• Title/Summary/Keyword: electric power cable

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Feasibility study on the design of DC HTS cable core

  • Sim, Ki-Deok;Kim, Seok-Ho;Jang, Hyun-Man;Lee, Su-Kil;Won, Young-Jin;Ko, Tae-Kuk
    • Progress in Superconductivity and Cryogenics
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    • v.12 no.4
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    • pp.24-30
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    • 2010
  • The renewable energy source is considered as a good measure to cope with the global warming problem and the fossil energy exhaustion. The construction of electric power plant such as an offshore wind farm is rapidly increasing and this trend is expected to be continued during this century. The bulky and long distance power transmission media is essential to support and promote the sustainable expansion of renewable energy source. DC power cable is generally considered as the best solution and the demand for DC electric power has been rapidly increasing. Especially, the high temperature superconducting (HTS) DC cable system begins to make a mark because of its advantages of huge power transmission capacity, low transmission loss and other environmental friendly aspects. Technical contents of DC HTS cable system are very similar to those of AC HTS cable system. However the DC HTS cable can be operated near its critical current if the heat generation is insignificant, while the operating current of AC HTS cable is generally selected at about 50~70% of the critical current because of AC loss. We chose the specifications of the cable core of 'Tres Amigas' project as an example for our study and investigated the heat generation when the DC HTS cable operated near the critical current by some electric and thermal analyses. In this paper, we listed some technical issues on the design of the DC HTS cable core and described the process of the cable core design. And the results of examination on the current capacity, heat generation, harmonic loss and current distribution properties of the DC HTS cable are introduced.

Electrical Properties on Kraft Insulating Paper used as HVDC Cable (HVDC용 크라프트 절연지의 전기적 특성 평가)

  • Youn, B.H.;Lee, S.J.;Kim, J.N.;Kim, D.W.;Jeon, S.I.
    • Proceedings of the KIEE Conference
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    • 2005.07c
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    • pp.2250-2252
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    • 2005
  • 본 논문은 HVDC용 크라프트 절연지의 기본 전기적 특성평가를 목적으로 온도별 역률의 변화, 절연저항 및 임펄스 절연파괴강도 등을 측정한 결과이다. 온도에 따른 크라프트 절연지의 역률은 $50{\sim}70^{\circ}C$에서 최소 값을 나타내었으며, 밀도가 낮은 시료일수록 낮은 역률을 나타내었다. 하지만, 임펄스 절연파괴 강도는 밀도가 낮을수록 저하되는 특성을 나타내어 적절한 밀도의 선정이 필요하다는 사실을 알았다. 또한, 온도 및 인가 전계에 따른 절연저항을 측정하여 크라프트 절연지의 온도상수 및 전계상수를 측정한 결과, 온도상수 ${\alpha}$$0.09{\sim}0.1^{\circ}C^{-1}$, 전계상수는 약 1.5을 얻었다. 이는 HVDC용 케이블의 설계 시 절연체의 전계분포 및 두께 산정에 기본적인 데이터를 제공할 수 있다.

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The Dynamic Rating System(I) - Real Time Conductor Temperature Monitoring System (지중송전선로 실시간 송전용량 산정 시스템 개발(I) - 실시간 도체온도 산정 시스템)

  • Nam, S.H.;Lee, C.H.;Lee, S.K.;Baek, J.H.
    • Proceedings of the KIEE Conference
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    • 2002.07c
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    • pp.1455-1457
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    • 2002
  • The real-time dynamic rating system(DRS) can provide the maximum ampacity within required periods, so it can help the transmission-line operation more safely and efficiently. Because the conductor temperature is the main limit of increasing rating current, conductor temperature monitoring(CTM) technology is the basic to DRS. In this paper, real-time CTM was developed for 345kV XLPE cable in tunnel and we have also compared the CTM result of this study with the result according to IEC 287 and JCS 168 thermal parameters.

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A field trial of helically wrapping fiber optic cable onto existing 154KV Phase conductor. (전력선을 이용한 광케이블 현장 실증 시험)

  • Shin, Keon-Hak;Lee, Won-Bin;Cho, Hong-Keun
    • Proceedings of the KIEE Conference
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    • 1987.11a
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    • pp.143-146
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    • 1987
  • Fiber optics provide a solution to the problems at interference, capacity and reliability in communication. Approximately 20 kilometera of a six-fiber, multimode, longwave($1.3{\mu}m$), graded index silica glass fiber optic cable was helically wrapped around a phase conductor at a Korea Electric Power Corporation(KEPCO) 154KV transmission line. This paper presents an economic comparison of several fiber optic cable installation alternative and discusses the characteristics at the helically wrapped fiber cable, as well as the entire installation, including high voltage phase-to-ground (PTG) end termination, and splicing. The fiber link was installed for the field trial and practical use with overhead composite optical fiber cable which installation performed a few years earlier some other location and is intended to accommodate not only telephone but also supervisory Control and Data Acquisition(SCADA), protective relaying, and telemetry functions.

