CN205779466U - A kind of detection device of Wind turbines overspeed protection system - Google Patents

A kind of detection device of Wind turbines overspeed protection system Download PDF

Info

Publication number
CN205779466U
CN205779466U CN201620611961.0U CN201620611961U CN205779466U CN 205779466 U CN205779466 U CN 205779466U CN 201620611961 U CN201620611961 U CN 201620611961U CN 205779466 U CN205779466 U CN 205779466U
Authority
CN
China
Prior art keywords
wind turbines
protection system
overspeed protection
pulse signal
detection device
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.)
Active
Application number
CN201620611961.0U
Other languages
Chinese (zh)
Inventor
丛智慧
李冰
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.)
Inner Mongolia Core Electromechanical Equipment Co Ltd
DATANG (CHIFENG) NEW ENERGY Co Ltd
Original Assignee
Inner Mongolia Core Electromechanical Equipment Co Ltd
DATANG (CHIFENG) NEW ENERGY Co Ltd
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 Inner Mongolia Core Electromechanical Equipment Co Ltd, DATANG (CHIFENG) NEW ENERGY Co Ltd filed Critical Inner Mongolia Core Electromechanical Equipment Co Ltd
Priority to CN201620611961.0U priority Critical patent/CN205779466U/en
Application granted granted Critical
Publication of CN205779466U publication Critical patent/CN205779466U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/72Wind turbines with rotation axis in wind direction
    • 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/50Manufacturing or production processes characterised by the final manufactured product

Landscapes

  • Wind Motors (AREA)

Abstract

This utility model provides the detection device of a kind of Wind turbines overspeed protection system; including the speed probe for detecting Wind turbines rotating speed; detection device includes control unit, is used for receiving Wind turbines type information and obtaining corresponding pulse frequency according to Wind turbines type information;Pulse signal generating unit, is connected with control unit, produces corresponding pulse signal according to the pulse frequency that control unit obtains;Electromagnetic conversion unit, is connected with pulse signal generating unit, and the pulse signal produced for return pulse signal generating unit is converted into corresponding magnetic induction signal;The magnetic induction signal output part of electromagnetism switch unit is arranged corresponding to the test side of the speed probe of Wind turbines overspeed protection system.The detection device of Wind turbines overspeed protection system of the present utility model is by producing the pulse signal excitation speed probe of simulation Wind turbines rotating speed, it is achieved the lossless decomposition of Wind turbines.

