• 제목/요약/키워드: DFIG

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계통 사고발생 시 풍력발전기의 무효전력 공급 (Reactive Power Supply of Wind Turbine during Grid Fault)

  • 김원상;김영신;정병창;홍정기;최영도
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2011년도 제42회 하계학술대회
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    • pp.1350-1351
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    • 2011
  • 계통에서 사고가 발생하면 기존에는 풍력발전기의 보호를 위하여 계통에서 분리가 가능했다. 하지만, 최근에 풍력발전용 기기 한기당 용량 증가와 해상풍력의 증가로 인하여 계통으로 공급하는 풍력발전량은 지속적으로 증가하고 있기 때문에 사고발생에 따른 풍력발전의 계통과의 갑작스러운 분리는 계통의 정전사태를 발생시킬 수 있다. 따라서 전 세계적으로 풍력발전의 계통연계규정(Grid Code)를 강화하고 있는 추세이다. 특히, 계통연계규정 중 계통전압이 순간적으로 강하하였다고 하더라도 풍력발전기는 지속적으로 연계되어 있으면서 계통전압의 보상을 위하여 무효전력을 공급을 요구하고 있다. 이 기능이 저전압 극복(LVRT)기능이고 계통연계규정 중 가장 어려운 기술이다. 본 논문에서는 2MW급 이중여자 유도형 풍력발전기(DFIG)를 이용하여 계통에서 저전압이 발생했을 때 발전기를 지속적으로 계통과 연계시키면서 무효 전력을 계통에 공급할 수 있는 LVRT기능을 제안하고 실험을 통하여 검증한다.

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컴퓨터시뮬레이션과 실용량 하드웨어시뮬레이터를 이용한 계통연계 풍력발전의 성능비교분석 (Performance Comparison Analysis for Interconnected Wind Power Generator using Computer Simulation and Real-Size Hardware Simulator)

  • 윤동진;오승진;한병문;정병창;정용호;최영도;전영수
    • 전기학회논문지P
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    • 제58권3호
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    • pp.263-269
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    • 2009
  • This paper describes comparative analysis results about the dynamic interaction of interconnected wind power system using the actual-size hardware simulator and the simulation model with PSCAD/EMTDC. The hardware simulator, which is composed of 2.0MVA induction motor with drive system and 1.5MW doubly-fed induction generator, was built and tested in Go-Chang Test Site of KEPCO for analyzing the dynamic interaction with the interconnected distribution system. The operation of hardware simulator was verified through comparative analysis between experimental results and simulation results obtained by simulation model with PSCAD/EMTDC. The developed hardware simulator and simulation model could be effectively used for analyzing the dynamic interaction, which has various phenomena depending on the wind variation and the network state of interconnected power system.

Inertial Control of a DFIG-based Wind Power Plant using the Maximum Rate of Change of Frequency and the Frequency Deviation

  • Lee, Hyewon;Kim, Jinho;Hur, Don;Kang, Yong Cheol
    • Journal of Electrical Engineering and Technology
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    • 제10권2호
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    • pp.496-503
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    • 2015
  • In order to let a wind generator (WG) support the frequency control of a power system, a conventional inertial control algorithm using the rate of change of frequency (ROCOF) and frequency deviation loops was suggested. The ROCOF loop is prevailing at the initial stage of the disturbance, but the contribution becomes smaller as time goes on. Moreover, its contribution becomes negative after the frequency rebound. This paper proposes an inertial control algorithm of a wind power plant (WPP) using the maximum ROCOF and frequency deviation loops. The proposed algorithm replaces the ROCOF loop in the conventional inertial control algorithm with the maximum ROCOF loop to retain the maximum value of the ROCOF and eliminate the negative effect after the frequency rebound. The algorithm releases more kinetic energy both before and after the frequency rebound and increases the frequency nadir more than the conventional ROCOF and frequency loops. The performance of the algorithm was investigated under various wind conditions in a model system, which includes a doubly-fed induction generator-based WPP using an EMTP-RV simulator. The results indicate that the algorithm can improve the frequency drop for a disturbance by releasing more kinetic energy.

Investigation and Simulation Study on the Cascading Trip-off Fault of a Large Number of Wind Turbines in China on May 14, 2012

  • Qiao, Ying;Lu, Zong-Xiang;Lu, Ji;Ruan, Jia-Yang;Wu, Lin-lin
    • Journal of Electrical Engineering and Technology
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    • 제10권6호
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    • pp.2240-2248
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    • 2015
  • The integration of the large-scale wind power brings great challenge to the stability of the power grid. This paper investigates and studies the fault on May 14, 2012 of the large-scale cascading trip-off of wind turbines in North China. According to the characteristics of the voltage variation, the fault process is divided into three stages: the pre-event stage, the critical stage before cascading, and the cascading stage. The scenes in the fault are reproduced, using the full-size actual power system model. Simulation models of double-fed induction generators (DFIGs) and SVCs including protection settings and controller strategies are carefully chosen to find out the reason of voltage instability in each stage. Some voltage dynamic that have never been observed before in the faults of the same kind are analyzed in detail, and an equivalent voltage sensitive dynamic model of DFIG is proposed for the fast computation. The conclusions about the voltage dynamics are validated by the actual PMU observation evidence.

