CN203640838U - Automatic control system of gas turbine generator - Google Patents

Automatic control system of gas turbine generator Download PDF

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Publication number
CN203640838U
CN203640838U CN201320795017.1U CN201320795017U CN203640838U CN 203640838 U CN203640838 U CN 203640838U CN 201320795017 U CN201320795017 U CN 201320795017U CN 203640838 U CN203640838 U CN 203640838U
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China
Prior art keywords
circuit
control system
automatic control
gas turbine
electromagnetic valve
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
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CN201320795017.1U
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Chinese (zh)
Inventor
卢爽
管鹏
王宝新
陈海军
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Shenyang Aerospace Xinguang Group Co Ltd
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Shenyang Aerospace Xinguang Group Co Ltd
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Priority to CN201320795017.1U priority Critical patent/CN203640838U/en
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Abstract

The utility model relates to an automatic control system of a gas turbine generator. A plug-in board structure is adopted for the system, and the system comprises a main channel and a branch channel; the main channel comprises a secondary power supply, a singlechip, an opto-coupling input isolating circuit, a photovoltaic relay output isolating circuit, a data collecting circuit and an electromagnetic valve driving circuit; a time-sequence logic circuit is adopted for the branch channel. According to the automatic control system disclosed by the utility model, the procedures of cold start, false start, working procedure start and program start of the generator are completed by receiving external instructions; more than thirty running parameters of gas intake temperature, gas exhaust temperature, lubricating oil pressure, rotation speed and the like of the generator in operation are monitored; more than twenty fault protection and alarming function are completed; information of gas exhaust temperature, rotation speed, fault and the like can be transmitted to a display control device so as to reach the man-machine interaction function.

