• 제목/요약/키워드: Lightning protection system

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Statistical Analysis of Lightning-Induced Voltages on Subscriber Telecommunication Lines in Korea

  • Oh, Ho-Seok;Park, Dong-Chul
    • Journal of electromagnetic engineering and science
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    • 제8권4호
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    • pp.148-152
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    • 2008
  • This paper describes the characteristics of lightning-induced voltages on subscriber telecommunication lines in Korea. Lightning parameters such as peak voltage, rise time, decay time, and steepness of the wave front were statistically analyzed from the measured results obtained using a waveform memory system. An induced voltage measurement system was also developed and installed at 286 sites in Korea to collect the induced voltage data. The distributions of lightning-induced voltages were also analyzed using these data.

철근콘크리트 구조물 내의 철근을 활용한 피뢰설비 인하도선의 설치방법에 관한 연구 (A Study on the Installation Method of Down Conductors of the Lightning Protection System, using Rebar in Reinforced Concrete Structures)

  • 이영철;이주철
    • 조명전기설비학회논문지
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    • 제27권7호
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    • pp.101-107
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    • 2013
  • IEC Standards on lightning protection system specify the use of natural components as down conductors. This paper provides an analysis of problems revealed from our field investigation and survey conducted for the relevant experts in the construction site where natural components are used as down conductors. It also considers a suitable condition for installing natural components as down conductors in accordance with the latest version of the standard. As a result, when rebars of reinforced concrete are used as down conductors, vertical bars consisting of rebars of which thickness is not less than D13($127mm^2$) should be connected by welding, clamps or bound joints, using appropriate connection components conforming to IEC Standards. The lashed joints, however, shall not be applied for down conductors.

낙뢰 간접영향에 대한 항공전자장비의 환경시험 (Environmental Test of Avionics Equipment for Lightning Indirect Effect)

  • 정덕영;양현덕
    • 항공우주시스템공학회지
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    • 제7권2호
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    • pp.55-59
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    • 2013
  • Before avionics equipment are installed in aircraft, several environmental tests such as temperature, vibration, lightning, fire etc. must be conducted. One of the environmental tests is to substantiate protection designs of lightning indirect effect. It can be showed through RTCA DO-160G, section22 "Lightning Induced Transient Susceptibility" test. An additional test of aircraft level is required as well after installation of avionics equipment.

항공기 낙뢰 전산 시뮬레이션 및 보호시스템 설계 (Computational Simulation of Lightning Strike on Aircraft and Design of Lightning Protection System)

  • 김종준;백상태;송동건;명노신
    • 한국항공우주학회지
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    • 제44권12호
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    • pp.1071-1086
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    • 2016
  • 항공기는 결빙, 난기류, 낙뢰 등 환경적 요인에 의해 안전성을 위협받는다. 그 중 낙뢰는 항공기에 강한 전류와 전압을 유입시켜 고온의 열과 자기장을 발생시키므로 항공기 안정성에 큰 위협이 된다. 본 연구에서는 낙뢰의 발생원리 및 항공기 낙뢰 피격 메카니즘을 설명하고 항공기에 대한 낙뢰의 직접, 간접 영향성을 다룬다. 먼저 항공기 낙뢰 지침서인 ARP를 분석하여 항공기 낙뢰모사와 부착위치에 대한 분석을 진행하였으며, 이를 전산 시뮬레이션에 적용하였다. 또한 ABAQUS 소프트웨어를 활용한 열적, 전기적 시뮬레이션을 통해 연료탱크의 낙뢰 영향성 분석 및 낙뢰보호시스템 설계를 진행하였다. 그리고 Maxwell 방정식에 기초한 EMA3D 소프트웨어를 활용하여 항공기 전기체의 전류 흐름에 대한 전산수치해석을 진행하였다.

지능형 뇌보호 설비 관리 시스템 개발 (Development of Intelligent Lightning Protection Management System)

  • 이태형;조성철;엄주홍
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2008년도 제39회 하계학술대회
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    • pp.1336-1337
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    • 2008
  • This study developed a ILPMS (intelligent lightning protection management system) to manage and mend SPD module effectively, intelligence style bonding terminal box for transmitting SPD state data, RTU(remote terminal unit) having wireless transmission facility, so that a man in service can confirm SPD state throughout its leakage current level in a central management system.

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배선 길이 변화에 따른 뇌서지 전파 특성에 대한 실험 연구 (Experimental Study on The Propagation Characteristics of Lightning Surge According to Variation of Wire Length)

  • 서호준;이동희
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제53권12호
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    • pp.616-619
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    • 2004
  • Electrical circuits with semiconductor are very weak against lightning surge. The surge protective devices for electronic circuit and AC power lines are becoming more widely used. To achieve effective method of surge protection, there are needs for correlation between lightning surge and indoor wire length or installation height of indoor wire. The aim of this present work is to investigate the propagation characteristics of lightning surge according to variation of wire length. As a consequence, the maximum voltage at the end of the open wire in proportion to length of indoor wire. Therefore this result may be raw data for establishment of surge protection system.

