An online monitoring system and method for an intelligent gateway power metering device
Through the online monitoring system of the intelligent gate power metering device, intelligent analysis and push technology are used to monitor and analyze electrical energy data in real time, solving the problem of novice operators identifying and solving problems, and avoiding the expansion of faults through partition modules, improving the safety and efficiency of maintenance.
Patent Information
- Application Number
- CN202411684185.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2044-11-22
AI Technical Summary
The existing online monitoring system of the gate power metering device cannot quickly help novice operators identify and solve problems, and cannot intervene before the failure occurs, which can easily expand the fault area, resulting in high maintenance costs and interruption of equipment use.
An intelligent online monitoring system for the electrical energy metering device of the gate is designed, using intelligent analysis and push technology to enable operators to quickly find and deal with problems. The system includes a monitoring module, an analysis module, a communication module and a data storage module. It can monitor electrical energy data in real time, analyze abnormal situations, and transmit emergency signals to the partition module through the communication module to realize circuit partitioning and avoid short circuits or other abnormal situations caused by power output.
Through intelligent monitoring and partition module settings, the operator's operability and safety during maintenance are improved, the possibility of failure expansion is reduced, the maintenance cost is reduced, and the ability to quickly identify and solve problems is achieved, which is suitable for novices to get started quickly.
Smart Images

Figure CN119199711B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of gateway electric energy monitoring, and particularly to an online monitoring system and method for an intelligent gateway electric energy metering device. Background Technique
[0002] The statements in this part merely provide background technical information related to the present invention and do not necessarily constitute prior art.
[0003] Gateway metering generally refers to the metering point for electricity energy trade settlement between power generation enterprises, power grid operating enterprises and electricity-consuming enterprises. The electric meter used for gateway electric energy metering is called a gateway electric meter, also known as a master meter, which is usually set at the inlet and outlet of the power system, the connection point between power grids, and the outlet of power plants and substations. Gateway electric energy metering is an important technology and basic management in the power grid energy field, the vanguard for the formal operation of the extra-high voltage power grid, and also the technical basis for the operation of power grid livelihood construction projects.
[0004] Due to many unstable factors in current transmission, the gateway electric energy metering device usually works in cooperation with a monitoring device. Existing online monitoring devices generally monitor the current, voltage, signal pulses, etc. of the transmitted current and directly send the monitored data to the computer controlled by the backstage operator for the operator to view. The operator then judges the actual situation based on the change of the current signal and repairs the front-end equipment according to the judged situation. Such a method is very convenient for old employees who often deal with it, but for new employees, when facing problems, they need to check the corresponding SOP documents or ask old employees, and they cannot quickly find and solve the problems.
[0005] In addition, the existing gateway electric energy metering device cannot intervene before a fault occurs, which is extremely likely to expand the fault area, and the maintenance cost after the fault is high, delaying the normal use of the equipment. Summary of the Invention
[0006] In order to solve the technical problems existing in the above background technique, the present invention provides an online monitoring system and method for an intelligent gateway electric energy metering device. The present invention uses intelligent analysis and push to enable the operator to quickly find and view the corresponding processing methods.
[0007] To achieve the above object, the present invention adopts the following technical solutions:
[0008] The first aspect of the present invention provides an online monitoring system for an intelligent gateway electric energy metering device.
[0009] An intelligent on-line monitoring system for gateway electric energy metering devices, including a housing, wherein an electronic mechanism and a partition module are arranged inside the housing, the electronic mechanism and the partition module are electrically connected, and the electronic mechanism is used for on-line monitoring of input electric energy;
[0010] The partition module includes a top cover, a signal receiving unit is arranged inside the top cover, an electric push rod is connected to the rear end of the signal receiving unit, and an insulating partition blade is connected to the rear end of the electric push rod; an insulating housing is arranged inside the partition module, insulating partitions are arranged at the top and bottom of the insulating housing, a circuit hole is arranged inside the insulating partition, and a circuit connecting pipe body for fixing a circuit is arranged inside the insulating housing; the insulating partition blade is located at the top of the circuit fixed by the circuit connecting pipe body.
[0011] Further, the electronic mechanism includes a mounting component, an electric energy meter and a monitoring device, the electric energy meter is mounted inside the housing through the mounting component, and the monitoring device is used for monitoring input electric energy; the monitoring device includes: a monitoring module for monitoring voltage, current and pulse of input electric energy; an analysis module for analyzing and processing the data signals output by the monitoring module; a communication module for remote communication; a data storage module for storing data; and a main processing chip for processing data.