Description

Gas Turbine Generating Units automatic control system
Technical field
The utility model relates to a kind of automatic control system of intermediate frequency synchronous generator, relates in particular to a kind of Gas Turbine Generating Units automatic control system, belongs to intermediate frequency (400Hz) power field, and being suitable for generating frequency is 400Hz.
Background technique
Medium frequency electric generating unit is mainly used in aircraft and ground installation at home with advantages such as its volume are little, lightweight.Main source is import matching equipment, has the problems such as purchase channel is narrow, guarantee difficulty after sale, quality is large, volume is large, function imperfection.The domestic matured product that there is no at present goes on the market, and only has part grinding product, is grinding the problems such as product ubiquity poor compatibility, real-time is poor, reliability is not high, circuit level is not high, loosely organized, volume is large, quality is large.And at present, domestic application demand scope in this respect is progressively expanding.
Model utility content
The utility model is for above-mentioned problems of the prior art; a kind of Gas Turbine Generating Units automatic control system that collects the monitoring of multiple start-up routine control, generator operation and protection is provided, solved intermediate frequency generator in prior art and start the problem of reliability and power generating quality poor stability.
The technical solution of the utility model is as follows:
System employing Card structure, comprises main passage and from passage, main passage comprises secondary power supply, single-chip microcomputer, optocoupler input isolation circuit, photovoltaic relay output isolation circuit, data acquisition circuit, driving circuit for electromagnetic valve; The output terminal of secondary power supply, optocoupler input isolation circuit and data acquisition circuit is connected with single-chip microcomputer input end; Single-chip microcomputer output terminal connects photovoltaic relay output isolation circuit and driving circuit for electromagnetic valve; Signal conditioning circuit output terminal connection data Acquisition Circuit input end; Adopt sequential logical circuit from passage.
The power import end of described secondary power supply also connects reference diode, oppositely connects commutation diode simultaneously.
On described single-chip microcomputer, be connected with crystal oscillator.
Described photovoltaic relay output isolation circuit output terminal connects relay.
Described driving circuit for electromagnetic valve output terminal connected electromagnetic valve, the part that in driving circuit for electromagnetic valve, motor drive ic is connected with electrohydraulic control arranges TVS diode.
The utility model has the advantages of as follows:
1, adopt without common cause failure design proposal Core Feature is realized to backup, increase the reliability of generator.
2, circuit level is higher, has effectively reduced volume and the quality of product.
3, increased partial interior parameter real time monitoring function, can understand more accurately the internal state of generator set, be conducive to operator and more reasonably formulate follow-up work plan.
4, adopt Card structure, can realize the replacement of plate level and combination stage and replace, convenient for maintaining and maintenance.
5, secondary power supply part, at power import end and connect a reference diode, prevents voltage functuation damage internal circuit, oppositely connects a power rectifier diode simultaneously, prevents from use power supply being connect instead, causes circuit damage; Between input and output signal, carry out light-coupled isolation, misoperation can not cause the damage to product yet.
6, signal input adopts light-coupled isolation that high voltage signal is converted to low voltage signal and send one-chip machine port processing, and signal output is that the signal producing by single-chip microcomputer is converted to high voltage break-make control signal through photovoltaic relay by low-voltage switches signal.
7, a reference voltage is set when thermometry and provides reference voltage for constant-current source circuit, the pressure drop of voltage-regulator diode protection current output terminal is less than certain value, prevents that thermal resistor from producing that overcurrent damages and tension measuring circuit overvoltage damage.
8, when tachometric survey at the output terminal of tach signal, and connect voltage-stabiliser tube, prevent that overvoltage from damaging single-chip microcomputer.
9, driving circuit for electromagnetic valve part, the part that motor drive ic is connected with electrohydraulic control has increased the transient overshoot voltage that TVS diode occurs in the course of the work for suppressing electrohydraulic control.
10, all high-voltage output terminal mouths of the utility model add diode and carry out reverse isolation, prevent the impact of external electric signal on control combination output signal.
Accompanying drawing explanation
Fig. 1 is the utility model main passage structural representation block diagram.
Fig. 2 is that the utility model is from channel design schematic block diagram.
Fig. 3 is the utility model start up curve schematic diagram.
Fig. 4 is the unit generation frequency transient response curve synoptic diagram of unit in the time of 100% load impact.
Fig. 5 is the unit generation frequency transient response curve synoptic diagram of unit in the time of 100% load dump.
Embodiment
The utility model, with reference to accompanying drawing, in conjunction with specific embodiments, is described in detail as follows.
Embodiment
As shown in Figure 1-2, system employing Card structure, comprises main passage and from passage, main passage comprises secondary power supply, single-chip microcomputer, optocoupler input isolation circuit, photovoltaic relay output isolation circuit, data acquisition circuit, driving circuit for electromagnetic valve; The output terminal of secondary power supply, optocoupler input isolation circuit and data acquisition circuit is connected with single-chip microcomputer input end; Single-chip microcomputer output terminal connects photovoltaic relay output isolation circuit and driving circuit for electromagnetic valve; Signal conditioning circuit output terminal connection data Acquisition Circuit input end; Optocoupler input isolation circuit receiving key amount signal 1-switching value information n; Signal conditioning circuit receives temperature signal and tach signal, when temperature signal measurement, reference voltage is set and provides reference voltage for constant-current source circuit, and the pressure drop of voltage-regulator diode protection current output terminal is less than certain value; The output terminal of tach signal also connects voltage-stabiliser tube; Photovoltaic relay output isolation circuit output terminal connects relay; Described driving circuit for electromagnetic valve output terminal connected electromagnetic valve, the part that in driving circuit for electromagnetic valve, motor drive ic is connected with electrohydraulic control arranges TVS diode.
Adopt sequential logical circuit to realize from passage and control function; Comprise secondary power supply, load module, output module and Logic control module from passage, secondary power supply provides power supply to load module, output module and Logic control module; Load module, Logic control module and output module connect successively; Described load module is accepted switching value signal 1-switching value information n; Described output module output switch amount signal 1-switching value information n.
On described single-chip microcomputer, be connected with crystal oscillator.
The utility model has adopted without common cause failure redundancy backup design proposal, and computer is main control, and sequential circuit is Standby control.Two-part control circuit principle is completely different, can work alone completely, is independent of each other, and also can work simultaneously.While work, sequential circuit control realizes computer-controlled warm back-up simultaneously, completes the fundamental function control that generator set starts, moves, and has effectively improved the reliability of system.
Described secondary power supply provides working power for control module; Main control module is made up of the peripheral circuit such as single-chip microcomputer and crystal oscillator, reset circuit, realizes the control function of main passage, completes multiple start-up routine and more than 20 and plants faut detection and protective function; Input/output section realizes signal conversion through isolation processing; Data acquisition module gathers temperature and tach signal, send main control module to process, as the foundation of program judgement; Electrohydraulic control conditioning circuit regulates fuel feed amount, to reach the object that produces qualified electric energy.
Adopting sequential logical circuit to realize from passage controls function, completes the various start-up routines under the failure condition of main passage.
Secondary power supply is at power import end and connect a reference diode, prevents voltage functuation damage internal circuit, oppositely connects a power rectifier diode simultaneously, prevents from use power supply being connect instead, causes circuit to damage; Between input and output signal, carry out light-coupled isolation, misoperation can not cause the damage to product yet.
Signal input adopts light-coupled isolation that high voltage signal is converted to low voltage signal and send one-chip machine port processing, and signal output is that the signal producing by single-chip microcomputer is converted to high voltage break-make control signal through photovoltaic relay by low-voltage switches signal.
A reference voltage is set when thermometry and provides reference voltage for constant-current source circuit, the pressure drop of voltage-regulator diode protection current output terminal is less than certain value, prevents that thermal resistor from producing that overcurrent damages and tension measuring circuit overvoltage damage.
When tachometric survey, at the output terminal of tach signal, and connect voltage-stabiliser tube, prevent that overvoltage from damaging single-chip microcomputer.
Driving circuit for electromagnetic valve part, the part that motor drive ic is connected with electrohydraulic control has increased the transient overshoot voltage that TVS diode occurs in the course of the work for suppressing electrohydraulic control.
The all high-voltage output terminal mouths of the utility model add diode and carry out reverse isolation, prevent the impact of external electric signal on control combination output signal.
The index parameter of the generator that the utility model is realized is as follows.
1, start and control
Start up period, control system, mainly according to rotating speed and delivery temperature, is controlled actuators such as starting electrical machinery, electric heater, filling pump, solenoid valves, the time point that instruction output and instruction is cancelled meets the demands, and guarantees that unit energy normally starts.The instruction load situation of start-up course can be observed by monitoring starting resistor indirectly, and as shown in Figure 3, in figure, abscissa is time point to start up curve, and y coordinate is starting resistor.
By observing the turning point moment of starting resistor in figure, can judge generator control signal output situation.As started Startup time, generator is connected starting electrical machinery, and now starting resistor reduces; Remove current-limiting resistance, starting resistor rising at 5s moment unit; In the 11s moment, generator is connected starting electrical machinery excitation; In the 26s moment, generator disconnects starting electrical machinery, motor excitation, and now starting resistor recovers.Find out from starting resistor monitoring curve, basis is novel can carry out sequence control to the each actuator of generator, completes generator and starts.
2, varying load operating mode
In actual use, the not timing variation as required of generator loading situation, but require the alternating current voltage of generator output and frequency to keep substantially constant, this just requires, and basis is novel can correct fast and recover generator output under load changing state, to maintain the relatively stable of output AC electricity condition.
The rated output of generating set that test is used is 75KW, and output voltage is alternating current 220V/400Hz.Fig. 4 and Fig. 5 are the unit generation frequency transient response curve of unit in the time of 100% load impact and 100% load dump.
As can be seen from the figure, in the time of generator loading impact 100% or anticlimax 100%, the rotating speed of combustion machine has fuctuation within a narrow range, thereby causes unit generation frequency to glide to some extent or rise (but still in 400 ± 8Hz steady-state zone).Now control system, according to rotating speed deviation, is carried out rapid adjustment to generator electrohydraulic control, reduces or increases system fuel delivery, allow gas turbine rotary speed steadily, fast quick-recovery, make to generate electricity frequency retrieval near 400Hz.Can find out from generator generating frequency transient response curve, the frequency fluctuation of control system, in allowed band, is controlled effect comparatively desirable.
Native system is by receiving external command; complete generator cold start-up, false start, operation startup and launcher; in work, monitor the 30 remainder Operational Limitss such as generator set intake temperature, delivery temperature, lubricating oil pressure and rotating speed; complete 20 remainder error protection and warning functions; and the information such as delivery temperature, rotating speed and fault are reached to display control unit, realize human-computer interaction function.
Protection domain of the present utility model is as the criterion with claim, not limited by specific embodiment.

