Ammeter energy consumption monitoring system based on big data

By using a big data-based electricity meter energy consumption monitoring system, the system dynamically adjusts the electricity consumption threshold and combines it with electricity bill comparison, thus solving the problem of false alarms in the electricity meter energy consumption monitoring system. This enables accurate monitoring of electricity bills and electricity consumption, ensuring the normal operation of the electricity meter equipment and the safety of users' electricity use.

CN223727979UActive Publication Date: 2025-12-26LOGISTICAL ENGINEERING UNIVERSITY OF PLA
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Patent Information

Application Number
CN202422885800.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-12-26
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

In existing electricity meter energy consumption monitoring systems, the thresholds are fixed and rely on manual experience to set, resulting in frequent false alarms and an inability to accurately monitor electricity consumption.

Method used

The system employs a big data-based electricity meter energy consumption monitoring system. It dynamically adjusts the electricity consumption threshold through a meteorological acquisition module and compares it with the electricity bill calculation results. Combined with a self-diagnosis module and a communication module, it provides real-time monitoring and alarms, reducing false alarms and improving monitoring accuracy.

Benefits of technology

It enables accurate monitoring of electricity consumption and electricity costs, reduces false alarms, ensures the normal operation of electricity meter equipment and the safety of users' electricity use, and improves the accuracy and efficiency of electricity management.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an electric meter energy consumption monitoring system based on big data, which belongs to the technical field of electric meter energy consumption monitoring and comprises an electric meter energy consumption monitoring system, a communication module, a terminal server, a weather acquisition module, an electric charge acquisition module, a dynamic adjustment module, an electric charge comparison module and an alarm module. And the alarm module is in wireless communication connection with the user equipment and the maintenance management office. Through the above mode, the electricity meter energy consumption monitoring system acquires weather information through the weather acquisition module and dynamically adjusts the threshold value of electricity consumption, so that the monitoring and early warning result is more accurate and more referential, and the electricity charge information calculated in the electricity meter energy consumption monitoring system can be verified through the electricity charge acquisition module. And normal operation of equipment in the ammeter energy consumption monitoring system is ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of electric meter energy consumption monitoring, specifically relates to an electric meter energy consumption monitoring system based on big data. BACKGROUND

[0002] The accuracy of the electric meter is directly related to the user's electricity cost and the power grid operation safety. Through the detection of the electric meter, the electric meter abnormalities can be found and eliminated in time, the power accidents caused by the electric meter problems are prevented, the user's electricity safety is ensured, the electric meter monitoring can help the user to understand the electricity use in real time, the electricity consumption problems are found and solved, so as to achieve the purpose of energy saving.

[0003] For example, Chinese patent CN213181765U discloses an intelligent electric meter energy consumption monitoring device, which comprises a monitoring device body, a support assembly fixedly installed on the bottom outer wall of the monitoring device body, a display screen fixedly installed on the top outer wall of one side of the monitoring device body, an alarm fixedly installed on the top outer wall of one side of the monitoring device body, a meter reading concentrator module, a central processing module and a storage module fixedly installed in the monitoring device body, the meter reading concentrator module and the central processing module are electrically connected, the central processing module is electrically connected with the display screen, the alarm and the storage module respectively, a keyboard placing groove is formed in the top outer wall of one side of the monitoring device body, the support assembly comprises a support plate, a fixed shell is welded on the top outer wall of the support plate, an inner spring and a limiting plate are arranged in the fixed shell, the limiting plate is located above the inner spring, a movable shaft is welded on the top outer wall of the limiting plate, and the movable shaft penetrates through the fixed shell, and a connecting plate is welded on the top end of the movable shaft.

[0004] However, the alarm module of the above-mentioned technology compares the collected energy consumption data with the threshold value set in the system during work, and the threshold value is mostly set by the management personnel through experience, and the threshold value is fixed, so there are often many false alarms.

[0005] Therefore, the utility model designs an electric meter energy consumption monitoring system based on big data to solve the above-mentioned problems. UTILITY MODEL CONTENTS

[0006] In view of the above-mentioned shortcomings existing in the prior art, the utility model provides an electric meter energy consumption monitoring system based on big data.

