CN204189300U - A kind of high voltage electric equipment device for detecting temperature - Google Patents

A kind of high voltage electric equipment device for detecting temperature Download PDF

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Publication number
CN204189300U
CN204189300U CN201420652998.9U CN201420652998U CN204189300U CN 204189300 U CN204189300 U CN 204189300U CN 201420652998 U CN201420652998 U CN 201420652998U CN 204189300 U CN204189300 U CN 204189300U
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China
Prior art keywords
temperature
circuit
signal
electric equipment
high voltage
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Expired - Fee Related
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CN201420652998.9U
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Chinese (zh)
Inventor
王鑫
俎洋辉
刘伟
吴强
黄燕艳
罗仁俊
周方圆
曹洋
熊强
杨磊
沈丁建
文韬
邓建华
龙礼兰
叶春明
雷立
何伯钧
汪小梅
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State Grid Corp of China SGCC
Anyang Power Supply Co of State Grid Henan Electric Power Co Ltd
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State Grid Corp of China SGCC
Anyang Power Supply Co of State Grid Henan Electric Power Co Ltd
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Application filed by State Grid Corp of China SGCC, Anyang Power Supply Co of State Grid Henan Electric Power Co Ltd filed Critical State Grid Corp of China SGCC
Priority to CN201420652998.9U priority Critical patent/CN204189300U/en
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Publication of CN204189300U publication Critical patent/CN204189300U/en
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    • Y02E60/74
    • Y02E60/7884
    • YGENERAL 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
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS 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
    • Y04S10/00Systems supporting electrical power generation, transmission or distribution
    • Y04S10/30State monitoring, e.g. fault, temperature monitoring, insulator monitoring, corona discharge
    • Y04S40/143

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  • Arrangements For Transmission Of Measured Signals (AREA)

Abstract

The utility model discloses a kind of high voltage electric equipment device for detecting temperature, comprising: temperature detecting unit, signal conversion unit and encoding output unit, encoding output unit comprises CPLD chip and optical fiber transtation mission circuit.The temperature value of monitoring point is converted to resistance signal by temperature detecting unit, and transfer to signal conversion unit, the resistance signal of correspondence is converted to frequency signal and transfers to CPLD chip by signal conversion unit, CPLD chip adopts coded system, by optical fiber transtation mission circuit, temperature code signal is transferred to outside control system in the mode of light signal, and external control system completes the reading of temperature code signal by decoding process.The utility model, while isolated high-voltage is on temperature survey impact, makes that the structure of temperature monitoring system simplifies further, reliability improves, precision increases, transmission range increases, cost reduces.

Description

A kind of high voltage electric equipment device for detecting temperature
Technical field
The utility model relates to a kind of device for detecting temperature, is specifically related to a kind of device being applied to high voltage electric equipment temperature monitoring based on Phototube Coupling.
Background technology
In static reactive power compensation system and electrical power trans mission/distribution system, thyristor is very important ingredient as a kind of electronic switching device of key.During work, thyristor bears the impact of big current continually, if radiating condition is bad, the temperature on thyristor can be caused too high, will directly reduce the current capacity of thyristor like this, in the serviceable life of loss thyristor, even burn thyristor; Simultaneously thyristor is expensive, is therefore very necessary to the operating temperature Real-Time Monitoring being in high-potential thyristor.Following several temperature detection mode is mainly contained in the middle of prior art:
Prior art 1 for publication number be CN2396386U, on November 25th, 1999 apply for, Chinese utility model patent disclosed in 13 days September in 2000 " high pressure and ultra-high pressure switch contact temperature pick-up unit ".The temperature-detecting device that this utility model patent describes is made up of self-power supply device, Digital Measurement of Temperature and infrared communication unit.Self-power supply device is the Power supply measuring junction be coupled out from bus-bar.Adopt integrated digital temperature element.And adopt infrared communication and main control computer to realize data to transmit.Achieve high-low pressure isolation by infrared communication, but infrared communication has apart from short, can not move in communication process, meet the shortcomings such as barrier communicating interrupt, be not suitable for the detection of high-pressure thyristor valve temperature.
