CN101750985A - Remote temperature sensing and monitoring system and method for 0.4kV low voltage switch - Google Patents

Remote temperature sensing and monitoring system and method for 0.4kV low voltage switch Download PDF

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Publication number
CN101750985A
CN101750985A CN200810227494A CN200810227494A CN101750985A CN 101750985 A CN101750985 A CN 101750985A CN 200810227494 A CN200810227494 A CN 200810227494A CN 200810227494 A CN200810227494 A CN 200810227494A CN 101750985 A CN101750985 A CN 101750985A
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temperature
rtu
master station
low tension
switch
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CN200810227494A
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CN101750985B (en
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郑敦森
李龙学
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FAW Group Corp
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Abstract

The invention discloses remote temperature sensing and monitoring system and method for a 0.4kV low voltage switch. The system mainly comprises a temperature sensor, a temperature logging device with a communication function, a field RTU (Remote Terminal Unit), a master station RTU and a computer equipped with monitoring software. According to the remote temperature sensing and monitoring method, the temperature sensor sends temperature signals of all main contacts of the 0.4kV low voltage switch to the temperature logging device; the temperature logging device with a communication function communicates with the field RTU and sends the temperature signals to the field RTU and then sends the temperature signals to the master station RTU; and then, the master station RTU communicates with the computer; and contract temperature values of the switch and alarming images which are monitored by a display screen are displayed on the computer. The temperature logging device can be replaced with a temperature module of a PLC (Programmable Logic Controller), and if the field RTU is changed into a field PLC and the master station RTU is changed into a mater station PLC, the remote temperature sensing and monitoring can also be realized.

