CN201829012U - Distributed infrared warning monitoring system for transformer substation - Google Patents

Distributed infrared warning monitoring system for transformer substation Download PDF

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Publication number
CN201829012U
CN201829012U CN201020546231XU CN201020546231U CN201829012U CN 201829012 U CN201829012 U CN 201829012U CN 201020546231X U CN201020546231X U CN 201020546231XU CN 201020546231 U CN201020546231 U CN 201020546231U CN 201829012 U CN201829012 U CN 201829012U
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CN
China
Prior art keywords
infrared
receiving device
information processor
wireless data
electric power
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
CN201020546231XU
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Chinese (zh)
Inventor
周军
范康林
范炯
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ZIGONG ELECTRIC POWER BUREAU
State Grid Corp of China SGCC
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ZIGONG ELECTRIC POWER BUREAU
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Priority to CN201020546231XU priority Critical patent/CN201829012U/en
Application granted granted Critical
Publication of CN201829012U publication Critical patent/CN201829012U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model discloses a distributed infrared warning monitoring system for a transformer substation, which consists of an infrared transmitting device, an infrared receiving device, a central information processor, a wireless data communication module, an acoustic-optical alarm device, a solar battery, a power management circuit and a centralized control center, wherein a double-beam system is formed by the matching of the infrared transmitting device and the infrared receiving device, and arranged around the transformer substation. The distributed infrared warning monitoring system for the transformer substation can be used for conducting unmanned intelligent monitoring on the transformer substation, has higher longitude and sensitivity, and can practically maintain the safe running of transformer substation equipment.

