박사

DC 대용량 고온 초전도 전력케이블의 신뢰성 검증을 위한 성능 평가기술 개발에 관한 연구 = A Study on Qualification tests for Applying High Power DC HTS Cable into Real Grid

양병모 2016년
논문상세정보
' DC 대용량 고온 초전도 전력케이블의 신뢰성 검증을 위한 성능 평가기술 개발에 관한 연구 = A Study on Qualification tests for Applying High Power DC HTS Cable into Real Grid' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 응용 물리
  • AC HTS cable
  • DC HTS cable
  • DC 고온 초전도 전력케이블
  • ac loss
  • demonstration
  • hts
  • hvdc
  • load cycle
  • qualification
  • thermal cycle
  • 부하주기
  • 신뢰성 평가
  • 실계통 적용
  • 열주기
  • 임계전류
  • 초전도 전력케이블
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
4,826 0

0.0%

' DC 대용량 고온 초전도 전력케이블의 신뢰성 검증을 위한 성능 평가기술 개발에 관한 연구 = A Study on Qualification tests for Applying High Power DC HTS Cable into Real Grid' 의 참고문헌

  • KS B 5203 버니어 켈리퍼스
  • KS C 3004 난연성 시험
  • KS B 6730 내압시험
  • KS C 5101 동 및 동합금봉
  • KS C 2345 전력케이블용 절연지
  • KS C 6111-1 초전도 전력케이블의 직류 임계전류 측정 방법
  • ES 8130-0001(전선포장용 목재리일)에 따른다
  • JEC 208 특별고압가교폴리에틸렌 케이블의 고전압시험법인용규격
  • 지중송전 설계기준 DS-6100
  • 한국전력공사
    제5차 전력수급기본계획 관련 장기송배전설비계획 ~2024), 2011. 3 [2010]
  • “초전도케이블 시험장치”
    박진우 양병모 특허등록(1014869930000 [2015]
  • “초전도용어사전”
    초전도용어사전 발간위원회 (사)한국초전도 저온공학회 [2010]
  • “직류고전압 전력장치의 직류부하 시험장치”
    박진우 양병모 특허출원 (10, 2012.09.18.) [2012]
  • “전류형 80 kV HVDC 시스템 설계 개발”
    이욱화 년도 대한전기학회 하계학술대회 논문집 2012년 7월 [2012]
  • “Testing of superconducting cable systems,” CIGRE, Paris, France, TB538, Sep. 2013.
  • “Recommendations for testing DC extruded cable systems for power transmission at a rated voltage up to 500 kV,” CIGRE, Paris, France, Tech. Brochure 496, Apr. 2012.
  • “Program on technology innovation: A superconducting DC cable,” Elect. Power Res. Inst., Palo Alto, CA, USA, Final Rep., 2009.
  • “Measurement method for the DC critical current of superconducting power cables,” KS C 6111-6, 2009.
  • “Lide, David R. CRC Handbook of Chemistry and Physics. Boca Ranton, Fl: CRC Press, 1994”
    80 K 기준. (출처) http://hypertextbook.com/facts//BridgetRitter.shtml [2004]
  • “HVDC System 적용 Double-tuned 필터의 설계방법 연구”
    이희진 대한전기 학회논문지 61권 9호, 년 9월 [2012]
  • www.amsc.com, “Superconducting Transmission Power Cable”
  • Y. Xin et al., “Introduction to China’s first live grid installed HTS power cable system,” IEEE Trans. Appl. Supercond., vol. 15, no. 2, pp. 1814–1817, Jun. 2005.
  • X. Liang et al., “Design of a 380 m DC HTS power cable,” IEEE Trans. Appl. Supercond., vol. 20, no. 3, pp. 1259–1262, Jun. 2010.
  • W. Hassenzahl, S. Eckroad, P. Grant,B. Gregory, and S. Nilsson, “A high power superconducting DC cable,” IEEE Trans. Appl. Supercond., vol. 19, no. 3, pp. 1756–1761, Jun. 2009.
  • V. E. Sytnikov, “HTS DC cable line project: On-going activities in Russia,” IEEE Trans. Appl. Supercond., vol. 23, no. 3, Jun. 2013, Art. ID. 5401904.
  • U Astrom, L. etc. “ Power Transmission with HVDC at voltage above 600kV”, PES Inaugral Conference and Exposition in Africa, pp.44-50, July 2005
  • T. Masuda et al., “Design and experimental results for Albany HTS cable,” IEEE Trans. Appl. Supercond., vol. 15, no. 2, pp. 1806–1809, Jun. 2005.