Prior art 2 for publication number be CN2833540U, on October 28th, 2005 apply for, Chinese utility model patent disclosed in 1 day November in 2006 " temperature detector of high voltage electric equipment ".The temperature-detecting device that this utility model patent describes is by being that the wake-up of core and temperature test circuit, infrared communication circuit and supplying cell form with single-chip microcomputer.Its wake-up circuit unit is made up of single-chip microcomputer, the phase inverter being connected in the DTI1 end of this single-chip microcomputer and capacitance-resistance coupling oscillatory circuit; Its temperature test circuit unit is made up of single-chip microcomputer, the thermistor being connected in the ADC7 end of this single-chip microcomputer, sampling resistor and three test gear transfer resistances; Its infrared communication circuit by single-chip microcomputer, be connected in this single-chip microcomputer XCK hold infrared remote receiver and be connected in this single-chip microcomputer ADCO hold infrared transmitting tube form.It is a kind of high voltage electric equipment temperature detector of the contact based on Infrared Transmission.Owing to adopting the mode isolated high-voltage of infrared communication, weak point is identical with document 1; Adopt the power supply mode of battery to bring the inconvenience of follow-up maintenance simultaneously.
Prior art 3 for publication number be CN201016816U, on March 22nd, 2007 apply for, Chinese utility model patent " temperature-detecting device " disclosed in 6 days February in 2008.This utility model patent discloses a kind of temperature-detecting device be made up of control chip and temperature sensing circuit, form primarily of control chip, tri-state gate circuit and temperature sensing circuit, the temperature signal that temperature sensing circuit gathers is transferred to control chip after tri-state gate circuit signal amplifies, after control chip process, obtain current environment temperature.Although the pick-up unit of this patent can Real-Time Monitoring temperature, owing to not taking the measure of height potential isolation, can only testing environment temperature, the check point for band noble potential is helpless.
Therefore, the temperature detection for reactive-load compensation or DC transmission system mesohigh electrical equipment electronic switching device becomes when previous technical matters urgently to be resolved hurrily.
Utility model content
In view of this, the purpose of this utility model is to provide that a kind of structure is simple, measuring accuracy is high, reliability is strong, transmission range is long, cost is low, can the effective high voltage electric equipment device for detecting temperature that affects temperature survey of isolated high-voltage.
In order to realize above-mentioned utility model object, the utility model specifically provides a kind of technic relization scheme of high voltage electric equipment device for detecting temperature, high voltage electric equipment device for detecting temperature, comprise: temperature detecting unit, signal conversion unit and encoding output unit, described encoding output unit comprises CPLD chip and optical fiber transtation mission circuit further.Described temperature detecting unit is connected with signal conversion unit, and described signal conversion unit is connected with CPLD chip, and described CPLD chip is connected with optical fiber transtation mission circuit.The temperature value of monitoring point is converted to resistance signal by described temperature detecting unit, and transfer to described signal conversion unit, the resistance signal of correspondence is converted to frequency signal and transfers to CPLD chip by described signal conversion unit, described CPLD chip adopts coded system and by described optical fiber transtation mission circuit, temperature code signal is transferred to outside control system with mode optical signal, and described control system completes the reading of temperature code signal by decoding process.
Preferably, described device comprises two or more temperature detecting unit, and described temperature detecting unit detects the temperature value of two or more monitoring point, and described optical fiber transtation mission circuit passes through an optical fiber by the pumped FIR laser Signal transmissions of temperature signal to outside control system.
Preferably, described temperature detecting unit comprises unbalance bridge circuit, and described unbalance bridge circuit comprises platinum resistance temperature sensor further.Described platinum resistance temperature sensor imbeds the required monitoring point measured by screw thread, and described platinum resistance temperature sensor is an arm resistance in unbalance bridge circuit.A wire of described platinum resistance temperature sensor is connected to the power end of described unbalance bridge circuit, on the brachium pontis that all the other two wires are connected to described platinum resistance temperature sensor place respectively and the brachium pontis that is adjacent.
Preferably, described signal conversion unit also comprises operational amplifier and V/F modular converter, described operational amplifier connects the voltage output end of described unbalance bridge circuit, the resistance signal of platinum resistance temperature sensor is converted to voltage signal by described unbalance bridge circuit, and amplified by described operational amplifier, obtain the voltage signal of required scope.Voltage signal through amplifying carries out voltage-frequency conversion through described V/F modular converter, obtain corresponding to the frequency signal of voltage signal and transfer to described CPLD chip, by described CPLD chip after coding, by the optical fiber transtation mission circuit be made up of described triode, fiber optic transmitter and resistance, obtain required light pulse signal.