Description

A kind of detection device of Wind turbines overspeed protection system
Technical field
This utility model relates to technical field of wind power generation, in particular it relates to a kind of Wind turbines overspeed protection system Detection device.
Background technology
In recent years, regenerative resource particularly wind energy has obtained wideling popularize and applying, wind turbine of countries in the world The safe operation of group and protection are particularly important during wind-power electricity generation.
Under high wind conditions, for timely, effectively, promptly prevent wind power generating set impeller hypervelocity accident, it is to avoid or fall Low wind power generating set impeller hypervelocity accident cause substantial equipment damage and economic loss, control system of wind turbines must be able to and The protection act such as Shi Jinhang shutdown, therefore need the overspeed protection system to Wind turbines to carry out periodic detection.
The detection mode of existing Wind turbines overspeed protection system: carry out overspeed protection system inspection when running of wind generating set Survey, need the rotational speed regulation of Wind turbines to overspeed state, then by judging that overspeed protection system the most normally moves Make to reach to detect the most normal purpose of overspeed protection system.Such detection mode, owing to Wind turbines needs to surpass Speed is run, and Wind turbines can cause certain damage, and risk is bigger.
In order to overcome the problems referred to above, in the urgent need to designing the detection device of a kind of Wind turbines overspeed protection system, it is to avoid Wind turbines is safeguarded because Wind turbines drive disk assembly is caused damage by overspeed protection system test, it is ensured that running of wind generating set is pacified Entirely.
In view of this, special proposition this utility model.
Utility model content
In order to solve the problems referred to above, this utility model provides the detection device of a kind of Wind turbines overspeed protection system, tool Body ground, have employed following technical scheme:
A kind of detection device of Wind turbines overspeed protection system, described Wind turbines overspeed protection system include for The speed probe of detection Wind turbines rotating speed, including
Control unit,
For receiving Wind turbines type information and obtaining corresponding pulse frequency according to Wind turbines type information;
Pulse signal generating unit,
It is connected with control unit, produces corresponding pulse signal according to the pulse frequency that control unit obtains;
Electromagnetic conversion unit,
Be connected with pulse signal generating unit, for return pulse signal generating unit produce pulse signal by its turn It is changed to corresponding magnetic induction signal;
The magnetic induction signal output part of described electromagnetism switch unit passes corresponding to the rotating speed of Wind turbines overspeed protection system The test side of sensor is arranged.
Further, described control unit is single-chip microcomputer, and different Wind turbines model preserved by single-chip microcomputer and institute is right Answer the tables of data of ultrafast pulses frequency;
Described pulse signal generating unit includes electrical switch, and electrical switch connects single-chip microcomputer;
The described Wind turbines type information selected by single-chip microcomputer reception, is counting according to selected Wind turbines model According to table obtains corresponding ultrafast pulses frequency, control electrical switch output pulse signal by controlling pin, believe with pulse Number simulation Wind turbines tach signal.
Further, one end of described electrical switch is connected with power supply by current-limiting resistance, and the other end switches with electromagnetism The input of unit is connected.
Further, described electromagnetic conversion unit is arranged on the rotor of Wind turbines, and the rotor of Wind turbines has There is perforate;
The detection of described speed probe is rectified split hole and is arranged, and described electromagnetic conversion unit is arranged on position with pores And near the side of speed probe.
Further, described electromagnetic conversion unit is air core inductor.
Further, described air core inductor is the thin slice inductance using printing circuit board.
Further, described pulse signal generating unit and electromagnetic conversion unit are by band screen layer usb signal line phase Connect.
Further, also include the data storage cell being connected with control unit, be used for storing currently selected wind-powered electricity generation Unit type information and system settings data, arranged with system as acquiescence blower fan type information when again starting shooting.
Further, also include display unit and the manipulation unit being connected respectively with control unit,
Described display unit, for showing the pulse frequency of current PRF signal, is carried out by operating described manipulation unit The rotor speed that simulation Wind turbines is increased or decreased of pulse frequency.
The detection device of Wind turbines overspeed protection system of the present utility model, by producing simulation Wind turbines rotating speed Pulse signal excitation speed probe, it is achieved the nondestructive test to Wind turbines, it is to avoid Wind turbines is safeguarded because of hypervelocity test Blower transmission components is caused damage, significantly improves Wind turbines Security of test, it is ensured that running of wind generating set safety, operation letter Folk prescription is just.
Accompanying drawing explanation
The structured flowchart of the detection device of Fig. 1 this utility model Wind turbines overspeed protection system;
The structured flowchart of the another embodiment of the detection device of Fig. 2 this utility model Wind turbines overspeed protection system;
The structured flowchart of the another embodiment of the detection device of Fig. 3 this utility model Wind turbines overspeed protection system;
The structured flowchart of the another embodiment of the detection device of Fig. 4 this utility model Wind turbines overspeed protection system;
