• Title/Summary/Keyword: voltage sag/swell

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Analysis of Transient Characteristics for Distributed Generations with the Secondary Feeders (저압배전선로에 연계된 분산전원의 과도특성 해석에 관한 연구)

  • Yoon, Gi-Gab;Rho, Dae-Seok;Kim, Eui-Hwan
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.11 no.10
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    • pp.3898-3904
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    • 2010
  • In order to analyze the transient characteristics for distributed generation located with the secondary feeders, this paper constructs a Distributed Generations Filed Test Center which can produce transient characteristics such as voltage sag, swell, interruption, harmonic and so on. And also this paper proposes the test results for the interconnection of distributed generations. The results show the effectiveness for the utility technical guidelines for distributed generations with the secondary feeders.

Influence Analysis of Grid Connected Wind Power Generator by Line Constants (풍력발전 계통연계시 선로정수에 따른 계통 영향 분석)

  • Choy, Young-Do;Kwak, No-Hong;Jeon, Young-Soo;Jeon, Dong-Hoon;Han, Byung-Moon;Yun, Dong-Jin
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.249-250
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    • 2008
  • 본 논문은 고창 전력품질 실증시험장에서 실 계통 연계를 위해 시험 중인 1.5M급 풍력발전 시뮬레이터의 선로정수를 PSCAD/EMTDC를 이용하여 모의하고 선로정수에 따른 풍력발전시스템이 계통에 미치는 영향을 분석하는데 중점을 두었다. 현재 고창에 설치되어있는 전력품질 실증시험장은 22.9kV 급전선에 SSTS(Synchronous Static Transfer Switch)의 한쪽 스위치로 직접 연결되어있으며 다른 한 쪽은 전력계통에서 발생되는 다양한 형태의 이벤트를 발생시키는 SSHG(Sag Swell Harmonics Generator)를 통하여 연결되어있다. 전력품질 향상기기중 하나인 DVR(Dynamic Voltage Restorer)는 SSTS의 부하쪽으로 직렬로 연결되어있으며 delta-wye 변압기를 통해 정류기 부하와 APF(Active Power Filter), 그리고 순저항부하와 유도성부하가 연결되어 있고 또한 SSHG를 통하여 연결된 배전선에는 DSTATCOM(Distribution Static Compensator)가 병렬로 연결되어있다. 본 논문에서는 고창에 있는 풍력발전 시뮬레이터와 동일하게 PSCAD/EMTDC로 구성하였으며 선로정수를 모델링 하기 위해 선로모델을 10Km, 20Km, 30Km, 40Km,로 설정하여 선로정수에 따른 계통영향을 분석하여 풍력발전 시뮬레이터에서 모의가능 한 선로정수 값을 제시한다.

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Development of Artificial-Intelligent Power Quality Diagnosis Algorithm using DSP (DSP를 이용한 인공지능형 전력품질 진단기법 연구)

  • Chung, Gyo-Gbum;Kwack, Sun-Geun
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.23 no.1
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    • pp.116-124
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    • 2009
  • This paper proposes a new Artificial-Intelligent(AI) Power Quality(PQ) diagnosis algorithm using Discrete Wavelet Transform(DWT), Fast Fourier Transform(FFT), Root-Mean-Square(RMS) value. The developed algorithm is able to detect and classify the PQ problems such as the transient, the voltage sag, the voltage swell, the voltage interruption and the total harmonics distortion. The 15.36[kHz] sampling frequency is used to measure the voltages in a power system. The measured signals are used for DWT, FFT, RMS calculation. For AI diagnosis of the PQ problems, a simple multi-layered Artificial Neural Network(ANN) with the back-propagation algorithm is adopted, programmed in C++ and tested in PSIM simulation studies. Finally, the algorithm, which is installed in MP PQ+256 with TI DSP320C6713, is proved to diagnose the PQ problems efficiently.

Study on the measuring system of power quality for transmission system (송전계통의 전기품질 측정 시스템에 관한 연구)

  • Kim, Yeoung-Noh;Shin, Bong-Il;Lee, Hee-Chul;Kwak, No-Hong;Jeon, Young-Soo;Park, Sang-Ho;Lee, Il-Moo
    • Proceedings of the KIEE Conference
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    • 2006.07a
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    • pp.107-109
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    • 2006
  • The additional matters appear to be considered in several aspects for building up power-quality measuring system of transmission system(high voltage system) compared to distribution system(middle or low voltage system). Like in distribution system, input signals are also received from PT and CT source of voltage and current respectively in transmission system and applied in accordance with a certain rate. In this case, very big error rate can be occurred according to the specification of the measuring system as the applying rate is bigger than in distribution system beyond comparison. In addition, when the abnormal signal occurred such as sag/swell, interruption, transient etc., power quality of other sites linked to the system also should be checked to find the accurate cause of the abnormal power-quality signals from the corresponding site. Accordingly, the accurate diagnosis on the condition of Power quality for the system depends on the way how the synchronization system is brought along for each site. This paper will suggest the solution for the most effective system building focused on how to solve the problem of the error rate and synchronization described in the above when building up the measuring system of power quality for transmission system.

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Study on the measuring system of power quality for transmission system (송전계통의 전기품질 측정 시스템에 관한 연구)

  • Kim Yeoung-Noh;Shin Bong-Il;Lee Hee-Chul;Kwak No-Hong;Jeon Young-Soo;Park Sang-Ho;Lee Il-Moo
    • Proceedings of the KIPE Conference
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    • 2006.06a
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    • pp.432-434
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    • 2006
  • The additional matters appear to be considered in several aspects for building up power-quality measuring system of transmission system(high voltage system) compared to distribution system(middle or low voltage system). Like in distribution system, input signals are also received from PT and CT source of voltage and current respectively in transmission system and applied in accordance with a certain rate. In this case, very big error rate can be occurred according to the specification of the measuring system as the applying rate is bigger than in distribution system beyond comparison. In addition, when the abnormal signal occurred such as sag/swell, interruption, transient etc., power quality of other sires linked to the system also should be checked to find the accurate cause of the abnormal power-quality signals from the corresponding. site. Accordingly, the accurate diagnosis on the condition of power quality for the system depends on the way how the synchronization system is brought along for each site. This paper will suggest the solution for the most effective system building focused on how to solve the problem of the error rate and synchronization described in the above when building up the measuring system of power quality for transmission system.

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