• Title/Summary/Keyword: reactive power variation method

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Subtransmission Reduction for FAGTS Site Selection in Large Power System (대규모 전력계통에서의 하위 송전계통 축약을 이용한 FACTS 위치선정 연구)

  • Chang, Byung-Hoon;Choo, Jin-Boo;Kwon, Sea-Hyuk
    • Proceedings of the KIEE Conference
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    • 1999.07c
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    • pp.1302-1304
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    • 1999
  • This Paper Proposes the FACTS site selection method using subtransmission system reduction. A general method which uses the sensitivity of the variation in voltage and reactive Power has been used to determine the location of shunt type FACTS device, but there is a difficulty to find a proper location due to the overestimation of the effect of sub-transmission systems. Therefore, there is a need to reduce sub-transmission system for finding an effective location of shunt type FACTS devices such as SVC(Static Var Compensator), STATCOM(Static Synchronous Compesator), and so on.

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Improved Method of Maximum Loadability Estimation in Power Systems By Transforming the Distorted P-e Curve (왜곡된 P-e곡선의 변환에 의한 전력계통 최대허용부하의 향상된 추정 방법)

  • Hwang, Ji-Hwan;Choi, Byoung-Kon;Cho, Byoung-Hoon;Moon, Young-Hyun
    • Proceedings of the KIEE Conference
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    • 2000.07a
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    • pp.363-365
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    • 2000
  • This paper presents an improved method to estimate the maximum load level for heavily loaded power systems with the load-generation variation vector by using the elliptic pattern of the P-e curve. The previous study suggested a simple technique of removing e-f coupling, where only high voltage load flow solutions to calculate transforming angle of system reference is needed. The proposed algorithm is improved to require only one load flow solution at a specific load level in addition to the operating point at the beginning stage, which reduces the computation time and the iteration number of estimation. The proposed method can be efficiently applied to heaviIy loaded systems with the combination of CPFlow when the reactive power limit and ULTC are considered. In this paper, the effect of ULTC on the estimation of maximum loadability index is also investigated. The proposed algorithm is tested on New England 39 bus system and IEEE 118 bus system.

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Wireless Parallel Operation Control of N+l Redundant UPS System (독립제어구조를 갖는 N+1 모듈형 UPS 시스템의 병렬운전)

  • 조준석;한재원;최규하
    • The Transactions of the Korean Institute of Power Electronics
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    • v.7 no.5
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    • pp.499-508
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    • 2002
  • In this paper, a novel wireless parallel operation algorithm of N+l redundant UPS system with no control interconnections for load-sharing is presented. The proposed control system eliminates the sensing noise and interconnections interference of conventional parallel operation system. To reduce a reactive power deviation in wireless control method, this technique automatically compensates for inverter parameter variation and line impedance imbalances with wireless auto-tuning method. In addition, to increase reliability on transient characteristics of parallel operation, a virtual injected impedance is adopted to eliminate a circulation current among inverter modules. Simulation results are provided in this paper to prove the proposed novel wireless algorithm.

Analysis of Active Islanding Dectetion Methods for a Single-phase Photovoltaic Power Conditioning Systems (단상 계통연계형 PCS의 단독운전 검출기법 비교 분석)

  • Jung Youngseok;So Jeonghun;Yu Gwonjong;Kang Gihwan;Choi Jaeho
    • Proceedings of the KIEE Conference
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    • summer
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    • pp.1477-1479
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    • 2004
  • Increasing numbers of photovoltaic arrays are being connected to the power utility through the power conditioning systems (PCS). This has raised potential problems of network protection. If, due to the action of the PCS, the local network voltage and frequency remain within regulatory limits when the utility is disconnected, then islanding is said to occur. In this paper, the representative methods to prevent the islanding are described and a PSIM-based model and analysis of the reactive power variation (RPV) method are presented. A novel phase detector using the all-pass filter and digital phase locked loop (DPLL) is proposed especially for the single-phase PCS. Finally, this paper provides the simulation and experimental results with a single-phase 3kW prototype PCS. Islanding test method of IEEE Std. 929-2000 was performed for verification.

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Anti-islanding Method by Reactive Power Variation of Hybrid ESS with Critical Load (중요부하를 갖는 하이브리드 ESS의 무효전력 변동에 의한 단독운전방지 기법)

  • Park, Sung-Youl;Kwon, Min-Ho;Choi, Se-Wan
    • Proceedings of the KIPE Conference
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    • 2015.11a
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    • pp.79-80
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    • 2015
  • 중요부하를 갖는 하이브리드 ESS에서는 계통이상시에도 중요부하에 끊김없고 안정적인 전원을 공급해야한다. 기존 직접 전류 제어 방식은 독립운전시 전압제어를, 계통연계시 전류제어를 하기 때문에 모드전환시 과도상태가 발생하고, 단독운전 검출전에도 부하의 전압과 주파수가 변동하여 중요부하에 심각한 영향을 줄 수 있다. 본 논문에서는 모드 전환시 과도상태를 최소화하면서 단독운전 검출전에도 부하 전압과 주파수를 일정하게 유지하는 간접전류제어 기반의 인버터에서 무효전력변동 기법을 이용한 새로운 단독운전방지 기법을 제안한다.