[0012] Further, the monitoring module includes: a voltage monitoring unit for monitoring voltage data of input electric energy; a current monitoring unit for monitoring current data of input electric energy; and a current pulse collection unit for monitoring current pulse data of input electric energy.
[0013] Further, the analysis module includes: a data analysis unit for analyzing the monitored data; a signal processing unit for processing the monitored data; and the monitoring module is electrically connected to the analysis module.
[0014] Further, the communication module includes: a signal receiving unit, a signal transmitting unit, a wired connection unit and a wireless connection unit.
[0015] Further, the signal receiving unit and the signal transmitting unit respectively deliver the received and transmitted signals to corresponding devices.
[0016] Further, the wired connection unit is connected through a cable, and the wireless connection unit performs wireless network connection.
[0017] Further, the data storage module includes: an abnormal situation data storage unit, a time node positioning unit, and an abnormal situation recovery log recording unit. The abnormal situation data storage unit is used to store abnormal situations and record the current time under the action of the time node positioning unit to determine whether it is an intermittent abnormality in a fixed time period. The abnormal situation recovery log recording unit is used to record the processing process and method. The data storage module is associated with the background module.
[0018] Further, the background module includes a general control computer, which is bidirectionally electrically connected to the communication module and is respectively connected to a wired connection unit and a wireless connection unit. The general control computer is bidirectionally electrically connected to the data storage module.
[0019] Further, a display module is installed on the outer side of the housing, and the display module is associated with the main processing chip.
[0020] Further, a door panel is hinged to the front of the housing through a hinge. The display module includes a display fixed to the front of the door panel and an alarm lamp fixed to the front of the door panel. A transparent glass is penetrated and fixed on the front of the door panel.
[0021] Further, the main processing chip is bidirectionally electrically connected to the analysis module and can cooperate with the data analysis unit for processing. The main processing chip is electrically connected to the display module, and the main processing chip is bidirectionally electrically connected to the communication module.
[0022] Further, the installation component includes a plurality of mounting plates fixed to the rear side wall inside the housing. Two mounting brackets are fixed to the top of the mounting plate. Four fixing blocks are fixedly connected to the outside of the electric energy meter.
[0023] Further, a connection hole is formed in the front of the fixing block. The mounting bracket is L-shaped, and through holes are uniformly formed in the front. A screw is passed through between the connection hole and the inner side of the corresponding through hole, and a nut is threadedly connected to the outside of the screw.
[0024] Further, insulating bolts are provided on the outside of the partition module, and the partition module is fixedly connected to the housing through the insulating bolts.
[0025] The second aspect of the present invention provides an online monitoring method for an intelligent gateway electric energy metering device.
[0026] An online monitoring method for an intelligent gateway electric energy metering device, which is applied to the online monitoring system for an intelligent gateway electric energy metering device described in the first aspect, includes the following contents:
[0027] The input electric energy is transmitted to the interior of the electronic mechanism. The electronic mechanism monitors the input electric energy, processes and classifies the monitored data, and analyzes the classified data to determine whether it is abnormal.
[0028] When the data is abnormal, the electronic mechanism sends an emergency signal to the isolation module. The signal receiving unit arranged inside the isolation module receives the signal and activates the electric push rod. The electric push rod pushes the insulating isolation blade, so that the insulating isolation blade cuts off the circuit inside the insulating housing.
[0029] Further, the process that the input electric energy is transmitted to the interior of the electronic mechanism, the electronic mechanism monitors the input electric energy, processes and classifies the monitored data, and analyzes the classified data includes: the input electric energy is transmitted to the monitoring device; the voltage monitoring unit, current monitoring unit and current pulse collection unit inside the monitoring module respectively conduct on-line monitoring of the voltage stability, current transmission volume and current pulse of the passing electric energy, and the monitored data signal is then transmitted to the interior of the electric energy meter for transmission; the monitored data signal is received by the analysis module, the input signal is processed and classified by the signal processing unit inside the analysis module, and then the classified data is analyzed by the data analysis unit and the main processing chip.
[0030] Further, when the data is abnormal, the abnormal data is displayed on the display, and the alarm lamp is started for warning. The abnormal data is sent to the general control computer through the communication module and stored in the storage module.
