system and the electricity information collection system are inconsistent for four consecutive days.
[0021] A further technical solution is that, in the fourth step, if the debugging is successful, the user's account relationship file in the marketing business application system will be correct.
[0022] A device for monitoring and rectifying anomalies in transformer-to-customer relationships includes a monitoring and rectification module, which is a program module used to monitor and compare the transformer area code of the user's marketing business application system with the transformer area code of the user's electricity consumption information collection system; to filter users whose transformer area codes in the marketing business application system and the electricity consumption information collection system are inconsistent; to conduct an online recall of users whose transformer area codes in the two systems are inconsistent in the electricity consumption information collection system; if the recall is successful, the inconsistency is due to an error in the transformer-to-customer relationship file of the user's marketing business application system, requiring maintenance of the transformer-meter box topology connection relationship in the equipment operation and maintenance lean management system, or maintenance of the transformer-to-transformer area correspondence relationship in the marketing business application system, or maintenance of the user's meter-meter box relationship in the marketing business application system; if the recall fails, the transformer-to-customer relationship file of the user's collection system is incorrect, and the user's marketing business application system file relationship is pushed to the electricity consumption information collection system.
[0023] A further technical solution is that the monitoring and rectification module is also used to ensure that the user's account relationship file in the marketing business application system is correct if the debugging is successful.
[0024] A further technical solution involves a monitoring and rectification module. If debugging still fails, indicating an error in the file relationship between the user's marketing business application system and the electricity information collection system, on-site verification of the user's electricity meter is required. Based on the actual on-site connection, the module maintains the transformer-transformer area-meter box-user electricity meter file relationship in the equipment operation and maintenance lean management system, marketing business application system, and electricity information collection system.
[0025] A further technical solution involves a monitoring and rectification module, which is also used to screen users whose area codes in the marketing business application system and the electricity information collection system are inconsistent for four consecutive days.
[0026] An apparatus for monitoring and rectifying abnormal household relationship includes a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, it performs the corresponding steps described above.
[0027] An apparatus for monitoring and rectifying abnormal household relationship issues includes a computer-readable storage medium storing a computer program that, when executed by a processor, performs the aforementioned corresponding steps.
[0028] The beneficial effects of adopting the above technical solution are as follows:
[0029] First, a method for monitoring and rectifying anomalies in transformer-to-customer relationships includes the following steps: First, compare the transformer area code of the user's marketing business application system with the transformer area code of the user's electricity information collection system; second, filter users whose transformer area codes in the marketing business application system and electricity information collection system are inconsistent; third, conduct an online recall test on the electricity information collection system for users whose transformer area codes are inconsistent between the two systems. If the recall is successful, the inconsistency is due to an error in the transformer-to-customer relationship file of the user's marketing business application system, requiring maintenance of the transformer-meter box topology connection in the equipment operation and maintenance lean management system, or maintenance of the transformer-to-transformer area correspondence in the marketing business application system, or maintenance of the user's meter-meter box relationship in the marketing business application system; fourth, if the recall fails, the transformer-to-customer relationship file of the user's collection system is incorrect, and the user's marketing business application system file relationship is pushed to the electricity information collection system. This technical solution, through monitoring and rectification steps, achieves the monitoring and rectification of anomalies in the transformer-to-customer relationship between the marketing business application system and the electricity information collection system.
[0030] Secondly, a device for monitoring and rectifying anomalies in user-transformer relationships includes a monitoring and rectification module, which is a program module used to monitor and compare the transformer area code of the user's marketing business application system with the transformer area code of the user's electricity consumption information collection system; it filters users whose transformer area codes in the marketing business application system and the electricity consumption information collection system are inconsistent; it performs an online recall test on users whose transformer area codes in the two systems are inconsistent. If the recall is successful, the inconsistency is due to an error in the user-transformer relationship file of the user's marketing business application system, requiring maintenance of the transformer-meter box topology connection relationship in the equipment operation and maintenance lean management system, or maintenance of the transformer-transformer area correspondence relationship in the marketing business application system, or maintenance of the user's meter-meter box relationship in the marketing business application system; if the recall fails, the user-transformer relationship file of the user's collection system is incorrect, and the user's marketing business application system file relationship is pushed to the electricity consumption information collection system. This technical solution, through the monitoring and rectification module, etc., realizes the monitoring and rectification of abnormal information in the user-transformer relationship between the marketing business application system and the electricity consumption information collection system.
