CN1560972A - Monitoring alarm device for overtemperature when (ultra) high-voltage charged body operating - Google Patents

Monitoring alarm device for overtemperature when (ultra) high-voltage charged body operating Download PDF

Info

Publication number
CN1560972A
CN1560972A CNA2004100057186A CN200410005718A CN1560972A CN 1560972 A CN1560972 A CN 1560972A CN A2004100057186 A CNA2004100057186 A CN A2004100057186A CN 200410005718 A CN200410005718 A CN 200410005718A CN 1560972 A CN1560972 A CN 1560972A
Authority
CN
China
Prior art keywords
circuit
signal
power supply
alarm
sensing power
Prior art date
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.)
Granted
Application number
CNA2004100057186A
Other languages
Chinese (zh)
Other versions
CN100461569C (en
Inventor
蒋平锁
龚文革
刘涛
张翰森
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CNB2004100057186A priority Critical patent/CN100461569C/en
Publication of CN1560972A publication Critical patent/CN1560972A/en
Application granted granted Critical
Publication of CN100461569C publication Critical patent/CN100461569C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Abstract

This invention relates to an operation over-temperature monitor alarming device for a super high voltage charged body, a test alarming unit of composed of a sensing power supply, a node thermometer, a shaping filer regulation circuit, the sensing power supply indication circuit, among which, the sensing power supply provides continuous and reliable AC circuit to the test alarming unit, the node thermometers, isolated by a heat-conduction insulation material, sticks to the surface of the monitor point closely to be serial into an electric circuit between the sensing power and shaping filter regulating circuit by the insulation lead to realize the on-off control function of over-temperature alarming. The output of the shaping filter regulating circuit is connected with the buzzer and a signal indicating circuit. A receive and an inbound unit is independent of the alarming unit and keeping effective video signal receiving distance from the monitored point.