The structural representation of Fig. 5 thin slice of the present utility model inductance;
Fig. 6 thin slice of the present utility model inductance mounting structure schematic diagram;
The detection method of Fig. 7 this utility model Wind turbines overspeed protection system;
The detection method of the another embodiment of Fig. 8 this utility model Wind turbines overspeed protection system;
The operation interface flow chart of the detection device of Fig. 9 this utility model Wind turbines overspeed protection system.
Label declaration in accompanying drawing: 100-power supply 200-on and off switch 300-control unit 310-single-chip microcomputer 400-arteries and veins Rush signal generating unit 410-current-limiting resistance 420-electrical switch 430-USB interface 500-electromagnetic conversion unit 501-exhausted Edge substrate 502-through hole 503-adsorption magnet 504-conductive coil 505-first connects end 506-signal wire socket 507- Second connects end 510-thin slice inductance 600-data storage cell 610-memorizer 700-manipulates unit 710-button 800-display unit 900-rotor 901-perforate 1000-speed probe 1100-overspeed control device 1200-band shields Layer usb signal line.
Detailed description of the invention
Detection device and detection thereof to a kind of Wind turbines overspeed protection system of the present utility model below in conjunction with the accompanying drawings Method is described in detail:
Embodiment one
As it is shown in figure 1, the detection device of a kind of Wind turbines overspeed protection system, described Wind turbines overspeed protection system System includes that the speed probe 1000 for detecting Wind turbines rotating speed, detection device include
Control unit 300, is used for receiving Wind turbines type information and obtaining according to Wind turbines type information corresponding Pulse frequency;
Pulse signal generating unit 400, is connected with control unit 300, the pulse frequency obtained according to control unit 300 Produce corresponding pulse signal;
Electromagnetic conversion unit 500, is connected with pulse signal generating unit 400, for return pulse signal generating unit 400 pulse signals produced are converted into corresponding magnetic induction signal;
The magnetic induction signal output part of described electromagnetism switch unit 500 is corresponding to the rotating speed of Wind turbines overspeed protection system The test side of sensor is arranged.
The detection device of Wind turbines overspeed protection system of the present utility model, control unit 300 is according to the wind received Group of motors type information control wave generating unit 400 produces the pulse signal of simulation Wind turbines rotating speed, and by electromagnetism Pulse signal is converted to encourage the magnetic induction signal of speed probe 1000 by converting unit 500, it is achieved to Wind turbines Nondestructive test, it is to avoid Wind turbines is safeguarded because blower transmission components is caused damage by hypervelocity test, significantly improves Wind turbines Security of test, it is ensured that running of wind generating set safety, simple to operation.
As an embodiment of the present embodiment, as in figure 2 it is shown, the control unit 300 of the present embodiment is single-chip microcomputer 310, single-chip microcomputer 310 preserves different Wind turbines model and the tables of data of corresponding ultrafast pulses frequency thereof;
Described pulse signal generating unit 400 includes that electrical switch 420, electrical switch 420 connect single-chip microcomputer 310;
Described single-chip microcomputer 310 receives selected Wind turbines type information, according to selected Wind turbines model In tables of data, obtain corresponding ultrafast pulses frequency, control electrical switch 420 output pulse signal by controlling pin, use The tach signal of pulse signal simulation Wind turbines.
Further, one end of the present embodiment electrical switch 420 is connected with power supply 100 by current-limiting resistance 410, another End is connected with the input of electromagnetism switch unit 500.
Specifically, single-chip microcomputer 310 uses STM32F103ZET6 single-chip microcomputer, the Wind turbines type information selected by reception, And produce pulse signal control electrical switch 420 output pulse signal according to selected Wind turbines type information;Described current limliting Resistance 410 is for controlling the electric current of output pulse signal.During detection device work, the pulse signal produced by single-chip microcomputer is controlled Electrical switch connecting and disconnecting realize the output of pulse signal.
As shown in Figure 6, the electromagnetic conversion unit 500 of the present embodiment is arranged on the rotor 900 of Wind turbines, Wind turbines Rotor on there is perforate 901;The detection of described speed probe 1000 is rectified split hole 901 and is arranged, described electromagnetic conversion Unit 500 is arranged on position with pores and the side near speed probe 1000.So can ensure electromagnetic conversion unit 500 Export more stable being detected by speed probe 1000.The speed probe 1000 of the present embodiment connects overspeed protection system Overspeed control device 1100, the Wind turbines rotating speed that overspeed control device 1100 detects according to speed probe 1000 controls The running status of Wind turbines, to guarantee that it is properly functioning.
As an embodiment of the present embodiment, described electromagnetic conversion unit 500 is air core inductor.
Specifically, described air core inductor is the thin slice inductance 510 using printing circuit board.The present embodiment have employed specific The thin slice inductance 510 of design, the thickness of thin slice inductance 510 is less than 1cm, and this is mainly due to speed probe 1000 and rotor Spacing between 900 is the least, and typically at about 1cm, thin slice inductance 510 thickness of particular design can not change now less than 1cm The installation of thin slice inductance 510 is realized on the basis of having the installation site of speed probe 1000 and mode.
