• Title/Summary/Keyword: Variable speed motor

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PWM Inverter Drives using Model Reference Switching (Model Reference 스위칭에 의한 PWM인버터의 구동)

  • Lee, Suk-Woo;Lee, Gwang-Woo
    • Proceedings of the KIEE Conference
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    • 1993.11a
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    • pp.91-93
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    • 1993
  • This paper introduced an advanced PWM method to drive a variable speed AC motor. With this technique, a switching pattern is determined to minimize the error between a reference signal and feedback signal. In addition to its simplicity of implementation, the proposed technique has the advantage of control led constant voltage per frequency operation.

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High Efficiency Drive of SRM with Genetic Algorithms and Neural Network (유전알고리즘과 신경회로망을 이용한 SRM의 고효율 구동)

  • Sohn Ick-Jin;Oh Seok-Gyu;Ahn Jin-Woo
    • Proceedings of the KIPE Conference
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    • 2002.07a
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    • pp.427-430
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    • 2002
  • The switched reluctance motor (SRM) drive system provides a good adjustable speed characteristics. But driving of SRM is nonlinear changed according to rotor position angle and phase current because of saturation in magnetic circuit, and it is difficult to drive the high efficiency. This paper proposes find point of high efficiency in variable load that are used to control switch-on/off angles and input voltage.

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Effect for Eefficiency of Variable Speed Control of Magnetic Saturation in Induction Machine (유도전동기의 자기적 포화가 가변속 제어의 효율에 미치는 영향)

  • Jeong, Jong-Ho;Yun, Seo-Jin;Lee, Eun-Woong;Moon, Jae-Yun
    • Proceedings of the KIEE Conference
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    • 1998.07a
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    • pp.52-54
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    • 1998
  • In this paper, analytically presented the magnetic saturation impact on the efficiency of induction motor. Especially, in this study concerned with various cases such as included magnetic saturation, constant flux.

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Electronic Ratio Control of Metal Belt CVT (금속벨트 CVT 변속비 전자제어화)

  • 김달철;김현수
    • Transactions of the Korean Society of Automotive Engineers
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    • v.8 no.4
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    • pp.100-109
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    • 2000
  • In this paper a stepping motor drive electronic ratio control system for a metal belt CVT is suggested. The electronic ratio control system developed in this study is designed to control flow rate which is required to obtain the shift speed and to control the primary actuator pressure to maintain the desired ratio. Considering these control characterstics a fuzzy logic is used for the CVT ratio control. Using the fuzzy logic dynamic models of the ratio control system is investigated and compared with the experimental results. The experimental and simulation results show that the electronic ratio control system developed in this study can be used in CVT system for the active control of the speed ratio.

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Design and Analysis of the 2-Phase SRM for High Speed Blower System (고속 블로워 시스템용 2상 SRM의 설계 및 해석)

  • Lee, Dong-Hee;Khoi, Huynh Khac Minh;Tanujaya, Marully;Ahn, Jin-Woo
    • Proceedings of the KIPE Conference
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    • 2009.11a
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    • pp.139-141
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    • 2009
  • This paper presents a design and analysis of torque characteristics of a two-phase SRM(Switched Reluctance Motor) for high speed blower system. To reduce the electrical frequency and core losses at high speed region, In order to reduce torque ripple and torque dead-band, variable rotor air-gap structure is adopted and the air-gap is optimized according to torque production. The optimized torque output is verified by the FEM results.

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Development of Matlab-based Variable Torque Simulator for wind Turbine Systems (풍력 터빈 모의 실험을 위한 Matlab 기반 가변 토오크 시뮬레이터 개발)

  • Kim, Su-Jin;Kim, Sung-Ho;Joo, Young-Hoon
    • Journal of Institute of Control, Robotics and Systems
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    • v.16 no.4
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    • pp.396-402
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    • 2010
  • In this paper the principles and structure of a WTS (Wind Turbine Simulator) are described. The proposed WTS is a versatile system specially designed for the purpose of developing and testing new control strategies for wind energy conversion systems. The simulator includes two sub-systems; a torque controller which controls a 3-phase induction motor in order to simulate the wind turbine and wind speed generator which can simulate an actual wind speed. In order to make the proposed system working in real-time, two sub-systems are incorporated into one simulink block by using Real-time workshop. The performance of the proposed system is verified by considering various wind speeds.