Preferably, three conductor cross-section sum identical length that described platinum resistance temperature sensor is drawn are same, to reduce the error that lead resistance is brought.
Preferably, described high voltage electric equipment device for detecting temperature also comprises high-pressure side and gets energy circuit, described signal conversion unit get from high-pressure side can circuit get can, described high-pressure side get can circuit be described temperature detecting unit, the circuit working of signal conversion unit, CPLD chip and optical fiber transtation mission circuit provides electric energy.
Preferably, described high-pressure side is got and can be comprised thyristor, dynamic voltage balancing resistance, dynamic voltage balancing electric capacity, amplitude limiter circuit, the first diode, the second diode and electric capacity by circuit.The series circuit be made up of described dynamic voltage balancing resistance, dynamic voltage balancing electric capacity and amplitude limiter circuit is connected in parallel on the two ends of described thyristor, described second diodes in parallel, at the two ends of described amplitude limiter circuit, to be become to connect the two ends of circuit in parallel in described amplitude limiter circuit by described first diode and capacitance group.When described thyristor bears forward voltage, to described dynamic voltage balancing electric capacity and capacitor charging, when the terminal voltage of described electric capacity exceedes setting value, described amplitude limiter circuit action, described second diode cut-off, described electric capacity stops charging, and the terminal voltage of described electric capacity remains amplitude limit value.
Preferably, the pumped FIR laser signal sent by described optical fiber transtation mission circuit comprises 1 start bit, 16 bit data positions, 8 bit check positions and 1 position of rest.
By implementing the embodiment of the utility model high voltage electric equipment device for detecting temperature, there is following beneficial effect:
(1) the utility model can effectively avoid high pressure on the impact of temperature monitoring, especially when adopting Phototube Coupling mode, by Optical Fiber Transmission coded signal, not being vulnerable to electromagnetic interference (EMI), transmission range is extended further;
(2) temperature information monitored to be transferred to control system display by communication unit by the utility model, can Real-Time Monitoring temperature variation, coordinates software can realize the protection of arbitrary temp value;
(3) the utility model does not need outside power supply separately, from the direct power taking in Qu Neng loop, high-pressure side, can save electric supply installation, reduce the complicacy of system;
(4) the utility model adopts platinum resistance as temperature sensor measurement temperature, to compare thermistor etc., there are good long-time stability, good measuring accuracy, overall measuring error is no more than ± and 0.5 DEG C, simultaneous temperature sensor adopts the three-wire system mode of connection, effectively can reduce the error going between and bring.
Accompanying drawing explanation
Be illustrated more clearly in the utility model embodiment or technical scheme of the prior art, be briefly described to the accompanying drawing used required in embodiment or description of the prior art below.Apparently, the accompanying drawing in the following describes is only embodiments more of the present utility model, for those of ordinary skill in the art, under the prerequisite not paying creative work, can also obtain other embodiment according to these accompanying drawings.
Fig. 1 is the structural principle block diagram of the utility model high voltage electric equipment temperature monitoring system;
Fig. 2 is the structural principle block diagram of the utility model high voltage electric equipment temperature monitoring system decoding output unit;
Fig. 3 is the contour structures schematic diagram of platinum resistance temperature sensor in a kind of embodiment of the utility model high voltage electric equipment device for detecting temperature;
Fig. 4 is the three-wire system wiring schematic diagram of platinum resistance temperature sensor in a kind of embodiment of the utility model high voltage electric equipment device for detecting temperature;
Fig. 5 is the circuit structure schematic diagram of unbalance bridge circuit in a kind of embodiment of the utility model high voltage electric equipment device for detecting temperature;
Fig. 6 is the circuit structure schematic diagram that energy circuit is got in a kind of embodiment mesohigh of the utility model high voltage electric equipment device for detecting temperature side;
Fig. 7 is the circuit theory diagrams of a kind of embodiment of the utility model high voltage electric equipment device for detecting temperature;
Fig. 8 is the power supply the principle schematic diagram that energy circuit is got in a kind of embodiment high-pressure side of the utility model high voltage electric equipment device for detecting temperature;
Fig. 9 is the working routine process flow diagram of output unit of decoding in a kind of embodiment of the utility model high voltage electric equipment device for detecting temperature;
Wherein: 1-temperature detecting unit, 2-signal conversion unit, 3-encoding output unit, 4-gets high-pressure side energy circuit, 5-control system, 6-unbalance bridge circuit, 7-decodes output unit, 21-operational amplifier, 22-V/F modular converter, 31-CPLD chip, 32-optical fiber transtation mission circuit, 71-fiber optic receiver, 72-processor, 73-communication unit, Rf-platinum resistance temperature sensor.