Description

0.4kV the remote temperature sensing of low tension switch and supervisory system and method
Technical field
The present invention relates to the online remote temperature sensing technology at the charged position of 0.4KV low tension switch be monitored the System and method for of low tension switch running status in a kind of temperature control automatic technology, the particularly comprehensive automation of transformer station's microcomputer.
Background technology
The transformer station of domestic present application microcomputer comprehensive automation, automated system from function, structure, operational reliability, ease of use, safeguard that terseness, aspects such as upgrading rapidity etc. have showed great superiority.But the popular and ripe integrated automation of transformation stations is used for the above high-pressure system (electric company is in the majority) of 10KV mostly.High pressure inlet wire more than common 35KV or the 10KV is through the factory power supply system of secondary step-down; automatically-monitored and the protection that its distribution equipment is implemented generally only relates to 35KV or 10KV transformer station or transformer; seldom there is producer to consider the 0.4KV low-voltage power supply system is implemented " remote measurement "; also only be confined to electric current even considered; " remote measurement " of voltage parameter; this vital parameter of temperature is not taken into account; make existing automated system lack effective monitoring means, most stages that still rest on person on duty's manual patrol and inspection for the operation of the maximum 0.4KV low tension switch of potential faults in the transformer station always.Checking efficiency is low, ignores easily and omits potential faults, usually is repairing again after breaking down or causing damage, and is difficult to accomplish preventative maintenance targetedly and processing.Can't react duty in the actual switch operational process again by general electric current, the isoparametric monitoring of voltage comprehensively, especially can't react low tension switch have no abnormal, whether have shortcoming and a potential faults.
Summary of the invention
For solving an above-mentioned difficult problem that 0.4KV low tension switch running status is lacked effective monitoring means, the invention provides a kind of temperature by charged position, online remote measurement 0.4KV low tension switch contact, realize system and method to the monitoring of 0.4KV low tension switch, in time find switch faults such as low because of voltage, that electric current big, bear that load is excessive, wiring loosening or main contacts that inner contact loose contact and other reasons cause is overheated, in time follow the tracks of the variation of temperature rise, the remote temperature sensing of switch is combined with automation of transformation substations technology, realize long-haul telemetry and monitoring.
The remote temperature sensing of 0.4KV low tension switch of the present invention and monitoring, mainly comprise temperature sensor, the temperature polling instrument of band communication function, on-the-spot RTU and the RTU of master station, the computing machine of monitoring software is installed, its signal flow closes: temperature sensor is sent the temperature signal of each main contacts of 0.4KV low tension switch into temperature polling instrument, the temperature polling instrument and the on-the-spot RTU of band communication function carry out communication, temperature signal is sent into on-the-spot RTU, on-the-spot RTU delivers to signal the RTU of master station again, the RTU of master station carries out communication with computing machine again, the switch contact temperature value and the warning picture of display screen monitoring on computers.
The said temperature logging can replace with the thermal module of PLC (programmable controller), and on-the-spot RTU and the RTU of master station are replaceable simultaneously is on-the-spot PLC and the PLC of master station.
The remote temperature sensing and the method for supervising of 0.4KV low tension switch of the present invention comprise the steps:
(1) detect the temperature that each phase contact of 0.4KV low tension switch passes in and out tape electricity position with temperature sensor, sensor is delivered to temperature polling instrument with the temperature signal of contact, shows contact temperature at temperature polling instrument;
(2) temperature polling instrument and the on-the-spot RTU of band communication function carry out communication, and the temperature signal of each phase contact of 0.4KV low tension switch is sent into on-the-spot RTU;
(3) on-the-spot RTU carries out data communication through communication cable and the RTU of master station, and temperature signal is delivered to the RTU of master station;
(4) RTU of master station carries out communication with the computing machine of master station again, obtain the temperature value of all on-the-spot each phase contacts of on-the-spot 0.4KV low tension switch, by the monitoring software on the operation computing machine, the switch contact temperature value and the warning picture of display screen monitoring are on computers realized monitoring temperature;
(5) report to the police when the temperature departure normal value and when surpassing the scope of regulation, in time find the abnormality of switch, be convenient to operator on duty or the maintenance personal hidden danger of in time checking targetedly and fix a breakdown.
In the step (1), described sensor can be stickup on the turnover tape electricity position of each phase main contacts of low tension switch, fixing SMD temperature sensor, also can use non-contacting sensor to carry out selection of temperature signal.
Temperature polling instrument in step (1), (2) can replace with the thermal module of PLC, and on-the-spot RTU and the RTU of master station in step (2), (3) (4) changes on-the-spot PLC and the PLC of master station into simultaneously, can realize said temperature remote measurement and monitoring equally.
The present invention is by carrying out overall monitor to 0.4KV low tension switch three-phase contact temperature, the distribution situation of being convenient to pass in and out mutually the temperature value of line contact determines whether switch has problems and hidden danger by each, by failure cause or the fault coverage that the isoparametric analysis-by-synthesis of electric current, the voltage of remote temperature sensing situation and switch is helped judge that switch may exist, example: if having only A phase leading-out terminal contact temperature higher, may be the loosening or loose contact of A phase leading-out terminal cable, also may be that A phase long-term load causes the overheated heat transfer in contact to reasons such as leading-out terminals greater than other two-phase; If low tension switch three-phase contact temperature is higher comprehensively, but the temperature difference of turnover line is very little, then may be reasons such as the bigger than normal or switch heat radiation of load is bad; If low tension switch three-phase contact temperature is higher comprehensively, the temperature difference of turnover line is bigger, then may be reasons such as big or other self problems of switch contact contact resistance.Help our timely failure judgement hidden danger by analysis, determine maintenance program above-mentioned actual motion state.
The present invention can also carry out " remote measurement " to charged 0.4KV low tension switch contact temperature to online, by online " remote measurement " of temperature and combining of automation of transformation substations technology, realization is to the monitoring in the running status of 0.4KV low tension switch, further improve the automatization level of transformer station, widened the monitoring range of the automation of transformation substations greatly, in real time transformer station's low tension switch or supply line are monitored, in time find fault and hidden danger, be convenient to on-call maintenance equipment, improve the reliability of equipment operation.The widening of monitoring range also makes the most of important parameters that need in the equipment routing inspection to pay close attention to be included into the scope of automation of transformation substations monitoring, alleviated daily workload of patrolling and examining, checking efficiency and specific aim have been improved, and can substitute the traditional artificial equipment routing inspection of transformer station to a great extent, saved human resources greatly.
Description of drawings
