NEW PROTECTION METHOD FOR HVDC LINES INCLUDING CABLES

被引:62
作者
TAKEDA, H [1 ]
AYAKAWA, H [1 ]
TSUMENAGA, M [1 ]
SANPEI, M [1 ]
机构
[1] ELECT POWER DEV CO LTD,TOKYO,JAPAN
关键词
HVDC; LINE PROTECTION; CABLE; CHARGING CURRENT; DIFFERENTIAL RELAY; SIMULATOR;
D O I
10.1109/61.473346
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
For the third project of the Hokkaido-Honshu HVDC Link in Japan, called the HVDC Link III project (rated at 250 kVdc-1200 A-300 MW), we developed an HVDC transmission line protection method based on a new working principle that allows high-speed and highly sensitive detection of faults, enhancing reliability in the supply of electric power. In general, increasing the sensitivity of relays will lead to an increased likelihood of undesired operation whereas lowering the sensitivity will impair the responsiveness of the relays. Our proposed method meets these apparently incompatible requirements very well. Basically classified as a differential scheme, the HVDC transmission line protection method compensates for a charging and discharging current that flows through the line-to-ground capacitance at times of voltage variations caused by a line fault or by the operation of do power systems. The developed protection method is also characterized in that it uses current changes induced by voltage variations to restrain the operation of a relay. This configuration has made the proposed method far superior in responsiveness and sensitivity to the conventional protection method. A simulation using an EMTP (Electro-Magnetic Transients Program) was conducted on this method. Developed relay equipment embodying the new protection method was subjected to various verification tests, where this equipment was connected to a power system simulator, before being delivered to the BVDC Link III facility.
引用
收藏
页码:2035 / 2039
页数:5
相关论文
共 4 条
  • [1] KIMBARK EW, 1971, DIRECT CURRENT TRANS, V1, P272
  • [2] SASAKI S, 1982, AUG IEEE T POW APP
  • [3] SENDA T, CIGRE 1992 SESSION
  • [4] TAKENOUCHI T, 1980, CIGRE1403 PAP, P11