CN1825506A - Magnetoresistance brushless multi-polar rotation transformer - Google Patents

Magnetoresistance brushless multi-polar rotation transformer Download PDF

Info

Publication number
CN1825506A
CN1825506A CN 200610009884 CN200610009884A CN1825506A CN 1825506 A CN1825506 A CN 1825506A CN 200610009884 CN200610009884 CN 200610009884 CN 200610009884 A CN200610009884 A CN 200610009884A CN 1825506 A CN1825506 A CN 1825506A
Authority
CN
China
Prior art keywords
rotor
coil
round surface
outer round
stator
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
CN 200610009884
Other languages
Chinese (zh)
Other versions
CN100435248C (en
Inventor
陆永平
孙立志
邹继斌
李勇
刘彦彬
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.)
Harbin Institute of Technology
Original Assignee
Harbin Institute of Technology
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 Harbin Institute of Technology filed Critical Harbin Institute of Technology
Priority to CNB2006100098842A priority Critical patent/CN100435248C/en
Publication of CN1825506A publication Critical patent/CN1825506A/en
Application granted granted Critical
Publication of CN100435248C publication Critical patent/CN100435248C/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Iron Core Of Rotating Electric Machines (AREA)
  • Transmission And Conversion Of Sensor Element Output (AREA)

Abstract

The invention relates to a reluctance brushless multipolar rotational transformer. And the external circular surface of a rotor is uniformly provided with P wave crests and P wave throughs, where these wave crests and wave throughs are smoothly interlinked to compose the wavy external circular surface of the rotor, and excitation, sine and cosine windings are positive phase-to-negative phase connected in series. As a constant voltage alternating current passes through the excitation winding, the sine and cosine windings output voltages whose electromotive force amplitudes make p sine and cosine variations with the rotation angle of the rotor. And the invention has characters of simple structure, convenient to make, and especially applied to the rotor position sensor of a brushless DC motor.