Description

(surpassing) high voltage electrified body operation overtemperature monitoring alarm
Technical field the invention belongs to power industry and other use the field of alternating-current electric equipment.Be particularly related to electrified body and electric conductor node temperature detection alarm technology in (surpassing) high voltage power transmission and transformation system and the electric equipment operation.
The temperature monitoring and the warning of background technology (surpassing) high voltage electrified body and electric conductor node, cured method of examination temperature of different temperatures grade, contactless infrared detection technology, infrared imagery technique are pasted in remaining at possible heating position of generally adopting at present.That is popularizing has: optical-fiber temperature measuring technology that direct contact type is measured and contact type measurement, infrared signal exchange transmission technology.
Cured of examination temperature is a kind of traditional personal monitoring's method, paste different cured of deformation temperature exactly at the position that will monitor in advance, cured can in time produce deformation when test section megadyne temperature degree reaches its deformation temperature, the staff can judge the local temperature height according to cured deformation extent, whether needs the maintenance that has a power failure.The major defect of the method is: need the operations staff to carry out daily periodical inspection and examine just judging that concealment part can not be monitored, do not have instant overtemperature alarm function.To the converting equipment of unattended operation and few people on duty transformer station, also can't realize the teletransmission warning function.
Widespread usage is the hand-hold type infrared radiation detection apparatus in the infrared detection technology, and the staff carries out point-to-point directly to locating tab assembly in effective distance range, is subjected to weather (as low temperature) and artificial factor equally; Can't realize monitoring to the enclosed type electrical equipment inside and the position that can't observe directly.Infrared monitoring data upload and warning system that someone is developing can not obtain promoting owing to be subjected to limiting on the safe space; Under the situation that guarantees the safe space, there is the deficiency of certainty of measurement; Measure owing to be point-to-point straight line transmission, range of application is subjected to certain restriction.
Infrared thermal imaging technique is widely used in the scanning monitoring that heat generating spot is carried out in spacious zone, by manual operation scanning is observed in the charging equipment zone, can effectively find the fault of heat spot and hot spot.Its limitation is that special weather (thunderous, rainy day) can not work; Simultaneously, effect can not get effective performance at the small space of interior distribution chamber and in to the overheated monitoring of sealing inside electric appliance; The overheating fault dot information can not in time be uploaded.To operator's competency profiling height, tedious problem still can't overcome.
The electronic technology equipment that utilizes of more existing announcements at present carries out the patented technology that temperature monitoring is reported to the police to high voltage alive equipment, with the present invention more approaching mainly contain following several contents:
Chinese patent " high voltage appearance system temperature on-Line Monitor Device ", publication number CN2225039, open date 1996.04.17.It is to be converted to frequency signal according to the voltage signal with temperature sensor to carry out the principle that spatial emission transmits again and carry out thermometric, weave into the touring automatically monitoring in real time that the suitable control main program of single-chip microcomputer is realized the each point temperature in advance by the requirement of many measured points, show measured point and its temperature value, also can show preceding 16 temperature values of each point at any time, overtemperature alarm is also forced to thread off, and the scope of application is wide, affected by environment little, the precision height, Installation and Debugging are simple, and cost is low.This design is because its relative complexity, radio frequency limited its development to the potential interference of electric equipment relaying protection element etc.
Chinese patent " temperature alarming device of the charged contact of power high voltage ", publication number CN2228655, open date 1996.06.05.Be connected with encoder, signal emission integrated circuit behind the utility model integrated regulator successively, temperature detect switch (TDS) links to each other with the output control terminal of encoder, controlled encoder is to emission integrated circuit transfer encoding signal, and the output control terminal of encoder also is serially connected with analog switch, monostable integrated circuit, decoder, signal receiving circuit successively.When charged contact temperature was too high, then signal emission integrated circuit can be launched alarm signal, and the utility model has warning function simultaneously.This design is effectively promoted as yet owing to complex structure, cost height.
Chinese patent " high pressure and superhigh pressure switch contact temperature-detecting device ", publication number CN2396386, open date 2000.09.13.It is made up of self-power supply device, digital thermometric and infrared communication unit.Adopt the integrated digital temperature element.Between this device and the master control host computer is two-way infrared communication, and adopts specific communications protocol.This device has self-powered, transmit that signal does not disturb mutually and characteristics such as certainty of measurement height, can detect the real time temperature of high-voltage switch gear three-phase contact reliably, in time, accurately sends alarm signal.Two-way infrared radio transmission technology has contactless benefit of safety and Realtime Alerts function, and his limitation is that infrared ray requires the straight line transmission, and transmission range is subjected to Power Limitation, and concealment part monitoring difficulty makes to use and is restricted.