[0031] Compared with the prior art, the beneficial effects of the present invention are:
[0032] Through the setting of the isolation module, the present invention enables the circuit to pass through the isolation module, so that when the monitoring system detects an abnormal situation in the circuit, an emergency signal is transmitted to the interior of the isolation module through the communication module, and the electronic mechanism can immediately record the abnormal situation of the circuit data, so that the isolation module cuts off the circuit, avoiding continuous power output of the circuit and resulting in short circuit or other abnormal situations, and increasing the operability and safety of the staff during maintenance.
[0033] Through the use of the monitoring module, the present invention can conduct on-line monitoring of the voltage stability, current transmission volume and current pulse of the passing electric energy, and the monitored data can be transmitted to the interior of the analysis module for processing and analysis, so as to classify and process the data. The processed data is displayed on the display module under the action of the main processing chip, and the abnormal data will continue to be transmitted under the action of the communication module and received by the background module.
[0034] Through the use of the data storage module, the present invention can store and locate abnormal data and the current time node, facilitating judgment by the staff. Moreover, after the staff's maintenance is completed, it can receive the input of the recovery method and the possibility of the occurrence of abnormal situations, enabling other staff to quickly master the handling method of this abnormal problem, thereby realizing intelligent monitoring and storage, and facilitating the staff to quickly solve the problem when the same or similar problems occur again. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] The accompanying drawings forming a part of this specification are used to provide a further understanding of the present invention. The schematic embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention.
[0036] Figure 1 It is a structural diagram of an online monitoring system for an intelligent gateway power metering device proposed by the present invention;
[0037] Figure 2 It is a cross-sectional view of an online monitoring system for an intelligent gateway power metering device proposed by the present invention;
[0038] Figure 3 It is a front view of an online monitoring system for an intelligent gateway power metering device proposed by the present invention;
[0039] Figure 4 It is a system schematic diagram of an online monitoring system for an intelligent gateway power metering device proposed by the present invention;
[0040] Figure 5 It is a front view of the partition module of an online monitoring system for an intelligent gateway power metering device proposed by the present invention;
[0041] Figure 6 It is a front view of the interior of the partition module of an online monitoring system for an intelligent gateway power metering device proposed by the present invention;
[0042] Figure 7 It is a front view of the top cover of the partition module of an online monitoring system for an intelligent gateway power metering device proposed by the present invention;
[0043] In the figure: 1. Outer shell, 200. Display module, 201. Door panel, 202. Transparent glass, 203. Display, 204. Alarm light, 300. Electronic mechanism, 301. Mounting plate, 302. Mounting bracket, 303. Electric energy meter, 304. Fixed block, 305. Monitoring device, 4. Monitoring module, 5. Analysis module, 6. Communication module, 7. Data storage module, 8. Main processing chip, 900. Partition module, 901. Top cover, 902. Signal receiving unit, 903. Electric push rod, 904. Insulated partition blade, 905. Insulated housing, 906. Partition insulator, 907. Circuit connection pipe body, 908. Insulated bolt. Detailed implementation mode
[0044] The present invention will be further described below in conjunction with the accompanying drawings and embodiments.
[0045] It should be noted that the following detailed descriptions are all illustrative and are intended to provide further descriptions of the present invention. Unless otherwise specified, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present invention belongs.
[0046] It should be noted that the terms used herein are only for describing specific implementation modes and are not intended to limit the exemplary implementation modes according to the present invention. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "include" and / or "comprise" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0047] Embodiment 1
[0048] As Figure 1 shown, this embodiment provides an intelligent on-line monitoring system for gateway electric energy metering devices, including: an outer shell 1 and a background module. A display module 200 for display is installed on the outer side of the outer shell 1. An electronic mechanism 300 for on-line monitoring is installed inside the outer shell 1. A partition module 900 is provided inside the outer shell 1, and the partition module 900 is connected to the electronic mechanism 300.
[0049] In this embodiment, the electronic mechanism 300 is a structure for monitoring the input electric energy.
[0050] As Figure 1 and Figure 2 shown, the electronic mechanism 300 includes a mounting component, an electric energy meter 303, and a monitoring device 305. The mounting component is used to detachably mount the electric energy meter 303 on the inner side of the outer shell 1, and the monitoring device 305 is fixedly installed on the inner bottom wall of the outer shell 1.
[0051] It should be noted that the outer shell 1 provides a setting space for the electric energy meter 303 and the monitoring device 305, and can also play a protective role for them.