Description

Magnetoresistance brushless multi-polar rotation transformer
Technical field
The present invention relates to a kind of magnetoresistance brushless multi-polar rotation transformer.
Background technology
The traditional resolver that is used for angle measurement, its input and output winding places respectively on rotor and the stator, for realizing non-brushing, need add a coupling transformer, makes structure complicated; And another kind of cursor type resolver, two kinds of windings all on stator, have been realized non-brushing, but the number of pole-pairs P of this resolver a lot (for example P is more than 32), and to adopt baroque positive chorded winding.This two classes resolver when being used for the brushless DC motor rotor-position sensor, is not desirable element particularly when being used for the less multipole angular surveying of number of pole-pairs.
Summary of the invention
In order to solve the existing problem that is used for the rotating transformer structures complexity of angle measurement and is not suitable for the less multipole angular surveying of number of pole-pairs, the invention provides a kind of magnetoresistance brushless multi-polar rotation transformer based on magnetic resistance principle and coil compensation principle, it is used for angular surveying or angle sensor.
Resolver comprises rotor 2 and stator 1, is provided with air gap 3 between the internal circular surfaces of the outer round surface of described rotor 2 and stator 1; Described resolver also comprises the first coil 4-1, the second coil 5-1 and tertiary coil 6-1; The outer round surface of described rotor 2 evenly is provided with P crest and P trough, and the mutual slyness of described crest and trough connects and composes the waveform outer round surface of rotor 2, and wherein, P is the number of pole-pairs of this resolver; The internal circular surfaces of described stator 1 has a plurality of groove 1-2 vertically, between described adjacent two groove 1-2 double wedge 1-1 is arranged, the internal circular surfaces of described stator 1 is along the circumferential direction evenly distributed 4P double wedge 1-1, and described 4P double wedge 1-1 sorts successively and be divided into 2P odd number double wedge 1-1-1 and 2P even number double wedge 1-1-2; The root of each double wedge 1-1 all is wound with the first coil 4-1, and the positive and negative successively alternate series connection of the described first coil 4-1 constitutes field winding 4; The top of described odd number double wedge 1-1-1 all is wound with the second coil 5-1, and the positive and negative successively alternate series connection of the described second coil 5-1 constitutes positive chorded winding 5; The top of described even number double wedge 1-1-2 all is wound with tertiary coil 6-1, and the positive and negative successively alternate series connection of described tertiary coil 6-1 constitutes cosine winding 6.
Resolver of the present invention has following two characteristics: one, the outer round surface of rotor is for the waveform by the sineization design, so the rotor airgap magnetic conductance can be represented: G (a)=G 0+ G 1CosP θ, in the formula, G 0Be average magnetic conductance, G 1Be first-harmonic magnetic conductance amplitude, P is a number of pole-pairs, and θ is the rotor circumference tangential coordinates; Two, field winding, positive chorded winding and cosine winding are the layout of positive and negative alternate series connection.According to the positive and negative series arrangement of field winding, when field winding passed to the constant voltage sinusoidal ac, its tooth air gap pulsating magnetic flux can be expressed as
φ i = φ 0 + ( - 1 ) ( i + 1 ) φ 1 cos [ ( i - 1 ) π 2 + Pa ] , In the formula, φ 0Be magnetic flux average weight, φ 1Be the magnetic flux fundametal compoment, i is the stator tooth sequence number, i=1~4P; A is an angle of rotor.
Therefore the magnetic linkage of field winding can be expressed as
ψ f = Σ i = 1 4 P W f ( - 1 ) ( i + 1 ) φ i = 4 P W f φ 0 , In the formula, W fIt is the number of turn of the first coil 4-1.
As can be seen from the above equation, the magnetic linkage of field winding and angle of rotor are irrelevant, so input impedance is a normal value.The same positive and negative series arrangement according to the cosine winding, the magnetic linkage of cosine winding can be expressed as
ψ f = Σ i = 1.3.5 4 P - 1 W ( - 1 ) ( i - 1 2 ) φ i = 2 PW φ 1 cos Pa
In the formula, W is the number of turn of tertiary coil 6-1.So the electromotive force of cosine winding output can be expressed as E c=E mCosPa, in the formula, E mBe the electromotive force amplitude.Equally, the electromotive force that can obtain positive chorded winding is E s=E mSinPa.
