• Title/Summary/Keyword: Inverter Motor

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A Study on teh Improvement of Resonant Inverter (공진형 인버터의 개성에 관한 연구)

  • Sul, Seung-Ki
    • The Transactions of the Korean Institute of Electrical Engineers
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    • v.39 no.7
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    • pp.680-691
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    • 1990
  • In this paper the conventional resonant inverters are compared and a novel parallel resonant dc pulse inverter for high performance motor drive system is proposed. The design method and related equations for the novel resonant inverter are derived. Also, a current controller for the resonant inverter is proposed and compared with PI current controller of the conventional PWM inverter by analog simulation. The novel resonant inverter and the current controller are implemented to verify the suggested design principles. The analog simulation and the experimental results shown the satisfactory operation of the proposed inverter and the controller.

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The Analysis of the torque ripple of Traction Motor in the VSI system (전압원 인버터 파형에 따른 견인 전동기의 맥동 토오크 해석)

  • Rhee, Kee-Hong;Yun, Shin-Yong;Kim, Yong;Baek, Su-Hyun;Kang, Ho-Sung
    • Proceedings of the KIEE Conference
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    • 1996.07a
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    • pp.145-147
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    • 1996
  • Traction Motor is being transferred to the squirrel cage induction motor from D.C motor, by the improved power semiconductors like GTO, IGBT, etc. In the Induction Motor, inverter system must be used for delivering variable voltage variable frequency. But, by pulsating in the system the harmonics would be produced, and that cause the torque ripple and enfeeble the dynamic characteristics of the motor. So, to use the inverter system, we should take the torque ripple into consideration. To minimize the torque ripple in the VSI fed Traction Motor, the optimal pulsating was presented in this paper. By using the SPWM(Sinusoidal Pulse Width Modulation) method, feeding the appropriate pulse, we can minimize the torque ripple and improve the transient response.

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Implementation of In-wheel Motor Driving System for Electric Vehicle (In-wheel 모터를 이용한 전기자동차 구동시스템의 구현)

  • Yun, Si-Young;Lee, Ju
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.62 no.6
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    • pp.750-755
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    • 2013
  • In-wheel motor system gets the driving force from direct-driven motor in the wheel of electric vehicle. It is known as good system for vehicles, from an efficiency, packaging, handling and safety. This paper describes motor and inverter technologies, system configuration and control algorithms for in-wheel type electric vehicle. It is necessary to control on an interrelation perspective because this system drives two motors at same time. In system design, IPMSM(Interior Permanent Magnet Synchronous Motor) including a wide operating range and high-speed rpm is used and flux weakening control is performed in constant power range. Under the torque command from the host controller, auto control box, inverter's output torque is calculated with using torque estimation technique and applied to actual vehicle driving system. It is verified that the configuration and the algorithm are suitable for the in-wheel motor system.

Position Control of Brushless DC moror by Field Oriented Control (자속 기준 제어에 의한 브러쉬 없는 직류전동기의 위치제어)

  • 조관열;신휘범;한재원;윤명중
    • The Transactions of the Korean Institute of Electrical Engineers
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    • v.37 no.9
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    • pp.600-608
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    • 1988
  • Although the structure of brushless dc motor is similar to that of a Permanent magnet synchronous motor, its torque-speed characteristcis are the same as those of a permanent magmet dc motor. The brushless dc motor drive systemcomposed of power converter including inverter, rotor positioning sensor and controller has been investigated for the purpose of position control when the motor is fed by a current controlled voltage source inverter. The equivalent transformation of a brushless dc motor into an separately exited dc motor has been possible with the vector control (field oriented control) technique. It is shown in this paper that the position control of a brushless dc mitor can be done fairly accurately only using q-axis current.

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Analysis on the effect of RC filter to mitigate transient overvoltage on the high voltage induction motor fed by Multi level inverter (멀티레벨 인버터 구동 고압유도전동기에서 발생하는 과도과전압 저감을 위한 RC필터의 효과분석)

  • Kwon, Young-Mok;Kim, Jae-Chul;Kim, Young-Sung;Lee, Yang-Jin
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2005.11a
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    • pp.399-403
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    • 2005
  • In this paper, we analyze on the effect of RC filter to mitigate transient overvoltage on the high voltage induction motor fed by H-bridge cascaded 7-level inverter. The switching surge voltage becomes the major cause to occur the insulation failure by serious voltage stress in the stator winding of high voltage induction motor. The effect of switching surge appears more serious in high voltage induction motor than low voltage induction motor. Consequently, we demonstrated that the RC filter connected to the motor terminals greatly reduces the transient voltage stress md ringing. The results of simulation show the suppression of transient overvoltage at the motor end of a long cable. using EMTP

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A Study on the Reduction of high frequency leakage current in PWM inverter fed Induction Motor (PWM 인버터로 구동된 유도전동기의 누설전류 억제에 관한 연구(II) -능동형 커먼 모드 전압 감쇄기를 이용한 고주파 누설전류 억제-)

