期刊文献+

Revised Fault Free Analysis Method for Reliability Evaluation of Smart Grids

Revised Fault Free Analysis Method for Reliability Evaluation of Smart Grids
下载PDF
导出
摘要 Smart grid was proposed as a practical form of future power distribution system. Evaluating the reliability of smart grids was of great importance and significance. A revised fault tree model was proposed to distinguish and separate grid-connected operation mode and islanded operation mode of smart grids,focusing on the perspective of the consumers. A hierarchical Monte Carlo simulation method for reliability evaluation was also proposed based on the proposed fault tree model. A case of reliability evaluation for the future renewable electric energy delivery and management( FREEDM) system was carried out and analyzed. The proposed methods can be applicable to other forms of smart grids. Smart grid was proposed as a practical form of future power distribution system. Evaluating the reliability of smart grids was of great importance and significance. A revised fault tree model was proposed to distinguish and separate grid-connected operation mode and islanded operation mode of smart grids,focusing on the perspective of the consumers. A hierarchical Monte Carlo simulation method for reliability evaluation was also proposed based on the proposed fault tree model. A case of reliability evaluation for the future renewable electric energy delivery and management( FREEDM) system was carried out and analyzed. The proposed methods can be applicable to other forms of smart grids.
出处 《Journal of Donghua University(English Edition)》 EI CAS 2014年第6期870-874,共5页 东华大学学报(英文版)
关键词 smart grid fault tree analysis(FTA) Monte Carlo simulation future renewable electric energy delivery and management(FREEDM) system smart grid fault tree analysis(FTA) Monte Carlo simulation future renewable electric energy delivery and management(FREEDM) system
  • 相关文献

参考文献15

  • 1Gharavi H, Ghafurian R.Smart Grid: the Electric Energy System of the Future[J].Proceedings of the IEEE, 2011,99(6): 917- 921.
  • 2Fang X, Misra S, Xue G L, et al.Smart Grid - the New and Improved Power Grid: a Survey[J].IEEE on Communications Surveys & Tutorials, 2012, 14( 4) : 944-980.
  • 3Al-Muhaini M, Heydt G T.Evaluating Future Power Distribution System Reliability Including Distributed Generation[J].IEEE Transactions on Power Delivery, 2013, 28( 4) : 2264-2272.
  • 4Rahman F A, Varuttamaseni A, Kintner-Meyer M, et al.Application of Fault Tree Analysis for Customer Reliability Assessment of a Distribution Power System[J].Reliability Engineering &System Safety, 2013, 111: 76085.
  • 5Atwa Y M, El-Saadany E F.Reliability Evaluation for Distribution System with Renewable Distributed Generation during Islanded Mode of Operation[J].IEEE Transactions on Power Systems, 2009, 24(2): 572-581.
  • 6Bae I, Kim J.Reliability Evaluation of Customers in a Microgrid[J].IEEE Transactions on Power Systems, 2008, 23( 3) : 1416- 1422.
  • 7Brown R E, Gupta S, Cbristie R D, et al.Distribution System Reliability Assessment Using Hierarchical Markov Modeling[J].IEEE Transactions on Power Delivery, 1996, 11 (4): 1929- 1934.
  • 8Wang P, Billinton R.Time Sequential Distribution System Reliability Worth Analysis Considering Time Varying Load and Cost Models[J].IEEE Transactions on Power Delivery, 1999, JA(3); 1046-1051.
  • 9Cepin M.Analysis of truncation limit in probabilistic safety assessment[J].Reliability Engineering & System Safety, 2005, 87(3): 395-403.
  • 10Lee W S, Grosh D L, Tillman F A, et al.Fault Tree Analysis, Methods, and Applications-a Review[J].IEEE Transactions on Reliability, 1985, R-34(3): 194-203.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部