Before carrying out overspeed protection system detection, slow rotor 900, make rotor 900 forward the perforate on rotor disk to 901 align with the front end at speed probe 1000 center and brake, and the perforate 901 that rotor 900 is parked on rotor disk passes with rotating speed On the Centered position of sensor 1000, thin slice inductance 510 is placed on before speed probe 1000, keeps thin slice inductance 510 centers and speed probe 1000 center alignment.
As shown in Figure 4, the pulse signal generating unit 400 of the present embodiment and electromagnetic conversion unit 500 are by band screen layer Usb signal line 1200 is connected.Band screen layer usb signal line 1200 can effectively shield external interference signals, improves overspeed protection The reliability of system detection.
The detection device of the Wind turbines overspeed protection system of the present embodiment, also includes being connected with control unit 300 Data storage cell 600, is used for storing currently selected Wind turbines type information and system settings data, as again starting shooting Time acquiescence blower fan type information and system arrange.
Preferably, described memory element 600 uses 24FC256 EEPROM EEPROM, with monolithic Connected by I2C bus between machine, be used for storing currently selected blower fan model and system settings data, as when again starting shooting Acquiescence blower fan model is arranged with system.
The detection device of the Wind turbines overspeed protection system of the present embodiment, also includes being connected respectively with control unit 800 Display unit 800 and manipulation unit 700, described display unit 800 is for showing the pulse frequency of current PRF signal, logical Cross operate described manipulation unit 700 carry out pulse frequency be increased or decreased simulation Wind turbines rotor speed.
Preferably, described display unit 800 is touch screen 810, specifically, can use 2.8 inch capacitive touch screen, Carry out Wind turbines model selection when operator use, test signal controls, system is arranged, current operation information shows Show.
Preferably, described manipulation unit 700 is button 710.
The detection device of the Wind turbines overspeed protection system of the present embodiment produces pulse signal with single-chip microcomputer for core, logical Cross touch screen 810 and show the frequency of current PRF signal, model rotor is increased or decreased by what button 710 carried out pulse frequency Rotating speed, the pulse signal that single-chip microcomputer produces controls electrical switch break-make output pulse signal.
The detection device of the Wind turbines overspeed protection system of the present embodiment also includes for receiving ROMPaq and data Communication module.
Specifically, communication module is connected with host computer by usb communication cable, and communication module receives the liter that host computer is sent Level program and data, update with the program upgrading and data realizing the detection device of Wind turbines overspeed protection system.
As a kind of preferred implementation of the present embodiment, described communication module use USB RS-232 transducer.
The detection device of the Wind turbines overspeed protection system of the present embodiment also includes the power supply 100 for power supply, power supply 100 connect control unit 300 by and off switch 200.Power supply 100 of the present utility model is Wind turbines overspeed protection system Detection device is powered, and on and off switch 200 is used for the connecting and disconnecting that the detection device of Wind turbines overspeed protection system is powered.
Further, the power supply 100 of the present embodiment uses lithium battery.
The detection device of the Wind turbines overspeed protection system of the present embodiment also includes for fixed internal plate and guarantor Protect internal circuit shell.
Such as, the model providing each integrated circuit that the present embodiment is exemplary is: control unit 300 uses single-chip microcomputer STM32F103ZET6, pulse signal generating unit 400 uses HEF4052BT, and communication module uses FTDI1232-C, and data are deposited Storage unit 600 uses 24FC256, display unit 800 to use 2.8 inch touchscreen.
The detection device of the Wind turbines overspeed protection system of the present embodiment is by surpassing corresponding to different model Wind turbines Speed pulse frequency is saved in the tables of data of single-chip microcomputer 310, and single-chip microcomputer 310 receives the Wind turbines type selected by touch screen 810 After number, in tables of data, obtain ultrafast pulses frequency according to selected blower fan model and produce corresponding pulses signal imitation rotation speed of fan Signal, controls electrical switch 420 output pulse signal by controlling pin, and pulse signal is delivered to after current-limiting resistance 410 current limliting Thin slice inductance 510 encourages speed probe 1000, and overspeed protection system is receiving the hypervelocity letter that speed probe 1000 is sent here Number, if starting Wind turbines protection, then explanation overspeed protection system is normal, otherwise, then explanation overspeed protection system fault.
As it is shown in figure 9, the operation interface flow process of the detection device of a kind of Wind turbines overspeed protection system of the present embodiment Figure, including:
System electrification start is laggard becomes owner of interface, enters relevant work interface after selecting different operating by operation interface. Operation Interface Options includes the operations such as the selection of blower fan model, System self-test, system parameter setting, shutdown.
Blower fan model selects: according to preset blower fan model list, select the blower fan model corresponding with tested blower fan, Master controller is inquired about tables of data after receiving blower fan model parameter and is obtained tested blower fan ultrafast pulses frequency data, arranges timing Device initial value, preserve currently selected blower fan model to data storage, enter blower fan hypervelocity test interface.Blower fan hypervelocity test Interface includes starting, suspends, stops three buttons, and after pressing touch screen interface START button, intervalometer is started working, by Pulse Width Control pin output control pulse signal is to pulse signal generator;After pressing " time-out " button, halt signal exports; Main interface is returned to after pressing " stopping " button.