Chinese patent " fibre optic temperature sensor ", publication number CN2135776, open date 1993.06.09 is a kind of measurement mechanism that is used to measure all temps.This device adopts macromolecule temperature sensing material a kind of and that optical fibre refractivity is complementary to be coated in two outside of fiber that are welded together, make luminous energy import this reflecting surface and go out another root optical fiber output by an optical fiber, because this novel temperature sensing material temperature influence, refractive index changes, and therefore the luminous power and the temperature of output are functional relation.This device characteristic is: simple in structure, volume is little in light weight, easy to use, highly sensitive, good reproducibility, and antijamming capability is strong, explosion-proof.Similarly optical fiber temperature-measurement class patent also has publication number CN1400453 " distributed optical fiber temperature transducer system ", publication number CN2065756 " dual-wavelength optical-fiber temperature sensor " etc., and they all have common advantage.But the optical fiber temperature-measurement technology exists structural defective as follows: 1. wire transmission makes that switch cubicle is inner because the connection optical cable that increases causes the complicated of switch cubicle inside, may be because of the fixing improper new accident generation of bringing out of optical cable in the use of switch cubicle; Though 2. optical cable has the good insulation performance, can isolated high-voltage under the situation about not polluted on the surface, but in engineering practice,, in regional moist, corrosive environment, may take place along the discharge on optical cable surface to bring out new electric accident because the optical cable that is arranged in switch cubicle inside can be subjected to the pollution of dust etc.; 3. because optical cable adopts plastic material, can take place in time to wear out, insulation property constantly descend, and can cause the electric insulation accident along optical cable when the insulation of cable material can not meet the demands, and above-mentioned electric accident also might be brought out personal injury; 4. be not suitable for the temperature detection of outdoor electrical equipment, range of application is subject to significant restrictions; 5. optical fiber is subject to the external force fracture, and it is big to recover cost.
Summary of the invention the object of the present invention is to provide a kind of simple in structure, applied range, performance is safe and reliable, precision is high, can realize (surpassing) high voltage electrified body operation overtemperature monitoring alarm of audio alarm and luminous deixis on the spot.
Another object of the present invention is to provide a kind of can realize audio frequency instant alarming on the spot, can realize (surpassing) high voltage electrified body operation overtemperature monitoring alarm of alarm signal upload function again simultaneously.
For achieving the above object, the technical scheme that the present invention takes is: should move the overtemperature monitoring alarm by (surpassing) high voltage electrified body, its core is for measuring alarm unit, measure alarm unit and be made up of sensing power supply, node temperature meter, shaping filter voltage stabilizing circuit, buzzer and four funtion parts of signal indicating circuit, the sensing power supply is supplied with and is measured the continuously reliable alternating current of alarm unit; After the node temperature meter is isolated by heat-conducting insulation material, be close to the surface of monitoring point, be serially connected in the electric loop between sensing power supply and the shaping filter voltage stabilizing circuit, realize the switch control functions of overtemperature alarm by insulated conductor; The output of shaping filter voltage stabilizing circuit is connected with buzzer and signal indicating circuit.When the node temperature meter is closed because the monitoring point temperature reaches the setting alarm temperature, after the voltage stabilizing of induced current process shaping filter, acting on buzzer makes it send audio signal characteristic frequency, that people's ear can be heard, realize audio alarm on the spot, lumination of light emitting diode is realized luminous on the spot indication warning.
Upload warning for realizing overtemperature, realize distant place management expectancy, the present invention is on the basis of above-mentioned measurement alarm unit, also be provided with relatively independent with it, and the reception and the uploading unit of the audio signal receiving range of remaining valid with monitored point, receive the not charged position that is installed in electric equipment with uploading unit, by the audio frequency receiving circuit, pre-amplification circuit, band pass filter, rearmounted amplifying circuit, sound wave detector, the filtering wave by prolonging time device, signal indication and drive circuit thereof, relay and drive circuit thereof totally eight funtion parts connect successively and constitute, this unit provides the galvanic current source by the outside, and the circuit that constitutes an integral body is integrated.This receives the audio frequency receiving circuit with uploading unit, receive measure the audio signal that alarm unit sends after, audio signal is converted to the signal of telecommunication, amplify through pre-amplification circuit, the signal of telecommunication identical with the band pass filter characteristic frequency is by behind the band pass filter, carrying out signal by rearmounted amplifying circuit again amplifies, judge via sound wave detector and the identification of filtering wave by prolonging time device, indication of useful signal drive signal and drive circuit thereof are made luminous indication, and excite relay and drive circuit thereof to drive the actuating of relay, and the switching value signal is delivered to user SCADA system by shielded type cable realizes uploading warning.
To measuring the corona discharge of alarm unit, between the winding output line of energized conductor and sensing power supply, establish a connecting line, the equipotential of realization measurement alarm unit and energized conductor for preventing energized conductor.
Described node temperature meter adopts microminiaturized mercoid switch or double metal temperature switch.
Described sensing power supply is to use that principle of induction is made, as to have generation induced electromotive force when electric conductor moves instrument transformer.
(surpassing) provided by the invention high voltage electrified body operation overtemperature monitoring alarm has following beneficial effect:
