• 제목/요약/키워드: vector-controlled inverter

검색결과 141건 처리시간 0.022초

PID Controller Tuning using Co-Efficient Diagram method for Indirect Vector Controlled Drive

  • Durgasukumar, G.;Rama Subba Redddy, T.;Pakkiraiah, B.
    • Journal of Electrical Engineering and Technology
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    • 제12권5호
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    • pp.1821-1834
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    • 2017
  • Medium voltage control applications due to obtain better output voltage and reduced electro-magnetic interference multi level inverter is used. In closed loop control with inverter, the PI controller does not operate satisfactorily when the operating point changes. This paper presents the performance of Co-Efficient diagram PI controller based indirect vector controlled induction motor drive fed from three-level inverter under different operating conditions (dynamic and steady state). The proposed Co-Efficient diagram PI controller based three level inverter significantly reduces the torque ripple compared to that of conventional PI controller. The performance of the indirect vector controlled induction motor drive has been simulated at different operating conditions. For three-level inverter control, a simplified space vector modulation technique is implemented, which reduces the coordinate transformations complications in the algorithms. The performance parameters, torque ripple contents and THD of induction motor drive with three-level inverter is compared under different operating conditions using CDM-PI and conventional PI controllers.

전류제어형 PWM 인버어터- 유도전동기 구동시스템의 속응제어에 관한 연구 (Quick Response Control of Current Controlled PWM Inverter-Induction Motor Drive System)

  • 박민호;홍순찬;김흥근;전태원
    • 대한전기학회논문지
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    • 제37권12호
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    • pp.862-871
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    • 1988
  • 본 논문에서는 전류제어형 PWM인버터-유도전동이 구동 시스템의 속응제어를 위한 벡터제어시스템을 제시하였다. 벡터제어 특성을 충분히 발휘하기 위해서는 고정자 전류의 숭시치 제어가 가능해야하므로 히스테리시스 제어기를 가진 전류제어형 PWM인버어터를 채택하였고 복잡한 벡터회전 및 연산은 마이크로프로세서를 사용한 소프트웨어로 처리하였다. 제시한 시스템을 디지탈시뮬레이션 및 실험을 통하여 그 특성의 우수함을 입증하였다.

유도전동기용 벡터제어 인버터에서 전류측정 오차의 실시간 보상 방법 (Real-Time Compensation Method of Current Measurement Error in Vector-Controlled Inverter for Induction Motor)

  • 김지훈;윤덕용
    • 한국산학기술학회논문지
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    • 제15권3호
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    • pp.1685-1690
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    • 2014
  • 본 논문에서는 유도전동기 벡터제어 인버터에서 상전류를 검출할 때 발생하는 측정 오차를 실시간으로 보상하는 방법을 제안한다. 전류측정에 오프셋 오차와 변환이득 오차가 포함될 경우의 3상 유도전동기 토크 방정식을 유도하여 이러한 측정 오차들이 전동기의 토크 리플을 유발하는 것을 보였으며, 이러한 토크 리플을 제거할 수 있는 방법을 제시하였다. 특히, 본 논문에서는 전동기의 운전 상태에서 실시간으로 변환이득 오차에 의한 토크 리플을 제거하는 방법을 제안하였다. 이를 200[W]급 3상 유도전동기의 벡터제어 인버터에 적용하여 컴퓨터 시뮬레이션 및 실험을 수행함으로써 제안된 방법의 유효성을 검증하였으며, 그 결과 전류측정에서 변환이득 오차가 있더라도 전동기의 토크가 상당히 제거되는 것을 확인하였다.

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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    • 제9권3호
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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.

High Performance Adjustable-Speed Induction Motor Drive System Incorporating Sensorless Vector Controlled PWM Inverter with Auto-Tuning Machine-Operated Parameter Estimation Schemes

  • Soshin, Koji;Okamura, Yukiniko;Ahmed, Tarek;Nakaoka, Mutsuo
    • Journal of Power Electronics
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    • 제3권2호
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    • pp.99-114
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    • 2003
  • This paper presents a feasible development on a highly accurate quick response adjustable speed drive implementation fur general purpose induction motor which operates on the basis of sensorless slip frequency type vector controlled sine-wave PWM inverter with an automatic tuning machine parameter estimation schemes. In the first place, the sensorless vector control theory on the three-phase voltage source-fed inverter induction motor drive system is developed in slip frequency based vector control principle. In particular, the essential procedure and considerations to measure and estimate the exact stator and rotor circuit parameters of general purpose induction motor are discussed under its operating conditions. The speed regulation characteristics of induction motor operated by the three-phase voltage-fed type current controlled PWM inverter using IGBT's is illustrated and evaluated fur machine parameter variations under the actual conditions of low frequency and high frequency operations for the load torque. In the second place, the variable speed induction motor drive system, employing sensorless vector control scheme which is based on three -phase high frequency carrier PWM inverter with automatic toning estimation schemes of the temperature -dependent and -independent machine circuit parameters, is practically implemented using DSP-based controller. Finally, the dynamic speed response performances for largely changed load torque disturbances as well as steady state speed vs. torque characteristics of this induction motor control implementation are illustrated and discussed from an experimental point of view.