System self-test: System self-test mainly includes touch screen location self-inspection, button test, battery detecting, pulse signal certainly Dynamic stepping output function, returns to main interface after self-inspection.
System parameter setting: mainly include that touch screen backlight illumination, backlight time, mode of operation select, after setting completed Return to main interface.
Power-off operation: after power-off operation, Wind turbines overspeed protection test device enters holding state, presses power on button Shi Zaici starts shooting.
Embodiment two
The present embodiment provides a kind of thin slice inductance, is mainly used on the detection device of Wind turbines overspeed protection system, as Shown in Fig. 5 and Fig. 6, a kind of thin slice inductance, including insulated substrate 501, conductive coil 504 and signal wire socket 506, described leads Electric coil 504 is for being in conplane spiral coil, and the two sides of described insulated substrate 501 is respectively provided with conductive coil 504, One end of the conductive coil 504 on insulated substrate 501 two sides is connected, and the other end is respectively connecting to signal wire socket 506.
The pulsed magnetic field excitation that the thin slice inductance 510 of the present embodiment produces turns speed probe 1000 model rotor 900 turns Speed, it is possible to achieve the detection to Wind turbines overspeed protection system, it is to avoid blower fan carries out overspeed protection system under operation Detection causes the damage to blower transmission components, it is ensured that fan operation safety, simple to operation.
The present embodiment have employed the thin slice inductance 510 of particular design, and the thickness of thin slice inductance 510 is less than speed probe Spacing between 1000 and rotor 900, it is simple to the installation of thin slice inductance 510, and do not change the peace of existing speed probe 1000 Holding position and mode.
Specifically, the thickness of thin slice inductance 510 is less than 1cm, this mainly due to speed probe 1000 and rotor 900 it Between spacing the least, typically at about 1cm.
Further, the conductive coil 504 of the present embodiment includes the first conduction being correspondingly arranged at insulated substrate 501 two sides Coil and the second conductive coil, the rotation direction of the first conductive coil is oppositely oriented with the second conductive coil.So make both sides The field signal produced in conductive coil is strengthened, it is easier to detected by speed probe 1000.
Further, the spiral center of described first conductive coil and the spiral center of the second loop connect.
Specifically, described insulated substrate 501 being offered through hole 502, corresponding first conductive coil of through hole 502 and second is led The spiral center of electric coil is arranged, and the spiral center of described first conductive coil or the spiral center of the second loop pass Through hole 502 is connected.
Further, the spiral outer end of described first conductive coil extend for connect signal wire socket 506 first Connecting end 505, the second connection end 507 for connecting signal wire socket 506 is extended in the spiral outer end of the second conductive coil.
Further, described signal wire socket 506 is arranged on insulated substrate 501, and signal wire socket 506 uses USB Socket.
Further, the thin slice inductance 510 of the present embodiment also includes the adsorption magnet for fixedly mounting thin slice inductance, inhales Attached Magnet is arranged on insulated substrate 501 at least two diagonal angle.
As an embodiment of the present embodiment, copper-foil conducting electricity is laid on the two sides of described insulated substrate 501, and described leads Etch a spiral-shaped conductive copper coil on electrolytic copper paper tinsel and form conductive coil 504.
Further, the thin slice inductance 510 of the present embodiment can be formed on a printed circuit board, the substrate of printed circuit board For insulated substrate 501, copper-foil conducting electricity is laid on the substrate two sides of printed circuit board.Use the mode of etching on a printed circuit board It is directly prepared into thin slice inductance 510, is simple to manufacture conveniently, it is easy to accomplish.
A kind of detection device of the Wind turbines overspeed protection system of the present embodiment, described Wind turbines overspeed protection system System includes the speed probe 1000 for detecting Wind turbines rotating speed, including
Control unit 300,
For receiving Wind turbines type information and obtaining corresponding pulse frequency according to Wind turbines type information;
Pulse signal generating unit 400,
It is connected with control unit 300, produces corresponding pulse signal according to the pulse frequency that control unit 300 obtains;
Thin slice inductance 510,
It is connected with pulse signal generating unit 400, the pulse signal produced for return pulse signal generating unit 400 It is converted into corresponding magnetic induction signal;
The spiral center of described thin slice inductance 510 is corresponding to the detection of the speed probe of Wind turbines overspeed protection system End is arranged.
As shown in Figure 6, described thin slice inductance 510 is arranged on the rotor 900 of Wind turbines, on the rotor of Wind turbines There is perforate 901;
The detection of described speed probe 1000 is rectified split hole 901 and is arranged, and described thin slice inductance 510 is arranged on perforate Position and the side near speed probe 1000.
Embodiment three
As it is shown in fig. 7, the detection method of a kind of Wind turbines overspeed protection system of the present embodiment, described Wind turbines Overspeed protection system includes the speed probe for detecting Wind turbines rotating speed, including:
Under Wind turbines stopped status, when control wave generating unit produces pulse signal simulation Wind turbines rotation The rotor pumping signal to speed probe;
When the frequency of pulse signal reaches the overdrive rate of Wind turbines, it is judged that whether Wind turbines protection system is moved Make, the most then Wind turbines overspeed protection system is normal, if it is not, then Wind turbines overspeed protection system fault.
