• 제목/요약/키워드: Winding Function Theory

검색결과 12건 처리시간 0.019초

Winding function theory를 이용한 flux switching motor의 토크 계산 (Torque Calculation of Flux Switching Motor by Winding Function Theory)

  • 김재곤;박한석;우경일
    • Journal of Advanced Marine Engineering and Technology
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    • 제39권4호
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    • pp.478-482
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    • 2015
  • 본 논문에서는 winding function이론을 이용하여 플럭스 스위칭 전동기의 토크 계산에 대하여 기술하였다. 먼저 플럭스 스위칭 전동기의 토크 리플을 줄이기 위하여 기존의 전동기 모델에서 회전자 형상을 최적화한 새로운 플럭스 스위칭 전동기를 제시였고, 유한요소해석을 통하여 최적화된 전동기의 토크 리플의 감소를 확인하였다. 그리고 Winding function 이론을 이용한 시뮬레이션 결과와 유한요소해석 결과를 비교 검토하였다. 또한 최적화된 플럭스 스위칭 전동기와 구동 실험 장치를 제작하였고, winding function 이론을 이용한 토크 특성 해석 결과와 실험결과를 비교한 결과로부터 winding function 이론을 이용한 해석 방법의 가능성을 확인하였다.

Winding Function 이론을 이용한 동기형 릴럭턴스 전동기의 토크 특성 해석 (Torque Characteristics Analysis of Synchronous Reluctance Motor by Winding Function Theory)

  • 우경일
    • 조명전기설비학회논문지
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    • 제25권7호
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    • pp.26-31
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    • 2011
  • In this paper, torque characteristics analysis of Synchronous Reluctance Motor with the cylindrical rotor type by winding function theory(WFT) is described. The stator is same as one of the induction motor. From the d-axis, q-axis flux density distribution, to calculate self and mutual inductances needed to calculate the torque of the machine by using winding function theory the new equivalent geometry of rotor was proposed. D-axis, q-axis flux densities, self inductance and torque characteristics were obtained. From the comparison with results of finite element analysis the proposed method was verified.

Calculation of Distributed Magnetic Flux Density under the Stator-Turn Fault Condition

  • Kim, Kyung-Tae;Hur, Jin;Kim, Byeong-Woo
    • Journal of Power Electronics
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    • 제13권4호
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    • pp.552-557
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    • 2013
  • This paper proposed an analytical model for the distributed magnetic field analysis of interior permanent magnet-type blush-less direct current motors under the stator-turn fault condition using the winding function theory. Stator-turn faults cause significant changes in electric and magnetic characteristic. Therefore, many studies on stator-turn faults have been performed by simulation of the finite element method because of its non-linear characteristic. However, this is difficult to apply to on-line fault detection systems because the processing time of the finite element method is very long. Fault-tolerant control systems require diagnostic methods that have simple processing systems and can produce accurate information. Thus analytical modeling of a stator-turn fault has been performed using the winding function theory, and the distributed magnetic characteristics have been analyzed under the fault condition. The proposed analytical model was verified using the finite element method.

Harmonic Winding Factors and MMF Analysis for Five-phase Fractional-slot Concentrated Winding PMSM

  • Kang, Huilin;Zhou, Libing;Wang, Jin
    • Journal of international Conference on Electrical Machines and Systems
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    • 제3권1호
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    • pp.20-26
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    • 2014
  • To enhance torque density by harmonic current injection, optimal slot/pole combinations for five-phase permanent magnet synchronous motors (PMSM) with fractional-slot concentrated windings (FSCW) are chosen. The synchronous and the third harmonic winding factors are calculated for a series of slot/pole combinations. Two five-phase PMSM, with general FSCW (GFSCW) and modular stator FSCW (MFSCW), are analyzed and compared in detail, including the stator structures, star of slots diagrams, and MMF harmonic analysis based on the winding function theory. The analytical results are verified by finite element method, the torque characteristics and phase back-EMF are also taken into considerations. Results show that the MFSCW PMSM can produce higher average torque, while characterized by more MMF harmonic contents and larger ripple torque.

다상 영구자석 동기 전동기의 자기 및 상호 인덕턴스 계산 (Calculation of Self and Mutual Inductances in Multi-Phase Permanent Magnet Synchronous Motor)

  • 이치우
    • 한국자기학회지
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    • 제27권1호
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    • pp.9-17
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    • 2017
  • 다상 전동기는 기존의 3상 전동기와 비교하여 높은 신뢰성과 성능의 이점 때문에 고 신뢰성을 요하는 전장과 특수기기 분야에서 많은 관심을 갖고 있다. 본 연구에서는 다상 전동기들 중 5상 영구자석 동기 전동기를 이용하여 전동기 제어의 주요 변수인 자기 인덕턴스와 상호 인덕턴스를 수식을 통한 추정 방법을 다룬다. 최근 대부분의 고효율 구동 전동기들은 FOC(Field Orinted Control)와 DTC(Direct Torque Control) 제어를 이용하므로 전압 방정식에서 가장 중요한 인덕턴스를 정확하게 추정하는 것이 중요하다. 인덕턴스를 수식적으로 계산하기 위해서 본 연구에서는 WFT(Winding Function Theory)를 적용하였다. 계산된 인덕턴스의 결과 값의 타당성 유무를 확인하기 위하여 유한요소해석과 비교 하였으며 약 3%의 편차를 가지는 것을 확인하였다. 최종적으로 WFT를 이용하여 계산된 인덕턴스를 FOC와 DTC 제어에 필요한 값인 d축과 q축 인덕턴스로 변환하는 과정을 소개한다.