From above-mentioned formula as can be seen, cosine winding and positive chorded winding will be exported the electromotive force amplitude respectively and make the voltage of P sine and varies with cosine with angle of rotor, thereby realize the function of two-phase multipolar resolver.Of the present invention simple in structure, easy to make, be specially adapted to the brushless DC motor rotor-position sensor.
Description of drawings
Fig. 1 is a structural representation of the present invention.
Embodiment
Embodiment one: as shown in Figure 1, the resolver of this embodiment is made up of rotor 2, stator 1, the first coil 4-1, the second coil 5-1 and tertiary coil 6-1, is provided with air gap 3 between the internal circular surfaces of the outer round surface of described rotor 2 and stator 1; The outer round surface of described rotor 2 evenly is provided with P crest and P trough, and the mutual slyness of described crest and trough connects and composes the waveform outer round surface of rotor 2, and wherein, P is the number of pole-pairs of this resolver; The internal circular surfaces of described stator 1 has a plurality of groove 1-2 vertically, between described adjacent two groove 1-2 double wedge 1-1 is arranged, the internal circular surfaces of described stator 1 is along the circumferential direction evenly distributed 4P double wedge 1-1, and described 4P double wedge 1-1 sorts successively and be divided into 2P odd number double wedge 1-1-1 and 2P even number double wedge 1-1-2; The root of each double wedge 1-1 all is wound with the first coil 4-1, and the positive and negative successively alternate series connection of the described first coil 4-1 constitutes field winding 4, and leading-out terminal F 1And F 2The top of described odd number double wedge 1-1-1 all is wound with the second coil 5-1, and the positive and negative successively alternate series connection of the described second coil 5-1 constitutes positive chorded winding 5, and leading-out terminal S 1And S 2The top of described even number double wedge 1-1-2 all is wound with tertiary coil 6-1, and the positive and negative successively alternate series connection of described tertiary coil 6-1 constitutes cosine winding 6, and leading-out terminal C 1And C 2Above-mentioned leading-out terminal F 1And F 2Connect the constant voltage AC power.Clearance G on the outer round surface of described rotor 2 between crest top and described stator 1 internal circular surfaces MinIt is 0.3~1.0 millimeter.Clearance G on the outer round surface of described rotor 2 between trough bottom and described stator 1 internal circular surfaces MaxBe 4+G Min
Embodiment two: as shown in Figure 1, this embodiment with the difference of embodiment one is: described stator 1 and rotor 2 are formed by stacking by a plurality of electrical sheet punchings.Other compositions are identical with embodiment one with annexation.
Embodiment three: as shown in Figure 1, this embodiment with the difference of embodiment one is: the number of turn of described second coil 5-1 and tertiary coil 6-1 is identical.Other compositions are identical with embodiment one with annexation.
Embodiment four: as shown in Figure 1, the difference of this embodiment and embodiment one is: the clearance G on the outer round surface of described rotor 2 between crest top and described stator 1 internal circular surfaces MinBe 0.4 millimeter, the clearance G on the outer round surface of described rotor 2 between trough bottom and described stator 1 internal circular surfaces MaxIt is 4.4 millimeters.Other compositions are identical with embodiment one with annexation.
Embodiment five: as shown in Figure 1, the difference of this embodiment and embodiment one is: the clearance G on the outer round surface of described rotor 2 between crest top and described stator 1 internal circular surfaces MinBe 0.6 millimeter, the clearance G on the outer round surface of described rotor 2 between trough bottom and described stator 1 internal circular surfaces MaxIt is 4.6 millimeters.Other compositions are identical with embodiment one with annexation.
Embodiment six: as shown in Figure 1, the difference of this embodiment and embodiment one is: the clearance G on the outer round surface of described rotor 2 between crest top and described stator 1 internal circular surfaces MinBe 1.0 millimeters, the clearance G on the outer round surface of described rotor 2 between trough bottom and described stator 1 internal circular surfaces MaxIt is 5.0 millimeters.Other compositions are identical with embodiment one with annexation.