[0031] See the detailed implementation section for further description. Attached Figure Description
[0032] Figure 1 This is a flowchart of Embodiment 1 of the present invention;
[0033] Figure 2 This is a principle block diagram of Embodiment 3 of the present invention;
[0034] Figure 3 This is a principle block diagram of Embodiment 4 of the present invention;
[0035] Figure 4 This is the block diagram of the entire system. Detailed Implementation
[0036] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The following description of at least one exemplary embodiment is merely illustrative and is in no way intended to limit this application or its application or use. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0037] Many specific details are set forth in the following description in order to provide a full understanding of this application. However, this application may also be implemented in other ways different from those described herein. Those skilled in the art can make similar extensions without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.
[0038] Example 1:
[0039] like Figure 1 As shown, this invention discloses a method for monitoring and rectifying abnormal household relationship patterns, including monitoring and rectification steps, specifically divided into the following steps:
[0040] The first step is to monitor and compare the transformer area code of the user's marketing business application system with the transformer area code of the user's electricity consumption information collection system on a daily basis.
[0041] The second step is to filter out users whose area codes in the marketing business application system and the electricity information collection system are inconsistent for four consecutive days.
[0042] The third step is to conduct an online recall test for users whose transformer area codes do not match those in the two systems in the electricity information collection system. If the recall is successful, the inconsistency is due to an error in the user relationship file of the marketing business application system to which the user belongs. It is necessary to maintain the topological connection relationship between transformer and meter box in the equipment operation and maintenance lean management system, or maintain the corresponding relationship between transformer and transformer area in the marketing business application system, or maintain the relationship between user meter and meter box in the marketing business application system.
[0043] Fourth step: If the call fails, the user's data collection system change account file is incorrect. The user's marketing business application system file will be pushed to the electricity information collection system. If the debugging is successful, the user's marketing business application system change account file is correct.
[0044] Fifth, if the debugging still fails, it means that the file relationship between the user's marketing business application system and the electricity information collection system is incorrect. The user's electricity meter needs to be verified on-site. Based on the actual connection on site, the transformer-transformer area-meter box-user electricity meter file relationship should be maintained in the equipment operation and maintenance lean management system, marketing business application system, and electricity information collection system.
[0045] Example 2:
[0046] This invention discloses a device for monitoring and rectifying abnormal household relationships, including a monitoring and rectification module, which is a program module.
[0047] The monitoring and rectification module is used to monitor and compare the transformer area code of the user's marketing business application system and the transformer area code of the user's electricity consumption information collection system on a daily basis.
[0048] Filter users whose area codes in the marketing business application system and the electricity information collection system are inconsistent for four consecutive days;
[0049] Users whose transformer area codes do not match in the two systems are called up online in the electricity information collection system. If the call is successful, the reason for the inconsistency is that the user's transformer-meter relationship file in the marketing business application system is incorrect. It is necessary to maintain the transformer-meter box topology connection relationship in the equipment operation and maintenance lean management system, or maintain the transformer-transformer area correspondence relationship in the marketing business application system, or maintain the user meter-meter box relationship in the marketing business application system.
[0050] If the call fails, the user's data collection system has an incorrect user relationship file. The user's marketing business application system data relationship will be pushed to the electricity information collection system. If the debugging is successful, the user's marketing business application system has a correct user relationship file.
[0051] If the debugging still fails, it means that the file relationship between the user's marketing business application system and the electricity information collection system is incorrect. The user's electricity meter needs to be verified on-site. Based on the actual connection situation on site, the transformer-transformer area-meter box-user electricity meter file relationship needs to be maintained in the equipment operation and maintenance lean management system, marketing business application system, and electricity information collection system.
[0052] Example 3:
[0053] like Figure 2 As shown, the present invention discloses a method and apparatus for monitoring and rectifying abnormal household relationships. The apparatus includes a memory, a processor, and a computer program stored in the memory and capable of running on the processor. When the processor executes the computer program, it implements the steps of Embodiment 1.
[0054] Example 4:
[0055] like Figure 3 As shown, the present invention discloses a computer-readable storage medium storing a computer program, which, when executed by a processor, implements the steps in Embodiment 1.