Description

Transforming plant distributed infrared surveillance supervisory system
Technical field
The utility model relates to the infrared surveillance supervisory system, particularly relates to being used for the antitheft twin-beam active infrared detection supervisory system of transformer station.
Background technology
Along with the large-scale redevelopment of electrical network, more and more higher to the requirement of automation of transformation substations degree, but still there is hidden danger in the safety of unattended operation transformer station.Transformer station is in remote region mostly, and substation equipment is in a single day stolen, not only can cause great economic loss, in addition might initiation fire etc. secondary disaster, cause a significant threat for the society and the people's life and property.
Traditional anti-theft measure is as increasing enclosure wall, installs anti-theft net with the reinforcing bar welding additional to antitheft of no avail in fact, increases obstacle on the contrary staff's operation.
The utility model content
The purpose of this utility model provides a kind of transforming plant distributed infrared surveillance supervisory system; monitor in real time with transformer station unmanned guard; and effectively protect the equipment of transformer station, personnel's the security of the lives and property; strengthen the safety precaution of transformer station of power administration, create the working environment of a safety.
For achieving the above object, the utility model adopts following technical scheme: a kind of transforming plant distributed infrared surveillance supervisory system is made of infrared launcher, infrared receiving device, central information processor, wireless data communications unit, acoustic-optic alarm, solar cell, electric power management circuit and centralized control center system;
A), infrared launcher and infrared receiving device are arranged on around the transformer station, two devices adopt permanent the victory to reach infrared transmitting tube ST-1KL3 and the integrated infrared receiver HS0038B that Electronics Co., Ltd. produces respectively, and adopt two infrared emitters of cover and infrared receiving device to form double-beam system, the output terminal of infrared receiving device is connected with the input end of central information processor;
B), the central information processor STC89C516RD+40C-PDIP that adopts macrocrystalline company to produce, its output terminal is connected with the input end of wireless data communications unit and acoustic-optic alarm;
C), wireless data communications unit and centralized control center system carry out radio communication with transmission data, the STR-11 pattern piece that adopts Shanghai Sang Bo Science and Technology Ltd. to produce;
D), the solar cell solar electric power supply system ST-12 that adopts Shenzhen A Bolai Science and Technology Ltd. to produce, produce the 12V supply voltage, its output terminal is connected with the input end of electric power management circuit;
E), electric power management circuit converts the supply voltage of solar cell the supply voltage of 3.3V to, its output terminal is connected with the power end of infrared launcher, infrared receiving device, central information processor, wireless data communications unit and acoustic-optic alarm respectively;
F), the centralized control center system adopts wireless receiving module and wireless data communications unit to carry out radio communication.
Above-mentioned infrared launcher and infrared receiving device adopt permanent the victory to reach infrared transmitting tube ST-1KL3 and the integrated infrared receiver HS0038B that Electronics Co., Ltd. produces respectively; The STC89C516RD+40C-PDIP that central information processor adopts macrocrystalline company to produce; The STR-11 pattern piece that the wireless data communications unit adopts Shanghai Sang Bo Science and Technology Ltd. to produce; The solar electric power supply system ST-12 that solar cell adopts Shenzhen A Bolai Science and Technology Ltd. to produce; Electric power management circuit adopts power conversion chip, and the model of this chip is LT1764A-3.3V.
Above-mentioned infrared transmitting tube and integrative infrared receiver are installed on the adjustable support.
The beneficial effects of the utility model are: this is novel to provide transforming plant distributed infrared surveillance supervisory system, may be used on realizing in the supervisory control of substation unmanned intelligent monitoring.The sniffer of native system adopts the active infrared detection technology; higher precision and sensitivity are arranged; simultaneously, the data communication in the local scope has the low characteristics of cost, and the safety and the protection power department property safety of the power equipment of safeguarding electric system all had crucial meaning.
Description of drawings
Fig. 1 is this novel hardware block diagram.
Fig. 2 is twin-beam infrared beam interruption detector synoptic diagram (Fig. 2 middle part frame of broken lines is a guarded region).
Fig. 3 is centralized control center's system software functional block diagram.
Fig. 4 is the operational flowchart of native system.
Embodiment
Below in conjunction with accompanying drawing invention is described further.
Referring to Fig. 1, basis is novel to be made of infrared launcher 1, infrared receiving device 2, central information processor 3, wireless data communications module 4, acoustic-optic alarm 5, solar cell 6, electric power management circuit 7 and centralized control center system 8; A), infrared launcher 1 is by the infrared transmitting tube lens light gathering, utilization ZAP transponder pulse formula numeral infrared signal is fixed on the link of adjustable support.Infrared receiving device 2 adopts integrated reception head, inner integrated infrared reception, filtering, decoding scheme.Two devices adopt permanent the victory to reach infrared transmitting tube ST-1KL3 and the integrated infrared receiver HS0038B that Electronics Co., Ltd. produces respectively.The infrared receiver and transmitter of two covers is formed double-beam system, is arranged on around the transformer station.The output terminal of infrared receiving device 2 is connected with the input end of central information processor 3; B), central information processor 3 receiving digital signals, the line data analysis of going forward side by side, the STC89C516RD+40C-PDIP that adopts macrocrystalline company to produce, its output terminal is connected with the input end of wireless data communications module 4 with acoustooptic alarm system 5; C), wireless data communications module 4 is sent to centralized control center system 8 with data, and receives the data that the centralized control center system sends, the STR-11 pattern piece that adopts the production of Shanghai Sang Bo Science and Technology Ltd. to develop; D), solar cell 6 is for field device provides power supply, the solar electric power supply system ST-12 that adopts Shenzhen A Bolai Science and Technology Ltd. to produce produces the 12V supply voltage, its output terminal is connected with the input end of electric power management circuit 7; E), electric power management circuit 7 converts the supply voltage of solar cell to the supply voltage of 3.3V, adopt power conversion chip LT1764A-3.3V, its output terminal is connected with infrared launcher 1, infrared receiving device 2, central information processor 3, wireless data communications module 4 and the power end of acoustic-optic alarm 5 respectively.F), the software of centralized control center system 8 is based on VC++ software, the centralized control center adopts wireless receiving module and is distributed in transformer station's infrared alarm watch-dog implementation wireless telecommunications on every side, warning message is collected in the wireless receiving module, send centralized control center's computing machine in real time to, handle by the data base management system (DBMS) of centralized control center.Monitoring software is divided into password management module, data processing module and wireless communication module.
Infrared launcher 1, infrared receiving device 2 adopt permanent the victory to reach infrared transmitting tube ST-1KL3 and the integrated infrared receiver HS0038B that Electronics Co., Ltd. produces respectively; The STC89C516RD+40C-PDIP that central information processor 3 adopts macrocrystalline company to produce; Wireless data communications unit 4 adopts Shanghai Sang Bo Science and Technology Ltd. to produce the STR-11 pattern piece of exploitation; The solar electric power supply system ST-12 that solar cell 6 adopts Shenzhen A Bolai Science and Technology Ltd. to produce; Electric power management circuit 7 adopts power conversion chip LT1764A-3.3V.
Utilize infrared launcher 1, infrared receiving device 2 monitoring substation region security situations.Central information processor 3 analyzing and processing received signals will be invaded signal and be sent into supervisory system, and transformer station's situation is understood by wireless data communications module 4 by centralized control center system 8, and management and monitoring zone and demonstration invasion information.