Fig. 1 is sensor of the present invention and temperature polling instrument synoptic diagram.
Fig. 2 is temperature polling instrument and on-the-spot RTU communication flow figure.
Fig. 3 is on-the-spot RTU RTU of master station and host computer workflow diagram.
Each component symbol explanation:
1,2-low tension switch, 3-temperature polling instrument, the on-the-spot RTU (Remote Terminal Unit remote terminal controlling of sampling unit) of 4-, the RTU of 5-master station, 6-computing machine (2,1 is equipped with 1 usefulness)
Embodiment
The present invention is further described below in conjunction with accompanying drawing and example.
Embodiment 1.
With reference to Fig. 1,2,3, the remote temperature sensing of 0.4KV low tension switch of the present invention and supervisory system, mainly comprise temperature sensor, band communication function temperature polling instrument, on-the-spot RTU, the RTU of master station, the computing machine of monitoring software is installed.
The remote temperature sensing and the method for supervising of 0.4KV low tension switch of the present invention comprise the steps:
(1) detect the temperature that each phase contact of 0.4KV low tension switch passes in and out tape electricity position with temperature sensor, this example adopts SMD temperature sensor, to stickup, fixed temperature sensor on all 0.4kv low tension switches of transformer station.As shown in Figure 1, corresponding 6 points for measuring temperature of each 0.4kv switch, then per two low tension switches then have 12 points for measuring temperature, i.e. 12 SMD temperature sensors.The three-phase that low tension switch turnover line low tension switch is pasted, is fixed to SMD temperature sensor with organosilicon heat-conducting glue bonding agent passes in and out stickup on line main contacts copper bar or the Wiring nose, fixing, this SMD temperature sensor integral insulation, on the copper bar of contact, the Wiring nose, this SMD temperature sensor integral insulation, sensing range 0-150 ℃.
(2) use the temperature polling instrument 3 of being with communication function in the example, each temperature polling instrument 3 can be gathered the temperature signal of 12 points for measuring temperature of monitoring, and promptly per 1 temperature polling instrument can detect the contact temperature value of two low tension switches.The KSL series of temperatures logging that the Kunlun, temperature polling instrument Beijing seashore company produces, the thermometric passage of each point for measuring temperature all can operation to specifications independently carry out the setting of range, alarming value, and can independently set each passage zero point and full scale correction, can effectively reduce sensor error, improve The measuring precision.KSL series of temperatures logging has the RS485 serial communication function, and the temperature signal that temperature polling instrument is sent into each sensor transmits temperature data by the RS485 communication port to on-the-spot RTU after being automatically converted to digital quantity.
(3) on-the-spot RTU 4 carries out data communication by self communication port and temperature polling instrument.On-the-spot RTU carries out data communication by the communication port and the temperature polling instrument of five string cards, uses the RS485 serial ports, reads the temperature digital signal of each passage with the communications command of temperature polling instrument.Five serial port boards send to CPU board to the temperature value data that read by the bus of on-the-spot RTU4 mainframe box, after CPU board is received the temperature value data, program becomes China Power stipulations standard CD T91 digital signal to all packing data, sends to FSK plate (modulatedemodulate tuned plate) via the RS232 serial ports on the CPU board.The FSK plate is modulated into simulating signal to the digital signal of receiving, is divided into data feedback channel and down going channel, and row is sent to the RTU5 of master station by telecommunication cable through channel switching.
(4) RTU5 of master station receives each minute FSK plate of delivering in MODEM (modulator-demodular unit) cabinet of the simulating signal uploaded of transformer station and carries out demodulation, the FSK plate send the digital signal that demodulation is come out in the MOXA card (multi-serial-port card) by the RS232 serial ports, multi-serial-port card is changed the digital signal of receiving, become the Network Transmission signal of ICP/IP protocol, send to the network switch by the LAN lan interfaces on the multi-serial-port card.The computing machine 6 of master station is connected with the network switch of the RTU5 of master station, collect the TCP/IP packet that sends from multi-serial-port card, multi-serial-port card driving in the server is separated the TCP/IP bag of receiving and is bundled into the message that meets CDT91 electric power stipulations standard, the EpSynall monitoring software of installing on the computing machine by the electric power enterprise exploitation makes an explanation to CDT91 electric power stipulations standard, the information that comprises in the stipulations message is extracted, on the picture of monitoring software, show corresponding switch temperature measured value.
(6) the real-time temperature signal of the three-phase contact of the low tension switch of computing machine 6 all substations of monitoring of master station sends information when temperature drift.Reach more than 60 ℃ this switch picture color by green yellowing when temperature signal is higher in the example, the prompting person on duty pays close attention to the duty of this switch; Reach when temperature signal is higher that this switch picture color becomes redness by green more than 70 ℃, and send the auditory tone cues of " switch temperature transfinites ", remind the person on duty to handle as early as possible, avoid causing the accident.
It is pointed out that the branch that does not then have on-the-spot RTU 4 and the RTU of main website 5 when having only a transformer station, be equivalent to have only the RTU of master station, omitted the communication between on-the-spot RTU 4 and the RTU of main website 5, all the other steps are the same, and are more simple.
In sum, the temperature signal of the 0.4KV low tension switch that SMD sensor is incited somebody to action is delivered to temperature polling instrument 3, signal is delivered to the on-the-spot RTU4 of transformer station by the RS485 connection.Signal becomes audio analog signals through five serial port boards, bus, CPU, the FSK plate of on-the-spot RTU, by special-purpose communication cable signal is uploaded to the RTU5 of master station and carries out data processing.The RTU5 of master station is reduced into digital signal by the FSK plate with audio analog signals again, digital signal is sent into the MOXA card of the RTU5 of master station.The MOXA card and the network switch of the RTU5 of master station carry out network communication, and the network switch of the RTU5 of master station and computing machine 6 carry out data communication.On the computing machine of master station, by moving and be provided with corresponding configuration software, and combine with " remote measurement ", " remote control ", " remote signalling " technology of transformer station, signals such as the electric current by low pressure being established switch, voltage carry out " remote measurement ", to the switch branch, close " remote signalling " signal that shape carries out " remote control " and obtains switch.Obtain the real time temperature signal of three-phase contact of the low tension switch of all substations like this in master station, the temperature of thousands of points of hundreds of is shown on server interface simultaneously, realization is to all low tension switches of each substation, the real-time monitoring of transformer equitemperature, in time grasp the low tension switch state, variation by temperature rise and electric current, the magnitude of voltage of inductive switch are judged whether its user mode normal, in time find switch because of overload, wiring is loosening and the switch contact oxidation contact resistance overheated hidden danger of switch that causes such as big.Pass through software setting, system monitoring can be realized automatic sound, light and color warning to the overtemperature signal, the location name and the warning reason of the low tension switch that reporting to the police appears in the person on duty of prompting transformer station, the person on duty can implement the operation that " remote control " divides, closes to switch immediately according to alarm condition, or carries out site inspection targetedly and handle.