[0052] In this embodiment, the monitoring device 305 is a structure for on-line monitoring of the input electric energy and for intelligently sorting and pushing the monitored data.
[0053] As Figure 2 and Figure 4 shown, the monitoring device 305 includes:
[0054] A monitoring module 4, which can monitor the voltage, current and pulse of the input electric energy;
[0055] An analysis module 5, which can analyze and process data signals;
[0056] A communication module 6, which can realize remote communication;
[0057] A data storage module 7, which can store data;
[0058] A partition module 900, which can perform partitioning when fault data is detected;
[0059] A main processing chip 8, which is used for control and processing.
[0060] It should be noted that the monitoring module 4 includes a voltage monitoring unit, a current monitoring unit and a current pulse collection unit, which can respectively monitor the voltage, current and pulse of the input electric energy. The analysis module 5 includes a data analysis unit and a signal processing unit, which can analyze and process the data detected by the monitoring module 4; the monitoring module 4 is electrically connected to the analysis module 5 to facilitate the transmission and transfer of data signals.
[0061] By using the monitoring module 4 of the present invention, it is possible to on-line monitor the voltage stability, current transmission amount and current pulse of the passing electric energy, and the monitored data can be transmitted to the inside of the analysis module 5 for processing and analysis, so as to classify and process the data. The processed data is transmitted to the display module 200 for display under the action of the main processing chip 8, while the abnormal data will continue to be transmitted under the action of the communication module 6 and received by the background module. By using the data storage module 7, it is possible to store and locate the abnormal data and the current time node, which is convenient for the staff to judge, and can also receive the input of the recovery method and the possibility of the abnormal situation after the staff's maintenance is completed, so as to facilitate other staff to quickly master the processing method of this abnormal problem.
[0062] Among them, the display module 200 includes a display and an alarm lamp. The display is used for display, and the alarm lamp is used for alarming.
[0063] The partition module 900 includes a signal receiving unit and a circuit partitioning unit. The signal receiving unit is used to receive the current, voltage, and pulse data monitored by the monitoring module, and the circuit partitioning unit is used to perform partitioning processing when the current, voltage, or pulse data is abnormal.
[0064] In addition, the communication module 6 includes a signal receiving unit, a signal transmitting unit, a wired connection unit, and a wireless connection unit. The signal receiving unit and the signal transmitting unit can respectively deliver the received and transmitted signals to corresponding devices for facilitating signal transmission. The wired connection unit can be connected through a cable, and the wireless connection unit can achieve long-distance wireless network connection.
[0065] Meanwhile, the data storage module 7 includes an abnormal situation data storage unit, a time node positioning unit, and an abnormal situation recovery log recording unit. The abnormal situation data storage unit can store the abnormal situation and record the current time under the action of the time node positioning unit to facilitate the judgment of whether it is an intermittent abnormality in a fixed time period. Under the action of the abnormal situation recovery log recording unit, the processing procedures and methods can be recorded to facilitate other staff to quickly judge and repair and debug when encountering the same or similar problems.
[0066] In addition, the background module includes a general control computer. The general control computer is bidirectionally electrically connected to the communication module 6 and is respectively connected to the wired connection unit and the wireless connection unit, and can transmit data signals in both wired and wireless ways. The general control computer is bidirectionally electrically connected to the data storage module 7, can control the data storage module 7 to record, and can also retrieve the information inside the data storage module 7 for display.
[0067] It should also be noted that the main processing chip 8 is bidirectionally electrically connected to the analysis module 5 and can cooperate with the data analysis unit for processing, so that the main processing chip 8 can cooperate with the data analysis unit to jointly analyze and process data signals. The main processing chip 8 is electrically connected to the display module 200 and can perform corresponding display on the display module 200. The main processing chip 8 is bidirectionally electrically connected to the communication module 6, and data transmission is achieved by using the communication module 6.
[0068] In this embodiment, the installation component is a structure for facilitating the installation and setting of the electric energy meter 303.
[0069] Such as Figure 1 and Figure 2 shown, the installation component includes several mounting plates 301 fixed to the rear side wall inside the housing 1. Two mounting brackets 302 are fixedly connected to the top of the mounting plate 301, and four fixing blocks 304 are fixedly connected to the outside of the electric energy meter 303.
