[1]
C. Singh, A.D. Patton, Protection system reliability modeling: unreadiness probability and mean duration of undetected faults, IEEE Transactions on Reliability,vol 29, pp.339-340, (1980).
DOI: 10.1109/tr.1980.5220863
Google Scholar
[2]
LI Wenyuan, Risk assessment of power systems: models, methods and applications, Beijing: Science Publishing Company, pp.242-245, (2006).
Google Scholar
[3]
YU Xingbin, Singh Chanan. Power system reliability analysis considering protection failures , IEEE Power Engineering Society Summer Meeting, pp.1811-1820, Chicago USA, (2002).
DOI: 10.1109/pess.2002.1043514
Google Scholar
[4]
LI Yongli, LI Zhizhong, YANG Wei. Study of reliability and optimal routine test interval of protective relays. , Proceedings of the CSEE, 2001, vol 21, pp.63-65.
Google Scholar
[5]
SUN Fushou , WANG Xionghai. A new method for reliability analysis of protection in power systems. , Automation of Electric Power Systems, 2006,vol 30 , pp.32-35.
Google Scholar
[6]
Zhou Yulan, Zhan Rongrong, Shu Zhihuai, Cheng Xiao. Operation Analysis of Domestic Protection Relaying and Security Control Equipment of Electric Power System in 2003. , Power System Technology , 2004,vol 28 , pp.42-48.
Google Scholar
[7]
R. Billinton,M. Fotuhi-Firuzabad, and T.S. Sidhu.Determination of the optimum routine test and self-checking intervals in protective relaying using a reliability model., IEEE Transaction. Power Systems,2002,vol 17 , pp.663-669.
DOI: 10.1109/tpwrs.2002.800871
Google Scholar
[8]
Zeng Ke'e. Research on operation situation and reliability indices of protective relays in power system, Power System Technology, 2004, vol 28 , pp.83-85.
Google Scholar
[9]
Wang Qingliang, Hou Yuanbin,Fu Zhouxing, Li Zhong. Reliability assessment of protective relaying based on operation risk theory, , Advanced Technology of Electrical Engineering and Energy, 2009. vol 28, pp.29-33.
Google Scholar
[10]
Yan Guohua, Ye Xiuli, Reliability Estimation of Microprocessor-Based Automatic Protection Software in Power Plants and Its Improvement, Power System Engineering, 1997, vol 13, pp.50-52.
Google Scholar
[11]
He jiali, Guo Zheng, Yang Xiaojun, Li Yongli. Reliability and dynamic performance simulation of protective relayings, Power System Technology, 2004, vol 28 , pp.18-22.
Google Scholar
[12]
GuoYongji, Reliability Theory and Application of Electric Power System. Beijing: Qinghua Publishing Company, pp.91-115, (1987).
Google Scholar
[13]
Chen Shaohua,Ma Biyan,Lei Yu.Integrative and quantitative calcuation of reliability for relay protection system, Automation of Electric Power Systems,2007,vol 31,pp.111-115.
Google Scholar
[14]
Wang Gang, Ding Mao-sheng, Li Xiao-hua, Xiao Lin.Reliability analysis of digital protection, Proceedings of the CSEE,2004,vol 24 , pp.47-52.
Google Scholar
[15]
WANG Shuchun. Markov model for reliability analysis of dual-redundant relays, Relay, 2005, vol 23,pp.6-10.
Google Scholar
[16]
XIONG Xiaofu, OUYANG Qianfang, ZHOU Jiaqi, Tian Juanjuan, Probabilistic Model for the Relay Protection System's Correct Failure Removal, Automation of Electric Power Systems, 2007, vol 31 , pp.12-15.
Google Scholar
[17]
ZHANG Xue-song, WANG Chao, CHENG Xiao-dong, Reliability Analysis Model for Protective Relaying System of UHV Power Network Based on Markov State-Space Method, Power System Technology, 2008, vol 32,pp.94-99.
Google Scholar
[18]
SHEN Zhij ian , X IONG Xiaofu , ZHOU Jiaqi , ZHAO Yuan , L U Ji ping, An Algorithm for Relay Protection System Failure Probabil ity, 2009, vol 33, pp.5-8, 97.
Google Scholar
[19]
SHEN Zhijian, LU Jiping, ZHAO Yuan, Zhou Jiaqi. Operational risk evaluation model of stepped current protection, ,Proceedings of the CSEE, 2008, vol 28 , pp.70-77.
Google Scholar
[20]
SHEN Zhijian, LU Jiping, ZHAO Yuan, Zhou Jiaqi, Reliability Evaluation Model of Percentage Differential Protection Criteria for Transformers, Power System Technology, 2008, vol 32, pp.14-18.
Google Scholar
[21]
SHEN Zhijian, ZHOU Jiaqi, LU Jiping, ZHAO Yuan,XIONG Xiaofu, Operational Risk Evaluation Model of Distance Protection, Automation of Electric Power System, 2008, vol 32, pp.7-11.
Google Scholar