Claims (9)

1.0.4KV the remote temperature sensing of low tension switch and supervisory system, it is characterized in that mainly comprising temperature sensor, the temperature polling instrument of band communication function, on-the-spot RTU and the RTU of master station, the computing machine of monitoring software is installed, its signal flow closes: temperature sensor is sent the temperature signal of each main contacts of 0.4KV low tension switch into temperature polling instrument, the temperature polling instrument and the on-the-spot RTU of band communication function carry out communication, temperature signal is sent into on-the-spot RTU, on-the-spot RTU delivers to signal the RTU of master station again, the RTU of master station carries out communication with computing machine again, the switch contact temperature value of display screen monitoring on computers and warning picture to.
2. the remote temperature sensing of 0.4KV low tension switch as claimed in claim 1 and supervisory system is characterized in that the said temperature logging can replace with the thermal module of PLC, and on-the-spot RTU and the RTU of master station are replaceable simultaneously is on-the-spot PLC and the PLC of master station.
3. the remote temperature sensing of 0.4KV low tension switch as claimed in claim 1 and supervisory system is characterized in that described temperature sensor is for pasting, fix SMD temperature sensor or non-contacting sensor on the turnover tape electricity position of each phase main contacts of low tension switch.
4. as claim 1, the remote temperature sensing of 2 or 3 described 0.4KV low tension switches and supervisory system, it is characterized in that its signal flow relation is specially: the temperature signal of the 0.4KV low tension switch that temperature sensor is incited somebody to action is delivered to temperature polling instrument, signal is delivered to the on-the-spot RTU of transformer station by the RS485 connection, signal is through five serial port boards of on-the-spot RTU, bus, CPU, the FSK plate becomes audio analog signals, by special-purpose communication cable signal is uploaded to the RTU of master station and carries out data processing, the RTU of master station is reduced into digital signal by the FSK plate with audio analog signals again, digital signal is sent into the MOXA card of the RTU of master station, the MOXA card and the network switch of the RTU of master station carry out network communication, the network switch of the RTU of master station and computing machine carry out data communication, on computers the switch contact temperature value of display monitoring and warning picture.
5.0.4KV the remote temperature sensing of low tension switch and method for supervising is characterized in that comprising the steps:
(1) detect the temperature that each phase contact of 0.4KV low tension switch passes in and out tape electricity position with temperature sensor, sensor is delivered to temperature polling instrument with the temperature signal of contact, shows contact temperature on temperature polling instrument;
(2) temperature polling instrument and the on-the-spot RTU of band communication function carry out communication, and the temperature signal of each phase contact of 0.4KV low tension switch is sent into on-the-spot RTU;
(3) on-the-spot RTU carries out data communication through communication cable and the RTU of master station, and temperature signal is delivered to the RTU of master station;
(4) RTU of master station carries out communication with the computing machine of master station again, obtain the temperature value of all on-the-spot each phase contacts of on-the-spot 0.4KV low tension switch, by the monitoring software on the operation computing machine, the switch contact temperature value of display monitoring and warning picture are realized monitoring temperature on computers;
(5) report to the police when the temperature departure normal value and when surpassing the scope of regulation, in time find the abnormality of switch, be convenient to operator on duty or the maintenance personal hidden danger of in time checking targetedly and fix a breakdown.
6. the remote temperature sensing of 0.4KV low tension switch as claimed in claim 5 and method for supervising, step (1), (2) described temperature polling instrument replace with the thermal module of PLC, change on-the-spot RTU in step (2), (3), (4) and the RTU of master station into on-the-spot PLC and the PLC of master station respectively simultaneously.
7. as the remote temperature sensing and the method for supervising of claim 5 or 6 described a kind of 0.4KV low tension switches, it is characterized in that in the step (1) that described temperature sensor is to paste, fix SMD temperature sensor or non-contacting sensor on the turnover tape electricity position of each phase main contacts of low tension switch.
8. the remote temperature sensing of a kind of 0.4KV low tension switch as claimed in claim 5 and method for supervising, it is characterized in that step (1) in the step (4) temperature sensor will the temperature signal of 0.4KV low tension switch deliver to temperature polling instrument, signal is delivered to the on-the-spot RTU of transformer station by the RS485 connection, signal is through five serial port boards of on-the-spot RTU, bus, CPU, the FSK plate becomes audio analog signals, by special-purpose communication cable signal is uploaded to the RTU of master station and carries out data processing, the RTU of master station is reduced into digital signal by the FSK plate with audio analog signals again, digital signal is sent into the MOXA card of the RTU of master station, the MOXA card and the network switch of the RTU of master station carry out network communication, and the network switch of the RTU of master station and computing machine carry out data communication.
9. as the remote temperature sensing and the method for supervising of claim 5 or 8 described a kind of 0.4KV low tension switches, in its characterization step (4) on the computing machine of master station, by moving and be provided with corresponding configuration software, and with " remote measurement " of transformer station, " remote control ", " remote signalling " technology combines, low pressure is established the electric current of switch, signals such as voltage carry out " remote measurement ", branch to low tension switch, close shape and carry out " remote control ", and obtain " remote signalling " signal of switch, obtain the real time temperature of three-phase contact of the low tension switch of all substations like this in master station, electric current, voltage signal is realized all low tension switches of each substation are monitored in real time.
CN2008102274941A 2008-11-27 2008-11-27 Remote temperature sensing and monitoring system and method for 0.4kV low voltage switch Active CN101750985B (en)

