• Title/Summary/Keyword: Harmonic voltage limit

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

  • Dong Hwa Chung
    • Journal of the Korean Institute of Telematics and Electronics B
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    • v.28B no.12
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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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Input and output filter design of current source PWM converter for high-precision magnet power supply (고정밀 자석전원을 위한 전류형 PWM 컨버터의 입출력 필터설계)

  • 김효성;최재호
    • The Transactions of the Korean Institute of Electrical Engineers
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    • v.45 no.1
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    • pp.30-41
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    • 1996
  • Current Source(CS) PWM converter is appropriate for the magnet power supply system which requests high power and high precision current control. Input and output filters should be installed to eliminate the current or voltage harmonics caused by the PWM switching for the CS PWM converter. But the input/output filters limit the output DC current range and may destroy the system with filter resonance, and make the system equation more complicated. In this paper, systematic and simple filter design method which considers not only the harmonic attenuation but also the total system good transfer function characteristics in the dc filter. The simulated and experimental results verify the proposed theory. (author). refs., figs., tabs.

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A Study on the Development of Harmonic Limit Device for Stabilizing Main Circuit Equipment of Train (열차운행 안정화를 위한 주회로 기기의 고조파 제한장치 개발에 관한 연구)

  • Kim, Sung Joon;Chae, Eun Kyung;Kang, Jeong Won
    • Asia-pacific Journal of Multimedia Services Convergent with Art, Humanities, and Sociology
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    • v.8 no.6
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    • pp.853-861
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    • 2018
  • This paper proposes the application of harmonic constraints to address the problems caused by abnormal voltage increases when electric railway vehicles are running. The AC line that supplies the train with power during operation is used to provide electricity of 25kV/60 Hz, but gradually the size and frequency of harmonics involved in the line are varied with the technological evolution of the railroad vehicle electrical equipment. An increase in heat losses due to the failure of the instrument transformer (PT), the main circuit device, which is a serious problem with the recent train safety operation, or to the main displacement voltage. When high frequency components are introduced through low frequency Transformers of the main circuit device, the high intensity of the components is caused by the high intensity of the core and the current flow of the parasitic core is increased, thus generating heat. To solve this problem, the recent adjustment of the sequence has applied artificial NOTCH OFF of the power converter. However, the method of receiving and controlling the OFF signal operates by interaction between the ground and the vehicle's devices, thus it is invalid in the event of failure, and an actual accident is occurring. Therefore, the harmonic currents were required to prevent possible flow of harmonics, and conducted a study to prevent accidental occurrence of train accidents and to verify feasibility of the device through the simulations of the train's experimental analysis and the simulations of the train for safe operation.

A Hysteresis Current Controller with Improved Voltage Waveform using N.P.C Structure (N.P.C 구조에 의한 히스테리시스 전류제어기의 전압파형 개선)

  • 김윤호;이병송
    • The Transactions of the Korean Institute of Power Electronics
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    • v.2 no.3
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    • pp.51-57
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    • 1997
  • A new current controlled PWM technique with N.P.C structure is proposed in this paper. A current controlled PWM technique with neutral-point-clamped pulsewidth modulation inverter composed of main switching devices which operates as switches for PWM and auxiliary switching devices to clamp the output terminal potential to the neutral point potential is described. This inverter output contains less harmonic content as compared with that of a conventional current controlled PWM type. In addition, the proposed current controlled PWM technique has lower switching frequency than that of conventional current controlled PWM technique at the same current limit. Two inverters are compared analytically. The improved voltage waveform of current controlled PWM with N.P.C structure is analyzed and the performance is investigated by the computer simulation.

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A Study on Harmonics Reduction Method Considering Hormonic Voltage Limits on Each Bus using Shadow Price (잠재가격에 의한 모선별 고조파전압제약을 고려한 고조파 저감기법에 관한 연구)

  • Lee, Bum;Kim, Yong-Ha;Choi, Sang-Kyu;Lee, Jae-Geol;Yeon, Jun-Hee
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.17 no.4
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    • pp.87-93
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    • 2003
  • This paper presents a new harmonics reduction methodology using shadow price. First, we employed shadow price of each bus to reduce harmonics effectively. Second, we developed a new algorithm which can reduce harmonics under limits at PCC and each bus. As a result economical design of filters and its location of the distribution system is possible. This method is applied to the real system, and the usefulness of the method is verified.

The High Power Active Filter System for Harmonic Compensation of 25kv Electric Railway (25kV 전기철도 고조파 보상을 위한 고전력 능동전력필터 시스템에 관한 연구)

  • Kim, Jae-Chul;Rho, Sung-Chan;Lee, Yoo-Kyung
    • Journal of the Korean Society for Railway
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    • v.9 no.6 s.37
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    • pp.761-765
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    • 2006
  • At present, harmonic currents cause serious problems in power conversion system using the semiconductor switching device. Also some of the conversion system provokes harmonic currents against to the main power supply system and causes hindrances for the system. Main power impedance of the traditional LC passive filter method, influences on the filter characteristics and amplifies the harmonics when resonance phenomenon is occurred. And the traditional existing 2 level inverter systems show the limit in capacity of voltage and current in case of occurring sudden load change. So, to solve this problem active filter which uses cascaded H-bridge multi level inverter has been designed and ex-filter system circuits were totally investigated. With multi level active filtering system not only the size of filter but also the size of filter for transformer can be reduced by half and so as to the weight, while the capacity of inverter can be double sized and wave forms can be compensated exactly and precisely. Also by the benefit of the increase in rating capacity, the various currents owing to the load fluctuation can be dealt more steadily. In order to simulate the wave form of harmonics based on the measured data on the AC 25kV high speed Domestic Commercial railway, it was simulated with PSCAD/EMTDC and PSIM. Based on the results of this demonstration, the power supply system and inverter system would be more stable and also promoting its efficiency.