Claims (8)

1, magnetoresistance brushless multi-polar rotation transformer, described resolver comprise rotor (2) and stator (1), are provided with air gap (3) between the internal circular surfaces of the outer round surface of described rotor (2) and stator (1); It is characterized in that described resolver also comprises first coil (4-1), second coil (5-1) and tertiary coil (6-1); The outer round surface of described rotor (2) evenly is provided with P crest and P trough, and the mutual slyness of described crest and trough connects and composes the waveform outer round surface of rotor (2), and wherein, P is the number of pole-pairs of this resolver; The internal circular surfaces of described stator (1) has a plurality of grooves (1-2) vertically, double wedge (1-1) is arranged between described adjacent two grooves (1-2), the internal circular surfaces of described stator (1) is along the circumferential direction evenly distributed 4P double wedge (1-1), and a described 4P double wedge (1-1) sorts successively and is divided into 2P odd number double wedge (1-1-1) and 2P even number double wedge (1-1-2); The root of each double wedge (1-1) all is wound with first coil (4-1), and the positive and negative successively alternate series connection of described first coil (4-1) constitutes field winding (4); The top of described odd number double wedge (1-1-1) all is wound with second coil (5-1), and the positive and negative successively alternate series connection of described second coil (5-1) constitutes positive chorded winding (5); The top of described even number double wedge (1-1-2) all is wound with tertiary coil (6-1), and the positive and negative successively alternate series connection of described tertiary coil (6-1) constitutes cosine winding (6).
2, magnetoresistance brushless multi-polar rotation transformer according to claim 1 is characterized in that described stator (1) and rotor (2) are formed by stacking by a plurality of electrical sheet punchings.
3, magnetoresistance brushless multi-polar rotation transformer according to claim 1 is characterized in that described second coil (5-1) is identical with the number of turn of tertiary coil (6-1).
4, magnetoresistance brushless multi-polar rotation transformer according to claim 1 is characterized in that the gap (G between the crest top and described stator (1) internal circular surfaces on the outer round surface of described rotor (2) Min) be 0.3~1.0 millimeter.
5,, it is characterized in that the gap (G between the trough bottom and described stator (1) internal circular surfaces on the outer round surface of described rotor (2) according to claim 1 or 4 described magnetoresistance brushless multi-polar rotation transformers Max) be 4+G Min
6,, it is characterized in that the gap (G between the crest top and described stator (1) internal circular surfaces on the outer round surface of described rotor (2) according to claim 1 or 4 described magnetoresistance brushless multi-polar rotation transformers Min) be 0.4 millimeter, the gap (G on the outer round surface of described rotor (2) between trough bottom and described stator (1) internal circular surfaces Max) be 4.4 millimeters.
7,, it is characterized in that the gap (G between the crest top and described stator (1) internal circular surfaces on the outer round surface of described rotor (2) according to claim 1 or 4 described magnetoresistance brushless multi-polar rotation transformers Min) be 0.6 millimeter, the gap (G on the outer round surface of described rotor (2) between trough bottom and described stator (1) internal circular surfaces Max) be 4.6 millimeters.
8,, it is characterized in that the gap (G between the crest top and described stator (1) internal circular surfaces on the outer round surface of described rotor (2) according to claim 1 or 4 described magnetoresistance brushless multi-polar rotation transformers Min) be 1.0 millimeters, the gap (G on the outer round surface of described rotor (2) between trough bottom and described stator (1) internal circular surfaces Max) be 5.0 millimeters.
CNB2006100098842A 2006-03-31 2006-03-31 Magnetoresistance brushless multi-polar rotation transformer Expired - Fee Related CN100435248C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2006100098842A CN100435248C (en) 2006-03-31 2006-03-31 Magnetoresistance brushless multi-polar rotation transformer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2006100098842A CN100435248C (en) 2006-03-31 2006-03-31 Magnetoresistance brushless multi-polar rotation transformer

Publications (2)

Publication Number Publication Date
CN1825506A true CN1825506A (en) 2006-08-30
CN100435248C CN100435248C (en) 2008-11-19

Family

ID=36936098

Family Applications (1)

Application Number Title Priority Date Filing Date
CNB2006100098842A Expired - Fee Related CN100435248C (en) 2006-03-31 2006-03-31 Magnetoresistance brushless multi-polar rotation transformer

Country Status (1)

Country Link
CN (1) CN100435248C (en)