The detection method of the Wind turbines overspeed protection system of the present embodiment produces simulation by pulse signal generating unit Rotation speed of fan signal, can carry out lossless decomposition when Wind turbines maintenance shut-downs to overspeed protection system, it is to avoid blower fan is transported Cause the damage to blower transmission components because of overspeed protection system detection during row, improve the safety of Wind turbines detection, really Protect fan operation safety, simple to operation.
Further, described pulse signal generating unit produces pulse signal and can enter according to the different model of Wind turbines Row is corresponding to be adjusted so that the frequency of pulse signal generating unit generation pulse signal reaches the hypervelocity of different model Wind turbines Frequency.The overspeed protection system that so can realize the Wind turbines to different model detects, and versatility is higher, it is simple to promote Application.
Further, described pulse signal generating unit connects electromagnetic conversion unit;
The pulse signal that electromagnetic conversion unit return pulse signal generating unit produces is converted into corresponding magnetic induction Signal, described speed probe is by detecting the rotating speed of magnetic induction signal acquisition Wind turbines.
Further, described electromagnetic conversion unit 500 is arranged on the rotor of Wind turbines, on the rotor of Wind turbines There is perforate;
The detection of described speed probe 1000 is rectified split hole and is arranged, and described electromagnetic conversion unit 500 is arranged on out Hole location and the side near speed probe 1000.
As an embodiment of the present embodiment, described electromagnetic conversion unit 500 is air core inductor.Specifically, institute The air core inductor stated is the thin slice inductance 510 using printing circuit board.
Before the detection method carrying out overspeed protection system, first Wind turbines is shut down, it is ensured that aerogenerator unit safe stops Installing thin slice inductance 510 after machine, thin slice inductance 510 installs rear operating impulse signal generating unit and produces pulse signal, and Increase rotating speed by increasing pulse signal frequency simulation, when arriving hypervelocity rotating speed, observe overspeed protection system whether action, if super Speed protection system acting positive closing wind power generating set, illustrates that overspeed protection system is working properly, is completed, take off thin slice Inductance 510, resets wind turbine generator system controller, and prepares to restart unit;If overspeed protection system is failure to actuate, illustrate that hypervelocity is protected Protecting system is faulty, need to carry out failture evacuation, again carries out overspeed protection detection after failture evacuation, until overspeed protection system work Make normal.
As an embodiment of the present embodiment, described pulse signal generating unit is controlled to produce arteries and veins by control unit Rush signal;
Control unit receives Wind turbines type information and obtains corresponding pulse frequency according to Wind turbines type information, The pulse frequency that pulse signal generating unit obtains according to control unit produces corresponding pulse signal.
Specifically, described control unit is single-chip microcomputer, and different Wind turbines model and corresponding preserved by single-chip microcomputer The tables of data of ultrafast pulses frequency;
Described pulse signal generating unit includes electrical switch, and electrical switch connects single-chip microcomputer;
The described Wind turbines type information selected by single-chip microcomputer reception, is counting according to selected Wind turbines model According to table obtains corresponding ultrafast pulses frequency, control electrical switch output pulse signal by controlling pin, believe with pulse Number simulation Wind turbines tach signal.
Further, the display unit 800 that described control unit 300 connects respectively and manipulation unit 700,
Described display unit 800 shows the frequency of current PRF signal, carries out arteries and veins by operating described manipulation unit 700 Rush the rotor speed that simulation Wind turbines is increased or decreased of frequency.
As shown in Figure 8, the detection method of a kind of Wind turbines overspeed protection system, including:
Step S1, starts;
Step S2, control unit reads acquiescence Wind turbines model;
Step S3, control unit judges whether to select acquiescence Wind turbines model;
Step S4, the most then carry out step S6, if it is not, then carry out step S5;
Step S5, control unit receives the Wind turbines type information reselected;
Step S6, control unit reads the frequency of respective pulses signal according to the Wind turbines model selected;
Step S7, control unit control wave generating unit produces rotor when pulse signal simulation Wind turbines rotates Pumping signal to speed probe;
Step S8, it is judged that Wind turbines protection system whether action, the most then Wind turbines overspeed protection system is normal, If it is not, then Wind turbines overspeed protection system fault.
Further, described control unit is connected with Wind turbines protection system communication, and control unit can receive wind-powered electricity generation The information of unit overspeed protection system fault is also reported to the police.
The above is only preferred embodiment of the present utility model, not makees this utility model any pro forma Limit, although this utility model is disclosed above with preferred embodiment, but is not limited to this utility model, any familiar The technical staff of this patent is in the range of without departing from technical solutions of the utility model, when the technology contents of available above-mentioned prompting Make a little change or be modified to the Equivalent embodiments of equivalent variations, as long as without departing from technical solutions of the utility model Hold, any simple modification, equivalent variations and modification above example made according to technical spirit of the present utility model, the most still Belong in the range of this utility model scheme.

