• Title/Summary/Keyword: Hysteresis motor

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Direct Torque Control of Induction Motor by Torque Slope and Reference Voltage Control (토오크 기울기 및 기준전압제어에 의한 유도전동기의 직접토오크 제어)

  • Kim Pyoung-Ho;Choi Youn-Ok;Cho Geum-Bae;Baek Hyung-Lae;Lee Sang-Il
    • The Transactions of the Korean Institute of Electrical Engineers B
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    • v.55 no.1
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    • pp.9-15
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    • 2006
  • The conventional hysterysis band DTC(Direct Torque Control) strategy have relatively high torque ripple at low speed and variable switching frequency according to motor speed even though it provides a fast torque response with very simple scheme consisted with only two hysteresis band comparators and a switching table for torque and flux control. In this paper, author proposed a new DTC scheme based on the torque slope and reference voltage control. The new scheme can maintain the minimized torque ripple and constant switching frequency. Experimental tests carried out with an 1.5kW induction motor drive system show improved dynamic characteristics and prove the feasibility of proposed strategy.

A Hybrid DTC-DSC Drive for High Performance Induction Motor Control

  • Jidin, Auzani;Idris, Nik Rumzi Nik;Yatim, Abdul Halim Mohamed;Sutikno, Tole;Elbuluk, Malik E.
    • Journal of Power Electronics
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    • v.11 no.5
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    • pp.704-712
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    • 2011
  • This paper describes a hybrid induction motor drive system incorporating DTC-hysteresis and Direct Self Control (DSC) schemes to achieve excellent dynamic performance. The control scheme is switched from a circular to a hexagonal flux locus whenever a dynamic condition is encountered. On the other hand, when the motor operates under steady state conditions, a circular flux locus is used. Without major modifications to the simple structure of a basic DTC, hexagonal flux locus operation is established by modifying the flux error status, before it is fed to the look-up table. The feasibility of the proposed hybrid scheme to achieve excellent control performance is verified by experimental results.

Torque Ripple Minimization in Direct Torque Control of Brushless DC Motor

  • Li, Zhenguo;Zhang, Songfa;Zhou, Shenghai;Ahn, Jin-Woo
    • Journal of Electrical Engineering and Technology
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    • v.9 no.5
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    • pp.1569-1576
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    • 2014
  • This paper mainly proposes a direct torque control strategy to minimize torque ripple in brushless DC (BLDC) motor. BLDC motor has large current and torque ripple when one voltage vector applied in one cycle due to its low inductance. Hence, this paper proposed a hysteresis torque control with PWM mode to control the resultant torque. Moreover, when the direct torque control system is operating during the two-phase half-bridge $120^{\circ}$ conduction mode, large torque ripple in commutation area appears every 120 electrical degree. Based on analyzing the root of torque ripple in detail, lookup tables of switching devices states for new half-bridge modulation mode in the positive and negative reference torque put forwarded. Finally, simulations by MATLAB software and experiment results from DSP are presented to verify the feasibility and effectiveness of the proposed strategy operating in four-quadrant operation.

Field Weakening Control of Permanent Magnet Synchronous Motor fed by Hysteresis Current Controlled PWM Inverter (히스테리시스 전류 제어형 PWM 인버터에 의한 영구자석 동기 전동기의 약계자 제어)

  • Yoon, Byung-Do;Kim, Yoon-Ho;Yang, Chun-Suk;Yoon, Myung-Kyun;Yoo, Bo-Min
    • Proceedings of the KIEE Conference
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    • 1991.11a
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    • pp.167-170
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    • 1991
  • The back e.m.f. of PMSM is increased as the speed is increased and it saturates the current regulator because it counteracts the available output voltage of the inverter. In the PM motor, however, the required armature terminal voltage can be reduced within the maximum output voltage of the inverter by field weakening control, in which the air gap flux is weakened by the d-axis armature current. In this paper, the field weakening control of the surface PMSM fed by a hysteresis current control led PWM inverter based on the microprocessor is presented. To show the validity of the proposed control method, the simulation and experimental results are provided.

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The Characteristics of Control Scheme and Inner Feedback Control with HC of Current-Controlled PWM Inverter (전류제어 PWM인버터의 HC에 대한 제어방식과 내부 피이드백제어의 특성)

  • 정동화;배진호
    • The Transactions of the Korean Institute of Electrical Engineers
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    • v.41 no.9
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    • pp.1031-1041
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    • 1992
  • Existing current-controlled inverters with hysteresis controller (HC) result in the dependence of the inverter on its load characteristics, poor inverter utilization due to too much or too little supply voltage, and the current error in the hysteresis band(HB) which causes deterioration of operation of the supplied motor. In this paper, techniques and results of modeling the operation of current-controlled three phase power inverter with HC are presented. Four symmetrical control schemes are considered: the so called three independent control, three semi-dependent control(a), three semi-dependent control(b) and three dependent control each using three current controller. The dependence of the inverter on its load has been studied. To overcome this difficulty, an inner feedback control has been introduced and optimum parameter has been determined. With the addition of an inner feedback control, adjustment of the switching frequency to a desired value is possible. Also, this modification improves operating characteristics of inverter by enforcing a switching pattern of low dependence on the load, resulting in significantly improved quality of the output current.

