• Title/Summary/Keyword: Static VAR Compensator(SVC)

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Installation of 80MVA UPFC(Unified Power Flow Controller) for improving voltage stability and reducing heavy load in KEPCO power systems (한전계통의 전압안정도 향상 및 과부하 해소를 위한 80MVA UPFC(Unified Power Flow Controller) 설치)

  • Oh, Kwan-Il;Chang, Byung-Hoon;Jeon, Young-Soo;Park, Sang-Tae;Choo, Jin-Boo
    • Proceedings of the KIEE Conference
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    • 2001.05a
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    • pp.262-265
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    • 2001
  • 최근 전력계통의 과부하, 전압안정도 등의 문제에 대한 해결책으로 FACTS (Flexible AC Transmission Systems)가 대두되고 있다. FACTS 설비에는 TCSC (Thyristor-Controlled Series Capacitor), SSSC (Static Synchronous Series Capacitor)와 같은 직렬 기기와 SVC(Static Var Compensator), STATCOM(STATic COMpensator) 와 같은 병렬기기 그리고, 본 논문에서 다루는 UPFC와 같은 직 병렬기기로 나누어진다. UPFC는 SSSC와 STATCOM을 결합한 형태로 유 무효전력을 동시에 보상할 수 있는 FACTS 기기이다. 본 논문에서는 한전 계통의 전압안정도 향상과 과부하 해소를 위해 강진S/S에 설치예정인 80MVA UPFC의 하드웨어 특성과 주변계통의 특성을 소개하고, UPFC와 한전 계통의 연계방안과 시험방안을 설명한다.

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Reduction of Harmonics and Compensation of Reactive Power about Wind Power Generation System Connected to Grid (계통 연계형 풍력발전 시스템의 고조파 저감 및 무효전력 보상)

  • Kim, Yeong-Min;Hwang, Jong-Sun;Kim, Jong-Man;Park, Hyun-Chul;Song, Seung-Ho
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2002.07b
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    • pp.1093-1096
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    • 2002
  • In this paper, a novel multi voltage inverter system is proposed for reductions of harmonics, which can compensate reactive power. At first, we remove capacitor at input side for reactive power compensation. Secondly, by adding DC voltage to the filter capacitor, it can control power factors as lead-phase according to alterations of loads at power reception. Thirdly, if winding and single phase-bridge inverter(auxiliary circuit) is installed to DC power for reduction of harmonic, waveform of output voltages become to 36-steps. Thus, SVC(static var compensator) systems which can reduce harmonics are designed.

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Analysis of Flicker Mitigation Effects using IEC Digital Flickermeter based on Matlab/Simulink Simulation (Matlab/Simulink 기반의 IEC 플리커미터를 이용한 플리커 저감효과 모의에 대한 연구)

  • Jung, Jae-Ahn;Cho, Soo-Hwan;Kwon, Sae-Hyuk;Jang, Gil-Soo;Kang, Moon-Ho
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.58 no.2
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    • pp.232-238
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    • 2009
  • Flicker, also known as voltage fluctuation, is a newest problem of power quality issues, because it is caused by nonlinear loads such as electrical arc furnace and large-scale induction motor, which are country-widely used as the heavy industries of a country develop. An international standard, International Electrotechnical Commission (IEC) 61000-4-15, was published in 1997 and revised in 2003. With increasing concerns about flicker, its mitigation methods have been also studied. General countermeasures for flicker are divided into three categories: a) enhancing the capacity of supplying system, b) Series elements including series reactor and series capacitor and c) power electronic devices including static VAR compensator (SVC) and static synchronous compensator (STATCOM). This paper introduces how to mitigate the voltage flicker at the point of common coupling (PCC) and presents how to simulate and compare the flicker alleviating effects by each mitigation method, using IEC flickermeter based on the Matlab/Simulink program.