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FACTS Application for the Voltage Stability with the Analysis of Bifurcation Theory (전압안정도 향상을 위한 FACTS의 적용과 Bifurcation이론 해석)

  • 주기성;김진오
    • The Transactions of the Korean Institute of Power Electronics
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    • v.5 no.4
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    • pp.394-402
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    • 2000
  • This paper proposes a bifurcation theory method applied for voltage stability analysis and shows the improvement of voltage stability by attaching the FACTS devices in the power system. A power system is generally expressed by a set of equations of highly nonlinear dynamical system which includes system parameters(real or reactive power). Sometimes variation of parameters in the system may result in complication behaviors which give rise to system instability. The addition of FACTS increases the range of voltage stability in the power system. The effect of FACTS which improves voltage stability are illustrated in the case studies by delaying of Unstable Hopf Bifurcation and Saddle Node Bifurcation.

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Control and Analysis of Vienna Rectifier Used as the Generator-Side Converter of PMSG-based Wind Power Generation Systems

  • Zhao, Hongyan;Zheng, Trillion Q.;Li, Yan;Du, Jifei;Shi, Pu
    • Journal of Power Electronics
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    • v.17 no.1
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    • pp.212-221
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    • 2017
  • Permanent-Magnet Synchronous Generators (PMSGs) are used widely in Wind Power Generation Systems (WPGSs), and the Vienna rectifier was recently proposed to be used as the generator-side converter to rectify the AC output voltage in PMSG-based WPGS. Compared to conventional six-switch two-level PWM (2L-PWM) converters, the Vienna rectifier has several advantages, such as higher efficiency, improved total harmonic distortion, etc. The motivation behind this paper is to verify the performance of direct-driven PMSG wind turbine system based-Vienna rectifier by using a simulated direct-driven PMSG WPGS. In addition, for the purpose of reducing the reactive power loss of PMSGs, this paper proposes an induced voltage sensing scheme which can make the stator current maintain accurate synchronization with the induced voltage. Meanwhile, considering the Neutral-Point Voltage (NPV) variation in the DC-side of the Vienna rectifier, a NPV balancing control strategy is added to the control system. In addition, both the effectiveness of the proposed method and the performance of the direct-driven PMSG based-Vienna rectifier are verified by simulation and experimental results.

Evaluation the Non-Detection Zone of Anti-Islanding Methods (단독운전검출기법의 불검출 영역에 대한 비교 고찰)

  • Lee K.O;So J.H;Jung Y.S;Yu G.J;Choi J.Y;Jung S.G;Choy I.
    • Proceedings of the KIEE Conference
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    • summer
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    • pp.1480-1482
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    • 2004
  • 계통연계형 태양광발전 시스템의 확대보급에 따라 단독운전 검출기법의 검출 성능에 대한 검증의 필요성이 대두되고 있다. 본 논문에서는 단독운전검출기법의 대표적인 능동적 검출기법인 무효전력변동기법 (reactive power variation method)과 주파수 쉬프트기법(active frequency drift method)을 IEEE Std 929-2000에서 명시된 단독운전검출 시험방법을 이용하여 단독운전검출기법의 성능 및 불검출 영역(non-detection zone)에 대하여 비교 분석하였다.

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Improved RPV(reactive-power-variation) anti-islanding method for grid-connected three-phase PVPCS (3상 계통연계형 태양광 PCS의 단독운전검출을 위한 개선된 무효전력변동기법)

  • Lee, K.O.;Jung, Y.S.;So, J.H.;Yu, B.G.;Yu, G.J.;Choi, J.Y.;Choy, I.
    • Proceedings of the KIEE Conference
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    • 2006.07b
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    • pp.1159-1160
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    • 2006
  • As the grid-connected photovoltaic power conditioning systems (PVPCS) are installed in many residential areas, this has raised potential problems of network protection on electrical power system. One of the numerous problems is an Island phenomenon. There has been an argument that because the probability of islanding is extremely low it may be a non-issue in practice. However, there are three counter-arguments: First, the low probability of islanding is based on the assumption of 100% power matching between the PVPCS and the islanded local loads. In fact, an island can be easily formed even without 100% power matching (the power mismatch could be up to 30% if only traditional protections are used, e.g. under/over voltage/frequency). The 30% power-mismatch condition will drastically increase the islanding probability. Second, even with a larger power mismatch, the time for voltage or frequency to deviate sufficient to cause a trip, plus the time required to execute the trip (particularly if conventional switchgear is required to operate), can easily be greater than the typical re-close time on the distribution circuit. And, third, the low-probability argument is based on the study of PVPCS. Especially, if the output power of PVPCS equals to power consumption of local loads, it is very difficult for the PVPCS to sustain the voltage and frequency in an island. Unintentional islanding of PVPCS may result in power-quality issues, interference to grid-protection devices, equipment damage, and even personnel safety hazards. So the verification of anti-islanding performance is strongly needed. In this paper, the authors propose the improved RPV method through considering power quality and anti-islanding capacity of grid-connected three-phase PVPCS in IEEE Std 1547 ("Standard for Interconnecting Distributed Resources to Electric Power Systems"). And the simulation and experimental results are verified.

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The Identification of Load Characteristic using Artificial Neural Network for Load Modeline (부하모델을 위한 신경회로망을 이용한 부하특성 식별)

  • 임재윤;김태응;이종필;지평식;남상천;김정훈
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.12 no.1
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    • pp.103-110
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    • 1998
  • The modeling of load characteristics is a difficult problem because of uncertainty of load. This research uses artificial neural networks which can approximate nonlinear problem to represent load characteristics. After the selection of typical load, active and reactive power for the variation of voltage and frequency is obtained from experiments. We constructed and learned ANN based on these data for component load identification. The learned ANN identified load characteristics for other voltage and/or frequency variation. In addition, the results of component load identification are presented to demonstrate the potentiality of the proposed method.method.

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