1. measure in the alarm unit, adopt the node temperature meter as (surpassing) high voltage electrified body operation overtemperature detecting element, be arranged in the place, monitoring point separately, can improve position, monitoring point lsafety level, the monitoring of the electrified body surface temperature that realization is passed through no current realizes the measurement of the monitoring point of optional position, shape and structure is reported to the police.
2. measure the advantage that alarm unit adopts audio alarm: the operation electric equipment is not had machinery, electric or other interference; Measure alarm unit and reception and the relatively independent layout of uploading unit, but isolated operation also can merge operation, preparation flexibly; Audio signal is propagated, be adapted to indoor, outdoor layout, open, enclosed type electrical equipment adapt to the electrified body and the locus of existing various electric pressure, any structure form (geometry), and the monitoring point is arranged and is not subjected to structural factor, Effect of Environmental; Report to the police and hear, realize instant alarming on the spot, realize signal transfer function simultaneously, realize distant place management with the specific stable audio signal people's ear of buzzer; The temperature monitoring that is adapted to 330 kilovolts and following electric equipment is reported to the police.
3. the node temperature meter is serially connected in the electric loop between sensing power supply and the shaping filter voltage stabilizing circuit, only when the monitoring point temperature reaches alarm temperature, and shaping filter voltage stabilizing circuit and buzzer and signal indicating circuit work.Almost do not have energy consumption under the normal condition, do not have continuous data to upload, save the information system resource.
4. the node temperature meter adopts microminiaturized mercoid switch or double metal temperature switch, the miniaturized of sensing power supply magnetic conductor and coil, only be higher than the electrified body surface less than 10mm, after surface insulation is handled, keep the original insulation level of electric equipment can not weakened; The alarm temperature of monitoring point can be selected arbitrarily in 35-200 degree centigrade of scope according to the protection equipment requirements; Positive and negative 1 degree centigrade of temperature alarming accuracy error; Temperature monitoring is quick on the draw, and the lag time of reporting to the police on the spot, teletransmission was reported to the police lag time less than 70 seconds less than 10 seconds.
5. in reception and the uploading unit: adopted band pass filter, made the frequency identification of audio signal satisfy Testing requirement, prevented wrong report and random the newspaper; Adopted sound wave detector, effectively detected audio signal and whether exist, and realized that simulation (interchange) signal transition is a digital signal; The filtering wave by prolonging time device is to send working signal after buzzer sends the audio signal certain hour, has prevented the false alarm that outside noisy audio signal may cause the influence of installing.
6. in the shaping filter voltage stabilizing circuit, adopted the three-terminal voltage-stabilizing circuit, made product adaptation electric equipment operation load range extensive, safe and reliable work in electrical load 10%--150%.
7. measuring alarm unit has adopted with the equipotential of electrified body and has handled.When the transient earthing fault appears in equipment under test, measure not therefore fault of alarm unit; When tested electric equipment because during other reasons generation electric accident, can the expansion that cause the accident because of the existence of measuring alarm unit; This unit obtains good operation stability; Electrical discharge between electrified body and the measurement alarm unit can not take place, safe and reliable under any voltage.
8. utilize existing transformer station information system or LAN system to carry out the signal transmission, do not have the information system overlapping investment.
9. circuit constitutes simply, and reasonable in design, performance is safe and reliable, and Installation and Debugging are simple, and cost is low, is convenient to promote.
Description of drawings Fig. 1 is (surpassing) high voltage electrified body operation overtemperature monitoring alarm theory diagram
Fig. 2 measures the alarm unit key wiring diagram among the embodiment
Fig. 3 receives and the uploading unit key wiring diagram among the embodiment
Embodiment as shown in Figure 1, the embodiment of (surpassing) provided by the invention high voltage electrified body operation overtemperature monitoring alarm, be made up of separate measurement alarm unit and reception and two parts of uploading unit, the SCADA system is user's data collection and supervisor control.That is:
The sensing power supply of measuring in the alarm unit 1 is an induction power supply according to the electromagnetic induction principle design, it relies on the alternating current in the single-phase electric conductor that moves to produce induced electromotive force, node temperature meter 2 is the temperature switches that are close to the monitoring point, when the monitoring point temperature reaches set point, 2 conductings of node temperature meter, the alternating current that induced electromotive force produces in the closed-loop path, change direct current into through shaping filter voltage stabilizing circuit 3 with power, drive the lumination of light emitting diode in buzzer and the signal indicating circuit 4, the buzzer of characteristic frequency is rung, and realizes audio alarm on the spot, luminous indication and sound wave propagation function.
The spatial transmission of the audio signal (sound wave) that buzzer produces around in the monitoring point, in reception and the uploading unit: the MIC of audio frequency receiving circuit 5 (microphone) receives audio signal at coverage, and convert thereof into the signal of telecommunication, after pre-amplification circuit 6 amplifications, carry out filtering by the characteristic frequency band pass filter 7 identical again with audio signal frequency, further amplify via rearmounted amplifying circuit 8, deliver to sound wave detector 9, when audio signal input sound wave detector 9, be output as electronegative potential, otherwise be high potential, realize that analog quantity is converted into digital signal; The delay time of filtering wave by prolonging time device 10 is set by field condition, when the electronegative potential duration of sound wave detector 9 outputs reaches setting-up time, filtering wave by prolonging time device 10 output high potentials, lumination of light emitting diode, while provide input signal to relay and drive circuit 12 thereof in signal indication and the drive circuit 11 thereof; The relay coil excitation of relay and drive circuit 12 thereof, relay normally open node closure is sent into the SCADA system with alarm signal by shielded type cable and is realized uploading warning.
