Power distribution network communication data interaction monitoring system

By designing a multi-level distribution network communication data interaction monitoring system, combined with real-time data verification of power workers, the problems of power stealing and leakage monitoring between points are solved, and effective monitoring of large areas, small areas and single buildings are achieved, and management efficiency is improved.

CN120342057APending Publication Date: 2025-07-18HANGZHOU ELECTRIC EQUIP MFG +2
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Patent Information

Application Number
CN202510254275.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2025-07-18

AI Technical Summary

Technical Problem

The existing distribution network communication data interaction system cannot effectively monitor the stealing and leakage between points, resulting in the inability to accurately monitor the damage and stealing of transmission cables.

Method used

A distribution network communication data interactive monitoring system is designed, including a total control module, a single-household power monitoring module, a single-house power monitoring module, a regional division monitoring module and an actual verification module. Through multi-level data summary and verification, combined with real-time data verification by power workers, power stealing and leakage monitoring of large areas, small areas and single buildings is realized.

Benefits of technology

It realizes effective monitoring of electricity stealing and leakage in large areas, small areas and single buildings, facilitates follow-up processing, and improves the accuracy and efficiency of distribution network management.

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Abstract

The invention relates to the field of power distribution network monitoring, in particular to a power distribution network communication data interaction monitoring system which comprises a master control module, a single-family electric quantity monitoring module, a single-building electric quantity monitoring module, a region division monitoring module and an actual verification module. The general control module comprises a general control console module, a data summarizing, receiving and transmitting module, a data verification module and a display module. During use, the total power consumption data is collected, and the data of the equipment is verified through the daily activities of power workers; subtracting the single-building recorded electricity consumption and the public electricity consumption data from the total electricity consumption of the large area, subtracting the single-building recorded electricity consumption and the public electricity consumption from the total electricity consumption of the small area when mistakes and omissions exist, and checking whether mistakes and omissions exist or not according to the actual electricity consumption and the recorded electricity consumption data of the single building when mistakes and omissions exist; therefore, electricity stealing and electricity leakage of a large area, a small area and a single building can be monitored, and subsequent processing is facilitated.
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Description

Technical Field

[0001] The present invention relates to the field of distribution network monitoring, and specifically refers to a distribution network communication data interaction monitoring system. Background Art

[0002] The distribution network communication data interaction monitoring system is a comprehensive system that includes multiple subsystems. These subsystems interact through data to jointly achieve the monitoring and management of the distribution network.

[0003] When monitoring the communication data of the distribution network, power theft often occurs on the transmission cables between points, or leakage occurs due to damage in some areas. However, the distribution network can only monitor points and cannot accurately monitor between points, thus unable to meet the usage requirements. Therefore, it is necessary to propose a distribution network communication data interaction monitoring system. Summary of the Invention

[0004] Aiming at the problems in the prior art, the present invention provides a distribution network communication data interaction monitoring system that can well monitor power theft and leakage in large areas, small areas, and single buildings, facilitating subsequent processing.

[0005] The technical solution adopted by the present invention to solve its technical problems is: a distribution network communication data interaction monitoring system, including a total control module, a single household power consumption monitoring module, a single building power consumption monitoring module, a regional division monitoring module, and an actual verification module.

[0006] The total control module includes a total control console module, a data aggregation and transceiver module, a data verification module, and a display module. The total control console module is a total control computer for aggregating data, processing data, and storing data. The data aggregation and transceiver module is a module for receiving and sending data and connecting with other modules. The data verification module is used to sort the received data and verify and compare it with the corresponding data to detect problems. The display module is used to display the control screen of the total control console.

[0007] The single household power consumption monitoring module includes an individual household power consumption monitoring module and a primary information sending module. The individual household power consumption monitoring module records the power consumption of individual households, and the information sending module sends the power consumption information of individual households.

[0008] The single building power consumption monitoring module includes a single building power consumption monitoring module and a secondary information transceiver module. The single building power consumption monitoring module monitors the total power consumption in a single building and the total power consumption of electrical equipment in a single building that is not for individual households. The secondary information transceiver module receives and sends the data statistically calculated by the single building power consumption monitoring module.

[0009] The area division monitoring module includes a small area division module, a large area division module, an area monitoring module, and a three-level information receiving and sending module. The small area division module takes two adjacent single building power monitoring modules as a small area unit. The large area division module combines several single building power monitoring modules into a region. The area monitoring module monitors the total power consumption of the region and the total power consumption of outdoor public electrical equipment outside single buildings. The three-level information receiving and sending module receives and sends the data statistically calculated by the area power monitoring module.

[0010] The actual verification module includes an actual data verification module and a data sending module. The actual data verification module directly receives the data of the power monitoring equipment through the equipment carried by power staff. The data sending module sends the received data to the data summary receiving and sending module.

[0011] Specifically, the data used for verification by the data verification module is the real-time data sent by the data sending module.

