• 제목/요약/키워드: PWM Inverter

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PWM 인버어터로 구동되는 유도 전동기의 고주파 누설전류 모델링 및 억제에 관한 연구 (A Study on Modeling and Damping of High-Frequency Leakage Currents in PWM Inverter Feeding an Induction Motor)

  • 이재호;전진휘;홍정표;강필순;박성준;김철우
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 1998년도 연구회 합동 학술발표회 논문집
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    • pp.18-22
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    • 1998
  • A PWM inverter with an induction motor often has a problem with a high frequency leakage current that flows through stray capacitor between stator windings and a motor frame to ground. This paper presents an equivalent circuit for high frequency leakage currents in PWM inverter feeding an induction motor, which forms an LCR series resonant circuit. A conventional common mode ckoke or reactor in series between the ac terminals of a PWM inverter and those of an ac motor is not effective to reduce the rms and average values of the leakage current, but effective to reduce the peak value. Furthermore, this paper proposes a leakage current damper which is different in damping principle from the conventional common mode choke. It is shown theoretically and experimentally that the leakage current damper is able to reduce the rms value of the leakage current to 25%, where the core used in the leakage current damper is smaller than that of the conventional common-mode choke

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준 공진 DC 링크를 사용한 공간 벡터 PWM 인버터의 구현 (Realization of the Space Vector PWM Inverter Using a Quasi - Resonant DC Link)

  • 한완옥;조성정;이정규;임승하;이성백
    • 전자공학회논문지B
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    • 제31B권12호
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    • pp.137-144
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    • 1994
  • In this paepr, we present a soft switching PWM inverter as reducing switching loss and stress at high power application. The PWM inverter is designed by space voltage about 2$\sqrt{3}$ times (15%) than conventional SPWM method. To reduce switching loss and stress. The DC link requires a capacitor, an inductor and two additional switches. Therefore proposed inverter performs trun PWM operation under the soft switching condition. As a result of soft switching we can reduce switching loss and ensure stability of switching devices. For approach to real time, control system is realized by 8 bit single-chip microprocessor. Therefore, we can construct system is with simplified volumn and structure by eliminating carrier wave and referrence wave generator of conventional SPWM method.

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PWM 인버터의 스위칭 주파수에 따른 브러시레스 DC 모터에서의 와전류 손실 특성 해석 (Analysis of Eddy Current Loss in Brushless DC Motor according to the Swiching Frequency of the PWM Inverter)

  • 김와성;최태식;김윤현;이주
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 하계학술대회 논문집 B
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    • pp.675-677
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    • 2000
  • In the paper the eddy current loss in brushless DC motor due to switching frequency supplied by PWM inverter, is analyzed. The compensated conductivity is used in order to analyze the eddy current loss in brushless DC motor which has lamination structure. The eddy current loss is deceased when switching frequency supplied by PWM inverter is gradually increased from 1.2kHz up to 12kHz. The high switching frequency of PWM inverter make the output wave into a similar sine wave and this leads to the decreasing eddy current loss.

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IGBT PWM 인버터 구동 유도전동기의 절연성능 향상기술 연구 (A Study on the Insulation Performance Improvement of Induction Motors Fed by IGBT PWM Inverter)

  • 황돈하;박도영;김용주;이영훈;김동희;이인우
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2001년도 전력전자학술대회 논문집
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    • pp.335-339
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    • 2001
  • The recent advancements in power electronic switching devices have enabled high frequency switching operation and have improved the performance of pulse-width modulated (PWM) inverters for driving induction motors. But, the insulation failures of stator winding have attracted much concern due to high dv/dt of IGBT PWM inverter. In this paper, the test results for evaluation on the stator winding insulation of low-voltage induction motors for IGBT PWM inverter applications are presented. The insulation characteristics are analyzed with partial discharge and dissipation factor tests. Also, insulation breakdown tests by switching pulse voltage are performed. An effective insulation technique to enhance the insulation strength is suggested from the test results.

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Single-Phase Step-Up Five-Level Inverter with Phase-Shifted Pulse Width Modulation

  • Chen, Jianfei;Wang, Caisheng;Li, Jian
    • Journal of Power Electronics
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    • 제19권1호
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    • pp.134-145
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    • 2019
  • A single-phase step-up five-level inverter topology with a new phase-shifted pulse width modulation (PS-PWM) strategy is proposed in this paper. When compared with conventional single-phase five-level inverter topologies, the proposed topology can realize multilevel inversion with a double step-up ratio, a reduced number of switching devices and self-balanced capacitor voltages. When compared with the conventional PS-PWM strategy, the new PS-PWM strategy can be implemented with one carrier reduced, which makes it much easier to implement in a digital signal processor (DSP) system. Experimental results have been presented to verify the effectiveness of the proposed inverter and the PS-PWM strategy.