Embodiment
For the purpose of quoting and know, by the technical term hereinafter used, write a Chinese character in simplified form or abridge and be described below:
CPLD:Complex Programmable Logic Device, the abbreviation of CPLD;
V/F: the abbreviation of voltage/frequency conversion;
CRC:Cyclic Redundancy Check, the abbreviation of cyclic redundancy check (CRC).
For making the object of the utility model embodiment, technical scheme and advantage clearly, below in conjunction with the accompanying drawing in the utility model embodiment, clear, complete description is carried out to the technical scheme in the utility model embodiment.Obviously, described embodiment is only a part of embodiment of the present utility model, instead of whole embodiments.Based on the embodiment in the utility model, those of ordinary skill in the art are not making the every other embodiment obtained under creative work prerequisite, all belong to the scope of the utility model protection.
As shown in accompanying drawing 1 to accompanying drawing 9, give the specific embodiment of the utility model high voltage electric equipment device for detecting temperature, below in conjunction with the drawings and specific embodiments, the utility model is described in further detail.
As shown in Figure 1, a kind of specific embodiment of high voltage electric equipment device for detecting temperature, comprising: temperature detecting unit 1, signal conversion unit 2 and encoding output unit 3, and encoding output unit 3 comprises CPLD chip 31 and optical fiber transtation mission circuit 32 further.Temperature detecting unit 1 is connected with signal conversion unit 2, and signal conversion unit 2 is connected with CPLD chip 31, and CPLD chip 31 is connected with optical fiber transtation mission circuit 32.The temperature value of monitoring point is converted to resistance signal by temperature detecting unit 1, and transfer to signal conversion unit 2, the resistance signal of correspondence is converted to frequency signal and transfers to CPLD chip 31 by signal conversion unit 2, CPLD chip 3 adopts coded system and by optical fiber transtation mission circuit 32, temperature code signal is transferred to outside control system 5 with mode optical signal, and control system 5 completes the reading of temperature decoded signal by decoding process.Except Phototube Coupling communication mode, infrared communication, radio communication, and Blue-tooth communication method also can realize the detection of noble potential isolated temperature, but limit to some extent in transmission range.In addition, when high voltage electric equipment device for detecting temperature comprises two or more temperature detecting unit 1, when temperature detecting unit 1 detects the temperature value of two or more monitoring point, optical fiber transtation mission circuit 32 by means of only an optical fiber by control system 5 extremely outside for the pumped FIR laser Signal transmissions of temperature signal, thus can effectively reduce the interface quantity of high voltage electric equipment device for detecting temperature and output unit 7 of decoding.
Wherein, the function of unit is as follows:
Temperature detecting unit 1 comprises unbalance bridge circuit 6, and unbalance bridge circuit 6 comprises platinum resistance temperature sensor Rf further, as shown in Figure 3.Platinum resistance temperature sensor Rf is an arm resistance in unbalance bridge circuit 6, as shown in Figure 5.The function of temperature detecting unit 1 detects the temperature of measurement point, completed by platinum resistance temperature sensor Rf.Platinum resistance temperature sensor Rf exports the resistance corresponding to temperature, and be supplied to temperature detecting unit 1, the structured flowchart of temperature detecting unit 1 as shown in Figure 5.Platinum resistance temperature sensor Rf imbeds the required monitoring point measured by screw thread, and adopts the three-wire system mode of connection as shown in Figure 4, effectively can reduce the measuring error that lead resistance is brought.Three-wire system mode of connection principle is as follows: premise calls is that three conductor cross-section sum identical length that platinum resistance temperature sensor RF draws are same.In the unbalance bridge circuit 6 measuring platinum resistance temperature sensor Rf, platinum resistance temperature sensor Rf is as an arm resistance of electric bridge, one, wire is received the power end of unbalance bridge circuit 6, on all the other two brachium pontis receiving platinum resistance temperature sensor R place respectively and the brachium pontis be adjacent, as shown in Figure 5, Rt represents the actual value of temperature sensor R platinum resistance, and r represents lead resistance.When bridge balancing, known by calculating, Rt=R1R3/R2+R1r/R2-r, as R1=R2, Rt=R3.The change of visible lead resistance without any impact, thus eliminating the need the measuring error that wire line resistance brings on measurement result.
