• Title/Summary/Keyword: DC Motor Drive System

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Vector Control of Induction Motor Drive Using Photovoltaic Generation (태양광 발전을 이용한 유도전동기 드라이브의 벡터제어)

  • Jung, Byung-Jin;Ko, Jae-Sub;Choi, Jung-Sik;Kim, Do-Yeon;Jung, Dong-Hwa
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2008.10a
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    • pp.307-310
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    • 2008
  • This paper is proposed the vector control of 3-phase induction motor drive system by photovoltaic generation. For performance of vector control using a current control voltage source inverter(CC-VSI). CC-VSI is controlled by torque and flux producing component of motor current, relating with current and voltage value of photovoltaic arrays at maximum power point that varies follow different level of insolation. The MPPT using a DC-DC converter controlled the duty cycle to track maximum power from PV under different insolation conditions. The simulation results are shown that the characteristics and performance of drive system, which varies as each conditions of light by expresses in voltage($V_{dq}$), current($I_{dq}$), speed of motor and torque.

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Design and Drive Performance of 6/4 SRM for Pallet Truck Application (Pallet Truck용 6/4 SRM의 설계 및 운전특성)

  • 안진우;송현수;이동희
    • The Transactions of the Korean Institute of Power Electronics
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    • v.9 no.1
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    • pp.25-29
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    • 2004
  • This paper is to research about design and drive system of a switched reluctance motor for a pallet truck application. SRM is suitable for a pulse type source and is researched for home and industrial applications owing to the advance of power electronics technology. An SRM for a pallet truck drive is developed and tested. The drive system has to operate with low voltage and high current. The small size, robustness and high efficiency make it possible to replace with DC motor which is used in a pallet truck conventionally. Test results show that pallet truck with SRM has better drive characteristics than that of the DC motor performance.

High Efficiency Tracking Drive in DC Motor by Field Winding Switching Method (계자권선 절환에 의한 직류전동기의 고효율 추종 운전)

  • Yoon, Ki-Jeong;Kim, Kwang-Heon
    • Proceedings of the KIEE Conference
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    • 1997.11a
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    • pp.493-496
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    • 1997
  • This paper constructed the experimental system which is able to drive in series or separately excited by switching of the field winding, using a DC motor and obtained the characteristics of efficiency with speed and torque of each motor's type through the experiment. From this result controlled drive which is able to series DCM or separately excited DCM in the optimal point of efficiency as finding the types of motor having maximum efficiency with torque and speed. By performing high efficiency tracking drive, it is expected that energy consumption of power source with limited energy density would be reduced, and so utility efficiency would be improved.

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Study on Induction Motor Drive using Digitally Controlled Push-Pull Converter (디지털적으로 제어되는 푸쉬풀 컨버터를 사용하는 유도 전동기 드라이브에 대한 연구)

  • Kim, N.H.;Baik, W.S.;Choi, K.H.;Won, J.S.;Hwang, D.H.;Kim, M.H.
    • Proceedings of the KIPE Conference
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    • 2008.06a
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    • pp.478-480
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    • 2008
  • On this paper, digitally controlled push-pull dc-dc converter and dc-ac inverter for induction motor control are presented, which is used one DSP(digital signal processor). This system has 12V battery input for the push-pull converter, and the push-pull converter generates 300V output for induction motor inverter input. In order to compensate the push-pull converter, the transfer function of push-pull converter is derived and digital PI compensator is adapted. Through bode diagram, stability of digital controlled push-pull converter is analyzed. To verify the proposed system, digital simulation of the induction motor drive using digital push-pull converter are performed.

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Study on BLDC Motor Drive using Digitally Controlled Flyback-Converter (디지털적으로 제어되는 플라이백 컨버터를 사용하는 BLDC 전동기 드라이브에 대한 연구)

  • Kim, N.H.;Baik, W.S.;Choi, K.H.;Hwang, D.H.;Kim, M.H.;Won, J.S.;Kim, D.H.
    • Proceedings of the KIPE Conference
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    • 2008.06a
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    • pp.598-600
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    • 2008
  • On this paper, digitally controlled flyback dc-dc converter and dc-ac inverter for bldc motor control are presented, which is used one processor. This system has 12V battery input for the flyback-converter, and the flyback-converter generates 30V output for BLDC motor inverter input. In order to compensate the flyback-converter, the transfer function of flyback converter is derived and digital PI compensator is adapted. Through bode diagram, stability of digital flyback-converter is analyzed. To verify the proposed system, digital simulation of the bldc motor drive using digital flyback-converter are performed.

