CN101783558A - Self-voltage-stabilizing permanent magnet AC generator and method thereof - Google Patents

Self-voltage-stabilizing permanent magnet AC generator and method thereof Download PDF

Info

Publication number
CN101783558A
CN101783558A CN200910095492A CN200910095492A CN101783558A CN 101783558 A CN101783558 A CN 101783558A CN 200910095492 A CN200910095492 A CN 200910095492A CN 200910095492 A CN200910095492 A CN 200910095492A CN 101783558 A CN101783558 A CN 101783558A
Authority
CN
China
Prior art keywords
coil
stator core
generator
voltage
output
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.)
Pending
Application number
CN200910095492A
Other languages
Chinese (zh)
Inventor
包秀峰
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.)
ZUANBAO ELECTRONICS CO Ltd
Original Assignee
ZUANBAO ELECTRONICS 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 ZUANBAO ELECTRONICS CO Ltd filed Critical ZUANBAO ELECTRONICS CO Ltd
Priority to CN200910095492A priority Critical patent/CN101783558A/en
Publication of CN101783558A publication Critical patent/CN101783558A/en
Pending legal-status Critical Current

Links

Images

Landscapes

  • Control Of Eletrric Generators (AREA)

Abstract

The invention relates to a self-voltage-stabilizing permanent magnet AC generator and a method thereof, belonging to the technical field of the permanent magnet AC generator. In the technical scheme, primary outgoing lines on the two ends of a coil winding are connected with a switching control circuit, a single-turn of part of a coil of the coil winding arranged in a stator core coil slot is provided with taps, the taps are also connected with the switching control circuit, the switching control circuit is connected with the output end of the generator, the output end of the generator is connected with an output voltage monitoring circuit, the feedback of the output voltage monitoring circuit is connected with the switching control circuit, and the switching control circuit selects different taps to superpose the voltages of the primary outgoing lines on the two ends of the coil winding at certain intervals according to the signal of the output voltage monitoring circuit and based on the rated voltage, so that the output end of the generator can output the rated voltage.