The resistance signal that temperature detecting unit 1 generates mainly is converted to frequency signal and exports by the function of signal conversion unit 2.As shown in Figure 7, signal conversion unit 2 also comprises operational amplifier 22 and V/F modular converter 23, operational amplifier 22 connects the voltage output end of unbalance bridge circuit 6, the resistance signal of platinum resistance temperature sensor Rf is converted to voltage signal by unbalance bridge circuit 6, and amplified by operational amplifier 22, obtain the voltage signal of required scope.Voltage signal through amplifying carries out voltage-frequency conversion through V/F modular converter 23, obtain corresponding to the frequency signal of voltage signal and transfer to CPLD chip 31, by CPLD chip 31 after coding, by the optical fiber transtation mission circuit 32 be made up of triode D1, fiber optic transmitter TX and resistance R7, obtain required light pulse signal.As shown in Figure 8, high voltage electric equipment device for detecting temperature also comprises high-pressure side further and gets energy circuit 21, signal conversion unit 2 get from high-pressure side can circuit get can, high-pressure side get can circuit 21 be temperature detecting unit 1, the circuit working of signal conversion unit 2, CPLD chip 31 and optical fiber transtation mission circuit 32 provides electric energy.
As shown in Figure 6, high-pressure side is got and can be comprised thyristor T1, dynamic voltage balancing resistance R1, dynamic voltage balancing electric capacity C1, amplitude limiter circuit XF, the first diode V1, the second diode V2 and electric capacity C2 further by circuit 21.The series circuit be made up of dynamic voltage balancing resistance R1, dynamic voltage balancing electric capacity C1 and amplitude limiter circuit XF is connected in parallel on the two ends of thyristor T1.Second diode V2 is connected in parallel on the two ends of amplitude limiter circuit XF, forms by the first diode V1 and electric capacity C2 the two ends that series circuit is connected in parallel on amplitude limiter circuit XF.When thyristor T1 bears forward voltage, charge to dynamic voltage balancing electric capacity C1 and electric capacity C2, when the terminal voltage of electric capacity C2 exceedes setting value (as DC50V), amplitude limiter circuit XF action, second diode V2 ends, electric capacity C2 stops charging, and the terminal voltage of electric capacity C2 remains amplitude limit value, and the energy of storage supplies needed for circuit working.
Shown in accompanying drawing 7, temperature detecting unit 1 utilizes the principle of unbalanced bridge, and resistance signal is converted to voltage signal.Platinum resistance temperature sensor Rf is as an arm resistance, unbalanced bridge is formed with R1, R2, R3, after the resistance of platinum resistance Rt changes, the voltage difference in the middle of electric bridge between m, n 2 also changes thereupon, namely realizes resistance signal and is converted to voltage signal.Signal conversion unit 2, after degenerative operational amplifier 21 amplifies certain multiple, can obtain the voltage signal V1 of required scope, and V1 carries out voltage-frequency conversion through V/F modular converter 22, obtains the frequency signal f1 corresponding to voltage signal.CPLD chip 31 couples of frequency signal f1 of encoding output unit 3 count, process and encode, adopt the optical fiber transtation mission circuit 32 of coded system through being made up of triode Q1, fiber optic transmitter TX, resistance R7, temperature signal is transferred to outside control system 5 with mode optical signal.The output signal of encoding output unit 3 is required light pulse signal, and the specific embodiment of the invention adopts optical signal transmission mode to achieve the isolation of high-low pressure current potential, is not easy to be subject to outside electromagnetic interference (EMI).
As shown in Figure 2, be the system architecture diagram of high voltage electric equipment temperature monitoring system, in figure, eliminate the temperature detecting unit 1 of high voltage electric equipment temperature monitoring, signal conversion unit 2 and CPLD chip 31.High voltage electric equipment temperature monitoring system comprises decoding output unit 7 further, the function of decoding output unit 7 is mainly by light signal that optical fiber transtation mission circuit 32 exports, carry out decoding to read, be converted to the discernible binary digital signal of computing machine, and the monitor transferring to control system 5 shows.Decoding output unit 7 comprises fiber optic receiver 71, processor 72 and communication unit 73 further.The pumped FIR laser signal coming from optical fiber transtation mission circuit 32 is converted to electric impulse signal by fiber optic receiver 71, after processor 72 receives electric impulse signal, decode according to communication rule, and decoded temperature value signal is transferred to control system 5 by described communication unit 73.