[0070] It should be noted that connection holes are provided on the front surface of the fixed block 304. The mounting bracket 302 is L-shaped, and through holes evenly distributed are provided on the front surface. Screws are inserted between the connection holes and the inner sides of the corresponding through holes, and nuts are threadedly connected to the outer sides of the screws. By using the cooperation of the screws and nuts, the electric energy meter 303 can be stably and detachably installed.
[0071] In this embodiment, the display module 200 is a structure for displaying data and facilitating viewing.
[0072] As Figure 1 and Figure 3 shown, a door panel 201 is hinged to the front surface of the housing 1 through a hinge. The display module 200 includes a display 203 fixedly installed on the front surface of the door panel 201 and an alarm lamp 204 fixedly installed on the front surface of the door panel 201. A transparent glass 202 is inserted and fixed through the front surface of the door panel 201.
[0073] It should be noted that the display 203 can display various types of data processed by the main processing chip 8, and the alarm lamp 204 can flash when abnormal data appears, which is convenient for reminding the on-site staff. The transparent glass 202 can facilitate the external staff to directly view the internal equipment status.
[0074] As Figures 5 to 7 shown, the communication module 6 is electrically connected to the partition module 900. The partition module 900 includes a top cover 901. A signal receiving unit 902 is provided inside the top cover 901. An electric push rod 903 is connected to the rear end of the signal receiving unit 902. An insulating partition blade 904 is connected to the rear end of the electric push rod 903.
[0075] An insulating housing 905 is provided inside the partition module 900. Insulating partitions 906 are provided at both the top end and the bottom end of the insulating housing 905. Circuit holes are provided inside the insulating partitions 906. A circuit connection pipe 907 is provided inside the insulating housing 905, and the circuit connection pipe 907 can fix the circuit.
[0076] The insulating partition blade 904 is located at the top of the circuit fixed by the circuit connection pipe 907. An insulating bolt 908 is provided outside the partition module 900, and the partition module 900 is fixedly connected to the housing 1 through the insulating bolt 908.
[0077] The working principle of the above embodiments is as follows: When performing gateway power metering, the input power is transmitted through the online monitoring of the monitoring device 305 and then through the interior of the power meter 303. Under the monitoring of the voltage monitoring unit, current monitoring unit, and current pulse collection unit in the monitoring module 4, online monitoring of the voltage stability, current transmission volume, and current pulses of the passing power can be carried out. The monitored data is received by the analysis module 5. The input signal is processed and classified by the signal processing unit inside the analysis module 5, and then the classified data is analyzed by the data analysis unit. Among them, when analyzing the data, it is necessary to cooperate with the main processing chip 8 for synchronous processing. The processed data will be displayed on the display 203. If there is an abnormality, the alarm light 204 will be turned on for warning. Under the action of the communication module 6, the processed data signal in the main processing chip 8 can be received and transmitted to the interior of the general control computer in the background module for the staff in the background to view. At the same time, the abnormal data signal will be stored by the abnormal situation data storage unit in the data storage module 7, and the current time will also be located by the time node positioning unit. After the staff view the abnormal situation on the general control computer, they can go to the site to repair the equipment or circuit. After the repair is completed, the general control computer can be controlled to describe the approximate cause of the abnormal situation and the solution method in the abnormal situation recovery log recording unit. As time goes by, the number of records in the data storage module 7 gradually increases. When the abnormal situation signal output by the data analysis unit can match the data stored in the abnormal situation data storage unit, the recovery log recorded in the abnormal situation recovery log recording unit will be automatically retrieved for the staff to view, so as to make corresponding preparations in advance and facilitate a faster and more standard recovery of the abnormal situation.
[0078] Through the use of the monitoring module 4, the present invention can on-line monitor the voltage stability, current transmission volume, and current pulse of the passing electric energy. The monitored data can be transmitted to the analysis module 5 for processing and analysis, so as to classify and process the data. The processed data is transmitted to the display module 200 for display under the action of the main processing chip 8, while the abnormal data will continue to be transmitted under the action of the communication module 6 and received by the background module. Through the use of the data storage module 7, the abnormal data and the current time node can be stored and located, which is convenient for the staff to make judgments. Moreover, after the staff completes the maintenance, the recovery method and the possibility of the abnormal situation can be input and received, which is convenient for other staff to quickly master the processing method of the abnormal problem. Thus, intelligent monitoring and storage are realized, which is convenient for the staff to quickly solve the same or similar problems when they occur again, and solves the problem that the existing on-line monitoring system of the gateway electric energy metering device requires manual judgment of the current situation and then maintenance of the equipment or circuit according to the judged problem, which is not conducive to the quick start of new employees.