고속철도시스템에서 낙뢰로 인해 전차선에 유도되는 서지전압의 해석 (Analysis on Induced Surge Voltage of Electric Car Line affected by Lightning in Rapid-Transit Railway System)

  • 이성근;이건아;고광철
    • 조명전기설비학회논문지
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    • 제29권5호
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    • pp.65-70
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    • 2015
  • Lightning is one of hazards affecting the rapid-transit railway system. There are two effects, which are direct lightning surge to electric car line and induced lightning surge. Protection methods for the direct lightning surge are studied with various occasions, however, study of induced lightning surge is insufficient in spite of a large or small effects. In this paper, it is analysed the way that serge voltage is induced to electric car line by lightning strikes. By modeling the propagation process and the coupling phenomenon of electromagnetic wave produced by lightning strikes, it is achieved to make integrative circuit model combined with existing electric car model. The study is conducted into three different waveform of electromagnetic wave produced by lightning; rectangular wave, double exponential distribution wave, triangle wave. It is also simulated that the inducing serge is coupled to electric car line in an arbitrary location. The simulation results in that, when rapidly changing rectangular wave is supplied, maximum power is induced to electric car line.

송전계통 및 변전소 뇌서지 보호방안 연구 (A Study on the Lightning Surge Protection Methods on Transmission System and Substation)

  • 김재관;정채균;이종범;조한구;서재호
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제54권6호
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    • pp.279-285
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    • 2005
  • The lightning causes the damage of power system equipments as well as large power failure. Therefore, the insulation design should be established not only to decrease the damage of the facilities itself but also to increase the reliability of electric power system. This paper describes the useful way applying underbuilt ground wire and guy wire in transmission tower that safely protect the substation equipments. One or more shield wires under the phase conductor will not intercept lightning stroke, but they may improve reduce lightning voltages almost as effectively as if they were above the phase conductors. And the guy wires will mitigate the tower surge response. These would not only reduce backflashover possibility but also minimize crest and duration of surges entering the substation. EMTP is used to analyze the efficiency of the proposed methods.

22.9kV 배전선로 중성선 설치 구조에 따른 유도뢰 차폐효과 분석 (Analysis on the Induced Lightning Shielding Effect According to the Neutral Wire Installation Structure of a 22.9kV Distribution Line)

  • 김점식;김도영;박용범
    • 전기학회논문지P
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    • 제59권2호
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    • pp.191-196
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    • 2010
  • The electricity distribution system in Korea is adopting a multi-grounding system. Protection of this distribution system against lightning is performed by installing overhead ground wires over the high voltage wires, and connecting the overhead ground wires to the ground every 200 m. The ground resistance in this system is limited not to exceed $50\Omega$ and overhead ground wire and neutral wire are multiple parallel lines. Although overhead ground wire and neutral wire are installed in different locations on the same pole, this circuit configuration has duplicated functions of providing a return path for unbalanced currents and protecting the distribution system against induced lightning. Therefore, the purpose of this study is to analyze the induced lightning shielding effect according to the neutral wire installation structure of a 22.9kV distribution line in order to present a new 22.9kV distribution line structure model and characteristics. This study calculated induced lightning voltage by performing numerical analysis when an overhead ground wire is present in the multi-grounding type 22.9kV distribution line structure, and calculated the induced lightning shielding effect based on this calculated induced lightning voltage. In addition, this study proposed and analyzed an improved distribution line model allowing the use of both overhead wire and neutral wire to be installed in the current distribution lines. The result of MATLAB simulation using the conditions applied by Yokoyama showed almost no difference between the induced lightning voltage developed in the current line and that developed in the proposed line. This signifies that shielding the induced lightning voltage through overhead wire makes no difference between current and proposed distribution line structures. That is, this study found that the ground resistance of the overhead wire had an effect on the induced lightning voltage, and that the induced lightning shielding effect of overhead wire is small.

지중배전계통 보호를 위한 모의시험선로 서지특성 해석 (A Lightning Surge Analysis of Testing Line for Protection of Underground Distribution Systems)

  • 김병숙;이장근;이종범;한병성
    • 대한전기학회논문지:전력기술부문A
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    • 제55권8호
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    • pp.313-321
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    • 2006
  • This paper describes the overvoltage obtained by surge behavior analysis in testing underground distribution systems. Model systems consist of overhead distribution line and underground cable. Such model system considered various characteristics of actual distribution systems will be soon constructed at testing yard. Simulation is carried out under various states such as cable kinds, cable length, lightning wave and time, and branch circuits. Model is established by EMTP/ATPDraw. Line Constants are calculated by ATP_LCC. When the direct lightning surge strikes on conductor of overhead line, the overvoltage is calculated using EMTP/ATPDraw in many cases. Simulation results will be compared with real testing results at testing yard in the near future. The compared results will be used to establish protection methods in actual underground distribution systems.