ELEVATOR 구동용 VECTOR 제어 인버터 (Vector Controlled Inverter for Elevator Drive)

  • 신현주;장성영;이선재;이상동
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1991년도 하계학술대회 논문집
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    • pp.627-630
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    • 1991
  • This study is about vector controlled inverter for high quality elevator drive that is to improve the settling accuracy of elevator car and passenger's comfort in commercial buildings. In this study, an instantaneous space vector control type inverter was used to reduce the torque ripple ant to improve the velocity follow-up. This method calculates Instantaneous actual output torque and flux of induction motor by voltage and current, then compares them with a reference values by a speed regulator. The outputs of comparators select a switching mode, for an optimal voltage vector. Also, this study used IGBT (Insulated Gate Bipolar-Transistor), a high speed switching element, to reduce sound noise level, and DSP (Digital Signal Processor) was used to improve the reliability of the control circuit by fully digitalization.

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ARM Cortex-M4 마이크로컨트롤러를 사용한 유도전동기의 저가형 벡터제어 인버터 설계 (The Design of Low-Cost Vector-Controlled Inverter for Induction Motor Using ARM Cortex-M4 Microcontroller)

  • 김동기;윤덕용
    • 한국산학기술학회논문지
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    • 제14권2호
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    • pp.816-821
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    • 2013
  • 본 논문은 ARM Cortex-M4 마이크로컨트롤러를 사용하여 3상 유도전동기용의 저가형 벡터제어 인버터를 설계하는 방법을 제안한다. 이 MCU는 냉장고, 에어컨, 세탁기와 같은 가전제품을 제어하기 위하여 기존의 값비싼 DSP 소자를 대신할 수 있다. 본 논문에서는 전동기 제어에 필요한 Cortex-M4의 주요 기능들을 정리하고, 이를 사용하여 벡터제어 인버터를 설계하는 방법을 기술한다. 실험용 벡터제어 인버터를 설계 제작하여 200[W]의 3상 유도전동기에 적용하였고, 이를 사용한 실험 결과는 기존의 TMS320F28335 DSP와 유사한 수준의 제어 성능을 보였다.

2상 유도전동기용 벡터제어 인버터를 위한 전류측정 오차 보상 방법 (Compensation Method of Current Measurement Error for Vector-Controlled Inverter of 2-Phase Induction Motor)

  • 이호준;윤덕용
    • 전기학회논문지
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    • 제65권7호
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    • pp.1204-1210
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    • 2016
  • The phase currents must be accurately measured to achieve the instantaneous torque control of AC motors. In general, those are measured using the current sensors. However, the measured current signals can include the offset errors and scaling errors by several components such as current sensors, analog amplifiers, noise filter circuits, and analog-to-digital converters. Therefore, the torque-controlled performance can be deteriorated by the current measurement errors. In this paper we have analyzed the influence caused by vector control of 2-phase induction motor when two errors are included in measured phase currents. Based on analyzed results, the compensation method is proposed without additional hardware. The proposed compensation method was applied vector-controlled inverter for 2-phase induction motor of 360[W] class and verified through computer simulations and experiments.

공간벡터 전류제어 기법을 이용한 벡터제어형 인버터의 dead time 보상 (Dead Time Compensation of Vector Controlled Inverter Using Space Vector Modulation Method)

  • 홍기필;오원석;김영태;김희준
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1994년도 하계학술대회 논문집 A
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    • pp.265-269
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    • 1994
  • The switching dead time avoiding a bridge leg short circuit in PWM voltage source inverter produces distortions of the controlling inverter output performance such as current waveform, voltage vector, and torque. In this paper, the influence of dead time is investigated. The on-line space voltage vector modulation method is used for current controller. It is possible to compensate dead time by space voltage vector modulation which generates additional pulse compensating voltage distortion caused by dead time. In addition, narrow pulse which is generally neglected can be compensated. All the algorithms, including field-oriented control are performed by one chip microprocessor 80C196MC and DSP TMS320C31. Experimental results probe that the proposed scheme provides a good inverter output performance.

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VSI-IM 구동 시스템에 벡터제어를 이용한 전류제어 PWM 방식의 제어특성 (Control Characteristics of Current Controlled PWM Using Vector Control in VSI-IM Drive System)

  • Dong Hwa Chung
    • 전자공학회논문지B
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    • 제28B권12호
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    • pp.38-50
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    • 1991
  • A current-controlled scheme of pulse width modulation voltage source inverter (PWM VSI) has attracted considerable attention due to its fast response with current limit and especially suitable for potentially high performance applications such as AC motor drives and UPS systems. These features yield near-sinusoidal currents in the load with reduced current peaks, lower inverter switching frequency and reduce inverter and load stresses. A high performance current-controlled inverter must have a quick response in transient state and low harmonic current in steady state. This paper compares and shows the controlled-characteristics with hysteresis controller(HC), ramp comparison controller(RCC) and predictive controller(PC) of PWM inverter to control actual current of VSI-IM.

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