새로운 권선법을 이용한 4극 로렌쯔형 자기 부상 모터 (4-pole Lorentz Force Type Self-bearing Motor with a New Winding Configuration)

  • 김승종
    • 한국소음진동공학회논문집
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    • 제12권1호
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    • pp.73-81
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    • 2002
  • This paper introduces a four-Pole Lorentz force type self-bearing motor in which a new winding configuration is proposed to enable the sing1e winding to function both as a synchronous PM motor and as a magnetic bearing. The Lorentz force type has some good points such as the linearity of control force, freedom from flux saturation, and high efficiency, unlike conventional self-bearing motors using a reluctance force. And also, compared with the previously proposed eight-pole type, this four-pole self-bearing motor is more profitable for high rotational speed. In this paper, mathematical expressions of torque and radial force in the proposed self-bearing motor are derived to show that they can be separately controlled regardless of rotational speed and time. For verification of the theory, a prototype is made, where a ring-shape outer rotor is actively controlled in two radial directions while the other motions are passively stable supposing the radial stability. Through some experiments. it is shown that the proposed scheme can provide high capability and feasibility for a small high-speed self-bearing motor.

R형 보강재로 보강된 복합적층 원통형패널의 최소중량화설계 (Minimum Weight Design of Stiffened Laminated Composite Cylindrical Panel with R Type Stiffener)

  • 원종진;이종선;홍석주
    • 한국산학기술학회:학술대회논문집
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    • 한국산학기술학회 2001년도 춘계학술대회 발표논문집
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    • pp.103-107
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    • 2001
  • This study is simulation about buckling behavior under axial compression which is cylindrical panel laminated USN125 and USN150 made by various winding angle. And also this study compare with linear and nonlinear FDEM theory, and FEM theory. To solve the objective function and the design variables, this study use the linear and nonlinear buckling theories or FDEM and nonlinear search optimum design method of ADS for minimum weight design on which stiffened laminated composite cylindrical panel with stiffener that R-type section.

Mathematical Modeling and Control for A Single Winding Bearingless Flywheel Motor in Electric/Suspension Mode

  • Yuan, Ye;Huang, Yonghong;Xiang, Qianwen;Sun, Yukun
    • Journal of Electrical Engineering and Technology
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    • 제13권5호
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    • pp.1935-1944
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    • 2018
  • With the increase of the production of energy from renewable, it becomes important to look at techniques to store this energy. Therefore, a single winding bearingless flywheel motor (SWBFM) specially for flywheel energy storage system is introduced. For the control system of SWBFM, coupling between the torque and the suspension subsystems exists inevitably. It is necessary to build a reasonable radial force mathematical model to precisely control SWBFM. However, SWBFM has twelve independently controlled windings which leads to high-order matrix transformation and complex differential calculation in the process of mathematical modeling based on virtual displacement method. In this frame, a Maxwell tensor modeling method which is no need the detailed derivation and complex theoretical computation is present. Moreover, it possesses advantages of universality, accuracy, and directness. The fringing magnetic path is improved from straight and circular lines to elliptical line and the rationality of elliptical line is verified by virtual displacement theory according to electromagnetic torque characteristics. A correction function is taken to increase the model accuracy based on finite element analysis. Simulation and experimental results show that the control system of SWBFM with radial force mathematical model based on Maxwell tensor method is feasible and has high precision.

섬유기계의 트위스터용 스프링 텐션 유지를 위한 압축코일 스프링 설계에 관한 연구 (A Study on Design of Auto Tension Control Creel Compression Coil Spring for Twister Tensioner)

  • 김종수;장세원
    • 연구논문집
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    • 통권34호
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    • pp.87-99
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    • 2004
  • A spring tension control device is used as a very important part of an twister system. The friction force of tensioner must keep same friction force during winding in package. For satisfy this function, many device used common compression coil spring. In this paper, by using the case-building technique which was based on simple theory that unknown design variables are induced by given input design variables by the designer, design automation algorithm about rectangular section compression springs with elastic characteristic is developed. Four design equation are justified in using of analysis of torsion of straight bar of rectangular section and geometrical condition of coil spring. Four design equation and nine design variables are computed by case-building technique.

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양측식 선형 유도 전동기의 수학적 모델링과 등가 회로 유도 (Mathematical Modelling of a Double-sided Linear Induction Motor and Derivation of Equvalent Circuit)

  • 홍언표;여형기;유지윤;박귀태
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1995년도 하계학술대회 논문집 A
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    • pp.337-339
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    • 1995
  • A Linear Induction Machine(LIM) is the motor which is developed from an rotary induction machine. Usually, the electromagnetic field of an LIM is analyzed by Maxwell's equations. The structure of an LIM is different from a conventional rotary machine, an LIM has some particular characteristics such as the end effects. Hence, the mathematical analysis of an LIM is very complicated and the implementation of the equivalent model is difficult. In this paper, the dynamic equations and the equivalent model of a Double-sided short primary LIM(DLIM) is obtained by the winding function and a d-q theory. The validity of the proposed methodology is verified by numerical analysis.

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