Description

Self-voltage-stabilizing permanent magnet AC generator and method thereof
Technical field
The present invention relates to a kind of self-voltage-stabilizing permanent magnet AC generator and method thereof, belong to the technical field of magneto alternator.
Background technology
At present, conventional middle low power magneto alternator in the higher occasion of power supply required precision, is to adopt AC-to DC to arrive the modulation power source voltage stabilizing that exchanges again substantially, and this kind method is when load impact, anticlimax, and voltage accuracy can not guarantee; When external load changed greatly, stabilized voltage power supply was damaged easily.The process AC-to DC arrives the power supply of ac modulation again, and the waveform of output is the sine wave of modulation, and the power supply distortion factor is big; The complete machine structure volume is big, and weight is bigger.
Summary of the invention
The purpose of this invention is to provide a kind of simple in structure, volume is little, precision is high, reliability is high self-voltage-stabilizing permanent magnet AC generator and method thereof, solved the sine wave of the waveform of the existing output of existing magneto alternator for modulation, the power supply distortion factor is big, problems such as the complete machine structure volume is big, and weight is bigger.
Above-mentioned technical purpose of the present invention solves by the following technical programs: it comprises stator core and is positioned at the front end housing and the rear end cap of stator core front and back end, stator core is provided with coil windings, coaxial swivel bearing has rotating shaft in the stator core, rotating shaft is provided with p-m rotor, the outer end of rotating shaft is provided with fan blade, it is characterized in that described stator core is provided with several along the equally distributed coil groove of circumference, described coil windings by winding respectively in the coil groove of stator core and several coils that are cascaded mutually constitute, each coil that is positioned at stator core coil groove is made of some coil single turns of mutual series connection, the main lead at coil windings two ends is connected with control switching circuit, the coil sections single turn that coil windings is positioned at the coil of stator core coil groove is provided with tap, described tap also is connected with control switching circuit, described control switching circuit connects the output of generator, the output of described generator is connected with the output voltage observation circuit, described output voltage observation circuit feedback connects control switching circuit, control switching circuit selects different taps that the main lead voltage at coil windings two ends is superposeed every cycle regular hour according to the signal contrast rated voltage of output voltage observation circuit, makes the output output rated voltage of generator.The every phase output voltage of stator coil is the voltage summation of the coil single turn of being connected, and when generator was unloaded, electric current was zero, and pressure drop is zero, and output voltage is higher.The generator full load, stator current reaches rated value, and the stator coil pressure drop is big, thereby output voltage is on the low side.When generator was in hot work, the output voltage offrating that electric voltage observation circuit monitors generator was bigger, and then control switching circuit switches the number of turn of tap with the coil single turn that increases more every phase and connected, makes output voltage stabilization.Otherwise, then control switching circuit switch tap with the number of turn of the coil single turn that reduces every phase and connected so that the stable voltage of generator output.At aforementioned, in the coil that every phase is connected, extract different coil taps, by the tap of change motor coil, thereby change output voltage, reach the output voltage stabilization of generator.
As preferably, be connected by bidirectional triode thyristor between described tap and the control switching circuit.
As preferably, the time cycle of described control switching circuit was smaller or equal to 0.05 second.
Magneto alternator is from method for stabilizing voltage, magneto alternator comprises stator core and is positioned at the front end housing and the rear end cap of stator core front and back end, stator core is provided with coil windings, coaxial swivel bearing has rotating shaft in the stator core, rotating shaft is provided with p-m rotor, stator core is provided with several along the equally distributed coil groove of circumference, described coil windings by winding respectively in the coil groove of stator core and several coils that are cascaded mutually constitute, each coil that is positioned at stator core coil groove is made of some coil single turns of mutual series connection, the main lead at coil windings two ends is connected with control switching circuit, be provided with several different taps by calculating at the coil sections single turn that coil windings is positioned at the coil of stator core coil groove in addition, aforementioned different tap is connected by switching device with control switching circuit;
Described control switching circuit is connected with the output of generator, and the output with generator connects the output voltage observation circuit again, and described output voltage observation circuit feedback connects control switching circuit;
The main lead voltage that control switching circuit selects the switching device of different taps to open the coil windings two ends every cycle regular hour according to the signal contrast rated voltage of output voltage observation circuit superposes, and makes the output output rated voltage of generator.When generator was in hot work, the output voltage offrating that electric voltage observation circuit monitors generator was bigger, and then control switching circuit switches the number of turn of tap with the coil single turn that increases more every phase and connected, makes output voltage stabilization.Otherwise, then control switching circuit switch tap with the number of turn of the coil single turn that reduces every phase and connected so that the stable voltage of generator output.At aforementioned, in the coil that every phase is connected, extract different coil taps, by the tap of change motor coil, thereby change output voltage, reach the output voltage stabilization of generator.
As preferably, described switching device is a bidirectional triode thyristor.
As preferably, the described time cycle was smaller or equal to 0.05 second.
Therefore, the present invention have simple in structure, volume is little, precision is high, high reliability features.
Description of drawings
Fig. 1 is a kind of structural representation of the present invention;
Fig. 2 is an electrical block diagram of the present invention.
Embodiment
Below by specific embodiment, and in conjunction with the accompanying drawings, technical scheme of the present invention is described in further detail.
Embodiment 1: as depicted in figs. 1 and 2, front end housing 1 and rear end cap 2 lay respectively at the front-end and back-end of stator core 3, stator core 3 is provided with coil windings 4, coaxial swivel bearing has rotating shaft 5 in the stator core 3, rotating shaft 5 is provided with p-m rotor 6, the outer end of rotating shaft 5 is provided with fan blade 7, stator core 3 is provided with a plurality of along the equally distributed coil groove of circumference, coil windings 4 by winding respectively in the coil groove of stator core and a plurality of coils that are cascaded mutually constitute, each coil that is positioned at stator core coil groove is made of a plurality of coil single turns of mutual series connection, the main lead 8 at coil windings 4 two ends is connected with control switching circuit 9, the coil sections single turn that coil windings 4 is positioned at the coil of stator core coil groove is provided with tap 10, tap is connected with control switching circuit 9 by bidirectional triode thyristor, control switching circuit 9 connects the output of generator, the output of generator is connected with output voltage observation circuit (not shown), output voltage observation circuit feedback connects control switching circuit 9, control switching circuit selected different taps that the main lead voltage at coil windings two ends is superposeed every 0.05 second according to the signal contrast rated voltage of output voltage observation circuit, made the output output rated voltage of generator.The every phase output voltage of stator coil is the voltage summation of the coil single turn of being connected, and when generator was unloaded, electric current was zero, and pressure drop is zero, and output voltage is higher.The generator full load, stator current reaches rated value, and the stator coil pressure drop is big, thereby output voltage is on the low side.
As shown in Figure 2, when generator 11 connection loads 12 are in hot work, the output voltage offrating that electric voltage observation circuit monitors generator is bigger, and then control switching circuit 9 switches the number of turn of taps 10 with the coil single turn that increases more every phase and connected, makes output voltage stabilization.Otherwise, then control switching circuit 9 switch taps 10 with the number of turn of the coil single turn that reduces every phase and connected so that the stable voltage of generator output.At aforementioned, in the coil that every phase is connected, extract different coil taps, by the tap of change motor coil, thereby change output voltage, reach the output voltage stabilization of generator.