As a kind of typical embodiment of the utility model, 485 communication modes are adopted to be shown by the monitor of digital data transmission to control system 5.The decoding of decoding output unit 7 is read, and signal conversion and transmission complete by processor 72, and processor 72 can adopt digital processing chip CPLD (Complex Programmable Logic Device, CPLD) to complete.Adopt CPLD process, the speed of computing can be improved, improve the real-time of temperature detection process further.Light pulse signal is converted to electric impulse signal through fiber optic receiver 71, transfers to processor 72 and processes.After processor 72 receives electric impulse signal, first digital filtering process is carried out, the interference of filtering high-frequency signal and burr signal, then within the unit interval, accumulated counts is carried out, the numerical value counted to get is divided by the unit interval, the frequency of this signal can be obtained, namely achieve electric impulse signal and be converted to binary digital signal, the temperature value representated by this electric impulse signal can be calculated according to the formula of signal conversion unit 2, and temperature information is shown by the monitor of 485 communication transfers to control system 5, reach the object of Real-Time Monitoring.The utility model describe platinum resistance temperature sensor Rf be arranged near thyristor module, platinum resistance temperature sensor Rf as a part for unbalance bridge circuit 6 in temperature detecting unit 1, for detected temperatures signal.When thyristor valve is charged, high voltage electric equipment device for detecting temperature can be got from high-pressure side and can get and can work by circuit, and read to decoding output unit 7 by Optical Fiber Transmission pulse train, after decoding, the monitor of control system 5 can be transferred to, thus reach the object of Real-Time Monitoring temperature.
Be the workflow of decoding output unit 7 as shown in Figure 9, this flow process comprises the following steps:
System initialization;
Receive the electric signal exported by fiber optic receiver 71;
Processor 72 pairs of electric signal carry out digital filtering;
Frequency counting is carried out to the temperature signal after digital filtering;
Temperature computation is carried out according to frequency counting result;
Temperature computation result is transferred to control system 5 by RS485 communication mode by communication unit 73;
The display of control system 5 shows temperature signal result.
In the utility model specific embodiment, optical signal transmission speed between optical fiber transtation mission circuit 32 and fiber optic receiver 71 is 3.125MHz, the pumped FIR laser signal format that optical fiber transtation mission circuit 32 sends is: 1 start bit, 16 bit data positions, 8 bit check positions and 1 position of rest, first transmit most significant digit, then transmit lowest order.Data check adopts CRC check, and the production of CRC check is: g (x)=x 8+ x 5+ x 4+ 1, and only data bit is verified.
By implementing the high voltage electric equipment device for detecting temperature that the utility model specific embodiment describes, following technique effect can be reached:
(1) the high voltage electric equipment device for detecting temperature that the utility model specific embodiment describes can effectively avoid high pressure on the impact of temperature monitoring, especially when adopting Phototube Coupling mode, by Optical Fiber Transmission coded signal, be not vulnerable to electromagnetic interference (EMI), transmission range is extended further;
(2) temperature information monitored is transferred to control system display by communication unit by the high voltage electric equipment device for detecting temperature that the utility model specific embodiment describes, can Real-Time Monitoring temperature variation, coordinate software can realize the protection of arbitrary temp value;
(3) the high voltage electric equipment device for detecting temperature that the utility model specific embodiment describes does not need outside power supply separately, from the direct power taking in Qu Neng loop, high-pressure side, can save electric supply installation, reduce the complicacy of system;
(4) the high voltage electric equipment device for detecting temperature that the utility model specific embodiment describes adopts platinum resistance as temperature sensor measurement temperature, to compare thermistor etc., there are good long-time stability, good measuring accuracy, overall measuring error is no more than ± and 0.5 DEG C, platinum resistance temperature sensor adopts the three-wire system mode of connection simultaneously, effectively can reduce the error going between and bring.
In this instructions, each embodiment adopts the mode of going forward one by one to describe, and what each embodiment stressed is the difference with other embodiments, between each embodiment identical similar portion mutually see.
