TY - JOUR
T1 - A Three-Zone Distance Protection Scheme Capable to Cope with the Impact of UPFC
AU - Kong, Xiangping
AU - Yuan, Yubo
AU - Gao, Lei
AU - Li, Peng
AU - Li, Qun
AU - Shi, Mingming
AU - Zhang, Liang
N1 - Publisher Copyright:
© 1986-2012 IEEE.
PY - 2018/4
Y1 - 2018/4
N2 - To improve the power transfer capability and reliability of the power grid, the unified power flow controller (UPFC) project has been put into operation in the western Nanjing power grid. Based on the practical project, the influence of UPFC on the distance protection is analyzed. To cope with that, the novel three-zone distance protection scheme is put forward. The zone 2 and zone 3 of the novel three-zone distance protection scheme are the same with those of conventional distance protection; however, the novel distance protection zone 1 is based on the parameter model of transmission line. According to the average value and fluctuation degree of the fault distance calculation results, the proposed distance protection zone 1 can effectively distinguish between the internal faults and external faults. More importantly, the proposed distance protection zone 1 can realize effective cooperation with the conventional distance protection zone 2 and zone 3, to construct a complete three-zone distance protection scheme and guarantee the correct operation of the novel three-zone distance protection scheme. The simulation cases in the PSCAD/EMTDC software environment verifies that the proposed three-zone distance protection has excellent performance, and would not be affected by the operational mode and control parameters of UPFC.
AB - To improve the power transfer capability and reliability of the power grid, the unified power flow controller (UPFC) project has been put into operation in the western Nanjing power grid. Based on the practical project, the influence of UPFC on the distance protection is analyzed. To cope with that, the novel three-zone distance protection scheme is put forward. The zone 2 and zone 3 of the novel three-zone distance protection scheme are the same with those of conventional distance protection; however, the novel distance protection zone 1 is based on the parameter model of transmission line. According to the average value and fluctuation degree of the fault distance calculation results, the proposed distance protection zone 1 can effectively distinguish between the internal faults and external faults. More importantly, the proposed distance protection zone 1 can realize effective cooperation with the conventional distance protection zone 2 and zone 3, to construct a complete three-zone distance protection scheme and guarantee the correct operation of the novel three-zone distance protection scheme. The simulation cases in the PSCAD/EMTDC software environment verifies that the proposed three-zone distance protection has excellent performance, and would not be affected by the operational mode and control parameters of UPFC.
KW - Fault zone identification
KW - R-L differential equation
KW - three-zone distance protection
KW - unified power flow controller (UPFC)
UR - https://www.scopus.com/pages/publications/85029161276
U2 - 10.1109/TPWRD.2017.2749309
DO - 10.1109/TPWRD.2017.2749309
M3 - 文章
AN - SCOPUS:85029161276
SN - 0885-8977
VL - 33
SP - 949
EP - 959
JO - IEEE Transactions on Power Delivery
JF - IEEE Transactions on Power Delivery
IS - 2
ER -