  • T. Fujii et al., “Recent progress of experiment on DC superconducting power transmission line in Chubu University,” IEEE Trans. Appl. Supercond., vol. 19, no. 3, pp. 1778–1781, Jun. 2009.
  • S. Honojo et al., “Verification test of a 66kV high-Tc superconducting cable system for practical use,” in Proc. CIGRE, 2002, pp. 21–202.
  • S. Dai, “Testing and demonstration of a 10-kA HTS DC power cable,” IEEE Trans. Appl. Supercond., vol. 24, no. 2, Apr. 2014, Art. ID. 5400104.
  • RS 6145-0034 22
    9kV 트리억제형 전력케이블
  • Paola Bresesti, etc, “ HVDC connection of offshore wind farm to the transmission system”, IEEE Trans. on energy conversion, vol. 22, no. 1, 2007
  • PSS/E Manual
  • PSCAD/EMTDC Manual
  • Masayuki Hirose, "Hihg-Temperature Superconducting (HTS) DC Cable, SEI technical review, Jan. 2009
  • Makoto Hamage, “Status of a 200-meter DC superconducting power transmission cable after cooling cycles,” IEEE Trans. Appl. Supercond., vol. 23, no. 3, Jun. 2013, Art. ID. 5400204 .
  • M.P. Bahrman, P.E, “HVDC transmission overview”, T&D conference and Exposition, pp.1-7, Apr. 2008
  • KS C 4311의 9.13항(부분방전시험), KS C 4311의 9
    12항(소음시험)
  • KS C 3404 22
    9kV 동심중성선 전력케이블(ES6145-0019와 동일)
  • K.-S. Ryu, “Status of HTS power application in Korea,” presented at the 9th Annu. KEPRI-EPRI Supercond. Conf., Daejeon, South Korea, Nov. 2009.
  • J.-G. Kim et al., “Loss characteristic analysis of HTS DC power cable using LCC based DC transmission system,” IEEE Trans. Appl. Supercond., vol. 22, no. 3, Jun. 2012, Art. ID. 5801304.
  • J. Park, B. Yang, “Reliability test recommendations of transmission level HTS power cable,” J. Korea Inst. Appl. Supercond. Cryogenics, vol. 12, no. 3, pp. 29 –33, Sep. 2012.
  • J. Maquire et al., “Installation and testing results of Long Island transmission level HTS cable,” IEEE Trans. Appl. Supercond., vol 19, no. 3, pp. 1692–1697, Jun. 2009.
  • IEC 61462 Composite insulators
  • IEC 60949 Calculation of thermally permissible short-circuit currents
  • IEC 60815 Creepage distance
  • IEC 60502-2 Power Cables with Extruded Insulation
  • IEC 60228 Conductors of insulated Cable
  • IEC 60141-1 Oil-Filled, Paper-Insulated, Metal Sheathed Cables and Accessories for Alternating Voltages up to and Including 400 kV
  • IEC 60071 Insulation Co-ordination
  • IEC 60060-1 High-voltage test techniques, (Part1) General definitions
  • H. Yumura, “Update of YOKOHAMA HTS cable project,” IEEE Trans. Appl. Supercond., vol. 23, no. 3, Jun. 2013, Art. ID. 5402306.
  • ES 6145-0019 22
    9kV 동심중성선 전력케이블
  • D. Zhang, “Testing results for the cable core of a 360 m/10 kA HTS DC power cable used in the electrolytic aluminum industry,” IEEE Trans. Appl. Supercond., vol. 23, no. 3, Jun. 2013, Art. ID. 5400504.
  • CGA S-1.3, Pressure Relief Device Standards, Part 3
  • B. Yang, “Qualification Test of a 80kV 500MW HTS DC cable for applying intor real grid“, IEEE Trans, Appl. Supercond., Vol. 25, No.3, June 2015
  • B. Yang, “Field demonstration and test evaluation of an HTS cable in South Korea,” Proc. 9th Annu. KEPRI-EPRI Supercond. Conf., pp. 299–325, Nov. 2009.
  • ASME Boiler & Pressure vessel code section Ⅷ, Division 1
  • AEIC CS5-94 Spec. for XLPE Insulated Shielded Power Cables