플라잉 커패시터 멀티-레벨 인버터의 커패시터 전압 균형을 위한 캐리어 비교방식의 펄스폭변조기법 (The Carrier-based PWM Method for Voltage Balance of Flying Capacitor Multi-bevel Inverter)

  • 이상길;강대욱;이요한;현동석
    • 전력전자학회논문지
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    • 제7권1호
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    • pp.65-73
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    • 2002
  • 본 논문에서는 플라잉 커패시터 멀티-레벨 인버터의 가장 큰 문제점인 커패시터 전압 불균형을 캐리어 비교방식을 토대로 한 펄스 폭 변조 방식(PWM)을 이용하여 제어하는 새로운 PWM방법을 제안한다. 제안된 방법은 멜티-레벨 인버터로 확장이 용이한 캐리어 비교 방식의 PWM방법으로서 플라잉 커패시터 인버터에서 소자의 스위칭시각 커패시터의 충·방전으로 인해 발생되는 전압불균형에 대해 상전압 리던던시와 선간전압 리던던시를 이용하여 커패시터 전압의 변화량을 일정주기에 대해 평균적으로 영으로 제어하게 된다. 또한 이 방법은 상전압 리던던시를 고르게 이용하여 소자의 스위치 손실과 도통 손실을 같게 하는 장점을 지닌다. 본문에서 플라잉 커패시터 인버터에 서 발생하는 커패시터 전압 불균형에 대해 분석하고 이 인버터에 적합한 캐리어 비교방식의 PWM방법을 설명한다.

New Circuit Topology of Single-Ended Soft-Switching PWM High Frequency Inverter and Its Performance Evaluations

  • Deguchi Y.;Moisseev S.;Nakaoka M.;Hirota I.;Yamashita H.;Omori H.;Terai H.
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2001년도 Proceedings ICPE 01 2001 International Conference on Power Electronics
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    • pp.247-250
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    • 2001
  • This paper presents a simple and cost effective circuit topology of single-ended type high frequency quasi-resonant PWM inverter using IGBTs, which can operate under wide soft switching operation range based on ZCS for main power switch as compared with a conventional active voltage-clamped ZVS-PWM high frequency quasi-resonant inverter developed previously. In principle, this new circuit topology can efficiently operate under a constant frequency PWM control-based power regulation scheme. In particular, it is noted that the zero current soft switching (ZCS) commutation can achieve for the main active power switch. On the other hand, the zero voltage soft switching (ZVS) commutation can also achieve for the auxiliary active power switch. The operating principle of this high-frequency Inverter treated here and its power regulation characteristics are illustrated on the basis of the simulation and feasible experimental results.

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새로운 데드타임 및 전압강하의 보상을 이용한 SVPWM 인버터의 성능개선 (Improved Performance of SVPWM Inverter Based on Novel Dead Time and Voltage Drop Compensation)

  • 이동희;권영안
    • 대한전기학회논문지:전기기기및에너지변환시스템부문B
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    • 제49권9호
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    • pp.618-625
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    • 2000
  • Recently PWM inverters are widely utilized for many industrial applications e.g. high performance motor drive and PWM techniques are newly developed for an accurate output voltage. Among them space voltage vector PWM(SVPWM) inverter has high voltage ratio and low harmonics compared to the conventional sinusoidal PWM inverter. However output voltage of PWM inverter is distorted and has error duet o the conducting voltage drop of switching devices and the dead time that is inevitable to prevent the shoot-through phenomenon. This paper investigates 3-phase SVPWM inverter which has a new compensation method against dead time and voltage drop. Proposed algorithm calculates gate pulse periods which directly compensates the dead time and nonlinear voltage drop without modification of reference voltages. Direct compensation of gate pulse periods produces exact output voltage and does not need additional circuits. The propose algorithm is verified through the simulation and experiments.

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냉장고의 선형압축기 구동을 위한 단상 하프브리지 인버터 시스템에서 직류단 불평형 보상에 관한 연구 (DC Voltage Balancing Control of Half-Bridge PWM Inverter for Liniear Compressor of Refrigerator)

  • 김호진;김형진;김동윤;김장목
    • 전력전자학회논문지
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    • 제22권3호
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    • pp.256-262
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    • 2017
  • This paper presents the control algorithm of a single-phase AC/DC/AC PWM converter for the linear compressor of a refrigerator. The AC/DC/AC converter consists of a full-bridge PWM converter for the control of the input power factor and a half-bridge PWM inverter for the control of the single-phase linear compressor. At the DC-link of this topology, two capacitors are connected in series. These DC-link voltages must be balanced for safe operation. Thus, a new control method of DC voltage balancing for the half-bridge PWM inverter is proposed. The balancing algorithm uses the Integral-Proportional controller and inserts the DC-offset current at the Proportional-Resonant current controller of the inverter to solve the DC-link unbalanced voltages between the two capacitors. The proposed algorithm can be easily implemented without much computation and additional hardware circuit. The usefulness of the proposed algorithm is verified through several experiments.

유도전동기 구동을 위한 전류형 PWM 컨버터 및 인버터 시스템 (PWM current source converter and inverter system for induction motor drives)

  • 이동춘
    • 전자공학회논문지B
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    • 제33B권5호
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    • pp.159-164
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    • 1996
  • In this paper, a novel control strategy of curretn source PWM converter and inverter system for induction motor dirves is proposed. The PWM converter controls line current to be sinusoidal and makes input power factor unity. In the inverter part, a minor voltage control loop is incorporated in the current control looop in order to suppress unstale resonance between the filter capacitor and the motor leakage inductance and to keep the stator voltage under the rated value. In additon, the modulation index control of the inverter currents ripples and inverter loss. With the proposed algorithm, both high dynamic responses and satisfactory static performance can be obtained.

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