영구자석형 동기발전기를 이용한 풍력단지의 플리커 저감 (Flicker Mitigation in a Wind Farm by Controlling a Permanent Magnet Synchronous Generator)

  • 팜반호안;김대현;안진홍;김일환;오성보;김호찬;김세호
    • 제어로봇시스템학회논문지
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    • 제15권12호
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    • pp.1163-1168
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    • 2009
  • The power quality of wind energy becomes more and more important in connecting wind-farms to the grid, especially weak grid. This paper presents the simulation of a wind farm of a permanent magnet synchronous generator (PMSG) and a doubly fed induction generator (DFIG). Flicker mitigation is performed by using PMSG as a static synchronous compensator (STATCOM) to regulate the voltage at the point of common coupling (PCC). A benefit of the measure is that integrating two function of to control the active power flow and to reduce the voltage flicker in a wind farm. Simulation results show that controlling PMSG is an effective and economic measure in reducing the flicker during continuous operation of grid connected wind turbines regardless of short circuit capacity ratio, turbulence intensity and grid impedance angle.

풍력발전 한계운전용량에 대한 계통영향 분석 (Analysis of effect on power system considering the maximum penetration limit of wind power)

  • 명호산;김봉언;김형택;김세호
    • 한국태양에너지학회 논문집
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    • 제32권3호
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    • pp.19-25
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    • 2012
  • About supply and demand to see that you need to match, the limitations of wind power capacity is low demand and the commitment of the general generator will exist between the minimum generation. if the turbine's output can be controlled, The limitation of wind power capacity will be adopted based on instant power generation. Namely, The minimum limits of wind power generation based load operation by calculating the amount that is higher than if the output should be restricted to highest operation. in this paper, we committed to the demand for low enough that the combination of the general generator of wind power capacity to accommodate the operation of determining whether the limit is intended to. For this, power system analysis program PSS/E was used, Jeju system by implementing the model simulations were performed.

Application of Fuzzy PI Control Algorithm as Stator Power Controller of a Double-Fed Induction Machine in Wind Power Generation Systems

  • Chung, Gyo-Bum;Choi, Jae-Ho
    • Journal of Power Electronics
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    • 제9권1호
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    • pp.109-116
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    • 2009
  • This paper addresses the output control of a utility-connected double-fed induction machine (DFIM) for wind power generation systems (WPGS). DFIM has a back-to-back converter to control outputs of DFIM driven by the wind turbine for WPGS. To supply commercially the power of WPGS to the grid without any problems related to power quality, the real and reactive powers (PQ) at the stator side of DFIM are strictly controlled at the required level, which in this paper is realized with the Fuzzy PI controller based on the field orientation control. For the Sinusoidal Pulse Width Modulation (SPWM) converter connected to the rotor side of DFIG to maintain the controllability of PQ at the state side of DFIM, the DC voltage of the DC link capacitor is also controlled at a certain level with the conventional Proportion-Integral (PI) controller of the real power. In addition, the power quality at the grid connected to the rotor side of DFIM through the back-to-back converter is maintained in a certain level with a PI controller of the reactive power. The controllers for the PQ at the stator side of DFIM, the DC link voltage of the back-to-back inverter and the reactive power at the grid connected to the rotor side of DFIM are designed and simulated in the PSIM program, of which the result verifies the performance of the proposed controllers.

Stochastic Stability Analysis of the Power System Incorporating Wind Power using Measurement Wind Data

  • Parinya, Panom;Sangswang, Anawach;Kirtikara, Krissanapong;Chenvidhya, Dhirayut
    • Journal of Electrical Engineering and Technology
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    • 제13권3호
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    • pp.1110-1122
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    • 2018
  • This paper proposes an alternative method to evaluate the effect of wind power to the power system stability with small disturbance. Alternatively, available techniques for stability analysis of a power system based on deterministic methods are less accurate for high penetration of wind power. Numerical simulations of random behaviors are computationally expensive. A stochastic stability index (SSI) is proposed for the power system stability evaluation based on the theory of stochastic stability and energy function, specifically the stochastic derivative of the relative well-defined energy function and the critical energy. The SSI is implemented on the modified nine-bus system including wind turbines under different conditions. A doubly-fed induction generator (DFIG) wind turbine is characterized and modeled using measured wind data from several sites in Thailand. Each of the obtained wind power data is analyzed. The wind power effect is modeled considering the aggregated effect of wind turbines. With the proposed method, the system behavior is properly predicted and the stability is quantitatively evaluated with less computational effort compared with conventional numerical simulation methods.

Back to bock 컨버터를 갖는 가변속 풍력터빈 시스템의 모델링과 해석 (Modeling and Analysis of Variable Wind Speed Turbine System Using Back to Back Converter)

  • 김일환;강경보;김재홍;문상호;오성보;김세호
    • 조명전기설비학회논문지
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    • 제19권8호
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    • pp.150-157
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    • 2005
  • 본 논문에서는 이중여자 유도발전기의 회전자에 back to back 컨버터가 채용된 가변속 풍력터빈 시스템의 모델링과 해석을 나타내었다. 제어시스템의 특성을 파악하기 위해서 시뮬레이션에서는 Psim 프로그램을 사용하여 660[kW] 의 출력정격을 갖는 시스템을 모델로 하였다. 모델링에서는 블레이드 제어 시스템 모델과 회전자와 계통선에 연결된 컨버터 시스템을 모델링 하였다. 풍속의 변화에 따라 원하는 출력을 얻을 수 있도록 피치각을 제어하여 정격풍속 이하에서도 최대출력이 발생하도록 하였고, 정격풍속 이상에서는 회전자 속도를 일정하게 하여 정격출력을 유지할 수 있도록 하였다. 또한 무효전력을 제어하여 출력의 역률을 제어하였다. 제안한 해석방법의 타당성을 검증하기 위하여 풍속변화에 따른 모델 시스템의 시뮬레이션 결과 값들과 제주행원 풍력발전 단지에서 운용되고 있는 V47 660[kW] 시스템의 실측 결과들과 서로 비교 검증하여 제안한 해석 방법의 타당성을 입증하였다.