• Title/Summary/Keyword: 송배전

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Portable Equipment for Partial Discharge Diagnosis of On-site 22.9 kV XLPE Cable (실선로 22.9kV XLPE 케이블 진단을 위한 포터블 부분방전 진단장치)

  • Lee, Yong-Sung;Kim, Jung-Yoon;Lee, Hyun-Sun;Jung, Sung-Man;Lee, Chang-Soo
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.1449-1452
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    • 2007
  • 배전 케이블 부분방전 측정에서는 외부노이즈, 코로나가 동반되어 검출되고 있다. 특히, 단말부의 부분방전측정에서는 부분방전 현상이 크게 발생하여 측정될 경우 다른 상에서도 유입되어 검출되는데 코로나나 외부의 노이즈가 크게 유입될 경우 진단의 어려움이 있다. 더불어 각 상의 위상을 직접검출이 어려운 송배전 케이블의 단말에서는 유기된 신호의 상을 찾는데도 어려움을 주고 있다. 이러한 문제를 반영하여 현장 측정이 용의하도록 이동형 포터블 진단장치를 개발하였다. 3개의 HFCT 센서를 사용하여 3상을 동시 측정할 수 있도록 하였다. 전원 분압 트리거 회로와 전류 변류 트리거 회로를 사용하여 위상 분석을 병행하였다. 실선로의 배전 케이블 부분방전 진단의 효율적 수행을 위해 개발된 본 장비를 현장 적용하였으며 내장된 PRPD 분석법이 가능하였으며 S/W 노이즈 게이팅을 적용하여 다른상에서 유기되는 신호를 제거하여 진단결과의 신뢰성을 높일 수 있었다.

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Quench/recovery test results of the YBCO coated conductors(CCs) having various stabilizer thicknesses (YBCO coated conductors(CCs)의 안정화재 두께 변화에 따른 quench/recovery 특성 분석에 관한 연구)

  • Kwon, N.Y.;Kim, H.S.;Kim, K.L.;Kim, K.J.;Yim, S.W.;Kim, H.R.;Hyun, O.B.;Lee, H.G.
    • Progress in Superconductivity and Cryogenics
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    • v.11 no.3
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    • pp.10-14
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    • 2009
  • Since a stabilizer of YBCO coated conductor (CC) plays a very important role of bypassing over-current and transferring heat generated in the moment of fault, it is one of big issues to determine the material of the stabilizer and its dimension for the high performance of the HTS power application system. Especially, in the case of a superconducting fault current limiter (SFCL), which requires it to react immediately to the occurrence of fault, characteristics of stabilizer are decisive in limiting fault current and recovering superconducting properties during and after quenching. In this paper, the quench / recovery characteristics of YBCO CCs with various thickness of stabilizer were analyzed. The quench/recovery test carried out at 20 $V_{rms}$, 5 cycles (60 Hz) and results showed that as the thickness of the stabilizer decreased, both the final approach temperature and the recovery time decreased.

Reliability Test Recommendations of Transmission Level HTS Power Cable (송전급 초전도케이블 신뢰성평가를 위한 시험방법)

  • Park, J.;Yang, B.;Kang, J.;Cho, J.;Lee, S.;Shim, K.;Kim, S.
    • Progress in Superconductivity and Cryogenics
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    • v.12 no.3
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    • pp.29-33
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    • 2010
  • For last 10 years, there are big progress and many efforts in the development of HTS power equipments by some country including South Korea. Especially HTS cable system is the strongest candidate among them from the viewpoint of applying to real grid, because of the feature of it, compact and large capacity. In South Korea, transmission level 154kV, the world top voltage class, HTS cable system was installed and has been tested in KEPCO Gochang Underground Cable Test Field since the early of 2010 in order to meet test requirements made by KEPCO, the only grid company in South Korea. The type test of it will be completed by October 2010 and subsequently long-term load cycle test will be performed during 6 months. Also in the near future, KEPCO has a plan to demonstrate transmission level HTS cable system in real grid, in order to meet practical requirements and confirm the feasibility of it. This paper says the test plan of transmission level 154kV HTS cable system and the way how to test it.

A Study on the Algorithm for Multi-Functional Protection Devices in Distribution Systems with New Energy Sources (신 에너지전원이 연계된 배전계통의 통합 보호기기의 알고리즘 개발에 관한 연구)

  • Yoon, Gi-Gab;Kang, Dae-Hoon;Rho, Dae-Seok
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.10 no.9
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    • pp.2253-2260
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    • 2009
  • The typical distribution systems have the power flow from distribution substations (sources) to customers (load) only as one direction. However, in the case where new energy power sources are connected to distribution systems, the output variations of new energy sources to distribution systems, which is so called reverse power flow, may cause the bi-directional power flow. So, the reverse power flow has severe impacts on typical power system, for example power quality problems, protection coordination problems, and so on. Therefore, this paper proposes the algorithm for Multi-functional protection devices in distribution systems in the case where new energy sources are interconnected. The proposed algorithm is verified to show the effectiveness by simulating and experimenting the prototype systems.