Cited By (21)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101521480B (en) * 2008-11-21 2010-10-13 西北工业大学 Resolution method and resolver for signals of rotating transformer
CN102034596A (en) * 2010-11-17 2011-04-27 哈尔滨工业大学 Axial magnetic path multi-pole pair reluctance type rotary transformer
CN101275988B (en) * 2007-12-27 2011-08-10 奇瑞汽车股份有限公司 Permanent magnetism synchronous electric machine test system and method
CN101552122B (en) * 2008-12-09 2011-11-23 上海大学 Dual-rotor magnetoresistance transformer
CN101425372B (en) * 2008-08-08 2012-02-29 哈尔滨工业大学 Magneto resistance type monopole rotary transformer using the Slope magnetic conduction construction rotor
CN102395862A (en) * 2009-05-07 2012-03-28 Ltn伺服技术有限责任公司 Resolver
CN101398313B (en) * 2007-09-25 2012-03-28 奇瑞汽车股份有限公司 Motor rotor position sensor and method for measuring position of motor rotor
CN101615500B (en) * 2009-05-19 2012-04-25 哈尔滨工业大学 Voltage converter based on rotating magnetic field
CN102428350A (en) * 2009-05-15 2012-04-25 泰科电子比利时公司 Magnetoelectronic angle sensor, in particular a reluctance resolver
CN102543409A (en) * 2012-01-09 2012-07-04 美的威灵电机技术(上海)有限公司 Winding method for stator of reluctance type rotary transformer
CN102664096A (en) * 2012-06-06 2012-09-12 哈尔滨工业大学 Outer rotor salient pole reluctance type multi-pole rotary transformer
CN101299379B (en) * 2007-03-14 2012-11-28 科拉达股份公司 Laminar article for electrical use and method and machine for producing the article
CN102842414A (en) * 2012-09-25 2012-12-26 苏州和鑫电气股份有限公司 Multi-polar resolver
CN102842413A (en) * 2012-09-25 2012-12-26 苏州和鑫电气股份有限公司 Reluctance type multi-polar resolver
CN102842415A (en) * 2012-09-25 2012-12-26 苏州和鑫电气股份有限公司 Resolver
CN102975614A (en) * 2012-12-11 2013-03-20 西安交通大学 Switch magnetic flux motor for directly driven electric vehicle
CN103617880A (en) * 2013-12-10 2014-03-05 哈尔滨工业大学 Outer rotor axial magnetic circuit multi-pole reluctance type rotary transformer with redundant winding
CN104201861A (en) * 2014-08-21 2014-12-10 广东威灵电机制造有限公司 Stator of variable reluctance resolver and variable reluctance resolver
CN107645223A (en) * 2016-07-21 2018-01-30 舍弗勒技术股份两合公司 Motor assembly
CN108027253A (en) * 2015-09-30 2018-05-11 日本航空电子工业株式会社 Brushless resovler and rotation angle detection apparatus
CN109637796A (en) * 2019-02-11 2019-04-16 西安微电机研究所 A kind of high-precision magnetoresistance transformer and its method for winding

Cited By (32)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101299379B (en) * 2007-03-14 2012-11-28 科拉达股份公司 Laminar article for electrical use and method and machine for producing the article
CN101398313B (en) * 2007-09-25 2012-03-28 奇瑞汽车股份有限公司 Motor rotor position sensor and method for measuring position of motor rotor
CN101275988B (en) * 2007-12-27 2011-08-10 奇瑞汽车股份有限公司 Permanent magnetism synchronous electric machine test system and method
CN101425372B (en) * 2008-08-08 2012-02-29 哈尔滨工业大学 Magneto resistance type monopole rotary transformer using the Slope magnetic conduction construction rotor
CN101521480B (en) * 2008-11-21 2010-10-13 西北工业大学 Resolution method and resolver for signals of rotating transformer
CN101552122B (en) * 2008-12-09 2011-11-23 上海大学 Dual-rotor magnetoresistance transformer
CN102395862A (en) * 2009-05-07 2012-03-28 Ltn伺服技术有限责任公司 Resolver
CN102395862B (en) * 2009-05-07 2015-05-20 Ltn伺服技术有限责任公司 Resolver
US9013178B2 (en) 2009-05-07 2015-04-21 Ltn Servotechnik Gmbh Resolver
CN102428350A (en) * 2009-05-15 2012-04-25 泰科电子比利时公司 Magnetoelectronic angle sensor, in particular a reluctance resolver
CN102428350B (en) * 2009-05-15 2015-04-29 泰科电子比利时公司 Magnetoelectronic angle sensor, in particular a reluctance resolver
CN101615500B (en) * 2009-05-19 2012-04-25 哈尔滨工业大学 Voltage converter based on rotating magnetic field
CN102034596A (en) * 2010-11-17 2011-04-27 哈尔滨工业大学 Axial magnetic path multi-pole pair reluctance type rotary transformer
CN102543409A (en) * 2012-01-09 2012-07-04 美的威灵电机技术(上海)有限公司 Winding method for stator of reluctance type rotary transformer
CN102664096A (en) * 2012-06-06 2012-09-12 哈尔滨工业大学 Outer rotor salient pole reluctance type multi-pole rotary transformer
CN102842415A (en) * 2012-09-25 2012-12-26 苏州和鑫电气股份有限公司 Resolver
CN102842413B (en) * 2012-09-25 2014-10-08 苏州和鑫电气股份有限公司 Reluctance type multi-polar resolver
CN102842413A (en) * 2012-09-25 2012-12-26 苏州和鑫电气股份有限公司 Reluctance type multi-polar resolver
CN102842414A (en) * 2012-09-25 2012-12-26 苏州和鑫电气股份有限公司 Multi-polar resolver
CN102842415B (en) * 2012-09-25 2015-05-13 苏州和鑫电气股份有限公司 Resolver
CN102975614A (en) * 2012-12-11 2013-03-20 西安交通大学 Switch magnetic flux motor for directly driven electric vehicle
CN102975614B (en) * 2012-12-11 2015-10-21 西安交通大学 A kind of switch magnetic flow motor for direct-driving type electronlmobil
CN103617880A (en) * 2013-12-10 2014-03-05 哈尔滨工业大学 Outer rotor axial magnetic circuit multi-pole reluctance type rotary transformer with redundant winding
CN104201861A (en) * 2014-08-21 2014-12-10 广东威灵电机制造有限公司 Stator of variable reluctance resolver and variable reluctance resolver
CN104201861B (en) * 2014-08-21 2018-07-06 广东威灵电机制造有限公司 The stator and magnetoresistance transformer of magnetoresistance transformer
CN108027253A (en) * 2015-09-30 2018-05-11 日本航空电子工业株式会社 Brushless resovler and rotation angle detection apparatus
US10753771B2 (en) 2015-09-30 2020-08-25 Honda Motor Co., Ltd. Brushless resolver and rotation-angle detection device
CN108027253B (en) * 2015-09-30 2021-03-16 本田技研工业株式会社 Brushless resolver and rotation angle detection device
CN107645223A (en) * 2016-07-21 2018-01-30 舍弗勒技术股份两合公司 Motor assembly
CN107645223B (en) * 2016-07-21 2021-08-24 舍弗勒技术股份两合公司 Motor assembly
CN109637796A (en) * 2019-02-11 2019-04-16 西安微电机研究所 A kind of high-precision magnetoresistance transformer and its method for winding
CN109637796B (en) * 2019-02-11 2021-05-18 西安微电机研究所 High-precision reluctance type rotary transformer and winding method thereof