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Cited By (4)

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CN105186700A (en) * 2015-11-03 2015-12-23 国网上海市电力公司 Safety monitoring system for building power consumption
CN108693804A (en) * 2018-05-11 2018-10-23 广东冉盛科学仪器有限公司 A kind of contactless monitoring device and processing method
CN110035257A (en) * 2019-03-08 2019-07-19 成都国铁电气设备有限公司 A kind of substation equipment Current Voltage value and temperature integrated analysis system and method
CN115801183A (en) * 2022-10-19 2023-03-14 卡斯柯信号有限公司 Safety coding transmission device for track signal system

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CN2783285Y (en) * 2004-12-14 2006-05-24 李修章 Infrared temperature detector for electric power switch equipment
CN2777661Y (en) * 2005-07-27 2006-05-03 张华� On line temp wireless monitoring system for distributing and transforming apparatus
CN2864634Y (en) * 2005-12-23 2007-01-31 保定天威集团有限公司 Intelligent temperature patrol detector
CN200941696Y (en) * 2006-08-23 2007-08-29 陈明德 One-set multi-rute induction heater having segamental temp regulation
CN200959168Y (en) * 2006-08-23 2007-10-10 江苏省电力公司常州供电公司 Temperature-sensing systems of power-supply and electric apparatus in transformer substation
CN100533081C (en) * 2007-05-31 2009-08-26 淄博惠工仪器有限公司 Switch cabinet contact temperature monitoring and alarming system

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105186700A (en) * 2015-11-03 2015-12-23 国网上海市电力公司 Safety monitoring system for building power consumption
CN108693804A (en) * 2018-05-11 2018-10-23 广东冉盛科学仪器有限公司 A kind of contactless monitoring device and processing method
CN110035257A (en) * 2019-03-08 2019-07-19 成都国铁电气设备有限公司 A kind of substation equipment Current Voltage value and temperature integrated analysis system and method
CN110035257B (en) * 2019-03-08 2020-07-31 成都国铁电气设备有限公司 System and method for comprehensively analyzing current and voltage values and temperatures of transformer substation equipment
CN115801183A (en) * 2022-10-19 2023-03-14 卡斯柯信号有限公司 Safety coding transmission device for track signal system
CN115801183B (en) * 2022-10-19 2024-08-27 卡斯柯信号有限公司 Safety code transmission device for track signal system

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