[0079] Through the setting of the partition module 900, the present invention can connect the middle part of the circuit to the inside of the partition module 900 when fixing the circuit. When an abnormal situation occurs in the circuit, a signal is sent through the communication module 6, which can immediately cut off the circuit that is transmitting power by the partition module 900, and enable the electronic mechanism 300 to immediately record the abnormal situation at this time. When the staff cannot immediately repair the circuit, the circuit can be cut off by the partition module 900, which solves the problem that the existing on-line monitoring system of the gateway electric energy metering device cannot immediately operate on the circuit during maintenance. Thus, the possibility of short circuit or other abnormal situations caused by circuit abnormalities is reduced, the safety performance of the on-line monitoring system of the gateway electric energy metering device during use is increased, the staff can be more convenient during the process of repairing the circuit, and the safety during circuit repair is improved.
[0080] All the electrical components mentioned in the text are electrically connected to the main controller and the power supply. The provision of the power supply belongs to the common knowledge in the field. The main controller can be a conventional known device such as a computer for control, which can be realized by simple programming by those skilled in the art, and all are existing publicly disclosed power connection technologies, which will not be elaborated in the text.
[0081] Embodiment 2
[0082] As Figure 4 shown, this embodiment provides an intelligent on-line monitoring method for a gateway electric energy metering device, which is applied to an intelligent on-line monitoring system for a gateway electric energy metering device, and includes the following steps:
[0083] Step S1: The input electric energy is transmitted into the interior of the monitoring device 305. Under the monitoring of the voltage monitoring unit, current monitoring unit, and current pulse collection unit inside the monitoring module 4, the voltage stability, current transmission volume, and current pulses of the passing electric energy can be monitored online. After the monitoring, the electric energy is then transmitted into the interior of the electric energy meter 303 for transmission;
[0084] Step S2: The monitored data signal is received by the analysis module 5. The input signal is processed and classified by the signal processing unit inside the analysis module 5. The classification of the input signal is to distinguish the voltage monitoring data, current monitoring data, and current pulse data for subsequent processing and transmission. Then, the classified data is analyzed by the data analysis unit and the main processing chip 8;
[0085] Step S3: The current data situation is displayed on the display 203, while the abnormal situation will activate the alarm light 204 for warning. The alarm light 204 is a red light source that can blink. The abnormal signal is transmitted to the general control computer through the wired or wireless transmission of the communication module 6 for the staff to view, and the current data will be stored by the data storage module 7;
[0086] Step S4: The processing procedures and methods after viewing and solving can be stored in the data storage module 7 through the control input of the general control computer. When the same or similar problems occur, they will be automatically retrieved to facilitate the staff to judge and solve more quickly;
[0087] When the circuit data is abnormal and needs to be processed immediately, the communication module 6 will send an emergency signal to the partition module 900. The signal receiving unit 902 inside the partition module 900 will receive the signal, causing the signal receiving unit 902 to activate the electric push rod 903, and the electric push rod 903 will push the insulating partition blade 904, causing the insulating partition blade 904 to cut off the circuit inside the insulating housing 905, thus avoiding the situation of continuous power transmission and preventing the occurrence of a short circuit and fire.
[0088] In some embodiments, in step S2, the classification of the input signal is to distinguish the voltage monitoring data, current monitoring data, and current pulse data for subsequent processing and transmission, and in S3, the alarm light (204) is a red light source that can blink.
[0089] Among them, the intelligent on-line monitoring system for the gateway electric energy metering device includes a housing. An electronic mechanism and a partition module are provided inside the housing. The electronic mechanism and the partition module are electrically connected. The electronic mechanism is used for on-line monitoring of the input electric energy;
[0090] The partition module includes a top cover. Inside the top cover, there is a signal receiving unit. The rear end of the signal receiving unit is connected to an electric push rod, and the rear end of the electric push rod is connected to an insulating partition blade. Inside the partition module, there is an insulating housing. At the top and bottom of the insulating housing, there are partition insulators. Inside the partition insulators, there are circuit holes. Inside the insulating housing, there is a circuit connection pipe body for fixing the circuit. The insulating partition blade is located on top of the circuit fixed by the circuit connection pipe body.
