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基于模糊随机机会约束规划的输电可靠性裕度计算 被引量:9

Fuzzy Random Chance-constrained Programming for Quantifying the Transmission Reliability Margin
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摘要 提出了基于模糊随机机会约束规划的输电可靠性裕度的数学模型和混合智能算法。将影响输电可靠性的重要因素表述为随机变量或服从正态分布的事件,例如将发电机和线路运行状态视为服从二次型分布的离散型随机变量,将用户需求看成服从正态分布的随机事件。在不确定因素随机化的基础上,将输电可靠性裕度问题转化为等价的模糊随机优化问题,输电线路开断、发电机开断和负荷模型的等约束条件退化为随机函数、模糊函数。文中提出的求解该机会约束规划模型的混合智能算法,在IEEE30节点系统上进行了仿真计算,验证了该方法的正确性和可行性。 A fuzzy random chance-constrained programming based hybrid intelligent algorithm for quantifying the transmission reliability margin (TRM) is presented. The vital factors that influence the reliability of transmission lines are taken into consideration. For instance, the generator and transmission line outage are seen as discrete stochastic variables subjected to the distribution of quadratic forms, and load demand as a random event following the normal distribution. On the basis of randomization for uncertainties, a mathematical model based on fuzzy random chance-constrained programming is developed, whose constraint conditions including the generator, transmission line outage and load demand are introduced as a stochastic function or fuzzy function. Moreover, the hybrid intelligent algorithm for solving this chance-constrained programming model is proposed, and the simulation calculation of the IEEE 30 buses system has been carried out. The advantages, validity and feasibility of the approach proposed are proved by experimental results.
出处 《电力系统自动化》 EI CSCD 北大核心 2007年第5期23-28,共6页 Automation of Electric Power Systems
基金 广西自然科学基金资助项目(桂科自0640028) 宁波市自然科学基金资助项目(2005A610013) 广西壮族自治区教育厅资助项目 广西壮族自治区科技厅科技计划资助项目 广西壮族自治区研究生教育创新计划资助项目~~
关键词 模糊随机机会约束规划 输电可靠性裕度 传输容量 混合智能算法 fuzzy random chance-constrained programming transmission reliability margin (TRM) transfer capability hybrid intelligent algorithm
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  • 1安德逊PM 佛阿德 AA.电力系统的控制与稳定 第一卷[M].北京:水利电力出版社,1979.. 被引量:1
  • 2[3]Available Transfer Capability Definition and Determination.North American Electric Reliability Council. 1996 被引量:1
  • 3[4]Ejebe G C, Waight J G, Santos-Nieto M, et al. Fast Calculation of Linear Available Transfer Capability.In: Proceedings of the 21st International Conference on Power Industry Computer Applications. 1999. 226~232 被引量:1
  • 4[5]Tong J. Real Time Transfer Limit Calculation.In: Proceedings of the 2000 IEEE/PES Summer Meeting. Seattle (USA): 2000.1297~1301 被引量:1
  • 5[6]Ejebe G C, Tong J, Waight J G, et al. Available Transfer Capability Calculations. IEEE Transactions on Power Systems, 1998, 13(4): 1521~1527 被引量:1
  • 6[7]Rosales R A, Ruiz-Vega Daniel, Ernst Damien, et al. On-line Transient Stability Constrained ATC Calculation. Proceedings of the 2000 IEEE/PES Summer Meeting. Seattle(USA): 2000. 1291~1296 被引量:1
  • 7[8]Mello J C O, Mello A C G, Granville S. Simultaneous Transfer Capability Assessment by Combining Interior Point Methods and Monte-carlo Simulation. IEEE Trans on Power Systems, 1997, 12(2): 736~742 被引量:1
  • 8[9]Xia F, Sakis Meliopoulos A P. A Methodology for Probabilistic Simultaneous Transfer Capability Analysis. IEEE Transactions on Power Systems, 1996, 11(3): 1296~1278 被引量:1
  • 9[10]Gravener M H, Nwankpa C. Available Transfer Capability and First Order Sensitivity. IEEE Trans on Power Systems, 1999, 14(2): 512~518 被引量:1
  • 10[11]Xiao Y, Song Y H. Available Transfer Capability (ATC) Evaluation by Stochastic Programming. IEEE Power Engineering Review, 2000. 50~52 被引量:1

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