Claims (5)

1. Gas Turbine Generating Units automatic control system, it is characterized in that system adopts Card structure, comprise main passage and from passage, main passage comprises secondary power supply, single-chip microcomputer, optocoupler input isolation circuit, photovoltaic relay output isolation circuit, data acquisition circuit, driving circuit for electromagnetic valve; The output terminal of secondary power supply, optocoupler input isolation circuit and data acquisition circuit is connected with single-chip microcomputer input end; Single-chip microcomputer output terminal connects photovoltaic relay output isolation circuit and driving circuit for electromagnetic valve; Signal conditioning circuit output terminal connection data Acquisition Circuit input end; Adopt sequential logical circuit from passage.
2. Gas Turbine Generating Units automatic control system according to claim 1, is characterized in that the power import end of described secondary power supply and connects reference diode, oppositely connects commutation diode simultaneously.
3. Gas Turbine Generating Units automatic control system according to claim 1, is characterized in that being connected with crystal oscillator on described single-chip microcomputer.
4. Gas Turbine Generating Units automatic control system according to claim 1, is characterized in that described photovoltaic relay output isolation circuit output terminal connects relay.
5. Gas Turbine Generating Units automatic control system according to claim 1, it is characterized in that described driving circuit for electromagnetic valve output terminal connected electromagnetic valve, the part that in driving circuit for electromagnetic valve, motor drive ic is connected with electrohydraulic control arranges TVS diode.
CN201320795017.1U 2013-12-06 2013-12-06 Automatic control system of gas turbine generator Expired - Fee Related CN203640838U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320795017.1U CN203640838U (en) 2013-12-06 2013-12-06 Automatic control system of gas turbine generator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320795017.1U CN203640838U (en) 2013-12-06 2013-12-06 Automatic control system of gas turbine generator

Publications (1)

Publication Number Publication Date
CN203640838U true CN203640838U (en) 2014-06-11

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103603726A (en) * 2013-12-06 2014-02-26 沈阳航天新光集团有限公司 Automatic control system of gas turbine generator set

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103603726A (en) * 2013-12-06 2014-02-26 沈阳航天新光集团有限公司 Automatic control system of gas turbine generator set
CN103603726B (en) * 2013-12-06 2016-01-13 沈阳航天新光集团有限公司 Gas Turbine Generating Units automatic control system

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140611

Termination date: 20161206