CN210092960U - Enterprise intelligent power utilization management system - Google Patents
Enterprise intelligent power utilization management system Download PDFInfo
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- CN210092960U CN210092960U CN201920022357.8U CN201920022357U CN210092960U CN 210092960 U CN210092960 U CN 210092960U CN 201920022357 U CN201920022357 U CN 201920022357U CN 210092960 U CN210092960 U CN 210092960U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B90/00—Enabling technologies or technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02B90/20—Smart grids as enabling technology in buildings sector
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y04—INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
- Y04S—SYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
- Y04S40/00—Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them
- Y04S40/12—Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them characterised by data transport means between the monitoring, controlling or managing units and monitored, controlled or operated electrical equipment
- Y04S40/126—Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them characterised by data transport means between the monitoring, controlling or managing units and monitored, controlled or operated electrical equipment using wireless data transmission
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Abstract
The utility model discloses a can realize that industrial base 220kV power consumption, 10kV power consumption and 400V power consumption data's unification inserts storage, long-range real-time supervision, the wisdom power consumption management system of enterprise of cell-phone mobile management. The enterprise intelligent power utilization management system comprises a central management unit, an intelligent terminal and a collector unit; the central management unit comprises a first communication manager, a central processing unit and a cloud server; the acquisition unit comprises a second communication manager, a 220KV communication manager, a 10KV communication manager, a 400V communication manager, a 220KV electric meter, a 10KV electric meter and a 400V electric meter. Adopt this wisdom power consumption management system of enterprise can promote the managerial efficiency of project power consumption, and the stable production operation of guarantee project.
Description
Technical Field
The utility model relates to an electric energy management system, especially an enterprise's wisdom power consumption management system.
Background
It is known that: some heavy industries or high energy consumption enterprises need to consume a large amount of electric power in the production process, how to carry out digital management on the electric power utilization unit, and improving the management efficiency is one of the challenges faced by the current energy management.
The existing electric energy monitoring and management system is generally arranged in a factory area of a factory, and monitors the point information of equipment in a control room in real time. Special personnel is therefore required to supervise the monitoring system. Therefore, the personnel investment is increased, and meanwhile, if the supervision personnel are not in the factory, the real-time monitoring of the point-of-use situation cannot be realized. And the central processing system has no special heat dissipation device, and has poor heat dissipation effect, poor working stability and high energy consumption.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that a can realize that industrial base 220kV power consumption, 10kV power consumption and 400V power consumption data's unity inserts storage, long-range real-time supervision, cell-phone mobile management's enterprise wisdom power consumption management system is provided.
The utility model provides a technical scheme that its technical problem adopted is: the enterprise intelligent power utilization management system comprises a central management unit, an intelligent terminal and a collector unit; the central management unit comprises a first communication manager, a central processing unit and a cloud server; the collector unit comprises a second communication manager, a 220KV communication manager, a 10KV communication manager, a 400V communication manager, a 220KV electric meter, a 10KV electric meter and a 400V electric meter;
the 220KV communication manager, the 10KV communication manager and the 400V communication manager are electrically connected with the second communication manager;
the 220KV electric meter, the 10KV electric meter and the 400V electric meter are respectively and correspondingly electrically connected with a 220KV communication manager, a 10KV communication manager and a 400V communication manager;
the first communication manager is in communication connection with the second communication manager; a transverse isolation device is arranged between the first communication manager and the second communication manager;
the central processor adopts data in a 220KV communication manager, a 10KV communication manager and a 400V communication manager through a TCP/IP channel MQTT protocol;
the central processing unit is used for processing the acquired data and then transmitting the processed data to the cloud server; the intelligent terminal is in communication connection with the cloud server through a wireless network.
Furthermore, a real-time monitoring module, an alarm management module and an energy efficiency analysis module are arranged on the central processing unit;
the real-time monitoring module is used for carrying out power consumption statistics and monitoring the quality of electric energy, the power consumption and the power consumption load in real time;
the alarm management module is used for alarm statistics and alarm management, and the alarm statistics comprise daily real-time alarm, monthly real-time alarm, recovery alarm and attention alarm statistics; the alarm management comprises the real-time checking of the equipment name, the fault name, the alarm registration, the time and the state of the alarm;
the energy efficiency analysis module is used for carrying out big data analysis according to the real-time collected electrical data and carrying out energy efficiency output evaluation report on the enterprise power utilization condition.