[0091] In some embodiments, the electronic mechanism includes a mounting assembly, an electric energy meter, and a monitoring device. The electric energy meter is mounted inside the outer shell through the mounting assembly. The monitoring device is used to monitor the input electric energy. The monitoring device includes: a monitoring module for monitoring the voltage, current, and pulses of the input electric energy; an analysis module for analyzing and processing the data signals output by the monitoring module; a communication module for performing remote communication; a data storage module for storing data; and a main processing chip for processing data.
[0092] In some embodiments, the monitoring module includes: a voltage monitoring unit for monitoring the voltage data of the input electric energy; a current monitoring unit for monitoring the current data of the input electric energy; and a current pulse collection unit for monitoring the current pulse data of the input electric energy.
[0093] In some embodiments, the analysis module includes: a data analysis unit for analyzing the monitored data; and a signal processing unit for processing the monitored data. The monitoring module is electrically connected to the analysis module.
[0094] In some embodiments, the communication module includes: a signal receiving unit, a signal transmitting unit, a wired connection unit, and a wireless connection unit.
[0095] In some embodiments, the signal receiving unit and the signal transmitting unit respectively deliver the received and transmitted signals to the corresponding devices.
[0096] In some embodiments, the wired connection unit is connected through a cable, and the wireless connection unit performs wireless network connection.
[0097] In some embodiments, the data storage module includes: an abnormal situation data storage unit, a time node positioning unit, and an abnormal situation recovery log recording unit. The abnormal situation data storage unit is used to store the abnormal situation and record the current time under the action of the time node positioning unit to determine whether it is an intermittent abnormal situation in a fixed time period. The abnormal situation recovery log recording unit is used to record the processing process and method. The data storage module is associated with the background module.
[0098] In some embodiments, the background module includes a general control computer, which is bidirectionally electrically connected to the communication module and is respectively connected to the wired connection unit and the wireless connection unit, and the general control computer is bidirectionally electrically connected to the data storage module.
[0099] In some embodiments, a display module is installed on the outer side of the housing, and the display module is associated with the main processing chip.
[0100] In some embodiments, a door panel is hinged to the front of the housing through a hinge. The display module includes a display fixedly installed on the front of the door panel and an alarm lamp fixedly installed on the front of the door panel. A transparent glass is penetrated and fixed on the front of the door panel.
[0101] In some embodiments, the main processing chip is bidirectionally electrically connected to the analysis module and can cooperate with the data analysis unit for processing. The main processing chip is electrically connected to the display module, and the main processing chip is bidirectionally electrically connected to the communication module.
[0102] In some embodiments, the installation assembly includes a plurality of mounting plates fixed to the rear side wall inside the housing. Two mounting brackets are fixedly connected to the top of the mounting plate. Four fixing blocks are fixedly connected to the outer side of the electric energy meter.
[0103] In some embodiments, a connection hole is formed in the front of the fixing block. The mounting bracket is L-shaped, and through holes evenly distributed are formed in the front. A screw is penetrated between the connection hole and the inner side of the corresponding through hole, and a nut is threadedly connected to the outer side of the screw.
[0104] In some embodiments, insulating bolts are provided on the outer side of the partition module, and the partition module is fixedly connected to the housing through the insulating bolts.
[0105] The present invention can intelligently monitor abnormal phenomena and store the processing methods, so that when encountering the same problem later, intelligent push can be carried out, etc. It solves the problem that the existing online monitoring system for gateway electric energy metering devices requires manual judgment of the current situation and then maintenance of equipment or lines according to the judged problems, which is not conducive to new hands getting started quickly.
[0106] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. An intelligent gateway electric energy metering device online monitoring system, comprising a housing, characterized in that: An electronic mechanism and a partition module are arranged inside the shell, and the electronic mechanism and the partition module are electrically connected, and the electronic mechanism is used to perform online monitoring of input electric energy; the partition module includes a top cover, and a signal receiving unit is arranged inside the top cover, and an electric push rod is connected to the rear end of the signal receiving unit, and an insulating partition blade is connected to the rear end of the electric push rod; an insulating shell is arranged inside the partition module, and partition insulators are arranged at the top and bottom ends of the insulating shell, and a circuit hole is arranged inside the partition insulator, and a circuit connection tube body for fixing the circuit is arranged inside the insulating shell; the insulating partition blade is located at the top of the circuit fixed by the circuit connection tube body; The electronic mechanism comprises a mounting assembly, an electric energy meter and a monitoring device, wherein the electric energy meter is mounted on the inner side of the housing through the mounting assembly, and the monitoring device is used to monitor the input electric energy; The monitoring device includes: a monitoring module for monitoring the voltage, current and pulse of the input electric energy; an analysis module for analyzing and processing the data signal output by the monitoring module; a communication module for remote communication; a data storage module for storing data; and a main processing chip for processing data. The monitoring module includes: a voltage monitoring unit for monitoring voltage data of input electric energy; a current monitoring unit for monitoring current data of input electric energy; a current pulse collection unit for monitoring current pulse data of input electric energy; The analysis module comprises: a data analysis unit for analyzing the monitored data; a signal processing unit for processing the monitored data; and the monitoring module is electrically connected to the analysis module.