Otherwise, do not work when buzzer, when not having the audio signal input, the relay coil loss of excitation, the relay normally open node disconnects, and does not have alarm signal to upload, and the SCADA system is in unloaded wait state.
In conjunction with Fig. 1, Fig. 2, measure in the alarm unit, when single-phase zone electric conductor XX-kV has alternating current to pass through, by around the closed magnetic conductor of electric conductor and be wrapped in the sensing power supply 1 (or A) that the N circle coil on the magnetic conductor constitutes, be equivalent to a micro mutual inductor, produce the alternating current impression electromotive force to measuring the alarm unit power supply in coil windings, the supply power voltage size is according to the operating voltage range design of area, coil turn and the buzzer BL requirement of energized conductor running current magnitude range, closed magnetic conductor.The node temperature meter 2 (or θ) of being isolated, being sticked on the place, monitoring point by heat-conducting insulation material is concatenated in the shaping filter voltage stabilizing circuit of being made up of bridge full wave rectifier ZL, filter capacitor C1, C2 and adjustment resistance R 1, three-terminal voltage-stabilizing pipe CW7812 3 by insulated conductor.Shaping filter voltage stabilizing circuit 3 provides galvanic current to buzzer of being made up of shunt resistance R2, LED and buzzer BL and signal indicating circuit 4.Under the normal condition, node temperature meter 2 (or θ) is in often opens the position, and the induced electromotive force that sensing power supply 1 (or A) produces acts on often opening on the node of node temperature meter 2 (or θ).When the actual temperature of monitoring point reaches the operating value (for example 70,75,80 degrees centigrade) of node temperature meter 2 (or θ) setting, node temperature meter 2 (or θ) conducting, induced electromotive force is in closed circuit behind the alternating current process shaping filter voltage stabilizing circuit that produces, act on buzzer BL and send frequency of sound wave stable, that people's ear can obviously be heard (for example 2kHz, 3kHz, 4kHz etc.), call out on the spot (near) staff checks affirmation, LED is shinny simultaneously, helps the staff that the overtemperature point is made further and accurately judges.Between the winding output line of energized conductor XX-kV and sensing power supply A, a connecting line is arranged, realize measuring the equipotential of alarm unit and energized conductor, prevent that energized conductor is to measuring the corona discharge of alarm unit.
In conjunction with Fig. 1, Fig. 3, receive with uploading unit and power by single power supply, be installed in also ground connection of electrical equipment shell surface, with the monitoring point audio signal receiving range of remaining valid, be connected with user SCADA system with shielded type cable.In reception and uploading unit, microphone BM, resistance R 3, coupling capacitance C3 form audio frequency receiving circuit 5; Resistance R 4, R5, R6, R7, R8 and operational amplifier (hereinafter to be referred as " amplifier ") N1 and coupling capacitance C4 form pre-amplification circuit 6; Resistance R 9, R10 and capacitor C 5, C6, C7 form band pass filter 7, and wherein resistance R 9 is formed low-pass filter circuit with capacitor C 5, and resistance R 10 is formed high-pass filtering circuit with capacitor C 6; Resistance R 11, R12, R13, R14, R15 and amplifier N2 and coupling capacitance C8 form rearmounted amplifying circuit 8; Backward diode D1, forward diode D2, capacitor C 9, resistance R 16, R17, R18, triode T1 form sound wave detector 9; Resistance R 19, R20, R21, triode T2, capacitor C 10, diode D3 form filtering wave by prolonging time device 10; Resistance R 22, R23, R24, triode T3, LED 2 are formed signal indication and drive circuit 11 thereof; Fei Men ﹠amp; 1,, ﹠amp; 2 and relay K form relay and drive circuit 12 thereof.
When the surface, monitoring point reaches the set point of temperature alarming, the buzzer BL that measures alarm unit will send the audio signal of characteristic frequency and at spatial transmission.With the monitoring point audio frequency receiving range of remaining valid, be arranged in the reception and the uploading unit of electric equipment home, the microphone BM that is made up of in the audio frequency receiving circuit 5 microphone BM, resistance R 3, coupling capacitance C3 will receive audio signal, produce the potential difference of alternation at its two ends, its frequency is identical with the frequency of buzzer audio signal, produce the frequency audible communication signal identical thus at resistance R 3 two ends, send into pre-amplification circuit 6 through coupling capacitance C3 with the buzzer resonance frequency.After 6 pairs of audible communication signals of pre-amplification circuit were done conventional signal amplification, as the input signal of band pass filter 7, wherein coupling capacitance C4 was used for stoping entering of direct current signal, only allows the audible communication signal to enter band pass filter 7.
In the band pass filter 7, the low-pass filter circuit of forming by resistance R 9 and capacitor C 5 and partially overlap by the passband that resistance R 10 and capacitor C 6 are formed high-pass filtering circuit, its intersection has just been formed the passband of band pass filter 7.Through suitable selection resistance R 9, R10 and capacitor C 5, C6, the central point of passband width, that is: just in time the resonance frequency with buzzer is identical for characteristic frequency, therefore, the particular audio signal of having only the buzzer in the corresponding measurement alarm unit to send could be passed through band pass filter 7, entering rearmounted amplifying circuit 8 carries out delivering in the sound wave detector 9 after audio frequency amplifies and discerns, wherein coupling capacitance C8 is used for stoping entering of direct current signal, only allows the audible communication signal to enter sound wave detector 9.