Claims (6)

1. self-voltage-stabilizing permanent magnet AC generator, comprise stator core and be positioned at the front end housing and the rear end cap of stator core front and back end, stator core is provided with coil windings, coaxial swivel bearing has rotating shaft in the stator core, rotating shaft is provided with p-m rotor, the outer end of rotating shaft is provided with fan blade, it is characterized in that described stator core is provided with several along the equally distributed coil groove of circumference, described coil windings by winding respectively in the coil groove of stator core and several coils that are cascaded mutually constitute, each coil that is positioned at stator core coil groove is made of some coil single turns of mutual series connection, the main lead at coil windings two ends is connected with control switching circuit, the coil sections single turn that coil windings is positioned at the coil of stator core coil groove is provided with tap, described tap also is connected with control switching circuit, described control switching circuit connects the output of generator, the output of described generator is connected with the output voltage observation circuit, described output voltage observation circuit feedback connects control switching circuit, control switching circuit selects different taps that the main lead voltage at coil windings two ends is superposeed every cycle regular hour according to the signal contrast rated voltage of output voltage observation circuit, makes the output output rated voltage of generator.
2. self-voltage-stabilizing permanent magnet AC generator according to claim 1 is characterized in that being connected by bidirectional triode thyristor between described tap and the control switching circuit.
3. self-voltage-stabilizing permanent magnet AC generator according to claim 1 and 2, the time cycle that it is characterized in that described control switching circuit was smaller or equal to 0.05 second.
4. a magneto alternator is from method for stabilizing voltage, magneto alternator comprises stator core and is positioned at the front end housing and the rear end cap of stator core front and back end, stator core is provided with coil windings, coaxial swivel bearing has rotating shaft in the stator core, rotating shaft is provided with p-m rotor, stator core is provided with several along the equally distributed coil groove of circumference, described coil windings by winding respectively in the coil groove of stator core and several coils that are cascaded mutually constitute, each coil that is positioned at stator core coil groove is made of some coil single turns of mutual series connection, it is characterized in that:
The main lead at coil windings two ends is connected with control switching circuit, be provided with several different taps by calculating at the coil sections single turn that coil windings is positioned at the coil of stator core coil groove in addition, aforementioned different tap is connected by switching device with control switching circuit;
Described control switching circuit is connected with the output of generator, and the output with generator connects the output voltage observation circuit again, and described output voltage observation circuit feedback connects control switching circuit;
The main lead voltage that control switching circuit selects the switching device of different taps to open the coil windings two ends every cycle regular hour according to the signal contrast rated voltage of output voltage observation circuit superposes, and makes the output output rated voltage of generator.
5. magneto alternator according to claim 4 is characterized in that from method for stabilizing voltage described switching device is a bidirectional triode thyristor.
According to claim 4 or 5 described magneto alternators from method for stabilizing voltage, it is characterized in that the described time cycle was smaller or equal to 0.05 second.
CN200910095492A 2009-01-19 2009-01-19 Self-voltage-stabilizing permanent magnet AC generator and method thereof Pending CN101783558A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN200910095492A CN101783558A (en) 2009-01-19 2009-01-19 Self-voltage-stabilizing permanent magnet AC generator and method thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN200910095492A CN101783558A (en) 2009-01-19 2009-01-19 Self-voltage-stabilizing permanent magnet AC generator and method thereof