Claims (3)

1. a transforming plant distributed infrared surveillance supervisory system is characterized in that: be made of infrared launcher (1), infrared receiving device (2), central information processor (3), wireless data communications unit (4), acoustic-optic alarm (5), solar cell (6), electric power management circuit (7) and centralized control center system (8);
A), infrared launcher (1) and infrared receiving device (2) are arranged on around the transformer station, and adopt two infrared emitters of cover and infrared receiving device to form double-beam system, the output terminal of infrared receiving device (2) is connected with the input end of central information processor (3);
B), the output terminal of central information processor (3) is connected with wireless data communications unit (4) input end with acoustic-optic alarm (5);
C), wireless data communications unit (4) carry out radio communication with the transmission data with centralized control center system (8);
D), solar cell (6) produces the 12V supply voltage, its output terminal is connected with the input end of electric power management circuit (7);
E), electric power management circuit (7) converts the supply voltage of solar cell the supply voltage of 3.3V to, its output terminal is connected with infrared launcher (1), infrared receiving device (2), central information processor (3), wireless data communications unit (4) and the power end of acoustic-optic alarm (5) respectively.
2. according to the described transforming plant distributed infrared surveillance supervisory system of claim 1, it is characterized in that: described infrared launcher (1) and infrared receiving device (2) adopt permanent the victory to reach infrared transmitting tube ST-1KL3 and the integrated infrared receiver HS0038B that Electronics Co., Ltd. produces respectively; The STC89C516RD+40C-PDIP that described central information processor (3) adopts macrocrystalline company to produce; The STR-11 pattern piece that described wireless data communications unit (4) adopts Shanghai Sang Bo Science and Technology Ltd. to produce; The solar electric power supply system ST-12 that described solar cell (6) adopts Shenzhen A Bolai Science and Technology Ltd. to produce; Described electric power management circuit (7) adopts power conversion chip, and the model of this chip is LT1764A-3.3V.
3. according to the described transforming plant distributed infrared surveillance supervisory system of claim 2, it is characterized in that: described infrared transmitting tube and integrative infrared receiver are installed on the adjustable support.
CN201020546231XU 2010-09-29 2010-09-29 Distributed infrared warning monitoring system for transformer substation Expired - Lifetime CN201829012U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201020546231XU CN201829012U (en) 2010-09-29 2010-09-29 Distributed infrared warning monitoring system for transformer substation

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Application Number Priority Date Filing Date Title
CN201020546231XU CN201829012U (en) 2010-09-29 2010-09-29 Distributed infrared warning monitoring system for transformer substation

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CN201829012U true CN201829012U (en) 2011-05-11

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101950460A (en) * 2010-09-29 2011-01-19 自贡电业局 Distributed infrared warning monitoring system for transformer substation
CN105205961A (en) * 2015-10-17 2015-12-30 国网山东省电力公司枣庄供电公司 Intelligent rail system for transformer
CN105513245A (en) * 2015-12-15 2016-04-20 国家电网公司 35kV transformer substation multi-layer safety protection system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101950460A (en) * 2010-09-29 2011-01-19 自贡电业局 Distributed infrared warning monitoring system for transformer substation
CN105205961A (en) * 2015-10-17 2015-12-30 国网山东省电力公司枣庄供电公司 Intelligent rail system for transformer
CN105513245A (en) * 2015-12-15 2016-04-20 国家电网公司 35kV transformer substation multi-layer safety protection system

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
ASS Succession or assignment of patent right

Owner name: STATE ELECTRIC NET CROP.

Effective date: 20140106

C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20140106

Address after: 643000 Zigong city of Sichuan Province, Ziliujing District tanmulin Street No. 115

Patentee after: Zigong Electric Power Bureau

Patentee after: State Grid Corporation of China

Address before: Zigong City, Sichuan province 643000 tanmulin Street No. 115

Patentee before: Zigong Electric Power Bureau

CX01 Expiry of patent term
CX01 Expiry of patent term

Granted publication date: 20110511