The above is only preferred embodiment of the present utility model, not does any pro forma restriction to the utility model.Although the utility model discloses as above with preferred embodiment, but and be not used to limit the utility model.Any those of ordinary skill in the art, when not departing from Spirit Essence of the present utility model and technical scheme, the Method and Technology content of above-mentioned announcement all can be utilized to make many possible variations and modification to technical solutions of the utility model, or be revised as the Equivalent embodiments of equivalent variations.Therefore; every content not departing from technical solutions of the utility model; according to technical spirit of the present utility model to any simple modification made for any of the above embodiments, equivalent replacement, equivalence change and modification, all still belong in the scope of technical solutions of the utility model protection.

Claims (7)

1. a high voltage electric equipment device for detecting temperature, it is characterized in that, comprise: temperature detecting unit (1), signal conversion unit (2) and encoding output unit (3), described encoding output unit (3) comprises CPLD chip (31) and optical fiber transtation mission circuit (32) further; Described temperature detecting unit (1) is connected with signal conversion unit (2), described signal conversion unit (2) is connected with CPLD chip (31), and described CPLD chip (31) is connected with optical fiber transtation mission circuit (32); Described optical fiber transtation mission circuit (32) is connected with outside control system (5).
2. high voltage electric equipment device for detecting temperature according to claim 1, is characterized in that: described device comprises two or more temperature detecting unit (1).
3. high voltage electric equipment device for detecting temperature according to claim 1 and 2, it is characterized in that: described temperature detecting unit (1) comprises unbalance bridge circuit (6), described unbalance bridge circuit (6) comprises platinum resistance temperature sensor (Rf) further; Described platinum resistance temperature sensor (Rf) imbeds the required monitoring point measured by screw thread, and described platinum resistance temperature sensor (Rf) is an arm resistance in unbalance bridge circuit (6); A wire of described platinum resistance temperature sensor (Rf) is connected to the power end of described unbalance bridge circuit (6), on the brachium pontis that all the other two wires are connected to described platinum resistance temperature sensor (Rf) place respectively and the brachium pontis that is adjacent.
4. high voltage electric equipment device for detecting temperature according to claim 1, it is characterized in that: described signal conversion unit (2) also comprises operational amplifier (22) and V/F modular converter (23), and described operational amplifier (22) connects the voltage output end of described unbalance bridge circuit (6); The other end of described operational amplifier (22) is connected with V/F modular converter (23); The other end of described V/F modular converter (23) is connected with described CPLD chip (31).
5. high voltage electric equipment device for detecting temperature according to claim 4, is characterized in that: three conductor cross-section sum identical length that described platinum resistance temperature sensor (Rf) is drawn are same.
6. high voltage electric equipment device for detecting temperature according to claim 1, it is characterized in that: described high voltage electric equipment device for detecting temperature also comprises high-pressure side and gets energy circuit (21), described high-pressure side is got and can be comprised thyristor (T1), dynamic voltage balancing resistance (R1), dynamic voltage balancing electric capacity (C1), amplitude limiter circuit (XF), the first diode (V1), the second diode (V2) and electric capacity (C2) by circuit (21); The series circuit be made up of described dynamic voltage balancing resistance (R1), dynamic voltage balancing electric capacity (C1) and amplitude limiter circuit (XF) is connected in parallel on the two ends of described thyristor (T1), described second diode (V2) is connected in parallel on the two ends of described amplitude limiter circuit (XF), forms by described first diode (V1) and electric capacity (C2) two ends that series circuit is connected in parallel on described amplitude limiter circuit (XF).
7. high voltage electric equipment device for detecting temperature according to claim 1, is characterized in that: the pumped FIR laser signal that described optical fiber transtation mission circuit (32) sends comprises 1 start bit, 16 bit data positions, 8 bit check positions and 1 position of rest.
CN201420652998.9U 2014-11-04 2014-11-04 A kind of high voltage electric equipment device for detecting temperature Expired - Fee Related CN204189300U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106443187A (en) * 2016-09-23 2017-02-22 江西洪都航空工业集团有限责任公司 Temperature selector detection method
CN107063495A (en) * 2016-11-28 2017-08-18 科诺伟业风能设备(北京)有限公司 Two-wire system PT100 resistance and the compatible temperature measurement circuit of NTC resistance

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106443187A (en) * 2016-09-23 2017-02-22 江西洪都航空工业集团有限责任公司 Temperature selector detection method
CN107063495A (en) * 2016-11-28 2017-08-18 科诺伟业风能设备(北京)有限公司 Two-wire system PT100 resistance and the compatible temperature measurement circuit of NTC resistance

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