[0007] To achieve the above purpose, the utility model realizes the following technical scheme:

[0008] An electric meter energy consumption monitoring system based on big data, comprising an electric meter energy consumption monitoring system, the electric meter energy consumption monitoring system is connected with at least one electric meter and collects the data information of the electric meter operation;

[0009] The electric meter energy consumption monitoring system is connected with a communication module for information transmission, the communication module is in wireless communication connection with a terminal server, the terminal server is connected with a weather acquisition module for statistical weather information and an electricity cost acquisition module for calculating electricity information;

[0010] The weather acquisition module is connected with a dynamic adjustment module for adjusting the electricity alarm threshold according to the weather condition, and the dynamic adjustment module is in communication connection with the terminal server;

[0011] The terminal server and the electricity cost acquisition module are both connected with an electricity cost comparison module for electricity comparison, the electricity cost comparison module is in communication connection with an alarm module, the alarm module is in communication connection with the terminal server, and the alarm module is in wireless communication connection with user equipment and a maintenance management department.

[0012] Furthermore, the electric meter energy consumption monitoring system comprises a data acquisition module, a central processing module, a self-diagnosis module and an electricity cost calculation module, the data acquisition module is installed on the electric meter and used for collecting electric meter operation information, the data acquisition module is connected with the central processing module, the central processing module is in bidirectional communication connection with the self-diagnosis module, and the central processing module is in communication connection with the electricity cost calculation module.

[0013] Furthermore, the central processing module is electrically connected with the communication module.

[0014] Furthermore, the electricity cost calculation module is electrically connected with the communication module.

[0015] Furthermore, the electric meter energy consumption monitoring system comprises a temperature sensor, a current sensor and a voltage sensor, and the temperature sensor, the current sensor and the voltage sensor are all electrically connected with the central processing module.

[0016] Furthermore, the electricity cost calculation module is an electricity cost calculator.

[0017] Furthermore, the weather acquisition module is a weather data website.

[0018] Furthermore, the electricity cost acquisition module is a power company website.

[0019] Compared with the prior art, the electric meter energy consumption monitoring system is used for collecting electric meter information, calculating electricity consumption and electricity cost, and uploading the same to the terminal server through the communication module in use;

[0020] The terminal server compares the electricity cost calculation result in the electric meter energy consumption monitoring system with the electricity cost generated in the same time period in the electricity cost acquisition module and inputs the same into the electricity cost comparison module;

[0021] If the difference is more than 10%, the electricity cost comparison module alarms the alarm module, the alarm module immediately uploads the data information to the maintenance management department, and then the maintenance management department sends maintenance personnel to the site to troubleshoot the fault reason;

[0022] If the difference is within 10%, it means that the system monitoring is normal;

[0023] The dynamic adjustment module collects weather information in the weather acquisition module and dynamically adjusts the electricity consumption threshold according to the weather information, and the terminal server receives the adjusted electricity consumption threshold and compares it with the electricity consumption collected by the electric energy consumption monitoring system. If the electricity consumption threshold is less than the electricity consumption collected by the electric energy consumption monitoring system, the terminal server alarms the alarm module, and the alarm module uploads the information to the user equipment, reminding the user to pay attention to electricity consumption.

[0024] The utility model discloses a threshold of electricity consumption is dynamically adjusted through the weather acquisition module and gathers weather information, and the monitoring and early warning result is more accurate, more has the reference nature, can also verify the electricity cost information calculated in the electric energy consumption monitoring system through the electricity cost acquisition module, guarantees the normal operation of the equipment in the electric energy consumption monitoring system. BRIEF DESCRIPTION OF DRAWINGS

[0025] In order to more clearly illustrate the technical scheme in the embodiment of the utility model or prior art, below will to the embodiment or prior art description needed to use the drawing make a simple introduction. Obviously, the drawing in the following description only some embodiments of the utility model, for those skilled in the art, under the premise of not paying the creative labor, can also obtain other drawings according to these drawings.

[0026] Figure 1 It is a schematic frame of the electric energy consumption monitoring system based on big data of the utility model Figure One ;

[0027] Figure 2 It is a schematic frame of the electric energy consumption monitoring system based on big data of the utility model Figure Two .

[0028] The numbers in the drawing respectively represent:

[0029] 1, electric energy consumption monitoring system;2, communication module;3, terminal server;4, weather acquisition module;5, dynamic adjustment module;6, electricity cost acquisition module;7, electricity cost comparison module;8, alarm module;9, maintenance management department;10, user equipment;11, data acquisition module;111, temperature sensor;112, current sensor;113, voltage sensor;12, central processing module;13, self-diagnosis module;14, electricity cost calculation module. DETAILED DESCRIPTION

[0030] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be clearly and completely described below in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0031] Embodiment one: in some embodiments, referring to the drawings of the specification Figures 1-2 A power meter energy consumption monitoring system based on big data, comprising a power meter energy consumption monitoring system 1, the power meter energy consumption monitoring system 1 is connected with at least one power meter and collects the data information of power meter operation;