  • 성병모;류도형;박성준;김철우
    • The Transactions of the Korean Institute of Power Electronics
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    • v.5 no.5
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    • pp.443-450
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    • 2000
  • A PWM inverter for an induction motor often has a problem with a high frequency leakage current that flows through stray capacitors between stator windings and a motor frame to ground. This paper proposes a new type of Active Common Mode Voltage Canceler circuit for the reduction of common mode voltage and high frequency leakage current generated by the PWM VSI-fed induction motor drives. The compensating voltage applied by the common made voltage canceler has the same amplitude as, hut the opposite polarity to, the common mode voltage by PWM Inverter. Therefore, common mode voltage and high frequency leakage current can be canceled. The proposed circuit consists of four-level half-bridge inverter and common-mode transformer. Simulated and experimental results show that common mode voltage canceler makes significant contributions to reducing a high frequency leakage current.

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SVPWM Overmodulation Scheme of Three-Level Inverters for Vector Controlled Induction Motor Drives

  • Kwon, Kyoung-Min;Lee, Jae-Moon;Lee, Jin-Mok;Choi, Jae-Ho
    • Journal of Power Electronics
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    • v.9 no.3
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    • pp.481-490
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    • 2009
  • This paper describes a SVPWM overmodulation scheme of NPC type three-level inverter for traction drives which extends the modulation index from MI=0.907 to unity. SVPWM strategy is organized by two operation modes of under-modulation and over-modulation. The switching states under the under-modulation modes are determined by dividing them with two linear regions and one hybrid region the same as the conventional three-level inverter. On the other hand, under the over-modulation mode, they are generated by doing it with two over-modulation regions the same as the conventional over-modulation strategy of a two level inverter. Following the description of over-modulation scheme of a three-level inverter, the system description of a vector controlled induction motor for traction drives has been discussed. Finally, the validity of the proposed modulation algorithm has been verified through simulation and experimental results.

Performance of Switched Reluctance Motor Driven by Novel C-Dump Inverter (Novel C-Dump 인버터에 의한 SRM의 구동특성)

  • An, Young-Joo;Joe, Cheol-Je;Ahn, Jin-Woo;Hwang, Young-Moon
    • Proceedings of the KIEE Conference
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    • 1993.11a
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    • pp.163-165
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    • 1993
  • This study describes the influence of the mutual inductance between the adjacent phase windings of variable reluctance motor[VRM] and presents a new type of inverter for reduction of such influence. In this inverter topology, though an additional power switch is used as compared with the conventional C-dump inverter circuit, unwanted negative torque produced by the mutual inductance is remarkably reduced. Hence, the circuits results in increase of the average torque and contributes to the improvement of overall drive efficiency. Theoretical prediction is verified by experimental results obtained with the integration of presented inverter and prototype 6/4 VRM.

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A study on digital PWM control of $3{\Phi}$ voltage-type inverter (3상 전압형 인버터의 디지털 PWM 제어에 관한 연구)

  • Seul, Nam-O;Kim, Young-Min
    • Proceedings of the KIEE Conference
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    • 1998.07b
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    • pp.585-587
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    • 1998
  • It is suggested that the PWM inverter is controlled by Digital Software Programming. VVVF(Variable Voltage Variable Frequency) inverter control being used by PWM control for driving the motor with speed-varying, makes the PWM pattern with calculating the output voltage and frequency, and with controlling the carrier and signal, so actually this method is difficult to correspond with driving the motor by using voltage-varying and frequency-varying. Therefore this research suggested the new algorithm controlled by micro processor which is already stored by various PWM form of output voltage by using fundamental data of the carrier and signal. The PWM wave can be controlled with real time by using extra hardware and digital software and to speed up program processing, the control signals to switch the power semi-conductor of three phase PWM inverter, simultaneously use the output signal by microprocessor and extra hardware, and control signal by software. In the end, this method was proved by applying to Three Phase Voltage-type Inverter.

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Inverter Losses Reduction for Rectangular Drive BLDCM using Synchronous Rectification (구형파 구동 BLDCM의 동기정류를 사용한 인버터 손실 저감)

  • Nam, Myung-Joon;Kim, Hag-Wone;Cho, Kwan-Yuhl
    • The Transactions of the Korean Institute of Power Electronics
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    • v.21 no.2
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    • pp.117-125
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    • 2016
  • In this paper, the inverter switch losses of BLDC motor for three types of PWM methods and power devices were analyzed. When the BLDC motor is driven at low currents, the inverter switch losses for MOSFET are low because MOSFET operates like resistance. However, the inverter switch losses for IGBT are higher than MOSFET due to its large turn-off losses. Moreover, synchronous rectification switching method is adaptable because MOSFET has 2-channel. So, MOSFET can be driven with more low impedance and losses. For low power inverter with MOSFET, the power losses of unified PWM are lower than that of unipolar and bipolar PWM. Proposed method and losses analysis results are verified by examination and simulation using Matlab/Simulink.