CN203101928U - Hydroelectric power and photovoltaic power generation mixed monitoring system - Google Patents

Hydroelectric power and photovoltaic power generation mixed monitoring system Download PDF

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Publication number
CN203101928U
CN203101928U CN 201220150764 CN201220150764U CN203101928U CN 203101928 U CN203101928 U CN 203101928U CN 201220150764 CN201220150764 CN 201220150764 CN 201220150764 U CN201220150764 U CN 201220150764U CN 203101928 U CN203101928 U CN 203101928U
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China
Prior art keywords
server
video
photovoltaic
control module
control
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Expired - Fee Related
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CN 201220150764
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Chinese (zh)
Inventor
张仁贡
王光华
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ZHEJIANG VOCATIONAL COLLEGE OF SCIENCE AND TECHNOLOGY
Zhejiang Tongji Vocational College of Science and Technology
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ZHEJIANG VOCATIONAL COLLEGE OF SCIENCE AND TECHNOLOGY
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Priority to CN 201220150764 priority Critical patent/CN203101928U/en
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Publication of CN203101928U publication Critical patent/CN203101928U/en
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Abstract

The utility model relates to a hydroelectric power and photovoltaic power generation mixed monitoring system which is characterized by comprising a master control server, a plurality of local controller units, a public control unit and a video monitoring apparatus. The master control server is connected with the plurality of local controller units, the public control unit and the video monitoring apparatus. The plurality of local controller units, the public control unit and the video monitoring apparatus collect external information and send the external information to the master control server for treatment. A photovoltaic power generation system and a hydropower power generation system adopt the same network monitoring system, so that investment cost is saved; signals of the photovoltaic power generation system and the hydropower power generation system are in the charge of the same monitoring center, so that monitoring is convenient and safe, operation personnel are reduced and operation cost is saved.