In the sound wave detector 9, triode T1 base input end is made of forward diode D2, backward diode D1, capacitor C 9, divider resistance R16, R17; Collector output connects divider resistance R18, arrives filtering wave by prolonging time device 10 by tap resistance R 19 output signals; The direct ground connection of emitter.The front end signal of sound wave detector 9 is the audible communication signal of band pass filter 7 outputs, when band pass filter 7 does not have the output of audible communication signal, not conducting of forward diode D2 in the sound wave detector 9, capacitor C 9 is in electronegative potential, dividing potential drop through resistance R 16, R17 makes the base stage of triode T1 be in lower current potential (comparing with the current potential of capacitor C 9), and triode T1 is in cut-off state, its collector electrode is output as high potential, almost equates with supply voltage VCC.When receiving the audible communication signal, can be divided into two kinds of situations; When being positive half period, forward diode D2 conducting, to capacitor C 9 chargings, the branch hydraulic circuit of forming by resistance R 16, R17 discharges simultaneously, makes the base stage of triode T1 be in high potential; When being negative half-cycle, not conducting of diode D2 stops and to discharge from former charge circuit, makes the electric charge of capacitor C 9 can only pass through the branch hydraulic circuit that resistance R 16, R17 form and discharges, and makes the base stage of triode T1 still keep high potential.Suitable selection resistance R 16, R17, R18 and capacitor C 9 guarantee that triode T1 is in saturation condition when audible communication signal input sound wave detector 9, and its collector electrode is output as electronegative potential, almost is close to zero.If the audio signal that buzzer BL sends is strong excessively, then triode D1 oppositely connects, protection subsequent conditioning circuit operate as normal.When not having the audible communication signal, triode D1 ends, its collector electrode output and the almost equal high potential of supply voltage VCC; When the audible communication signal, triode D1 is saturated, the almost nil electronegative potential of its collector electrode output.Therefore, can think like this: whether the function of sound wave detector 9 detects the audible communication signal exactly and exists, and exists then to be output as electronegative potential, does not exist then to be output as high potential, that is to say simulation (interchange) signal has been become digital signal.
In the filtering wave by prolonging time device 10, the base stage of triode T2 is input as the electric potential signal of sound wave detector 9 tap resistance R 19 outputs, collector electrode is by resistance R 20, tap resistance R 21, backward diode D3 and capacitor C 10 constitute, through suitable selection resistance R 19 and R20, when the current collection of the triode T1 of sound wave detector 9 very electronegative potential (the audible communication signal is arranged, T1 is saturated) time, the triode T2 of filtering wave by prolonging time device 10 ends, its current collection very almost approaches the high potential of power supply VCC, through delay time is t second, the delay circuit of forming by resistance R 21 and capacitor C 10, capacitor C 10 is charged, approximately t is after time second, and the current potential of triode T2 equates with the current potential of capacitor C 10, and the output of filtering wave by prolonging time device 10 just of this current potential; When the current collection of triode T1 high potential (absence of audio AC signal very, T1 ends) time, triode T2 is saturated, and its current collection very almost approaches zero electronegative potential, the electric charge of capacitor C 10 makes the output (current potential of capacitor C 10) of filtering wave by prolonging time device 10 be electronegative potential by diode D3 repid discharge.Therefore, have only the audio signal of sending when buzzer to surpass t after time second, filtering wave by prolonging time device 10 is output as high potential, effectively removes the interference of external world's moment audio signal.
In signal indication and the drive circuit 11 thereof, the base stage of triode T3 is made of resistance R 22 and shunt resistance R23, the indicating circuit that collector electrode is made up of resistance R 24 and LED 2, and tap outputs to relay and drive circuit 12 thereof, the direct ground connection of emitter.At filtering wave by prolonging time device 10 output high potentials during to the base stage of triode T3, the T3 conducting, the LED 2 of collector loop is luminous, exports electronegative potential simultaneously and gives by two Fei Men ﹠amp; 1,, ﹠amp; 2 and relay coil the K relay and the drive circuit 12 thereof that are in series.Fei Men ﹠amp; 1 input (collector electrode of T3) is a low level, and its output is high level just, then Fei Men ﹠amp; 2 are output as low level, almost approach zero potential, are connected on Fei Men ﹠amp this moment; Relay coil K excitation between 2 outputs and the power supply VCC, relay normally open node closure is sent into user SCADA system with alarm signal by shielded type cable.Under the normal condition, Fei Men ﹠amp; 1 is output as low level, Fei Men ﹠amp; 2 are output as high level, and its current potential is near power supply VCC, relay coil K loss of excitation, and the relay normally open node disconnects, and does not produce alarm signal, and the SCADA system is in holding state.
When the overtemperature fault takes place in a certain monitoring point of operation electric equipment, measure node temperature meter 1 closure of alarm unit, the buzzer of measuring alarm unit on the spot sends particular audio signal, and lumination of light emitting diode is realized monitoring point sound and light alarm on the spot.Audio signal is at spatial transmission, be arranged in electric equipment the home place reception be converted into the signal of telecommunication identical after the audio frequency receiving circuit of uploading unit receives this audio signal with the buzzer audio signal frequency, selection through 7 pairs of frequencies of band pass filter, the identification of 9 pairs of audio signals of sound wave detector, send audio alarming signal at buzzer and reach setting-up time t after second, filtering wave by prolonging time device 10 judges that useful signal exists, send control command, the lumination of light emitting diode of signal indication and drive circuit 11 thereof, the relay coil excitation of relay and drive circuit 12 thereof, relay normally open node closure, alarm signal is sent into user SCADA system by shielded type cable, realize the teletransmission requirement.
Have the buzzer of obvious frequency difference in adjacent monitoring section setting, the buzzer decision that the identification of adjacent monitoring section is set by different frequency, through reception with uploading unit identification after upload warning, effectively prevent the interference of contiguous audio signal.