[0032] The power meter energy consumption monitoring system 1 is connected with a communication module 2 for information transmission, the communication module 2 is connected with a terminal server 3 wireless communication, the terminal server 3 is connected with a weather acquisition module 4 for statistical weather information and an electricity cost acquisition module 6 for calculating electricity information;

[0033] The weather acquisition module 4 is connected with a dynamic adjustment module 5 for adjusting electricity alarm threshold according to weather conditions, and the dynamic adjustment module 5 is connected with the terminal server 3 in communication;

[0034] The terminal server 3 and the electricity cost acquisition module 6 are connected with an electricity cost comparison module 7 for electricity comparison, the electricity cost comparison module 7 is connected with an alarm module 8 in communication, the alarm module 8 is connected with the terminal server 3 in communication, and the alarm module 8 is connected with a user equipment 10 and a maintenance management department 9 in wireless communication.

[0035] When the utility model is used, the power meter energy consumption monitoring system 1 is used to collect power meter information, calculate electricity consumption and electricity cost, and then upload them to the terminal server 3 through the communication module 2;

[0036] The terminal server 3 compares the electricity cost calculation result in the power meter energy consumption monitoring system 1 with the electricity cost generated in the same time period in the electricity cost acquisition module 6 and inputs the electricity cost comparison module 7;

[0037] If the difference is more than 10%, the electricity cost comparison module 7 alarms the alarm module 8, the alarm module 8 immediately uploads the data information to the maintenance management department 9, then the maintenance management department 9 sends maintenance personnel to the scene to investigate the fault reason;

[0038] If the difference is within 10%, it indicates that the system monitoring is normal.

[0039] The dynamic adjustment module 5 collects the weather information in the weather acquisition module 4 and dynamically adjusts the electricity consumption threshold according to the weather information, the terminal server 3 receives the adjusted electricity consumption threshold and compares it with the electricity consumption collected by the electric meter energy consumption monitoring system 1, if the electricity consumption threshold is less than the electricity consumption collected by the electric meter energy consumption monitoring system 1, the terminal server 3 alarms the alarm module 8, and the alarm module 8 uploads the information to the user equipment 10, reminding the user to pay attention to electricity consumption.

[0040] The utility model discloses a threshold of electricity consumption is dynamically adjusted through the weather acquisition module 4, the monitoring early warning result is more accurate, more has the reference nature, can also be verified to the electricity charge information calculated in the electric meter energy consumption monitoring system 1 through the electricity charge acquisition module 6, guarantee the normal operation of the equipment in the electric meter energy consumption monitoring system 1.

[0041] Embodiment two: in some embodiments, as shown in Figures 1-2 The electric meter energy consumption monitoring system 1 includes a data acquisition module 11, a central processing module 12, a self-diagnosis module 13 and an electricity charge calculation module 14, the data acquisition module 11 is installed on the electric meter, and is used for collecting electric meter operation information, the data acquisition module 11 is connected with the central processing module 12, the central processing module 12 is connected with the self-diagnosis module 13 in two-way communication, and the central processing module 12 is connected with the electricity charge calculation module 14 in communication.

[0042] The central processing module 12 is electrically connected with the communication module 2.

[0043] The electricity charge calculation module 14 is electrically connected with the communication module 2.

[0044] The electric meter energy consumption monitoring system 1 includes a temperature sensor 111, a current sensor 112 and a voltage sensor 113, and the temperature sensor 111, the current sensor 112 and the voltage sensor 113 are electrically connected with the central processing module 12.

[0045] The electricity charge calculation module 14 is an electricity charge calculator.

[0046] The weather acquisition module 4 is a weather data website.

[0047] The dynamic adjustment module 5 uses the weather and electricity correlation prediction method and device based on deep learning improved in CN110991700A to dynamically adjust the electricity consumption according to the weather.

[0048] The utility model realizes the collection of weather information through the weather acquisition module 4 and the dynamic adjustment module 5, and dynamically adjusts the electricity consumption threshold according to weather big data and electricity consumption big data.

[0049] The electricity cost obtaining module 6 is a power company website.