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A Study On Fast Responce Control of DC Servo Motor at low Speed Region (저속 영역에서 직류 서어보 전동기의 속응성 제어에 관한 연구)

  • Yoon, Byung-Do;Lee, Heung-Bae
    • Proceedings of the KIEE Conference
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    • 1988.11a
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    • pp.414-417
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    • 1988
  • This paper presents a study on the operation of a digitally controlled DC servo motor drive at low speed region. Two schemes aiming to improve the transient behavior of the speed control system are considered. The first scheme is the current positive feedback scheme to reduce the sensitivity of the system with respect to the load torque variations. The second one is the speed observer based on a motor model. Finally, the two schemes are studied by simulation and then verified experimetally using a prototype DC motor drive.

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DC link voltage control method in the sinusoidal current drive system for dental hand-piece PMSM (치과 핸드피스용 고속 PMSM의 정현파 구동을 위한 인버터 직류 링크전압 제어기법)

  • Jeon, Geum-Sang;Park, Jae-Seung;Park, Sang-Uk;Kim, Sang-Hee;Ahn, Hee-Wook
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.12 no.4
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    • pp.16-21
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    • 2013
  • This paper presents a DC link voltage control method to reduce the ripple current and the switching loss in the sinusoidal current drive system for the wide-speed range PMSM. The DC link voltage of the three phase inverter in the sinusoidal current drive system is designed by the back-EMF voltage at maximum speed of the PMSM. In general, the drive systems have used the constant DC link voltage without reference to the motor speed. The current ripple causes hysteresis loss and makes noise. In addition, the switching loss on the inverter increases in proportion to the rise in the DC link voltage. In this paper, we propose the variable DC link voltage control method to reduce the current ripple in the PMSM drive system. We show reduction effect of the current repple and the switching loss through simulation results.

Robust Controller for DC Servo Motor drive taking Disturbance and Parameter Variations into account (외란과 파라미터 변화를 고려한 직류 서어보 전공기 구동을 위한 강인성 제어기)

  • Yoon, Byung-Do;Jeong, Tak-Hee
    • Proceedings of the KIEE Conference
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    • 1988.11a
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    • pp.418-421
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    • 1988
  • A disturbance and parameter variations cause a steady and/or transient error in the conventional de servo motor drive system. In this paper robust control system for dc servo motor drive taking disturbance and parameter variations into account is proposed. The proposed control system compensates rapidly the state error caused by disturbance and parameter variations. Simulation results show that the proposed method is robust for the steady and transient response in the presence of both disturance and parameter variations.

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BLDC Motor Control System using ASK DC-link PLC Technology

  • Yu, Tao;Song, Sung-Geun;Kim, Se-Min;Kim, Kwang-Heon;Park, Sung-Jun
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.23 no.3
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    • pp.45-52
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    • 2009
  • Power line communication or power line carrier (PLC) is a system for carrying data on a conductor and can also used for electric power transmission. Now the powers used in the motor drive system are mostly DC sources. Even AC powers in some systems are generated from DC sources by the inverter. It is can be forecasted that the DC-link PLC technology will be widely used in various industrial fields. In this paper a novel BLDC motor control system using ASK DC-link PLC technology is proposed. The characteristic of this system is that the communication only needs 2 DC lines and there are no additional lines to translate the reference signals. The number of signal cables can be minimized when the DC-link PLC method is applied in the multi motor control system and the slip ring design also can be simplified when this method is applied in rotation machines. The proposed motor control system is clarified by the PSIM and MATLAB simulations and tested through the hardware prototype.

Design of Current and Speed Controller for DC Motor Drive System Using dSPACE System (dSPACE 시스템을 이용한 직류 전동기 구동 시스템의 전류 및 속도 제어기 설계)

  • Ji Jun-Keun;Lee Yong-Seok
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.7 no.3
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    • pp.338-343
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    • 2006
  • In this paper, design of current and speed controller for DC motor drive system using dSPACE 1104 system is introduced. Current and speed controller is designed and implemented using MATLAB/SIMULINK program simply and easily, and speed control response of DC motor can be advanced. Current and speed control of DC motor is carried in DSP control board using dSPACE system. Speed feedback is processed through QEP using pulse encorder as speed sensor, and current feedback is processed through A/D converter using hall sensor as current sensor. Controller is designed to PI current controler and PI speed controller. Current and speed response is verified through simulations and experiments.

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