Claims (5)

1, a kind of (surpassing) high voltage electrified body operation overtemperature monitoring alarm, the core measurement alarm unit that it is characterized in that it is made up of sensing power supply (1), node temperature meter (2), shaping filter voltage stabilizing circuit (3), buzzer and (4) four funtion parts of signal indicating circuit, and sensing power supply (1) is supplied with and measured the continuously reliable alternating current of alarm unit; After node temperature meter (2) is isolated by heat-conducting insulation material, be close to the surface of monitoring point, be serially connected in the electric loop between sensing power supply (1) and the shaping filter voltage stabilizing circuit (3) switch control functions of realization overtemperature alarm by insulated conductor; The output of shaping filter voltage stabilizing circuit (3) is connected with buzzer and signal indicating circuit (4).
2, according to the described overtemperature monitoring alarm of claim 1, it is characterized in that on the basis of above-mentioned measurement alarm unit, set up relatively independent with it, and the reception and the uploading unit of the audio signal receiving range of remaining valid with monitored point, receive the not charged position that is installed in electric equipment with uploading unit, by audio frequency receiving circuit (5), pre-amplification circuit (6), band pass filter (7), rearmounted amplifying circuit (8), sound wave detector (9), filtering wave by prolonging time device (10), signal indication and drive circuit (11) thereof, relay and drive circuit thereof (12) totally eight funtion parts connect successively and constitute, this reception and uploading unit provide the galvanic current source by the outside, the circuit that constitutes an integral body is integrated, wherein: after audio frequency receiving circuit (5) receives and measures the audio signal that alarm unit sends, audio signal is converted to the signal of telecommunication, amplify through pre-amplification circuit (6), the signal of telecommunication identical with band pass filter (7) characteristic frequency is by behind the band pass filter (7), carrying out signal by rearmounted amplifying circuit (8) again amplifies, judge via sound wave detector (9) and filtering wave by prolonging time device (10) identification, indication of useful signal drive signal and drive circuit (11) thereof are made luminous indication, and excite relay and drive circuit (12) thereof to drive the actuating of relay, and the switching value signal is delivered to user SCADA system by shielded type cable realizes uploading warning.
3,, it is characterized in that between the winding output line of energized conductor and described sensing power supply (1), being provided with a bonding wire of realizing measuring alarm unit and energized conductor according to claim 1 or 2 described overtemperature monitoring alarms.
4, according to claim 1 or 2 described overtemperature monitoring alarms, what it is characterized in that above-mentioned node temperature meter (2) employing is miniature mercoid switch or double metal temperature switch.
5,, it is characterized in that above-mentioned sensing power supply (1) is to use that principle of induction is made, as to have generation induced electromotive force when electric conductor moves instrument transformer according to claim 1 or 2 described overtemperature monitoring alarms.
CNB2004100057186A 2004-02-17 2004-02-17 Monitoring alarm device for overtemperature when (ultra) high-voltage charged body operating Expired - Fee Related CN100461569C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2004100057186A CN100461569C (en) 2004-02-17 2004-02-17 Monitoring alarm device for overtemperature when (ultra) high-voltage charged body operating