Sliding Mode Control Scheme for an Induction Servomotor Drive

  • Hong, Jeng-Pyo;Hong, Soon-Ill
    • Journal of Advanced Marine Engineering and Technology
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    • v.30 no.2
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    • pp.239-246
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    • 2006
  • This paper describes the scheme of sliding mode control (SMC) to adopt the conventional slip frequency vector drives. The purpose of sliding mode control is to achieve an accurate, robustness of response for ac servomotor speed control. A sliding mode control design method is proposed for a speed control of an induction servomotor. The control law is composed of the variable structure component and the suppressed coefficients to suppress load disturbance and variation of external parameters. The proposed control scheme is simulated by the computer which is installed in an ideal ac servomotor. The simulation results show that the proposed design method has robustness and accuracy in the speed response by adjusting the suppressed coefficients for load disturbance and the motor mechanical parameter variation.

A New-Generation Sensorless Vector Control Scheme for Induction Motor Drive

  • Shinnaka, Shinji
    • Proceedings of the KIPE Conference
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    • 1998.10a
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    • pp.287-292
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    • 1998
  • This paper presents some results of performance evaluation test via actual machines of a new hybrid vector control utilizing a new indirect orientation scheme and stable filter embedded direct orientation scheme for induction motors without speed or position sensor. It is shown through the test by 0.3(kW) and 3.7(kW) motors that the proposed sensorless vector control has the following high potentialities: 1) speed range is 0 to 600(rad/s) or more, 2) zero-speed command is accepted and settles the machines at a stable standstill with no vibration 3) it can make machines to track variable command of acceleration and deceleration $\pm$6,000(rad/s2), 4) it can make machines to drive directly load of at least 26 times larger inertia than that of the machine, 5) it can make machines to produce much larger torque than the rating in torque control mode even at standstill. The performance confirmed by the test is far away for previous schemes or sensorless drive apparatuses.

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Phase-Locked Loop Speed Control system of Converter-fed Self-Controlled PMSM (컨번터에 의한 자기제어형 영구자석 동기전동기의 PLL 속도제어)

  • Yoon, Byung-Do;Kim, Yoon-Ho;Choi, Won-Beum;Lee, Yung-Jae
    • Proceedings of the KIEE Conference
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    • 1990.07a
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    • pp.332-335
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    • 1990
  • A digital phase-locked loop speed control system of a self-controlled permanent magnet synchronous mortar fed by a voltage source inverter is presented. This paper discribes the hardware and software design of the system. Variable speed control system for self-controlled permanent magnet synchronous motor is proposed. Simulation results demonstrate the validity of proposed methods. This proposed control technique is implemented by using a microprocessor-based system.

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A Study on the Mode Conversion of Control in the Single Phase Switched Reluctance Motor (단상 SRM의 제어 모드 변환에 관한 연구)

  • Go, Sung-Chul;Ahn, Joon-Seon;Kim, Sol;Lee, Ju
    • Proceedings of the KIEE Conference
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    • 2006.07b
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    • pp.635-636
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    • 2006
  • A pulse with modulation(PWM) that keeps a constant angle of dwell and adjust duty ratio is a good method to control a speed of SRM. And a method of one pulse control is proper a operation on range of high speed in SRM for a good energy efficiency. Because PWM method is more safety than one pulse method, conversion of those is best choice according the speed range. So, some algorithm is need for smooth conversion of the mode of control. This paper presents a factor of conversion that proper the conversion of control mode between PWM and one pulse method This factor is from estimation of torque and proper at the variable range of conversion and show the better conversion characteristic than constant factor of conversion.

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