Research about VVVF direct subways Secondary source unit(SIV)180KVA for using Filter Capacitor(FC) maintenance & limit of use (VVVF 직류전동차의 보조전원장치(SIV)180KVA용에 사용되는 필터콘덴서(FC) 유지보수 및 사용한도에 관한 연구)

  • Shin, Hye-Jin;Woo, Suk-Tae;Shin, Min-Ho;Son, Young-Jin
    • Proceedings of the KSR Conference
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    • 2010.06a
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    • pp.1345-1351
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    • 2010
  • First, In this essay we research about secondary source unit(SIV)180KVA is install on VVVF direct subways for using Filter Capacitor(FC) maintenance & limit of use. Vehicle's extendly use and congestly at load for Catenary voltage and load change about output change and in SIV unit there are important device named GTO Thyristor, Power Transistor Module device become short and it often happen. We analysis the fault cause and there are effects and we know the secondary source unit in filter capacitor FC1~4 input harmonic distortion component's filtering don't do correctly so we study the capacitor extend use for the component change and the outside condition by slow property changed happen and we check before and when its fault, its difficult to measure. Finally, In this research we care for this reason and we study about capacitor maintenance through control and measure ways improvement and capacitor's life spans limit of use.

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Reactive Power Compensator for Pulsed Power Electric Network of International Thermonuclear Experimental Reactor (국제 열핵융합실험로 펄스전원계통의 무효전력보상기 검증)

  • Jo, Hyunsik;Jo, Jongmin;Cha, Hanju
    • The Transactions of the Korean Institute of Power Electronics
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    • v.20 no.3
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    • pp.290-295
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    • 2015
  • Analysis and verification of reactive power compensator (RPC) for ITER pulsed power electric network (PPEN) are described in this paper. The RPC system is rated for a nominal power of 250 Mvar necessary to comply with the allowable reactive power limit value from the grid 200 Mvar. This system is currently under construction and is based on static var compensation technology with a thyristor-controlled reactor and a harmonic filter. The RPC minimizes reactive power from grid using prediction of reactive power consumption of AC-DC converters. The feasibility of the reactive power compensation was verified by assembling a real controller and implementing ITER PPEN in the real time digital simulator for the hardware-in-loop facility. When maximum reactive power is reached, grid voltage is stabilized and maximum reactive power decreased from 120 Mvar to 40 Mvar via the reactive power prediction method.

A Novel Active Anti-islanding Method for Grid-connected Photovoltaic Inverter

  • Jung, Young-Seok;Choi, Jae-Ho;Yu, Gwon-Jong
    • Journal of Power Electronics
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    • v.7 no.1
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    • pp.64-71
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    • 2007
  • This paper proposes a novel active frequency drift (AFD) method to improve the islanding detection performance with minimum current harmonics. To detect the islanding phenomenon of grid-connected photovoltaic (PV) inverters concerning the safety hazards and possible damage to other electric equipment, anti-islanding methods have been described. The AFD method that uses chopping fraction (cf) enables the islanding detection to drift up (or down) the frequency of the voltage during the islanding situation. However, the performance of the conventional AFD method is inefficient and causes difficulty in designing the appropriate cf value to meet the limit of harmonics. In this paper, the periodic chopping fraction based on a novel AFD method is proposed. This proposed method shows the analytical design value of cf to meet the test procedure of IEEE Std. 929-2000 with power quality and islanding detection time. To verify the validation of the proposed method, the islanding test results are presented. It is confirmed that the proposed method has not only less harmonic distortion but also better performance of islanding detection compared with the conventional AFD method.

A Power Control Scheme of a Fuel Cell Hybrid Power Source

  • Song, Yu-Jin;Han, S.B.;Park, S.I.;Jeong, H.G.;Jung, B.M.;Kim, G.D.;Yu, S.W.
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2008.10a
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    • pp.183-187
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    • 2008
  • This paper describes a power control scheme to improve the performance of a fuel cell battery hybrid power source for residential application. The proposed power control scheme includes a power control strategy to control the power flow of the fuel cell hybrid power system and a digital control technique for a front-end dc-dc converter of the fuel cell. The power control strategy enables the fuel cell to operate within the high efficiency region defined by the polarization curve and efficiency curve of the fuel cell. A dual boost converter with digital control is applied as a front-end dc-dc converter to control the fuel cell output power. The digital control technique of the converter employs a moving-average digital filter into its voltage feedback loop to cancel the low frequency harmonic current drawn from the fuel cell and then limits the fuel cell output current to a current limit using a predictive current limiter to keep the fuel cell operation within the high efficiency region as well as to minimize the fuel cell oxygen starvation.

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