Also Published As

Publication number Publication date
CN100435248C (en) 2008-11-19

Similar Documents

Publication Publication Date Title
CN1825506A (en) Magnetoresistance brushless multi-polar rotation transformer
US8427142B2 (en) Rotation angle detecting device
CN101545917B (en) Sensor for measuring relative rotating speed of two concentric rotating shafts of double-rotor motor
CN109637796B (en) High-precision reluctance type rotary transformer and winding method thereof
CN102035272A (en) Electric machine with multiple phases
CN1339101A (en) Resolver using sheet coil
EP1498699A1 (en) Rotational angle sensor and rotary electric machine comprising it
CN102664096A (en) Outer rotor salient pole reluctance type multi-pole rotary transformer
CN101039057A (en) A. C. brushless double-fed motor
WO2006065988A2 (en) Motor winding
JP5289420B2 (en) Resolver
JP2004151040A (en) Rotational angle detecting device and rotary electric machine
EP2853861B1 (en) Position detection device
CN102865808A (en) Variable reluctance type angle sensor
CN103222167B (en) A kind of three-phase polymorphic servo motor
CN1407696A (en) Three-phase hybrid step motor
JP4397788B2 (en) Rotation angle detector
CN102842414B (en) Multi-polar resolver
JP2013221740A (en) Resolver
CN102664095A (en) Double-stator double-channel axial magnetic circuit reluctance type rotary transformer
CN111313637B (en) Pole slot matching method for reluctance type rotary transformer
CN102842415B (en) Resolver
CN1473384A (en) Armature with coated laminate bundle
WO1989010653A1 (en) Synchronous motor
CN1933294A (en) Brushless non-slip ring AC asynchronous and synchronous electric machine with rotor winding as armature winding

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
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20081119

Termination date: 20130331