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AC Breakdown Strength According to Crystallinity and Diffusion of Crosslink By-products by Annealing of XLPE (XLPE의 열처리에 의한 결정화도, 가교부산물의 확산에 따른 교류파괴전압 특성)

  • Kim, Young-Ho;Lee, Sang-Jin;Lee, Seung-Yop;Choi, Myung-Kyu
    • Proceedings of the KIEE Conference
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    • 2000.07c
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    • pp.1608-1610
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    • 2000
  • In this work, the effect of annealing on physical and electrical properties of XLPE cable insulation was investigated. One sample was non-annealed and the other two samples were treated under air circulated oven at 80$^{\circ}C$ for five and ten days. In the DSC patterns of annealed specimen, new peaks appeared at near 80$^{\circ}C$ as a proof of thermal history. The degree of crystallinity increased by annealing effect. In the FT-IR spectrums, the change of absorbances to acetophenone and cumyl alcohol were observated according to the radial direction of cable insulation. They slowly diffused into both semi-conductive layer of the cable in proportion to annealing time and lastly led to near equilibrium state through cable insulation. The AC breakdown strength did not increased but the values were stabilized by effects of crystallinity and diffusion of by-products.

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The solution for preventing the expansion of cable joint caused by methane($CH_4$) gas to Water proof type of power cable (도체 수밀형 전력케이블의 가교잔사 가스에 의한 직선접속재 부풀음 현상 방지 대책)

  • Kim, Jong-Won;Lee, Ki-Soo;Paek, Heum-Soo;Choi, Bong-Nam;Park, Hee-Cheol
    • Proceedings of the KIEE Conference
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    • 2000.07c
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    • pp.2020-2022
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    • 2000
  • The cross-linked polyethylene(herein after XLPE) insulated power cable emit the methane($CH_4$)gas in the course of chemical cross-linking process. The general stranded conductor easily discharge this methane gas through the gap of each stranded wires. But the special stranded conductor that filled with semi-conducting rubber compound to prevent water penetration which is applied to water proof type of cable(22.9kV CN/CV-W), disturb the methane gas emission. The pre-mold type cable joint shall be expanded gradually by emit of gas left in XLPE insulation. For example, sometimes the corona problem outbreak on a new power distribution line, resulted from the gap between the sleeve and semi-conductive layer of cable joint. If above mentioned problem especially happened on the way of operating. We have to shut down the line and try to discharge the methane gas in cable joint. In this point, we would like to explain the mechanism of methane gas & cable joint and our test result briefly. At last, we are pleased to introduce the solution for preventing reoccurrence of this problem.

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Analysis of Induced Voltage in Parallel Telecommunication Cables from Underground Power Cables (지중송전선로와 병행하는 기설통신선의 유도전압 분석)

  • Lim, Kwang-Sik;Chang, Woo-Seog;Han, Chang-Seok;Hong, Dong-Suk;Yoo, Jin-Seon
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.523-524
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    • 2011
  • This paper covers induced voltage in parallel telecommunication cable with underground power cable to be linked between substations. The simulation was carried out the induced voltage in telecommunication cable according to the transposition of power cables and fault location for various conditions. This study based on the EMTP/ATPDraw with actual underground cable systems while the power cables are in steady state and transient state.

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A Reliability Model of Wind Farm Considering the Complex Terrain and Cable Failure Based on Clustering Algorithm

  • Liu, Wenxia;Chen, Qi;Zhang, Yuying;Qiu, Guobing;Lin, Chenghui
    • Journal of Electrical Engineering and Technology
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    • v.9 no.6
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    • pp.1891-1899
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    • 2014
  • A reliability model of wind farm located in mountainous land with complex terrain, which considers the cable and wind turbine (WT) failures, is proposed in this paper. Simple wake effect has been developed to be applied to the wind farm in mountainous land. The component failures in the wind farm like the cable and WT failures which contribute to the wind farm power output (WFPO) and reliability is investigated. Combing the wind speed distribution and the characteristic of wind turbine power output (WTPO), Monte Carlo simulation (MCS) is used to obtain the WFPO. Based on clustering algorithm the multi-state model of a wind farm is proposed. The accuracy of the model is analyzed and then applied to IEEE-RTS 79 for adequacy assessment.

Development of the 154kV optical fiber incorporated power cable (154kV급 전력-광복합케이블의 개발)

  • Ryu, Jae-Kyu;Yoo, Sung-Jong;Jeon, Seung-Ik;Jo, Jin-Chul;Choi, Bong-Nam
    • Proceedings of the KIEE Conference
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    • 1997.07e
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    • pp.1639-1641
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    • 1997
  • In this study, We developed the 154kV optical fiber incorporated power cable which is combined optical fibers with conventional 154kV power cable. Also, we developed optical unit that optical fiber is inserted in stainless tube. The optical unit was tested, and we got good results enough to safe optical fibers. Also we put the optical fiber incorporated power cable to the test of electrical characteristics and optical characteristics, we knew that the electrical characteristics were the same characteristics as conventional 154kV power cable and the transmission loss change was almost zero. The method of optical unit connection was examined.

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A Study for Application Ventilation System of Underground cable Tunnel (II) (지하 전력구 터널의 환기시스템 적용에 관한 연구 (II))

  • Kim, Kyoung-Yul;Oh, Ki-Dae;Kim, Dae-Hong;Kim, Jong-Hwan
    • Proceedings of the Korean Geotechical Society Conference
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    • 2008.03a
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    • pp.778-783
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    • 2008
  • In this paper, numerical method was calculated on evaluation of underground ventilation system to keep servicing a fresh air. The tunnel length for simulation is 18.2 km with various located seven ventilation shaft. Generally, owing to thermal generation in cable tunnel under about 50 m depths, cable tunnel ventilation system is more important than that of other tunnels. So, we conducted that the effects of ventilation systems was simulated depending on the difference of electrical power tunnel length, the number of shaft tunnel, forced ventilation and duct was or not. Test results show that the main conditions in order to enhance the underground cable tunnel are that ventilation systems have to be designed with forced ventilation and with duct.

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