Publications (1)

Publication Number Publication Date
CN101783558A true CN101783558A (en) 2010-07-21

Family

ID=42523420

Family Applications (1)

Application Number Title Priority Date Filing Date
CN200910095492A Pending CN101783558A (en) 2009-01-19 2009-01-19 Self-voltage-stabilizing permanent magnet AC generator and method thereof

Country Status (1)

Country Link
CN (1) CN101783558A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105406668A (en) * 2015-12-24 2016-03-16 耿天侃 Disk type generator capable of changing power
CN107070105A (en) * 2017-04-18 2017-08-18 深圳市瑞迪构科技有限公司 A kind of program control generator

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105406668A (en) * 2015-12-24 2016-03-16 耿天侃 Disk type generator capable of changing power
CN107070105A (en) * 2017-04-18 2017-08-18 深圳市瑞迪构科技有限公司 A kind of program control generator

Similar Documents

Publication Publication Date Title
US8803384B2 (en) Stators with reconfigurable coil paths
Zhu et al. Novel linear flux-switching permanent magnet machines
US8593030B2 (en) Rotating electric machine for generating a constant frequency AC Power Supply from a variable speed primemover
CN202334220U (en) Hybrid rotor brushless synchronous motor
CN103166402B (en) Magnetism insulating reluctance and short circuit cage integrated rotor brushless electro-magnetic synchronous motor
Liu et al. Design assessments of a magnetic-geared double-rotor permanent magnet generator
US20110057534A1 (en) Reverse electromotive force generating motor
Matyska Advantages of synchronous reluctance motors
AU2012306561A1 (en) Superconducting machine and method for the operation thereof
CN201134737Y (en) AC generator parallelly using three-phase and single-phase
CN101783558A (en) Self-voltage-stabilizing permanent magnet AC generator and method thereof
CN103095085A (en) Four-phase doubly-salient motor
CN104038004A (en) Alternator for power generation system
CN201860232U (en) Hybrid excitation synchronous generator in parallel structure without electric excitation rotor
Khan et al. Impact of direct-drive WEC Systems on the design of a small PM wind generator
CN201345599Y (en) Self-voltage stabilizing permanent magnet alternator
Yang et al. Novel asymmetrical rotor design for easy assembly and repair of rotor windings in synchronous generators
Zhong et al. Comparative study of linear primary permanent-magnet vernier machine and conventional linear permanent-magnet machine
CN102035334A (en) Switched reluctance motor of directly-driven submersible screw pump
US8680725B2 (en) Electric motor
Wang et al. A novel circular winding brushless DC (CWBLDC) machine with low torque ripple
JP2004140991A (en) Generator
Sui et al. A Consequent-Pole Five-Phase Fault-Tolerant Permanent-Magnet Synchronous Machine for Electric Vehicles
US20110210705A1 (en) Method for regulating the reactive power generated or absorbed by a synchronous electric generator and synchronous electric generator
US20040164701A1 (en) Electrodynamic machines and components therefor and methods of making and using same

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C02 Deemed withdrawal of patent application after publication (patent law 2001)
WD01 Invention patent application deemed withdrawn after publication

Open date: 20100721