2. The intelligent gateway electric energy metering device online monitoring system according to claim 1 is characterized in that: The communication module includes: a signal receiving unit, a signal transmitting unit, a wired connection unit and a wireless connection unit.
3. The online monitoring system for intelligent gateway electric energy metering device according to claim 2 is characterized in that: The signal receiving unit and the signal transmitting unit transmit the received and transmitted signals to corresponding devices respectively.
4. The intelligent gateway electric energy metering device online monitoring system according to claim 2 is characterized in that: The wired connection unit is connected via a cable, and the wireless connection unit is connected via a wireless network.
5. The intelligent gateway electric energy metering device online monitoring system according to claim 1 is characterized in that: The data storage module includes: an abnormal situation data storage unit, a time node positioning unit and an abnormal situation recovery log recording unit. The abnormal situation data storage unit is used to store the abnormal situation and record the current time under the action of the time node positioning unit to determine whether it is an intermittent abnormality in a fixed time period. The abnormal situation recovery log recording unit is used to record the processing process and method. The data storage module is associated with the background module.
6. The intelligent gateway electric energy metering device online monitoring system according to claim 5 is characterized in that: The background module includes a general control computer, which is bidirectionally electrically connected to the communication module and is respectively connected to the wired connection unit and the wireless connection unit, and is bidirectionally electrically connected to the data storage module.
7. The intelligent gateway electric energy metering device online monitoring system according to claim 1 is characterized in that: A display module is installed on the outer side of the shell, and the display module is associated with the main processing chip.
8. The intelligent gateway electric energy metering device online monitoring system according to claim 7 is characterized in that: The front of the shell is hinged with a door panel via a hinge. The display module comprises a display fixedly mounted on the front of the door panel and an alarm light fixedly mounted on the front of the door panel. Transparent glass is penetrated and fixed on the front of the door panel.
9. The intelligent gateway electric energy metering device online monitoring system according to claim 7 is characterized in that: The main processing chip is bidirectionally electrically connected to the analysis module and can cooperate with the data analysis unit for processing. The main processing chip is electrically connected to the display module and the main processing chip is bidirectionally electrically connected to the communication module.
10. The intelligent gateway electric energy metering device online monitoring system according to claim 1 is characterized in that: The mounting assembly includes a plurality of mounting plates fixed to the inner rear side wall of the housing, the top of the mounting plate is fixedly connected to two mounting frames, and the outer side of the electric energy meter is fixedly connected to four fixing blocks; The front of the fixing block is provided with a connecting hole, the mounting frame is L-shaped, and the front is provided with evenly distributed through holes, and screws are passed between the connecting hole and the inner side of the corresponding through hole, and nuts are threadedly connected to the outer side of the screw.
11. The intelligent gateway electric energy metering device online monitoring system according to claim 1 is characterized in that: Insulating bolts are arranged on the outside of the partition module, and the partition module is fixedly connected to the shell through the insulating bolts.
12. An online monitoring method for an intelligent gateway electric energy metering device, characterized in that: The online monitoring system for the intelligent gateway electric energy metering device applied to any one of claims 1 to 11 comprises the following contents: The input power is transmitted to the inside of the electronic mechanism, which monitors the input power, processes and classifies the monitored data, and analyzes the classified data to determine whether it is abnormal; When the data is abnormal, the electronic mechanism sends an emergency signal to the partition module. The signal receiving unit set inside the partition module receives the signal and turns on the electric push rod. The electric push rod pushes the insulating partition blade, so that the insulating partition blade isolates the circuit inside the insulating shell.
Citation Information
Patent Citations
Gateway electric energy metering device on-line monitoring method and system of shunt routing inspection
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