A Study on Unbalance Compensation Using SVC in Electric Railway Feeding System (전기철도 급전시스템에서 SVC를 이용한 전압불평형 보상에 관한 연구)

  • Son, Guk-Hyun;Choi, Kyu-Hyoung;Kim, Sung-Il;Jung, Ho-Sung
    • Proceedings of the KSR Conference
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    • 2011.10a
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    • pp.3124-3132
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    • 2011
  • Scott transformers have widely used to convert three phases into two phases and compensate the unbalance. Theoretically, the loads of the two secondary phases are same, no unbalance appears in the PCC(point of common coupling). But Due to the uncertainty of traction load, the unbalance are generally presented at the PCC. In this paper The amount of the voltage unbalance is expressed in the ratio of the negative sequence voltages to the positive sequence voltage. We tried to compensate the unbalance using SVC(Static Var Compensator)in an unbalance traction loads state by modeling. The SVC are installed and controlled to provide different amounts of reactive power compensation.

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A Study on the Effect Analysis of SVC with reference to Adaptive Auto-Reclosure based on Multi-Agent System (멀티에이전트 기반의 적응적 자동재폐로에 대한 SVC 영향 분석에 관한 연구)

  • Lee, You-Jin;Yeo, Sang-Min;Kim, Chul-Hwan
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.259-260
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    • 2008
  • 전력계통에서 발생하는 고장의 70-95%는 1선지락 고장이고, 1선지락 고장의 70-90%는 아크고장이다. 아크고장이 발생하였을 경우, 아크고장과 같은 일시고장을 제거하고 투입하는 방법으로 자동재폐로가 사용되며 적절한 자동재폐로는 계통의 신뢰도 향상과 안정도 유지의 역할을 수행한다. 또한 송전용량 증대 및 무효전력 제어를 위한 FACTS(Flexible AC Transmission System, 유연송전시스템)기기의 사용이 증가함에 따라 FACTS가 적용된 계통에서 자동재폐로 영향을 분석해야 할 필요가 있다. 따라서 본 논문에서는 다양한 계통 상황을 보기 위해 기존의 멀티에이전트 기반의 자동재폐로가 적용된 계통에 FACTS을 적용하여 자동재폐로시의 영향을 분석하였다. EMTP와 JADE(Java Agent DEvelopment framework)를 이용하여 자동재폐로 계통 및 멀티에이전트 시스템을 모의하였으며, SVC(Static VAR Compensator)에 의한 영향을 분석하였다.

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Characteristic Test of Static Var Compensator for PV Ultimate Consumer (태양광전원 수용가용 SVC 특성시험에 관한 연구)

  • Kim, Chan-Hyeok;Wang, Yong-Peel;Han, Hyeong-Ju;Kim, Woo-Ho;Rho, Dea-Seok
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.1092-1093
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    • 2015
  • 태양광전원이 수용가 연계하여 발전하는 경우 전원측에서 계측된 역률이 저하되는 현상이 발생 할 수 있다. 특히 전력산업구조 개편에 따라 전력공급자와 소비자 모두 전력품질과 계통의 안정성에 관심이 증대되어 계통의 역률은 중요한 부분이 되고 있다. 또한, 태양광전원 운용자들은 한전에서 제시하는 연계지점 역률 0.9이상을 만족시키도록 운용해야 하며, 연계지점의 역률의 변화에 따라 운용자의 이익에 영향을 미치므로 역률유지하기 위해 노력이 필요하다. 따라서 본 논문에서는 태양광전원이 연계되는 경우 역률이 저하되는 현상을 PSCAD/EMTDC로 이용하여 문제점을 분석하고, 태양광전원 수용가용 SVC를 개발하였다. 태양광전원용 실증시험 장치에 모의계통을 구성하여 개발한 SVC의 유효성을 입증하기 위해 특성시험을 수행하였다.

