• Title/Summary/Keyword: Motor Driven Inverter

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Torque ripple reduction in DTC of induction motor driven by 3-level inverter with low switching frequency (3레벨 인버터로 구동되는 유도전동기 직접토크제어의 낮은 스위칭 주파수에서의 토크 리플 저감법)

  • 송중호
    • Proceedings of the KIPE Conference
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    • 2000.07a
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    • pp.203-206
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    • 2000
  • This paper presents a torque ripple reduction technique of direct torque control(DTC) for high power induction motors driven by 3-level inverters with the inverter switching frequency limited around 0.5-1kHz level. It is noted that conventional DTC algorithms to reduce torque ripple are devised for applications with relatively high switching frequency above 2-3kHz. A new DTC algorithms especially for low switching frequency inverter system illustrates relatively reduced torque ripple are devised for applications with relatively high switching frequency above 2-3kHz. Anew DTC algorithm especially for low switching frequency inverter system illustrates relatively reduced torque ripple characteristics Simulation and experimental results show the effectiveness of the proposed control algorithm

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Analysis of Inverter-Driven Induction Motor Considering Driving Characteristic (운전특성을 고려한 인버터 구동 유도기의 해석)

  • Oh, Chang-Yun;Lee, Kwang-Ho;Park, Young-Il;Youn, Sun-Ky;Kim, Kyoung-Ho;Cho, Yun-Hyun
    • Proceedings of the KIEE Conference
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    • 1999.07a
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    • pp.330-332
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    • 1999
  • At the present, development of microelectronics technology caused an increase in using of induction motor for variable speed motor drive system instead of do motor. This paper is described the design of induction motor fed by inverter and analyzed 1.5kW motor performance using by finite element method (FEM).

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Development of the Traction Motor for High Speed Train (한국형 고속전철용 견인전동기 개발)

  • 이상우;윤종학;최종묵;박계서
    • Proceedings of the KSR Conference
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    • 2002.10a
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    • pp.427-433
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    • 2002
  • An inverter-driven induction motor is usually adapted to the traction motor for a high speed drive system requiring safety, reliability, performance, compact size owing to the space and weight alloted for attaching to train, etc. and AC Traction motor for G7 train will be operated in the worst condition such as mechanical vibration, limited mounting space, severe thermal stress, inverter with non-sinusoidal voltage waveform, dust and so on. therefore, design procedure must be carefully carried out wi th considering the motor size, vibration and thermal expansion of rotor bars, insulation system, reliability of frame, as well as output characteristics. In this paper, we will inform the characteristics and design of the traction motor for G7 train and also analyze the test result of it.

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The Current and Power Waveform Improvement of an AC Motor with Low Pass LC Filter Driven by a Digital Bridge Inverter(I) (디지탈 브리지형 인버터로 구동되는 저역통과 LC 필터를 가진 교류전동기의 전류 및 전력의 파형 개선 (I))

  • 정주윤;박진길
    • Journal of Advanced Marine Engineering and Technology
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    • v.19 no.3
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    • pp.107-118
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    • 1995
  • The characteristics of the current waveforms and 3$\Phi$ power waveforms of the variable speed 3$\Phi$ AC motor system driven by the single-pulse PWM investigated in this paper. The system is composed of a digital bridge inverter and low pass LC filter. It is confirmed that current waveforms and 3$\Phi$ power waveforms can be improved by utilizing the high order low pass LC filter than that of lower order through computer simulation. Also, we propose the low pass LC filter revised from the conventional LC filter.

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Control of Ultrasonic Motor Using Two-Phase High Frequency Inverter (2상 고주파 인버터에 의한 초음파 모터 제어)

  • Heo, J.Y.;Cho, G.B.;Baek, H.L.;Oh, K.G.;Jeung, H.S.;Yu, K.J.
    • Proceedings of the KIEE Conference
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    • 1994.07a
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    • pp.462-464
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    • 1994
  • In this paper, noble electrical equivalent circuit ultrasonic motor is applied by model of parallel one from mechanical equation of piezoelectric device and characteristics estimation is done by equivalent converter. Uitrasonic motor is driven by oscillation circuit of two-phase high frequency inverter. Operating frequency of inverter is described by tracking control method of resonance frequency, according to change of load, temperature etc.

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Analysis of Inverter-fed Induction Motor using F.E.M & Equivalent Circuit (슬롯피치 경계 조건을 이용한 인버터 구동 유도 전동기의 회전자 등가회로 정수 추출 및 특성해석)

  • Lee, Gun-Ho;Kim, Byung-Taek;Kwon, Byung-Il;Park, Seung-Chan
    • Proceedings of the KIEE Conference
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    • 2000.07b
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    • pp.632-634
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    • 2000
  • This paper presents a simple analysis method for inverter-fed induction motor using F.S.M and equivalent circuit. This analysis is carried out to analyze an induction motor driven by the sinusoidal voltage and the inverter. The results are verified by comparing with those of the time-step F.E.A and the experiment.