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2004100057186A CN100461569C (en) 2004-02-17 2004-02-17 Monitoring alarm device for overtemperature when (ultra) high-voltage charged body operating

Publications (2)

Publication Number Publication Date
CN1560972A true CN1560972A (en) 2005-01-05
CN100461569C CN100461569C (en) 2009-02-11

Family

ID=34439673

Family Applications (1)

Application Number Title Priority Date Filing Date
CNB2004100057186A Expired - Fee Related CN100461569C (en) 2004-02-17 2004-02-17 Monitoring alarm device for overtemperature when (ultra) high-voltage charged body operating

Country Status (1)

Country Link
CN (1) CN100461569C (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103646166A (en) * 2013-11-18 2014-03-19 广东电网公司电力科学研究院 Power station high-temperature pipe system maintenance method based on non-probability reliability theory
CN110190730A (en) * 2019-06-26 2019-08-30 江苏江淮动力有限公司 A kind of generating set frequency converter

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4034268A (en) * 1975-11-10 1977-07-05 Heath Company Speaker protection circuit
CN2065053U (en) * 1990-03-21 1990-11-07 河北省保定地区人体声学研究所 Human-body acoustics diagnosis apparatus
CN2228655Y (en) * 1995-01-16 1996-06-05 杨万钟 Temp. alarming device for high voltage electric power connector
CN2457772Y (en) * 2000-12-08 2001-10-31 许虹 Over temperature alarm for power supply equipment
CN2540694Y (en) * 2002-04-26 2003-03-19 常州市天创智能化技术有限公司 Induction supply unit
CN2692645Y (en) * 2004-02-17 2005-04-13 蒋平锁 Ultratemp monitoring alarm for (ultra) high voltage charged body running

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103646166A (en) * 2013-11-18 2014-03-19 广东电网公司电力科学研究院 Power station high-temperature pipe system maintenance method based on non-probability reliability theory
CN103646166B (en) * 2013-11-18 2016-05-11 广东电网公司电力科学研究院 A kind of High temperature pipe of power station road system maintenance method based on non-probabilistic reliability theory
CN110190730A (en) * 2019-06-26 2019-08-30 江苏江淮动力有限公司 A kind of generating set frequency converter
CN110190730B (en) * 2019-06-26 2020-03-20 江苏江淮动力有限公司 Frequency converter for generator set

Also Published As

Publication number Publication date
CN100461569C (en) 2009-02-11

Similar Documents

Publication Publication Date Title
US4420752A (en) Real-time parameter sensor-transmitter
US4268818A (en) Real-time parameter sensor-transmitter
AU2011203004B2 (en) Technology and device for precisely measuring temperature of cable joint on the basis of radio frequency technique
CN206321347U (en) A kind of online system for detecting temperature of high pressure, low-tension switch cabinet
CN201667558U (en) On-line monitoring device for outdoor high-voltage switch temperature
CN102305667A (en) Device for monitoring temperature of outdoor high-voltage switch through bus and implementation method of device
CN104515623A (en) Watch strap type passive wireless online temperature measuring device and monitoring system thereof
CN209027683U (en) Device temperature monitoring device, equipment and its system in a kind of high-tension switch cabinet
CN2692645Y (en) Ultratemp monitoring alarm for (ultra) high voltage charged body running
CN205724554U (en) A kind of central high-voltage switch cabinet with intelligent aeration
CN100461569C (en) Monitoring alarm device for overtemperature when (ultra) high-voltage charged body operating
CN104391168A (en) System and method for inspecting grounding current of accessories of single-core cable having voltage grade above 35kV
CN209215493U (en) A kind of railway signal measuring device
CN104236741A (en) Temperature monitoring device and implementation method for outdoor high-pressure switch
CN205720379U (en) A kind of novel all-fiber current transformator
CN214702545U (en) Built-in cable joint conductor temperature measuring device
CN205940804U (en) High tension cable silicon rubber terminal with temperature measurement function
CN210246397U (en) Monitoring system for low-voltage power distribution
CN206847786U (en) A kind of GIS internal temperatures infrared sensing component
CN111337080A (en) Distribution transformer state on-line measuring system
CN2396386Y (en) Temp tester for high-voltage and ultra-high voltage switch contact
CN204479647U (en) 35kV and above single core cable annex ground current cruising inspection system
CN208269966U (en) Outdoor current-carrying and temperature sensor
JPH08103022A (en) Power system and monitor for electric facility
CN218411463U (en) Temperature measuring device for dry-type transformer

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20090211

Termination date: 20170217

CF01 Termination of patent right due to non-payment of annual fee