Furthermore, a data report module is also arranged on the central processing unit;
the data reporting module is used for carrying out reporting management on the running condition of the electrical equipment in the forms of curves, histograms and tables, and power consumption, power consumption and power factors are displayed through the curves and the histograms.
Preferably, the central processing unit adopts a computer, a host of the computer is installed on a heat dissipation base, and a heat dissipation device is arranged on the heat dissipation base; the heat dissipation base comprises a mounting base; the bottom of the mounting base is provided with a ventilation cavity, and an air distribution plate is arranged above the ventilation cavity; the air distribution plate is provided with vent holes; the gas distribution plate is provided with a mounting seat; a coaming is arranged above the mounting base; the surrounding plates form a central management unit installation cavity, and a heat dissipation fixing plate is arranged in the cavity; the heat dissipation fixing plate is provided with air holes; the heat dissipation fixing plate is enclosed into an installation clamping cavity of the central management unit;
a support column is arranged between the heat dissipation fixing plate and the enclosing plate; the heat dissipation device comprises a fan and a gas cooling cavity; the fan is communicated with the bottom of the gas cooling cavity through a vent pipe; a cooling water circulating pipe distributed in a snake shape is arranged in the gas cooling cavity; the top of the gas cooling cavity is provided with a gas guide pipe; the gas cooling cavity is communicated with the bottom of the ventilation cavity through the gas guide pipe.
Preferably, the intelligent terminal adopts a mobile phone or a PC terminal.
The utility model has the advantages that: enterprise's wisdom power consumption management system, utilize internet, big data technology, realize that industry base 220kV power consumption, 10kV power consumption and 400V power consumption unified access storage, real-time supervision, abnormal alarm, data statistics, report forms commonly used, energy consumption analysis and cell-phone remove the management to promote the managerial efficiency of project power consumption, the stable production operation of guarantee project.
Drawings
Fig. 1 is a block diagram of an enterprise intelligent power management system according to an embodiment of the present invention;
fig. 2 is a schematic structural view of a heat dissipation device in an embodiment of the present invention;
the following are marked in the figure: 100-central management unit, 200-intelligent terminal, 300-collector unit.
Detailed Description
The present invention will be further explained with reference to the drawings and examples.
As shown in fig. 1, the intelligent power management system for enterprise of the present invention includes a central management unit 100, an intelligent terminal 200 and a collector unit 300; the central management unit 100 includes a first communication manager 102, a central processor 101 and a cloud server 103; the collector unit 300 comprises a second communication manager 301, a 220KV communication manager 302, a 10KV communication manager 303, a 400V communication manager 304, a 220KV electric meter 305, a 10KV electric meter 306 and a 400V electric meter 307;
the 220KV communication manager 302, the 10KV communication manager 303 and the 400V communication manager 304 are electrically connected with the second communication manager 301;
the 220KV electric meter 305, the 10KV electric meter 306 and the 400V electric meter 307 are respectively and correspondingly electrically connected with a 220KV communication manager 302, a 10KV communication manager 303 and a 400V communication manager 304;
the first communication manager 102 is in communication connection with the second communication manager 301; a transverse isolation device 400 is arranged between the first communication manager 102 and the second communication manager 301;
the central processing unit 101 adopts data in a 220KV communication manager 302, a 10KV communication manager 303 and a 400V communication manager 304 through a TCP/IP channel MQTT protocol;
the central processing unit 101 is configured to process the acquired data and transmit the processed data to the cloud server 103; the intelligent terminal 200 is in communication connection with the cloud server 103 through a wireless network. In the application process, the central processing unit 101 adopts data in the 220KV communication manager 302, the 10KV communication manager 303 and the 400V communication manager 304 through the TCP/IP channel MQTT protocol.
The central processing unit 101 analyzes and processes the data after acquiring the data in the 220KV communication manager 302, the 10KV communication manager 303 and the 400V communication manager 304, so that the data of 220kV power consumption, 10kV power consumption and 400V power consumption are accessed and stored uniformly; then, the central processing unit 101 transmits the processed data to the cloud server 103. Then, the intelligent terminal 200 can inquire data in the cloud server 103, so that remote real-time monitoring is realized.
To sum up, enterprise's wisdom power consumption management system, utilize internet, big data technology, realize that the unity of industrial base 220kV power consumption, 10kV power consumption and 400V power consumption data inserts storage, real-time supervision, abnormal alarm, data statistics, report forms commonly used, energy consumption analysis and cell-phone mobile management to promote the managerial efficiency of project power consumption, guarantee the stable production operation of project.
In order to realize comprehensive real-time monitoring of the power utilization state, specifically, the central processing unit 101 is provided with a real-time monitoring module 111, an alarm management module 112 and an energy efficiency analysis module 113;
the real-time monitoring module 111 is used for power consumption statistics, and real-time monitoring of power quality, power consumption and power consumption load;
the alarm management module 112 is used for alarm statistics and alarm management, where the alarm statistics include daily real-time alarms, monthly real-time alarms, recovery alarms, and statistics concerning alarms; the alarm management comprises the real-time checking of the equipment name, the fault name, the alarm registration, the time and the state of the alarm;
the energy efficiency analysis module 113 is used for performing big data analysis according to the real-time collected electrical data and performing energy efficiency output evaluation report on the enterprise power utilization condition.
In order to facilitate displaying the monitored power utilization state and performing data statistics, further, a data report module 114 is further arranged on the central processing unit 101; the data reporting module 114 is configured to perform reporting management on the operation condition of the electrical device through a curve, a histogram and a table, and the power consumption, the power consumption and the power factor are displayed through the curve and the histogram.
In order to reduce the cost, facilitate the control, facilitate the operation, and make the work stable, it is preferable that the central processor 101 employs a computer. The host of the computer is arranged on a heat dissipation base, and a heat dissipation device is arranged on the heat dissipation base; the heat dissipation base comprises a mounting base 6; the bottom of the mounting base 6 is provided with a ventilation cavity 8, and an air distribution plate 9 is arranged above the ventilation cavity; the air distribution plate 9 is provided with an air vent 13; the gas distribution plate 9 is provided with a mounting seat 14; a coaming 7 is arranged above the mounting base 6; the enclosing plate 7 encloses a central management unit 100 installation cavity, and a heat dissipation fixing plate 11 is arranged in the cavity; the heat dissipation fixing plate 11 is provided with air holes 12; the heat dissipation fixing plate 11 encloses an installation clamping cavity of the central management unit 100;
a support column 10 is arranged between the heat dissipation fixing plate 11 and the enclosing plate 7; the heat dissipation device comprises a fan 4 and a gas cooling cavity 1; the fan 4 is communicated with the bottom of the gas cooling cavity 1 through a ventilation pipe 3; a cooling water circulating pipe 2 distributed in a snake shape is arranged in the gas cooling cavity 1; the top of the gas cooling cavity 1 is provided with a gas guide pipe 5; the gas guide pipe 5 is used for communicating the gas cooling cavity 1 with the bottom of the ventilation cavity 8.
In the working process of the heat dissipation device, firstly, a fan blows air into the gas cooling cavity 1, and then cold water is led into the cooling water circulation pipe 2; so that the air in the air cooling cavity 1 is cooled, then the air is sent into the ventilation cavity 8 of the installation base 6 through the air duct 5, and then the air passes through the ventilation holes 13 arranged on the air distribution plate 9; blowing cold air to a host computer of the computer; and blown into the gap between the heat radiation fixing plate 11 and the shroud 7, thereby cooling the entire central management unit 100 by air. Therefore, the heat dissipation device is used for dissipating heat of the computer host, so that the heat dissipation of the computer host is good, and the heat dissipation can be facilitated, and the normal working operation of the computer host is ensured.
In order to facilitate the realization of remote real-time monitoring, preferably, the smart terminal 200 is a mobile phone or a PC terminal.
Claims (4)
1. Wisdom power consumption management system of enterprise, its characterized in that: comprises a central management unit (100), an intelligent terminal (200) and a collector unit (300); the central management unit (100) comprises a first communication manager (102), a central processor (101) and a cloud server (103); the collector unit (300) comprises a second communication manager (301), a 220KV communication manager (302), a 10KV communication manager (303), a 400V communication manager (304), a 220KV electric meter (305), a 10KV electric meter (306) and a 400V electric meter (307);
the 220KV communication manager (302), the 10KV communication manager (303) and the 400V communication manager (304) are electrically connected with the second communication manager (301);
the 220KV electric meter (305), the 10KV electric meter (306) and the 400V electric meter (307) are respectively and correspondingly electrically connected with the 220KV communication manager (302), the 10KV communication manager (303) and the 400V communication manager (304);
the first communication manager (102) is in communication connection with the second communication manager (301); a transverse isolation device (400) is arranged between the first communication manager (102) and the second communication manager (301);
the central processing unit (101) adopts data in a 220KV communication manager (302), a 10KV communication manager (303) and a 400V communication manager (304) through a TCP/IP channel MQTT protocol;
the central processing unit (101) is used for processing the acquired data and then transmitting the processed data to the cloud server (103); the intelligent terminal (200) is in communication connection with the cloud server (103) through a wireless network;
the central processing unit (101) adopts a computer, a host of the computer is arranged on a heat dissipation base, and a heat dissipation device is arranged on the heat dissipation base; the heat dissipation base comprises a mounting base (6); the bottom of the mounting base (6) is provided with a ventilation cavity (8), and an air distribution plate (9) is arranged above the ventilation cavity; the air distribution plate (9) is provided with a vent hole (13); the gas distribution plate (9) is provided with a mounting seat (14); a coaming (7) is arranged above the mounting base (6); the enclosing plates (7) enclose a central management unit (100) installation cavity, and a heat dissipation fixing plate (11) is arranged in the cavity; the heat dissipation fixing plate (11) is provided with air holes (12); the heat dissipation fixing plate (11) is enclosed to form an installation clamping cavity of the central management unit (100);
a supporting column (10) is arranged between the heat dissipation fixing plate (11) and the enclosing plate (7); the heat dissipation device comprises a fan (4) and a gas cooling cavity (1); the fan (4) is communicated with the bottom of the gas cooling cavity (1) through a ventilation pipe (3); a cooling water circulating pipe (2) distributed in a snake shape is arranged in the gas cooling cavity (1); the top of the gas cooling cavity (1) is provided with a gas guide pipe (5); the gas guide pipe (5) is used for communicating the gas cooling cavity (1) with the bottom of the ventilation cavity (8).
2. The system of claim 1, wherein: the central processing unit (101) is provided with a real-time monitoring module (111), an alarm management module (112) and an energy efficiency analysis module (113);
the real-time monitoring module (111) is used for power consumption statistics, and real-time monitoring of electric energy quality, power consumption and power consumption load;
the alarm management module (112) is used for alarm statistics and alarm management, wherein the alarm statistics comprise daily real-time alarms, monthly real-time alarms, recovery alarms and attention alarm statistics; the alarm management comprises the real-time checking of the equipment name, the fault name, the alarm registration, the time and the state of the alarm;
the energy efficiency analysis module (113) is used for carrying out big data analysis according to the real-time collected electrical data and carrying out energy efficiency output evaluation report on the enterprise power utilization condition.
3. The system of claim 2, wherein: the central processing unit (101) is also provided with a data report module (114);
and the data reporting module (114) is used for carrying out reporting management on the running condition of the electrical equipment in the forms of curves, histograms and tables, and the power consumption, the power consumption and the power factor are displayed through the curves and the histograms.
4. The system of claim 3, wherein: the intelligent terminal (200) adopts a mobile phone or a PC terminal.
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CN201920022357.8U CN210092960U (en) | 2019-01-04 | 2019-01-04 | Enterprise intelligent power utilization management system |
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CN201920022357.8U CN210092960U (en) | 2019-01-04 | 2019-01-04 | Enterprise intelligent power utilization management system |
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