Single-Phase Adaptive Reclosure Based onReactive Power of Sequence Components
Luo Xunhua1 Huang Chun1 Pan Zhimin2 Liu Kun2 Liang Yongchao2
1.College of Electrical Engineering & Information Technology Hunan University Changsha 410082 China; 2.Hunan Electric Examine and Repair Company Changsha 410004 China
Abstract:This paper proposed an method for single-phase adaptive resclosure based on the reactive power of sequence components for extra high voltage (EHV) transmission lines without shunt reactors.After circuit breaker tripping the fault phase line, for the permanent fault, the voltages and currents of the fault line rapidly get into the steady state, and the reactive power of sequences components becomes almost a constant. However, in the secondary arc stage of transient fault, affected by the arc elongation, the arc voltage and the fault phase voltage increase. Therefore the positive sequence and negative sequence components of the reactive power continue to vary on the contrary way.According to this phenomenon, The rate of variation of positive sequence and negative sequence reactive power components at the faulted line side is used to distinguish fault nature. In the moment of arc extinction, the angle of the faulted phase voltage lags 90°, and then the positive sequence and negative sequence reactive powers have different polarity transitions. According to these phenomena, a new approach based on the reactive power of sequence components is used to identify the fault nature and capture the arc extinction time of the transient fault. The method is simple, hardly influenced by fault resistance and fault distance, and can be utilized in heavy load lines. EMTP simulations have verified its correctness and effectiveness.
罗勋华,黄纯,潘志敏,刘琨,梁勇超. 基于序分量无功功率的单相自适应重合闸[J]. 电工技术学报, 2016, 31(11): 149-156.
Luo Xunhua Huang Chun Pan Zhimin Liu Kun Liang Yongchao. Single-Phase Adaptive Reclosure Based onReactive Power of Sequence Components. Transactions of China Electrotechnical Society, 2016, 31(11): 149-156.
[1] 梁振峰,索南加乐,宋国兵,等.输电线路自适应重合闸研究综述[J].电力系统保护与控制,2013,41(6):140-147. Liang Zhenfeng,Suonan Jiale,Song Guobing,et al.Research review of adaptive reclosure in transmission lines[J].Power System Protection and Control,2013,41(6):140-147. [2] 索南加乐,孙丹丹,付伟,等.带并联电抗器输电线路单相自动重合闸永久故障的识别原理研究[J].中国电机工程学报,2006,26(11):75-81. Suonan Jiale,Sun Dandan,Fu Wei,et al.Identification of permanent faults for single-phase auto-reclosure on transmission lines with shunt reactors[J].Proceedings of the CSEE,2006,26(11):75-81. [3] 李斌,李永丽,盛鹍,等.并联电抗器的超高压输电线单相自适应重合闸研究[J].中国电机工程学报,2004,24(5):52-56. Li Bin,Li Yongli,Sheng Kun,et al.The study on single-pole adaptive reclosure of EHV transmission lines with the shunt reactor[J].Proceedings of the CSEE,2004,24(5):52-56. [4] 刘浩芳,王增平,刘俊岭.带并补的超高压输电线路单相自适应重合闸新判据[J].电力系统自动化,2007,31(24):62-66. Liu Haofang,Wang Zengpin,Liu Junling.A new criterion for single-phase adaptive reclosure of shunt reactor compensated EHV transmission lines[J].Automation of Electric Power Systems,2007,31(24):62-66. [5] 梁振峰,索南加乐,康小宁,等.利用自由振荡频率识别的三相重合闸永久性故障判别[J].中国电机工程学报,2013,33(7):124-130. Liang Zhenfeng,Suonan Jiale,Kang Xiaoning,et al.Permanent faults identification using free oscillation frequency for three-phase reclosure on transmission lines with shunt reactors[J].Proceedings of the CSEE,2013,33(7):124-130. [6] 索南加乐,梁振峰,宋国兵,等.自适应熄弧时刻的单相重合闸的研究[J].电力系统保护与控制,2013,40(5):37-41. Suonan Jiale,Liang Zhenfeng,Song Guobing,et al.Study of single-phase reclosure with adaptive secondary arc extinction[J].Power System Protection and Control,2013,40(5):37-41. [7] 兰华,艾涛,李扬.经验模态分解在单相自适应重合闸中的应用[J].电力系统保护与控制,2010,38(12):35-39. Lan Hua,Ai Tao,Li Yang.Application of EMD on single-pole adaptive reclosure of transmission[J].Power System Protection and Control,2010,38(12):35-39. [8] 郭相国,张保会.自适应自动重合闸现状与发展[J].继电器,2004,32(16):77-84. Guo Xiangguo,Zhang Baohui.Present achieve-ments and prospects of adaptive auto-reclosure[J].Relay,2004,32(16):77-84. [9] 李斌,李永丽,黄强,等.单相自适应重合闸相位判据的研究[J].电力系统自动化,2003,27(22):41-44. Li Bin,Li Yongli,Huang Qiang,et al.Study on phase criterion for single-pole adaptive reclosure[J].Automation of Electric Power Systems,2003,27(22):41-44. [10]李斌,李永丽,曾治安,等.基于电压谐波信号分析的单相自适应重合闸[J].电网技术,2002,26(10):53-57. Li Bin,Li Yongli,Zeng Zhian,et al.Study on single-pole adaptive reclosure based on analysis of voltage harmonic signal[J].Power System Technology,2002,26(10):53-57. [11]Radojevic Z M,Shin J R.New digital algorithm for adaptive reclosing based on the calculation of the faulted phase voltage total harmonic distortion factor[J].IEEE Transactions on Power Delivery,2007,22(1):37-41. [12]Khorashadi Z H,Li Z.Design of a novel phasor measurement unit-based transmission line auto reclosing scheme[J].IET Generation Transmission & Distribution,2011,5(8):806-813. [13]Ozgur K,Hocaoglu M H.An adaline based arcing fault detection algorithm for single-pole autoreclosers[J].Electric Power Systems Research,2011,81(1):367-376. [14]Khodadadi M,Noori M R,Shahrtash S,et al.A non communication adaptive single-pole autoreclosure scheme based on the ACUSUM algorithm[J].IEEE Transactions on Power Delivery,2013,28(4):2526-2533. [15]Zadeh M R D,Voloh I,Kanabar M,et al.An adaptive HV transmission lines reclosing based on voltage pattern in the complex plane[C]//65th Annual Conference for Protective Relay Engineers,College Station,TX,2012:85-95. [16]Jamali S,Parham S.New approach to adaptive single-pole auto-reclosing of power transmission lines[J].IET Generation Transmission & Distribution,2010,4(1):115-122. [17]Elkalashy N I,Darwish H A,Taalab A M I,et al.An adaptive single pole autoreclosure based on zero sequence power[J].Electric Power Systems Research,2007,77(5):438-446. [18]Kizilcay M,Pniok T.Digital simulation of fault arcs in power systems[J].European Transactions on Electrical Power,1991,1(1):55-59. [19]Johns A T,Aggarwal R K,Song Y H.Improved technique for modeling fault arcs on faulted EHV transmission systems[J].IET Generation Transmission & Distribution,1994,141(2):148-154. [20]Prikler L,Kizilcay M,Ban G,et al.Modeling secondary arc based on identification of arc parameters from staged fault test records[J].International Journal of Electrical Power and Energy Systems,2003,25(8):581-589.