Claims (9)

1. a detection device for Wind turbines overspeed protection system, described Wind turbines overspeed protection system includes for examining Survey the speed probe (1000) of Wind turbines rotating speed, it is characterised in that include
Control unit (300),
For receiving Wind turbines type information and obtaining corresponding pulse frequency according to Wind turbines type information;
Pulse signal generating unit (400),
It is connected with control unit (300), produces corresponding pulse signal according to the pulse frequency that control unit (300) obtains;
Electromagnetic conversion unit (500),
It is connected with pulse signal generating unit (400), the pulse signal produced for return pulse signal generating unit (400) It is converted into corresponding magnetic induction signal;
The magnetic induction signal output part of described electromagnetism switch unit (500) passes corresponding to the rotating speed of Wind turbines overspeed protection system The test side of sensor is arranged.
The detection device of a kind of Wind turbines overspeed protection system the most according to claim 1, it is characterised in that described Control unit (300) is single-chip microcomputer (310), and single-chip microcomputer (310) preserves different Wind turbines models and corresponding hypervelocity arteries and veins thereof Rush the tables of data of frequency;
Described pulse signal generating unit (400) includes electrical switch (420), and electrical switch (420) connects single-chip microcomputer (310);
The described Wind turbines type information selected by single-chip microcomputer (310) reception, exists according to selected Wind turbines model Tables of data obtains corresponding ultrafast pulses frequency, controls electrical switch (420) output pulse signal by controlling pin, use The tach signal of pulse signal simulation Wind turbines.
The detection device of a kind of Wind turbines overspeed protection system the most according to claim 2, it is characterised in that described electricity One end of son switch (420) is connected with power supply (100) by current-limiting resistance (410), the other end and electromagnetism switch unit (500) Input be connected.
The detection device of a kind of Wind turbines overspeed protection system the most according to claim 1, it is characterised in that described Electromagnetic conversion unit (500) is arranged on the rotor (900) of Wind turbines, and the rotor of Wind turbines has perforate (901);
The detection of described speed probe (1000) is rectified split hole (901) and is arranged, and described electromagnetic conversion unit (500) is installed In position with pores and near the side of speed probe (1000).
5. according to the detection device of a kind of Wind turbines overspeed protection system described in claim 1 or 4, it is characterised in that institute The electromagnetic conversion unit (500) stated is air core inductor.
The detection device of a kind of Wind turbines overspeed protection system the most according to claim 5, it is characterised in that described Air core inductor is the thin slice inductance (510) using printing circuit board.
The detection device of a kind of Wind turbines overspeed protection system the most according to claim 1, it is characterised in that described Pulse signal generating unit (400) is connected by band screen layer usb signal line (1200) with electromagnetic conversion unit (500).
The detection device of a kind of Wind turbines overspeed protection system the most according to claim 1, it is characterised in that also include The data storage cell (600) being connected with control unit (300), be used for storing currently selected Wind turbines type information with System settings data, is arranged with system as acquiescence blower fan type information when again starting shooting.
The detection device of a kind of Wind turbines overspeed protection system the most according to claim 1, it is characterised in that also include The display unit (800) being connected respectively with control unit (800) and manipulation unit (700),
Described display unit (800) is for showing the pulse frequency of current PRF signal, by operating described manipulation unit (700) rotor speed that simulation Wind turbines is increased or decreased of pulse frequency is carried out.
CN201620611961.0U 2016-06-20 2016-06-20 A kind of detection device of Wind turbines overspeed protection system Active CN205779466U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620611961.0U CN205779466U (en) 2016-06-20 2016-06-20 A kind of detection device of Wind turbines overspeed protection system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620611961.0U CN205779466U (en) 2016-06-20 2016-06-20 A kind of detection device of Wind turbines overspeed protection system