Description

Water power mixes supervisory system with photovoltaic generation
Technical field
The utility model relates to strong power system control field, relates in particular to a kind of water power and mixes supervisory system with photovoltaic generation.
Background technology
The computer control for hydropower station technology is all adopted in newly-built rural hydropower station at present, and the computer monitoring technology is also progressively adopted in old power station by renovating.The rural hydropower station computer supervisory control system comprises condition monitoring and two aspects of video monitoring, condition monitoring and video monitoring are generally arranged apart, data communication is separate, and adopt different servers to carry out data storage, but the host computer workstation all is arranged in computer monitoring center, so that the staff carries out Centralized Monitoring and issue handling.The computer control for hydropower station system generally adopts the layer distributed mode to link, and this expansion for system provides advantageous conditions.Development along with photovoltaic power generation technology, photovoltaic generating system is installed on the dam of rural hydropower station to become more and more popular, photovoltaic generating system need carry out condition monitoring and video monitoring equally, can insert the computer control for hydropower station system to the condition monitoring of photovoltaic generating system and video monitoring respectively, share service device, data transmission network and Surveillance center.But also do not have ready-made rural hydropower and photovoltaic generation hybrid computer supervisory system in the market, so this system of invention is with meeting the market requirement.
Summary of the invention
For addressing the above problem, the utility model provides the more perfect water power of a kind of function to mix supervisory system with photovoltaic generation.
For achieving the above object, the technical solution adopted in the utility model is: water power mixes supervisory system with photovoltaic generation, it is characterized in that: comprise main control server, a plurality of local control unit, public control module, video monitoring apparatus, main control server is connected with a plurality of local control units, public control module and video monitoring apparatus, and described a plurality of local control units, public control module, video monitoring apparatus are gathered external information and passed to main control server and handle.
First preferred version of the present utility model is that described main control server comprises gps clock locating device, communication server, Control Server, video server, state server and video workstation,
Described gps clock locating device is connected with communication server, Control Server, video server, state server and video workstation.
Second preferred version of the present utility model is; described local control unit comprises a PLC control module, the first microcomputer synchronous device, temperature patrol inspection device, break pin signalling means, first ups power, first spare interface, the first intelligent parameter measuring instrument, set speed adjustment apparatus, unit excitation unit, unit microcomputer speed measuring device and unit microcomputer protecting device
A described PLC control module is connected with the first microcomputer synchronous device, temperature patrol inspection device, break pin signalling means, first ups power, first spare interface, the first intelligent parameter measuring instrument, set speed adjustment apparatus, unit excitation unit, unit microcomputer speed measuring device and unit microcomputer protecting device
A described PLC control module is connected with gps clock locating device, communication server, Control Server, video server, state server and video workstation.
The 3rd preferred version of the present utility model is; described public control module comprises the 2nd PLC control module, the second microcomputer synchronous device, the second intelligent parameter measuring instrument, second spare interface, second ups power, photovoltaic system net-connected controller, harmonic wave inhibition and idle compensating control, photovoltaic circuit system protection device, photovoltaic island effect protector, water power line protective devices and protection equipment for transformer
Described the 2nd PLC control module is connected with idle compensating control, photovoltaic circuit system protection device, photovoltaic island effect protector, water power line protective devices and protection equipment for transformer with the second microcomputer synchronous device, the second intelligent parameter measuring instrument, second spare interface, second ups power, photovoltaic system net-connected controller, harmonic wave inhibition
Described the 2nd PLC control module is connected with gps clock locating device, communication server, Control Server, video server, state server and video workstation.
The 4th preferred version of the present utility model is, described video monitoring apparatus comprises codec, disk array, character matrix, cradle head control device, audio alarm treating apparatus, the 3rd ups power, the 3rd spare interface, a plurality of camera, described cradle head control device is connected with a plurality of cameras
Described disk array is connected with gps clock locating device, communication server, Control Server, video server, state server and video workstation.
Technical advantage of the present utility model is: photovoltaic generating system and hydraulic power generating system are adopted same monitoring network system, saved cost of investment, simultaneously both signals have same Surveillance center to be responsible for, and monitors convenient and safely, can reduce operations staff and saving operating cost simultaneously.
Below in conjunction with specific embodiment the utility model is described further.
Description of drawings
Fig. 1 is that the present embodiment water power mixes the supervisory system synoptic diagram with photovoltaic generation.
Fig. 2 is a present embodiment main control server module diagram.
Fig. 3 is a present embodiment field control unit module diagram.
Fig. 4 is the public control module synoptic diagram of present embodiment.
Fig. 5 is a present embodiment video monitoring apparatus module diagram.
Embodiment
With reference to figure 1, Fig. 2, Fig. 3, Fig. 4, Fig. 5, water power mixes supervisory system with photovoltaic generation, comprise main control server, a plurality of local control unit, public control module, video monitoring apparatus, main control server is connected with a plurality of local control units, public control module and video monitoring apparatus, and a plurality of local control units, public control module, video monitoring apparatus are gathered external information and passed to main control server and handle.
Main control server comprises gps clock locating device, communication server, Control Server, video server, state server and video workstation, and the gps clock locating device is connected with communication server, Control Server, video server, state server and video workstation.
Local control unit comprises a PLC control module; the first microcomputer synchronous device; the temperature patrol inspection device; the break pin signalling means; first ups power; first spare interface; the first intelligent parameter measuring instrument; the set speed adjustment apparatus; the unit excitation unit; unit microcomputer speed measuring device and unit microcomputer protecting device; the one PLC control module and the first microcomputer synchronous device; the temperature patrol inspection device; the break pin signalling means; first ups power; first spare interface; the first intelligent parameter measuring instrument; the set speed adjustment apparatus; the unit excitation unit; unit microcomputer speed measuring device and unit microcomputer protecting device connect, a PLC control module and gps clock locating device; communication server; Control Server; video server; state server and video workstation connect.
Public control module comprises the 2nd PLC control module; the second microcomputer synchronous device; the second intelligent parameter measuring instrument; second spare interface; second ups power; the photovoltaic system net-connected controller; harmonic wave suppresses and idle compensating control; photovoltaic circuit system protection device; photovoltaic island effect protector; water power line protective devices and protection equipment for transformer; the 2nd PLC control module and the second microcomputer synchronous device; the second intelligent parameter measuring instrument; second spare interface; second ups power; the photovoltaic system net-connected controller; harmonic wave suppresses and idle compensating control; photovoltaic circuit system protection device; photovoltaic island effect protector; water power line protective devices and protection equipment for transformer connect, the 2nd PLC control module and gps clock locating device; communication server; Control Server; video server; state server and video workstation connect.
Video monitoring apparatus comprises codec, disk array, character matrix, cradle head control device, audio alarm treating apparatus, the 3rd ups power, the 3rd spare interface, a plurality of camera, described cradle head control device is connected with a plurality of cameras, and disk array is connected with gps clock locating device, communication server, Control Server, video server, state server and video workstation.
Water power mixes the unit number of supervisory system according to the power station with photovoltaic generation, local control unit (the Local Controller Unit of N unit is set, be called for short LCU), secondly, public local control unit of system configuration, in order to monitor optical photovoltaic generating system and each unit shared device of power station, once more, video monitoring system is extended to video monitoring apparatus, require at the power station main building according to video monitoring simultaneously, the photovoltaic dam, booster stations, the outlet hole, photovoltaic cable traffic hole, the metering house, main valve chambers etc. are arranged N camera head, described N is greater than 1, control by the cradle head control device, and vision signal is arrived the video workstation by Network Transmission.
Principle of work: the condition monitoring data of field control unit, public control module and the video monitoring data of radio frequency monitoring apparatus are transferred to main control server by the Industrial Ethernet network, main control server comprises gps clock locating device, communication server, Control Server, video server, state server and video workstation, communication server is finished the communication dispatch with electrical network, Control Server is finished the condition monitoring of system, and the video workstation is finished monitoring videosignal; State server installment state database is in order to storage and supervisor status data; Video server is installed video monitoring server, and video data in the disk array of self, is realized functions such as video playback, crash analysis by video server stores.
The present invention is not limited only to the protection domain shown in the foregoing description, and all are based on the invention thought of present embodiment, all in protection scope of the present invention.

Claims (4)

1. water power mixes supervisory system with photovoltaic generation, it is characterized in that: comprise main control server, a plurality of local control unit, public control module, video monitoring apparatus, main control server is connected with a plurality of local control units, public control module and video monitoring apparatus, and described a plurality of local control units, public control module, video monitoring apparatus are gathered external information and passed to main control server and handle.
2. water power according to claim 1 mixes supervisory system with photovoltaic generation, it is characterized in that: described main control server comprises gps clock locating device, communication server, Control Server, video server, state server and video workstation,
Described gps clock locating device is connected with communication server, Control Server, video server, state server and video workstation.
3. water power according to claim 1 and 2 mixes supervisory system with photovoltaic generation; it is characterized in that: described local control unit comprises a PLC control module, the first microcomputer synchronous device, temperature patrol inspection device, break pin signalling means, first ups power, first spare interface, the first intelligent parameter measuring instrument, set speed adjustment apparatus, unit excitation unit, unit microcomputer speed measuring device and unit microcomputer protecting device
A described PLC control module is connected with the first microcomputer synchronous device, temperature patrol inspection device, break pin signalling means, first ups power, first spare interface, the first intelligent parameter measuring instrument, set speed adjustment apparatus, unit excitation unit, unit microcomputer speed measuring device and unit microcomputer protecting device
A described PLC control module is connected with gps clock locating device, communication server, Control Server, video server, state server and video workstation.
4. water power according to claim 1 and 2 mixes supervisory system with photovoltaic generation; it is characterized in that: described public control module comprises the 2nd PLC control module, the second microcomputer synchronous device, the second intelligent parameter measuring instrument, second spare interface, second ups power, photovoltaic system net-connected controller, harmonic wave inhibition and idle compensating control, photovoltaic circuit system protection device, photovoltaic island effect protector, water power line protective devices and protection equipment for transformer
Described the 2nd PLC control module is connected with idle compensating control, photovoltaic circuit system protection device, photovoltaic island effect protector, water power line protective devices and protection equipment for transformer with the second microcomputer synchronous device, the second intelligent parameter measuring instrument, second spare interface, second ups power, photovoltaic system net-connected controller, harmonic wave inhibition
Described the 2nd PLC control module is connected with gps clock locating device, communication server, Control Server, video server, state server and video workstation.
5. water power according to claim 1 and 2 mixes supervisory system with photovoltaic generation, it is characterized in that: described video monitoring apparatus comprises codec, disk array, character matrix, cradle head control device, audio alarm treating apparatus, the 3rd ups power, the 3rd spare interface, a plurality of camera, described cradle head control device is connected with a plurality of cameras
Described disk array is connected with gps clock locating device, communication server, Control Server, video server, state server and video workstation.
CN 201220150764 2012-04-11 2012-04-11 Hydroelectric power and photovoltaic power generation mixed monitoring system Expired - Fee Related CN203101928U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201220150764 CN203101928U (en) 2012-04-11 2012-04-11 Hydroelectric power and photovoltaic power generation mixed monitoring system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201220150764 CN203101928U (en) 2012-04-11 2012-04-11 Hydroelectric power and photovoltaic power generation mixed monitoring system

Publications (1)

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CN203101928U true CN203101928U (en) 2013-07-31

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104850145A (en) * 2015-06-05 2015-08-19 唐山现代工控技术有限公司 Method and device for setting parameters for gate water measuring facility

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104850145A (en) * 2015-06-05 2015-08-19 唐山现代工控技术有限公司 Method and device for setting parameters for gate water measuring facility
CN104850145B (en) * 2015-06-05 2017-05-17 唐山现代工控技术有限公司 Method for setting parameters for gate water measuring facility

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C17 Cessation of patent right
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Granted publication date: 20130731

Termination date: 20140411