[0056] The concept of this application:
[0057] To address the above issues, this application utilizes a data platform to continuously monitor all abnormal information related to the change of account relationships in the marketing business application system and the electricity consumption information collection system. It also employs a recall function to verify the causes of these abnormalities, thereby improving the efficiency of identifying and resolving anomalies in change of account relationships.
[0058] The details are as follows:
[0059] Logical relationships of customer relationships in marketing business application systems, electricity information collection systems, and integrated electricity consumption and line loss systems:
[0060]
[0061] The data platform is used to monitor and compare the data of the user's marketing business application system and the data of the user's electricity consumption information collection system. The electricity consumption information collection system is used to conduct a call to determine the user's location, saving time that would otherwise be spent manually verifying the relationship between the user and the data.
[0062] Technical contributions:
[0063] 1. Daily monitoring and comparison of the transformer area code of the user's marketing business application system and the transformer area code of the user's electricity consumption information collection system.
[0064] 2. Filter users whose area codes in the marketing business application system and the electricity information collection system are inconsistent for four consecutive days.
[0065] 3. For users whose transformer area codes do not match in the two systems, conduct an online recall in the electricity information collection system. If the recall is successful, the reason for the inconsistency is that the user's transformer-meter relationship file in the marketing business application system is incorrect. It is necessary to maintain the transformer-meter box topology connection relationship in the equipment operation and maintenance lean management system, or maintain the transformer-transformer area correspondence relationship in the marketing business application system, or maintain the user meter-meter box relationship in the marketing business application system.
[0066] 4. If the call fails, the user's data collection system has an incorrect user relationship file. The user's marketing business application system file will be pushed to the electricity information collection system. If the call is successful, the user's marketing business application system has a correct user relationship file.
[0067] 5. If the debugging still fails, it means that the file relationship between the user's marketing business application system and the electricity information collection system is incorrect. The user's electricity meter needs to be verified on-site. Based on the actual connection on site, the file relationship between transformer, distribution area, meter box and user electricity meter should be maintained in the equipment operation and maintenance lean management system, marketing business application system and electricity information collection system.
[0068] User ①'s file in the marketing business application system belongs to transformer area A, and the meter box where the user's electricity meter is located is connected to transformer a. In the marketing business application system, transformer a and transformer area A have a corresponding relationship. However, in the electricity consumption information collection system, the user's file belongs to transformer area B, and in the marketing business application system, transformer b and transformer area B have a corresponding relationship.
[0069] Abnormal changes in household registration can be categorized into the following situations:
[0070] Scenario 1: If user ① in transformer area B is successfully identified during a power consumption information collection system call, indicating that user ① is connected to transformer b on-site, then the user's marketing business application system file is incorrect. If user ①'s power consumption is greater than 0, this will affect the calculation of transformer area line loss in the integrated power consumption and line loss system. The line loss value for transformer area A will be lower than its actual line loss, while the line loss value for transformer area B will be higher than its actual line loss. When transformer area B experiences a power outage, user ① will not receive a power outage SMS notification.
[0071] Scenario 2: If user ① in transformer area B cannot be recalled in the electricity consumption information collection system, the user's corresponding electricity consumption information collection system file is incorrect. The user's corresponding marketing business application system transformer file relationship is pushed to the electricity consumption information collection system for debugging. If the debugging is successful, that is, user ① is connected to transformer a on site, then the user's corresponding marketing business application system file relationship is correct. If user ①'s electricity consumption is greater than 0, this situation will affect the calculation of transformer area line loss in the integrated electricity consumption and line loss system. The line loss value of transformer area A will be higher than its actual line loss, while the line loss value of transformer area B will remain unchanged.
[0072] Scenario 3: If user ① in transformer area B cannot be recalled in the electricity consumption information collection system, the user's electricity consumption information collection system file is incorrect. The user's marketing business application system file relationship is pushed to the electricity consumption information collection system for debugging. If debugging fails, the user's marketing business application system file relationship is incorrect, and the actual connection situation needs to be verified on-site. It is verified that user ① is connected to transformer c on-site, and there is a corresponding relationship between transformer c and transformer area C. If user ①'s electricity consumption is greater than 0, this situation will affect the calculation of transformer area line loss in the integrated electricity consumption and line loss system. The line loss value of transformer area C will be higher than its actual line loss, while the line loss values of transformer areas A and B remain unchanged.