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A Study on Power-Quality Improvement in Electric Railway Power Supply System (전기철도 급전시스템에서 전력품질 향상에 관한 연구)

  • Bang, Seong-Won;Lee, Seung-Hyuk;Jung, Hyun-Soo;Jung, Chang-Ho;Kim, Jin-O
    • Proceedings of the KIEE Conference
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    • 2001.11b
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    • pp.228-230
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    • 2001
  • This paper represents the application of the Static Var Compensator(SVC) on the electric railway power supply system. The purpose of the electric equipment can be summarized as to improve electrical power quality and to maintain the voltage. This paper shows that the SVC is necessary for voltage compensation in the railway power supply system and verify effectiveness of the SVC through the simulation. In this paper, the case studies were performed with the various line length and train position.

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BESS Modeling and Application to Voltage Compensation of Electric Railway System (BESS 모델링 및 전기철도 급전계통에의 전압보상 적용)

  • Yoo, Hyeong-Jun;Son, Ho-Ik;Kim, Hak-Man
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.62 no.3
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    • pp.417-423
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    • 2013
  • The load of electric railroad can generate voltage fluctuation in the electric railway system because of high speed of the electric railroad and frequent movement and stop. This voltage fluctuation of electric railway system can cause not only voltage imbalance but also harmonic in the utility grid. Therefore the electric railroad system is in need of the reactive power compensation, such as static synchronous compensator (STATCOM) and static var compensator (SVC). Especially, the battery energy storage system (BESS) can control the real and reactive power at the same time. In this paper, the electric railway system using BESS has been modeled to show its voltage compensation effect using Matlab/Simulink.

Variable-Speed Prime Mover Driving Three-Phase Self-Excited Induction Generator with Static VAR Compensator Voltage Regulation -Part I : Theoretical Performance Analysis-

  • Ahmed, Tarek;Nagai, Schinichro;Soshin, Koji;Hiraki, Eiji;Nakaoka, Mutsuo
    • KIEE International Transaction on Electrical Machinery and Energy Conversion Systems
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    • v.3B no.1
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    • pp.1-9
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    • 2003
  • This paper deals with the nodal admittance approach steady-state frequency domain analysis of the three-phase self-excited induction generator (SEIG) driven by the variable speed prime mover as the wind turbine. The steady-state performance analysis of this power conditioner designed for the renewable energy is based on the principle of equating the input mechanical power of the three-phase SEIG to the output mechanical power of the variable speed prime mover mentioned above. Us-ing the approximate frequency domain based equivalent circuit of the three-phase SEIG. The main features of the present algorithm of the steady-state performance analysis of the three-phase SEIG treated here are that the variable speed prime mover characteristics are included in the approximate equivalent circuit of the three-phase SEIG under the condition of the speed changes of the prime mover without complex computations processes. Furthermore, a feedback closed-loop voltage regulation of the three-phase SEIG as a power conditioner which is driven by variable speed prime movers such as the wind turbine(WT) employing the static VAR compensator(SVC) circuit composed of the thyristor phase controlled reactor(TCR) and the thyristor switched capacitor(TSC) controlled by the PI controller is designed and considered for wind-turbine driving power conditioner.

A Study on the Effect of Controllers in Small Signal Stability of Power Systems (전력계통의 미소신호안정도에 미치는 제어기의 영향에 관한 연구)

  • 권세혁;김덕영
    • Journal of Energy Engineering
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    • v.5 no.1
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    • pp.72-79
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    • 1996
  • The effect of controllers-Exciter, Power System Stabilizer, and Static Var Compensator-in one machine infinite bus system is investigated in this paper. The structure of generator state matrix with controllers is represented, while the Static Var Compensator is installed in generator terminal bus. Eigen-value analysis is performed and the effects of controllers to the dominant eigenvalue in one machine infinite bus system are represented by first order eigenvalue sensitivity coefficients while the operating conditions of the system are varied. Optimization of controller parameters using first order eigenvalue sensitivity coefficients is performed by the Simplex Method. It is proved that exciter control is the most efficient method to improve stability of the system and the effect of Static Var Compensator is small, in the case of one machine infinite bus system.

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