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A Performance of Single Phase Switched Reluctance Motor having both Radial and Axial air gap

  • 임준영;정윤철;권경안
    • Proceedings of the KIPE Conference
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    • 1999.07a
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    • pp.184-188
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    • 1999
  • Switched Reluctance Motor has doubly salient poles in stator and rotor, windings are wound in just stator and no magnet or windings on the rotor. This configuration is robust mechanically and thermally. The inverter of SRM is more robust than that of induction or brushless DC(BLDC) motor, but still its drive is comparatively expensive for home appliance. To drive the conventional three or four-phase SRM, 6 to 8 power switches are required when asymmetric bridge inverter is employed. Generally, more than 50% of the cost for the SRM drive is allocated to power devices and gate drives. This paper proposed single phase SRM that have both radial and axial air gaps. The stator and rotor were stacked with two types of stampings that have different diameters. This configuration is very effective to increase align inductance(Lmax). The high value of Lmax increases the motor efficiency and power density. The proposed single phase SRM(Claw SRM) can be driven by only two power switches. To show the validity of the proposed idea, the analysis using finite element method(FEM) and experimental works are carried out. The proposed SPSRM can be driven with high efficiency and can be made compactly and inexpensively because of high value of align inductance and less number of switches. For the comparison, we used same stator for three-phase and single phase, and slightly different stator and rotor for proposed single phase SRM(Claw SRM)

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Calculation of Airgap Flux Density and Circuit Parameter in Linear Induction Motor driven by Inverter (인버터로 운전되는 리니어 모터에서의 공극자속밀도 및 회로정수 산정)

  • Jang, Seok-Myeong;Lee, Sung-Lae;Lee, Sung-Ho;Yoon, Ki-Gap
    • Proceedings of the KIEE Conference
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    • 1999.07a
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    • pp.108-110
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    • 1999
  • In this paper, approximate means of estimating the flux and torque levels in an induction motor is discussed. There exists several method that is used directly by flux meter and flux sensing coils in the airgap. Most of these methods are sensitive to motor parameter value changes. Also, the harmonics in the motor voltage and current due to the nonsinusodial inverter waveform cause errors in the estimated torque. Finally, this result is applicated in arch type linear induction motor for study of noise and vibration.

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Evaluation of Trapezoidal PWM Inverter using a new Harmonic Torque Factor (새로운 고조파 토오크 평가함수에 의한 Trapezoidal PWM 인버터의 평가)

  • Lee, Chi-Hwan;Koo, Bon-Ho;Kwon, Wu-Hyen
    • Proceedings of the KIEE Conference
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    • 1987.07a
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    • pp.754-756
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    • 1987
  • In this paper, a new Harmonic Torque Factor(HTF) that represents torque ripple of induction motor is proposed. Trapezoidal PWM is analyzed to torque ripple by HTF and than we obtain optimum triangular factor at some carrier ratio. Six-step, sinusoidal PWM and Trapezoidal PWM are compared and evaluated for choosing a good control strategy of PWM inverter. It turns out that six-step inverter is better than sinusoidal PWM and Trapezoidal PWM when their carrier ratio is 9, and Trapezoidal PWM is superior to sinusoidal PWM. At induction motor is driven by PWM inverter, torque ripples are investigated by computer simulation using d-q two axis model. It is proved that a new Harmonic Torque Factor ix valid.

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Approaches to Suppressing Shaft Voltage in Non-Insulated Rotor Brushless DC Motor driven by PWM Inverter

  • Isomura, Yoshinori;Yamamoto, Kichiro;Morimoto, Shigeo;Maetani, Tatsuo;Watanabe, Akihiko;Nakano, Keisaku
    • Journal of international Conference on Electrical Machines and Systems
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    • v.3 no.3
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    • pp.241-247
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    • 2014
  • The voltage source PWM inverter generally used to drive the air conditioning (A/C) fans has been posing a large issue that the bearings in air conditioning fan motors are highly possible to be corroded electrically. Potential difference called shaft voltage is generated between inner and outer rings of the bearings due to inverter switching. The shaft voltage causes bearing lubricant breakdown dielectrically. As a result, bearing current is caused. This current causes the bearing corrosion. In previous work, we demonstrated that the shaft voltage can be reduced by using an insulator inserted between the outer and inner cores of the rotor in an air conditioning fan motor without grounding. This paper proposes the other countermeasure for reducing the shaft voltage in fan motors. The countermeasure which adds a capacitor between the brackets and the stator core is effective even for fan motors with non-insulated rotor. The effectiveness is confirmed by both simulated and experimental results.