Publications (1)

Publication Number Publication Date
CN205779466U true CN205779466U (en) 2016-12-07

Family

ID=58132671

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620611961.0U Active CN205779466U (en) 2016-06-20 2016-06-20 A kind of detection device of Wind turbines overspeed protection system

Country Status (1)

Country Link
CN (1) CN205779466U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106089600A (en) * 2016-06-20 2016-11-09 大唐(赤峰)新能源有限公司 The detection device of a kind of Wind turbines overspeed protection system and detection method thereof
CN110985296A (en) * 2019-12-20 2020-04-10 诸暨都高风能科技有限公司 Wind motor capable of automatically steering

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106089600A (en) * 2016-06-20 2016-11-09 大唐(赤峰)新能源有限公司 The detection device of a kind of Wind turbines overspeed protection system and detection method thereof
CN110985296A (en) * 2019-12-20 2020-04-10 诸暨都高风能科技有限公司 Wind motor capable of automatically steering

Similar Documents

Publication Publication Date Title
CN106050559A (en) Detecting method and device for wind turbine generator overspeed protection system
CN106089600A (en) The detection device of a kind of Wind turbines overspeed protection system and detection method thereof
CN102200096B (en) For the method and apparatus of optimizing wind turbine operation
CN205779466U (en) A kind of detection device of Wind turbines overspeed protection system
CN102200826B (en) Power adapter and portable computer
CN105242608B (en) Entire car controller and its control method
CN205714580U (en) A kind of thin slice inductance and the detection device of Wind turbines overspeed protection system
CN106050560A (en) Chip inductor and detecting device for wind turbine generator overspeed protection system
CN207538974U (en) A kind of direct current variable blade control system safety control
CN101325389B (en) Fan system and detecting device thereof
CN105915149A (en) Motor rotating speed accurate identification method after outage in interrupted power supply energy saving control
CN201650588U (en) Control device for brushless wind generator
CN202309098U (en) Communication monitor module of photovoltaic generating grid-connected inverter system
CN210427736U (en) Take hall sensor's motor drive integrated circuit board production detection device
CN201541133U (en) Embedded automatic quasi-synchronization parallel operation control device for ship power station
CN201886091U (en) Tester of frequency converter
CN203548060U (en) Control system for wind-power generator set
CN203851070U (en) Synchronous motor apparatus and full-digital excitation device thereof
CN203850993U (en) Synchronous generator apparatus and excitation device thereof
CN107276416A (en) Switch power supply equipment and system
CN103201946B (en) Comprise the aviation power supply circuit of asynchronous machine
CN208820630U (en) A kind of control system of permanent magnet synchronous motor
CN108832892B (en) PID effect resistance-based IV measurement method and device for photovoltaic module
CN107317360B (en) Starting grid-connected control device and control method for direct-drive permanent magnet synchronous wind generating set
CN112525577A (en) High-temperature superconducting induction heating transmission detection method, device and system

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant