• Title/Summary/Keyword: PWM inverters

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A Study on the Real Features of Harmonic Obstacle (고조파 장해의 진상에 관한 연구)

  • 이해기
    • Journal of the Korean Society of Safety
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    • v.13 no.4
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    • pp.162-171
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    • 1998
  • This paper presents the harmonics obstacle analysis and countermeasure of electrical consumption a place. Harmonics that can be cosidered as a environmental pollution of the power systems become the cause of the accidents and damages. The responsibility of eliminating the harmonics firstly lies on the generating side. But the original characteristics of the system sush as the harmonic transfer characteristics and the impedance of the system affect each other in the process of the generation and transmission of the harmonic. Therefore it is very difficult to specify clearly the harmonic controlling responsibility, because electric machinery generating harmonics are various in the industrial fields. The output of a inverter has a high harmonic content. There are several ways of minimizing the output harmonic content. One way is to use pulse width modulation techniques within inverter. An alternative method is to combine a number of square-wave inverters. In this research, we measure the harmonic of the countermeasure of electrical consumption a place. The paper present the problem of new harmonic elimination method of PWM inverter fed induction motor system using W-FT series. In the future, the proposed PWM pattern by W-FT series is effective not only to the induction motor but also to the electromagnetic machine such as voltage reglator, UPS.

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Design of an Adaptive Backstepping Controller for Doubly-Fed Induction Machine Drives

  • Dehkordi, Behzad Mirzaeian;Payam, Amir Farrokh;Hashemnia, Mohammad Naser;Sul, Seung-Ki
    • Journal of Power Electronics
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    • v.9 no.3
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    • pp.343-353
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    • 2009
  • In this paper, a nonlinear controller is proposed for Doubly-Fed Induction Machine (DFIM) drives. The nonlinear controller is designed based on an adaptive backstepping control technique, using a fifth order model of an induction machine in the synchronous d & q axis rotating reference frame, whose d axis coincides with the space voltage vector of the main AC supply, and using the rotor current and stator flux components as state variables. The nonlinear controller can perfectly track the torque reference signal measured in the stator terminals under the condition of unity power factor regulation, in spite of the stator and rotor resistance variations. In order to make the drive system capable of operating in the motoring and generating modes below and above the synchronous speed, two level Space-Vector PWM (SV-PWM) back-to-back voltage source inverters are employed in the rotor circuit. It is confirmed through computer simulation results that the proposed control approach is effective and valid.

A Novel Topology Structure and Control Method of High-Voltage Converter for High-Input-Voltage Applications

  • Song, Chun-Wei;Zhao, Rong-Xiang;Zhang, Hao
    • Journal of international Conference on Electrical Machines and Systems
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    • v.1 no.2
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    • pp.79-84
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    • 2012
  • In this paper, a three-phase high-voltage converter (HVC), in which the main structure of each phase is composed of a cascaded PWM rectifier (CPR) and cascaded inverter (CI), is studied. A high-voltage grid is the input of the HVC. In order to ensure proper operation of the HVC, the control method should achieve output voltage sharing (OVS) among the rectifiers in the CPR, OVS among the inverters in the CI, and high power factor. Master-slave direct-current control (MDCC) is used to control the CPR. The ability of the control system to prevent interference is strong when using MDCC. The CI is controlled by three-loop control, which is composed of an outer common-output-voltage loop, inner current loops and voltage sharing loops. Simulation results show low total harmonic distortion (THD) in the HVC input currents and good OVS in both the CPR and CI.

The Optimization of Current Control in DC/AC Power Converters under Digital Control with Microprocessor (마이크로프로세서에 의한 디지탈 제어방식에서 직류/교류 전력변환장치 전류제어 성능의 최적화)

  • 우명호;목형수;정승기
    • The Transactions of the Korean Institute of Power Electronics
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    • v.3 no.1
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    • pp.61-69
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    • 1998
  • In this paper, discrete current control of voltage source inverters is proposed. As a current control scheme, the constant switching frequency predictive current control is adopted and implemented with DSP microprocessor system. In particular, the proposed method is for the compensation of the control lagging due to calculation delays in the microprocessor controller. In controlling the current, the inverter output voltage saturation problem is inevitable and usually affects the current control performance. So, the saturation boundary condition of the inverter output voltage and its effects on the current controal performance of the proposed current control scheme are investigated with experiment. Finally, the proposed scheme is applied to the active power filter system and some results are described for validation.

LC Trap Filter Design of Single Phase NPC Multi-Level PWM Inverters for Harmonic Reduction (고조파 저감을 위한 단상 NPC 멀티레벨 PWM 인버터의 LC트랩 필터 설계)

  • Kim, Yoon-Ho;Lee, Jae-Hak;Kim, Soo-Hong
    • The Transactions of the Korean Institute of Power Electronics
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    • v.11 no.4
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    • pp.313-320
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    • 2006
  • In this paper, a design approach of LC trap filter for output side harmonic reduction of single phase NPC multilevel inverter is proposed, and THD of the output voltage and harmonic FFT of the output current are analyzed. The proposed filter consists of a conventional LCR filter cascaded with an LC trap filter and it is tuned to inverter switching frequency. A NPC multilevel inverter inverter is used an inverter system for high power application and DSP(TMS320C31) is used for the controller. The effectiveness of the proposed system confirmed through simulation and experimental results.

Measurement and Analysis of Transient Voltage for an Inverter-fed Induction Motor (인버터 구동 유도전동기에서 과도전압의 측정과 분석)

  • Kil, Gyung-Suk;Rhyu, Keel-Soo;Park, Dae-Won;Cho, Young-Jin;Cheon, Sang-Gyu;Choi, Su-Yeon
    • Journal of the Korean Society for Railway
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    • v.10 no.6
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    • pp.650-654
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    • 2007
  • Induction motors are widely used as a source of driving force in electric vehicles and pulse width modulation (PWM) inverters are applied to their operation. The issue is that insulation of inverter-fed induction motors (IFMs) are more stressed than in line-powered motors by transient voltages. This paper dealt with experimental results on transient voltage produced by the PWM operation of an induction motor. The peak and the dv/dt of transient voltage depending on the length of power feeding cable and operating frequency were investigated. In the experiment, transient voltages up to 3.3PU of the rated-inverter voltage were recorded for the cable length of 50m. As the cable length is increased, the peak voltage appeared at the motor terminals increases. This phenomenon can be explained by the reflection and the transmission of travelling wave. Consequently, special care for the cable length between the motor and the inverter should be taken in the use of IFM to ensure the full life of insulation system.

Comparative Study of Minimum Ripple Switching Loss PWM Hybrid Sequences for Two-level VSI Drives

  • Vivek, G.;Biswas, Jayanta;Nair, Meenu D.;Barai, Mukti
    • Journal of Power Electronics
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    • v.18 no.6
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    • pp.1729-1750
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    • 2018
  • Voltage source inverters (VSIs) are widely used to drive induction motors in industry applications. The quality of output waveforms depends on the switching sequences used in pulse width modulation (PWM). In this work, all existing optimal space vector pulse width modulation (SVPWM) switching strategies are studied. The performance of existing SVPWM switching strategies is optimized to realize a tradeoff between quality of output waveforms and switching losses. This study generalizes the existing optimal switching sequences for total harmonic distortions (THDs) and switching losses for different modulation indexes and reference angles with a parameter called quality factor. This factor provides a common platform in which the THDs and switching losses of different SVPWM techniques can be compared. The optimal spatial distribution of each sequence is derived on the basis of the quality factor to minimize harmonic current distortions and switching losses in a sector; the result is the minimum ripple loss SVPWM (MRSLPWM). By employing the sequences from optimized switching maps, the proposed method can simultaneously reduce THDs and switching losses. Two hybrid SVPWM techniques are proposed to reduce line current distortions and switching losses in motor drives. The proposed hybrid SVPWM strategies are MRSLPWM 30 and MRSLPWM 90. With a low-cost PIC microcontroller (PIC18F452), the proposed hybrid SVPWM techniques and the quality of output waveforms are experimentally validated on a 2 kVA VSI based on a three-phase two-level insulated gate bipolar transistor.

An Optimal Current Distribution Method of Dual-Rotor BLDC Machines

  • Kim, Sung-Jung;Park, Je-Wook;Im, Won-Sang;Jung, Hyun-Woo;Kim, Jang-Mok
    • Journal of Power Electronics
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    • v.13 no.2
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    • pp.250-255
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    • 2013
  • This paper proposes an optimal current distribution method of dual-rotor brushless DC machines (DR-BLDCMs) which have inner and outer surface-mounted permanent-magnet rotors. The DR-BLDCM has high power density and high torque density compare to the conventional single rotor BLDCM. To drive the DR-BLDCM, dual 3-phase PWM inverters are required to excite the currents of a dual stator of the DR-BLDCM and an optimal current distribution algorithm is also needed to enhance the system efficiency. In this paper, the copper loss and the switching loss of a DR-BLDCM drive system are analyzed according to the motor parameters and the switching frequency. Moreover, the optimal current distribution method is proposed to minimize the total electrical loss. The validity of the proposed method was verified through several experiments.

An Improved Space Vector Modulation Scheme for Three Level GTO Inverters in Pulse Dropping Region (펄스 누락 영역에서 3레벨 GTO 인버터의 향상된 공간 벡터 변조 방식)

  • Kang, Gu-Bae;Sung, Jeong-Hyun;Nam, Kwang-Hee
    • Proceedings of the KIEE Conference
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    • 1997.07f
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    • pp.2043-2046
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    • 1997
  • GTO 소자의 최소 턴온 시간(minimum turn-on time, Tmin)때문에 발생된 지령전압 오차를 보상하는 기법을 제안한다. 공간백터전압$(V_1)$의 턴온시간이 Tmin보다 작을 경우에는 전압오차를 PI 제어기로 보상한다. 또한, 지령전압벡터의 크기가 특정한 값(Vmin)보다 작은 경우, 영벡터(zero vector)가 PWM 추기에서 중간에 매치가 되도록 스위칭 순서를 바꿔준다. 시뮬레이션을 통해 이러한 지령전압 오차의 보상으로 펄스 누락(pulse dropping) 영역에서 출력전압의 대칭성이 향상되고 고조파 함유량이 감소한다는 사실을 보인다.

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Real Time RPWM Drive System by Carrier Frequency Modulation Technique (캐리어 주파수 변조에 의한 실시간 RPWM 구동장치)

  • Na, S.H.;Choi, C.R.;Yang, S.H.;Lim, Y.C.;Kim, K.H.;Park, J.K.
    • Proceedings of the KIEE Conference
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    • 1997.07f
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    • pp.2058-2061
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    • 1997
  • A main research topic in PWM inverter drive system is to reduce the generated acoustic noise. One method to reduce the acoustic noise is to cause the switching pattern to be random. This RPWM(Random Pulse Width Modulation) technique for voltage controlled inverters is a kind of good solutions for reduction of acoustic noise and suppression of vibration. This paper describes a carrier frequency modulated real-time RPWM inverter. Changing the carrier frequency randomly, the power spectrum of tile acoustic noise was spread over the wide-band area. And experimental results showed that emitted noise is much more comportable and less annoying

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