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A Hysteresis Current Controlled Resonant C-Dump Converter for Switched Reluctance Motor (스위치드 릴럭턴스 전동기 구동을 위한 히스테리시스 전류 제어형 공진형 C-Dump 컨버터)

  • Yoon, Yong-Ho;Kim, Jae-Moon
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.57 no.2
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    • pp.72-78
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    • 2008
  • The speed variation of SRM is fulfilled throughout a transition from chopping control to single pulse operation. (i,e., low speed to high speed operation). It is unsatisfied with performance at all operational regimes. In this paper, the operational performance of SRM can be improved by using current hysteresis control method. This method maintains a generally flat current waveform. At the high speed, the current chopping capability is lost due to the development of the back-EMF. Therefore SRM operates in single pulse mode. By using zero-current switching and zero-voltage switching technique, the stress of power switches can be reduce in chopping mode. When the commutation from one phase winding to another phase winding, the current can be zero as fast as possible in this period because several times negative voltage of DC-source voltage produce in phase winding. This paper is compared to performance based on conventional C-dump converter topology and the proposed resonant C-dump converter topology. Simulation and experimental results are presented to verify the effectiveness of the proposed circuit.

LOW CYCLE THERMAL FATIGUE OF THE ENGINE EXHAUST MANIFOLD

  • Choi, B.L.;Chang, H.;Park, K.H.
    • International Journal of Automotive Technology
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    • v.5 no.4
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    • pp.297-302
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    • 2004
  • This paper presents the low cycle thermal fatigue of the engine exhaust manifold subject to thermo-mechanical cyclic loading. As a failure of the exhaust manifold is mainly caused by geometric constraints of the less expanded inlet flange and cylinder head, the analysis is based on the exhaust system model with three-dimensional temperature distribution and temperature dependent material properties. The result show that large compressive plastic deformations are generated at an elevated temperature of the exhaust manifold and tensile stresses are remained in several critical zones at a cold condition. From the repetition of these thermal shock cycles, maximum plastic strain range (0.454%) could be estimated by the stabilized stress-strain hysteresis loops. It is used to predict the low cycle thermal fatigue life of the exhaust manifold for the thermal shock test.

Analysis of the Commutation Phenomenon in Brushless DC Motor with Hysteresis Current Regulator (히스테리시스 전류제어기 구동 BLDCM의 전류(轉流)현상 해석)

  • Kang, Seog-Joo;Kim, Gwang-Heon;Won, Jong-Soo
    • Proceedings of the KIEE Conference
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    • 1992.07b
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    • pp.685-688
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    • 1992
  • This paper studies the commutation phenomenon in the Brushless DC Motor with the trapezoidal BEMF waveform. It is shown that the torque ripple am the speed ripple due to the phase commutation depend on driving sytem, operating speed am load condition. The effects of resistance and BEMF flat width on torque ripple are considered. Speed - torque characteristics of the motor is presented considering the phase commutation. Uncommutating current control method can attenuate the torque ripple in the low speed region, and also minimize the switching loss am switching frequency. In this paper, the commutation phenomena are verified by analytical formulation and simulation.

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Loss Distribution Analysis of 250 kW Traction Induction Motor Using Coupled FEM & Preisach Model (유한요소법과 프라이자흐 모델을 이용한 250Kw급 견인유도전동기의 손실 특성 분석)

  • Lim, Hwang-Bin;Cho, Yong-Hyun;Lee, Jung-Ho
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.788-789
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    • 2008
  • This paper deals with the loss distribution analysis of 250 kW traction induction motor using a coupled transient finite element method (FEM) and Preisach modeling, which is presented to analyze the characteristics under the effect of saturation and hysteresisloss. The focus of this paper is the efficiency evaluation relative to hysteresis loss, copper loss, etc. on the basis of speed condition a 250 kW Traction Induction Motor. Computer simulation and experimental result for the efficiency using dynamometer show the propriety of the proposed method.

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Simple Equivalent Circuit for Efficiency Calculation of Brushless DC Motors

  • Ishikawa, Takeo;Tsuji, Takuma;Hashimoto, Seiji;Kurita, Nobuyuki
    • Journal of international Conference on Electrical Machines and Systems
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    • v.3 no.1
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    • pp.54-60
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    • 2014
  • This paper shows a calculation method of several types of loss and the efficiency of brushless DC motors coupled with a load system by using a simple equivalent circuit, in which copper loss, eddy current loss, hysteresis loss, friction loss, viscous loss, and inverter loss are taken into account. We clarify each loss and motor efficiency at different motor speeds and different output torques by using the Microsoft-Excel. Moreover, the calculated results are in good agreement with the measured ones.