[0073] This technical solution can accurately pinpoint the anomalies in the transformer-household relationship records. In existing technical solutions, pinpointing the cause of anomalies in transformer-household relationship records is quite complex and requires on-site verification at the transformer and user meter. The technical solution presented in this paper can accurately pinpoint the problem, saving manpower and time costs.
[0074] Technical solution description:
[0075] 1. Utilize the data platform to monitor and compare daily the transformer area code of the user's marketing business application system with the transformer area code of the user's electricity consumption information collection system.
[0076] 2. Filter users whose area codes in the marketing business application system and the electricity information collection system are inconsistent for four consecutive days.
[0077] 3. For users whose transformer area codes do not match in the two systems, conduct an online recall in the electricity information collection system. If the recall is successful, the reason for the inconsistency is that the user's transformer-meter box relationship file in the marketing business application system is incorrect. It is necessary to maintain the transformer-meter box topology connection relationship in the equipment operation and maintenance lean management system, or maintain the transformer-transformer area correspondence relationship in the marketing business application system, or maintain the user meter-meter box relationship in the marketing business application system.
[0078] 4. If the call fails, the user's data collection system client relationship file is incorrect. The user's marketing business application system file relationship will be pushed to the electricity information collection system. If the debugging is successful, the user's marketing business application system client relationship file is correct.
[0079] 5. If the debugging still fails, it means that the file relationship between the user's marketing business application system and the electricity information collection system is incorrect. The user's electricity meter needs to be verified on-site. Based on the actual connection on site, the file relationship between transformer, distribution area, meter box and user electricity meter should be maintained in the equipment operation and maintenance lean management system, marketing business application system and electricity information collection system.
[0080] Further explanation is as follows:
[0081] like Figure 4 The diagram shown is a schematic diagram of the entire system.
[0082] Lean Equipment Management System: Includes the physical connection relationship between transformer elements and meter box elements.
[0083] Marketing Business Application System: Transformer elements have unique equipment IDs in the equipment lean management system. In the marketing business application system, the equipment ID and the transformer area code are uniquely correlated. The user code and the user meter asset code are uniquely correlated, and the user meter and the user meter box have a unique ownership relationship.
[0084] Electricity Information Collection System: The user's transformer area relationship is pushed from the marketing business application system and needs to be debugged in combination with the actual connection relationship on site.
[0085] Daily, the system checks for inconsistencies between the user marketing business application system and the electricity information collection system using the data platform. It retrieves the user code, the corresponding marketing business application system area code, and the corresponding electricity information collection system area code from the inconsistencies. Based on the user code and the two area codes, the system searches for the user under that area in the electricity information collection system. First, it searches for the user under the corresponding area code in the electricity information collection system. If the search is successful, the user-substation relationship file in the electricity information collection system is correct. If the search fails, the user-substation relationship file in the electricity information collection system is incorrect. The system then pushes the user's corresponding marketing business application system area code to the collection system for re-adjustment of the user's substation. If the re-adjustment is successful, the user-substation relationship in the marketing business application system is correct. If the re-adjustment fails, it is necessary to go to the site to check the actual location of the user's meter and maintain the transformer-substation-meter box-user meter file relationship.
[0086] User code and distribution area code, distribution area code of the marketing business application system to which it belongs, and distribution area code of the electricity consumption information collection system to which it belongs.
[0087] If the comparison results are inconsistent, the user code and the station area code information of the two systems are retrieved.
[0088] The electricity information collection system has a recall function, which can recall users under the transformer area. If the actual electrical connection relationship is continuous and consistent with the system topology, the electricity data of the user's meter can be successfully copied back. The recall result shows that the recall was successful, which means that the user was successfully recalled.
[0089] The electricity information collection system is implemented through manual operation.
[0090] After this application had been running internally for a period of time, the beneficial aspects reported by on-site technicians were:
[0091] 1. It can correct the line loss of the transformer area, reduce the line loss rate of high-loss transformer areas caused by errors in the transformer-household relationship files, and turn negative-loss transformer areas caused by errors in the transformer-household relationship files into reasonable line loss transformer areas.
[0092] 2. It can resolve the issue of missed or incorrectly sent power outage SMS messages due to errors in the Taiwan household registration records.