[0012] Specifically, the power consumption information data sent by the first-level information sending module will be sent into the second-level information receiving and sending module, and after being summarized in the second-level information receiving and sending module, it will be transmitted into the data summary receiving and sending module.

[0013] Specifically, the data in the second-level information receiving and sending module will be transmitted into the third-level information receiving and sending module, and after being summarized in the third-level information receiving and sending module, it will be transmitted into the data summary receiving and sending module.

[0014] Specifically, the data that needs to be sent after being statistically calculated by the single building power monitoring module includes the power consumption of individual businesses, public power consumption data, and the total power consumption of a single building.

[0015] Specifically, the data that needs to be sent after being statistically calculated by the area monitoring module includes the total power consumption of a single building, public power consumption data, and the total power consumption of the region.

[0016] Specifically, the adjacent single building power monitoring modules, public power consumption equipment, and the lines between single buildings together form the small area division module.

[0017] Specifically, the area monitoring module in the large area division module uses the three-level information receiving and sending module, and the area monitoring module in the small area division module uses the second-level information receiving and sending module.

[0018] Advantages of the present invention: For a power distribution network communication data interaction monitoring system according to the present invention, first, the total electricity consumption data is collected, and the data of the equipment is verified through the daily activities of power workers. Then, by subtracting the electricity consumption recorded for each single building and the public electricity consumption from the total electricity consumption in a large area, in case of errors or omissions, by subtracting the electricity consumption recorded for each single building and the public electricity consumption from the total electricity consumption in a small area, and in case of errors or omissions, by checking the actual electricity consumption and the recorded electricity consumption data of each single building to monitor electricity theft and leakage in large areas, small areas, and single buildings, facilitating subsequent processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The present invention will be further described below in conjunction with the drawings and embodiments.

[0020] Figure 1 It is a flowchart of a power distribution network communication data interaction monitoring system provided by the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0021] In order to make the technical means, creative features, achieved purposes, and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments.

[0022] As Figure 1 shown, a power distribution network communication data interaction monitoring system according to the present invention includes a master control module, a single-household power consumption monitoring module, a single-building power consumption monitoring module, a regional division monitoring module, and an actual verification module.

[0023] The master control module includes a master console module, a data aggregation and transceiver module, a data verification module, and a display module. The master console module is a master control computer for aggregating data, processing data, and storing data. The data aggregation and transceiver module is a module for receiving and sending data and connecting with other modules. The data verification module is for sorting out the received data and verifying and comparing it with the corresponding data to detect problems. The display module is for displaying the control screen of the master console.

[0024] The single-household power consumption monitoring module includes an individual household power consumption monitoring module and a primary information sending module. The individual household power consumption monitoring module records the power consumption of individual households, and the information sending module sends the information on the power consumption of individual households.

[0025] The single-building power consumption monitoring module includes a single-building power consumption monitoring module and a secondary information transceiver module. The single-building power consumption monitoring module monitors the total power consumption in a single building and the total power consumption of electrical equipment in a single building that is not for individual households. The secondary information transceiver module receives and sends the data statistically calculated by the single-building power consumption monitoring module.

[0026] The area division monitoring module includes a small area division module, a large area division module, an area monitoring module, and a three-level information receiving and sending module. The small area division module takes two adjacent single building power monitoring modules as a small area unit. The large area division module combines several single building power monitoring modules into a region. The area monitoring module monitors the total power consumption of the region and the total power consumption of outdoor public electrical equipment outside single buildings. The three-level information receiving and sending module receives and sends the data statistically analyzed by the area power monitoring module.

[0027] The actual verification module includes an actual data verification module and a data sending module. The actual data verification module directly receives the data of the power monitoring equipment through the equipment carried by power workers. The data sending module sends the received data to the data summary receiving and sending module.

[0028] Among them, the data used for verification by the data verification module is the real-time data sent by the data sending module.

[0029] Among them, the power consumption information data sent by the first-level information sending module will be sent into the second-level information receiving and sending module, and after being summarized in the second-level information receiving and sending module, it will be transmitted into the data summary receiving and sending module.

[0030] Among them, the data in the second-level information receiving and sending module will be transmitted into the third-level information receiving and sending module, and after being summarized in the third-level information receiving and sending module, it will be transmitted into the data summary receiving and sending module.

[0031] Among them, the data that needs to be sent after being statistically analyzed by the single building power monitoring module includes the power consumption of individual businesses, public power consumption data, and the total power consumption of a single building.

[0032] Among them, the data that needs to be sent after being statistically analyzed by the area monitoring module includes the total power consumption of single buildings, public power consumption data, and the total power consumption of the area.

[0033] Among them, adjacent single building power monitoring modules, public power consumption equipment, and the lines between single buildings together form the small area division module.

[0034] Among them, the area monitoring module in the large area division module uses the three-level information receiving and sending module, and the area monitoring module in the small area division module uses the second-level information receiving and sending module.