[0050] The temperature sensor 111, the current sensor 112 and the voltage sensor 113 collect the temperature, current and voltage of the electric meter, and then upload the data information of the temperature, current and voltage to the central processing module 12, the central processing module 12 receives the data information of the temperature, current and voltage and uploads the data information to the self-diagnosis module 13, the self-diagnosis module 13 compares the data information with the previously collected values to determine whether the electric meter is working normally;

[0051] When the self-diagnosis module 13 determines that any data in the temperature sensor 111, the current sensor 112 and the voltage sensor 113 is abnormal, the abnormal result is uploaded to the central processing module 12, the central processing module 12 uploads to the terminal server 3 through the communication module 2, the terminal server 3 alarms the alarm module 8, and the alarm module 8 sends the maintenance information of the corresponding equipment to the maintenance management department 9;

[0052] When the self-diagnosis module 13 determines that the data of the temperature sensor 111, the current sensor 112 and the voltage sensor 113 are all normal, the central processing module 12 calculates the power consumption information;

[0053] The calculation formula of the power consumption is W=U It;

[0054] Wherein, U is the voltage, I is the current, and t is the use time, and the unit of the power consumption is KW\h.

[0055] And the central processing module 12 uploads the data information of the power consumption to the electricity cost calculation module 14 to calculate the electricity cost; then the electricity cost calculation module 14 uploads the calculated electricity cost to the communication module 2, the communication module 2 uploads to the terminal server 3, the terminal server 3 and the electricity cost obtaining module 6 upload the electricity cost of the same time period to the electricity cost comparison module 7, the electricity cost comparison module 7 compares them, if the difference between the two is 10% or less, it means that the system monitoring is normal;

[0056] If the difference between the two is more than 10%, it means that the electric system monitoring has a problem, then the electricity cost comparison module 7 will send an alarm information to the alarm module 8, the alarm module 8 will send the maintenance information to the maintenance management department 9; then the maintenance management department 9 sends maintenance personnel to the scene to investigate the fault reason.

[0057] The above examples are only used to illustrate the technical solutions of the present application, and are not intended to limit them; although the present application has been described in detail with reference to the foregoing examples, those skilled in the art should understand that the technical solutions recorded in the foregoing examples can still be modified, or some technical features therein can be replaced by equivalents; and these modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A big data based energy consumption monitoring system for electricity meter, characterized in that, The utility model provides an electric energy consumption monitoring system (1) is connected with at least one electric meter and gathers electric meter operation data information; The electric energy consumption monitoring system (1) is connected with a communication module (2) for information transmission, the communication module (2) is in wireless communication connection with a terminal server (3), the terminal server (3) is connected with a weather acquisition module (4) for statistical weather information and an electricity cost acquisition module (6) for calculating electricity information; The weather acquisition module (4) is connected with a dynamic adjustment module (5) for adjusting electricity alarm threshold according to weather condition, and the dynamic adjustment module (5) is in communication connection with the terminal server (3); The terminal server (3) and the electricity cost acquisition module (6) are both connected with an electricity cost comparison module (7) for electricity comparison, the electricity cost comparison module (7) is in communication connection with an alarm module (8), the alarm module (8) is in communication connection with the terminal server (3), and the alarm module (8) is in wireless communication connection with user equipment (10) and maintenance management (9).

2. The big data based electricity meter energy consumption monitoring system as claimed in claim 1, wherein, The electric energy consumption monitoring system (1) comprises a data acquisition module (11), a central processing module (12), a self-diagnosis module (13) and an electricity cost calculation module (14), the data acquisition module (11) is installed on the electric meter and is used for collecting electric meter operation information, the data acquisition module (11) is connected with the central processing module (12), the central processing module (12) is in bidirectional communication connection with the self-diagnosis module (13), and the central processing module (12) is in communication connection with the electricity cost calculation module (14).

3. The big data based electricity meter energy consumption monitoring system as claimed in claim 2, wherein, The central processing module (12) is electrically connected with the communication module (2).

4. The big data based electricity meter energy consumption monitoring system as claimed in claim 3, wherein, The electricity cost calculation module (14) is electrically connected with the communication module (2).

5. The big data based electricity meter energy consumption monitoring system as claimed in claim 4, wherein, The electric energy consumption monitoring system (1) comprises a temperature sensor (111), a current sensor (112) and a voltage sensor (113), and the temperature sensor (111), the current sensor (112) and the voltage sensor (113) are all electrically connected with the central processing module (12).

6. The big data based electricity meter energy consumption monitoring system as claimed in claim 5, wherein, The electricity cost calculation module (14) is an electricity cost calculator.

7. The big data based electricity meter energy consumption monitoring system as claimed in claim 6, wherein, The weather acquisition module (4) is a weather data website.

8. The big data based electricity meter energy consumption monitoring system as claimed in claim 7, wherein, The electricity cost acquisition module (6) is a power company website.

Citation Information

Patent Citations

  • Improved weather and power utilization correlation prediction method and device based on deep learning

    CN110991700A

  • Intelligent electric meter energy consumption monitoring device

    CN213181765U