[0093] Currently, the technical solution of this invention has undergone pilot testing, which is a small-scale trial of the product before large-scale mass production. After the pilot testing was completed, a user survey was conducted on a small scale, and the survey results showed that user satisfaction was high. Now, preparations have begun for the formal production and industrialization of the product (including intellectual property risk warning surveys).
Claims
1. A method for monitoring and rectifying abnormal household relationship changes, characterized in that: The process includes the following steps: First, compare the area code of the user's marketing business application system with the area code of the user's electricity consumption information collection system; second, filter out users whose area codes of the marketing business application system and the electricity consumption information collection system are inconsistent and appear repeatedly. The third step involves conducting an online recall of users whose transformer area codes differ between the two systems in the electricity consumption information collection system. If the recall is successful, the inconsistency is due to an error in the transformer-meter relationship file of the user's marketing business application system. This requires maintaining the transformer-meter box topology connection in the equipment operation and maintenance lean management system, or maintaining the transformer-transformer area correspondence in the marketing business application system, or maintaining the user meter-meter box relationship in the marketing business application system. The fourth step involves a failure to recall the user's transformer-meter relationship file in the collection system, which is then pushed to the electricity consumption information collection system.
2. The method for monitoring and rectifying abnormal household relationship as described in claim 1, characterized in that: The process also includes the following steps. If the fifth step still fails to resolve the issue, it indicates that the file relationships between the user's marketing business application system and the electricity information collection system are incorrect. In this case, the user's electricity meter needs to be verified on-site. Based on the actual connection situation on-site, the transformer-transformer area-meter box-user electricity meter file relationships need to be maintained in the equipment operation and maintenance lean management system, marketing business application system, and electricity information collection system.
3. The method for monitoring and rectifying abnormal household relationship as described in claim 1, characterized in that: In the second step, users whose area codes in the marketing business application system and the electricity information collection system do not match for four consecutive days are filtered out.
4. The method for monitoring and rectifying abnormal household relationship as described in claim 1, characterized in that: If the debugging is successful in the fourth step, then the user's account relationship file in the marketing business application system is correct.
5. An apparatus for monitoring and rectifying abnormal household relationship changes, used in the method for monitoring and rectifying abnormal household relationship changes as described in claim 1, characterized in that: It includes a monitoring and rectification module, which is a program module used to monitor and compare the area code of the user's marketing business application system and the area code of the user's electricity consumption information collection system. Filter users whose area codes in the marketing business application system and the electricity information collection system are inconsistent; Users whose transformer area codes do not match in the two systems are called up online in the electricity information collection system. If the call is successful, the reason for the inconsistency is that the user's transformer-meter relationship file in the marketing business application system is incorrect. It is necessary to maintain the transformer-meter box topology connection relationship in the equipment operation and maintenance lean management system, or maintain the transformer-transformer area correspondence relationship in the marketing business application system, or maintain the user meter-meter box relationship in the marketing business application system. If the call fails, the user's data collection system will have an incorrect user relationship file, and the user's marketing business application system data relationship will be pushed to the electricity information collection system.
6. The device for monitoring and rectifying abnormal household relationships according to claim 5, characterized in that: The monitoring and rectification module is also used to ensure that the user's account relationship file in the marketing business application system is correct if the debugging is successful.
7. The device for monitoring and rectifying abnormal household relationships according to claim 6, characterized in that: The monitoring and rectification module is also used to verify the user's electricity meter on-site if debugging still fails, meaning that the file relationship between the user's marketing business application system and the electricity information collection system is incorrect. Based on the actual on-site connection, the module maintains the transformer-transformer area-meter box-user electricity meter file relationship in the equipment operation and maintenance lean management system, marketing business application system, and electricity information collection system.
8. The device for monitoring and rectifying abnormal household relationships according to claim 5, characterized in that: The monitoring and rectification module is also used to screen users whose area codes in the marketing business application system and the electricity information collection system are inconsistent for four consecutive days.
9. A device for monitoring and rectifying abnormal household relationship, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that: When the processor executes the computer program, it implements the corresponding steps of any one of claims 1 to 3.
10. A computer-readable storage medium storing a computer program, characterized in that: When the computer program is executed by the processor, it implements the corresponding steps of any one of claims 1 to 3.