[0035] In use, the individual household power consumption monitoring module transmits the power consumption data of individual households to the single building power consumption monitoring module through the primary information transmission module. The single building power consumption monitoring module collects the total power consumption data of the public electrical equipment of non-individual households in the single building, and at the same time collects the total power consumption data of the single building. After subtracting the total power consumption data of the public electrical equipment of non-individual households in the single building and the power consumption data of individual households from the total power consumption data of the single building, it can be judged whether there is power theft or leakage according to whether there is an anomaly. Then, the actual power consumption data of two adjacent single buildings and the external public power consumption between the two single buildings are set as a small area. Then, the actual power consumption data of the small area is subtracted from the recorded power consumption data, and it can be judged whether there is power theft or leakage according to whether there is an anomaly. Each single building will form two small areas with two adjacent single buildings, so that each single building will be compared twice, making it more convenient for monitoring and querying. The power consumption data of the single building and the power consumption data of the small area will be transmitted to the area monitoring module of the large area and the total control module respectively. Then, the actual power consumption data of the large area is subtracted from the recorded power consumption data, and it can be judged whether there is power theft or leakage according to whether there is an anomaly. When power theft or leakage is found, the area monitoring module of the large area, the area monitoring module of the small area, and the single building power consumption monitoring module can be queried in sequence to confirm the location of the problem and facilitate subsequent processing

[0036] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of protection required by the present invention. The scope of protection required by the present invention is defined by the appended claims and their equivalents.

Claims

1. A communication data interaction monitoring system for a distribution network, comprising a master control module, a single-household power consumption monitoring module, a single-building power consumption monitoring module, a regional division monitoring module, and an actual verification module, characterized in that the master control module includes a master console module, a data aggregation receiving and transmitting module, a data verification module, and a display module. The master console module is a master control computer for aggregating data, processing data, and storing data. The data aggregation receiving and transmitting module is a module for receiving and transmitting data and connecting to other modules. The data verification module sorts the received data and verifies and compares it with the corresponding data to detect problems. The display module is used to display the control screen of the master console; the single-household power consumption monitoring module includes an individual household power consumption monitoring module and a primary information sending module. The individual household power consumption monitoring module records the power consumption of individual households, and the information sending module sends the power consumption information of individual households; the single-building power consumption monitoring module includes a single-building power consumption monitoring module and a secondary information receiving and transmitting module. The single-building power consumption monitoring module monitors the total power consumption in a single building and the total power consumption of electrical equipment in a single building that is not for individual households. The secondary information receiving and transmitting module receives and transmits the data statistically obtained by the single-building power consumption monitoring module; the regional division monitoring module includes a small regional division module, a large regional division module, a regional monitoring module, and a tertiary information receiving and transmitting module. The small regional division module takes two adjacent single-building power consumption monitoring modules as a small regional unit. The large regional division module combines several single-building power consumption monitoring modules into a region. The regional monitoring module monitors the total power consumption of the region and the total power consumption of outdoor public electrical equipment outside the single building. The tertiary information receiving and transmitting module receives and transmits the data statistically obtained by the regional power consumption monitoring module; the actual verification module includes an actual data verification module and a data sending module. The actual data verification module directly receives the data of the power consumption monitoring device through the device carried by the power staff. The data sending module sends the received data to the data aggregation receiving and transmitting module.

2. The communication data interaction monitoring system for a distribution network according to claim 1, wherein: The data used for verification by the data verification module is the real-time data sent by the data sending module.

3. A communication data interaction monitoring system for a distribution network according to claim 1, characterized in that: The power consumption information data sent by the primary information sending module is sent into the secondary information receiving and transmitting module, and after being aggregated in the secondary information receiving and transmitting module, it is transmitted into the data aggregation receiving and transmitting module.

4. A communication data interaction monitoring system for a distribution network according to claim 1, characterized in that: The data in the secondary information receiving and transmitting module is transmitted into the tertiary information receiving and transmitting module, and after being aggregated in the tertiary information receiving and transmitting module, it is transmitted into the data aggregation receiving and transmitting module.

5. A communication data interaction monitoring system for a distribution network according to claim 1, characterized in that: The data that needs to be sent after the single-building power consumption monitoring module makes statistics includes individual household power consumption, public power consumption data, and the total power consumption of the single building.

6. The communication data interaction monitoring system for a distribution network according to claim 1, characterized in that: The data that needs to be sent after the regional monitoring module makes statistics includes the total power consumption of the single building, public power consumption data, and the total power consumption of the region.

7. A communication data interaction monitoring system for a distribution network according to claim 1, characterized in that: The adjacent single building power consumption monitoring modules, public power-consuming equipment, and the lines between single buildings together form a small area division module.

8. A communication data interaction monitoring system for a distribution network according to claim 1, characterized in that: The area monitoring module in the large area division module uses a three-level information sending and receiving module, and the area monitoring module in the small area division module uses a two-level information sending and receiving module.