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文章摘要
基于凝聚率和网络重构效率评价的骨架网架优化
Cohesion Rate and Network Reconfiguration Efficiency Assessment BasedSkeleton-network Reconfiguration
Received:April 09, 2016  Revised:June 06, 2016
DOI:
中文关键词: 电网恢复控制  黑启动  网络重构  粒子群优化算法  模拟退火算法
英文关键词: power grid restoration control  black start  network reconfiguration  particle swarm optimization algorithm  simulated annealing  
基金项目:
Author NameAffiliationE-mail
SU Xue-neng* School of Electrical Engineering and Information,Sichuan University 1551796517@qq.com 
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中文摘要:
      黑启动恢复问题是大停电后系统安全防御的重要课题,确定合理的骨架网络对于快速建立输电网架和负荷的全面恢复,具有重要意义。首先,提出一种基于电气凝聚率和网络重构效率表征骨架网络优劣的方法。该方法采用节点凝聚率、线路凝聚率定量表征电网电气特性,以网络重构效率表征电网拓扑结构联系的紧密程度,并考虑电网安全运行约束,以此建立骨架网络的优化模型;在此基础上,提出基于模拟退火改进离散粒子群算法的方法实现骨架网络重构过程的优化,获取能涵盖主要枢纽节点和关键线路的综合性能最优和次优的骨架网络。最后以新英格兰10机39节点系统为算例,验证了骨架网络优化模型的合理性与求解算法的正确性。
英文摘要:
      Black start is important to power system safety. As a hinge part of black start, reasonable network reconfiguration is helpful to establish the main network and restore loads rapidly. Therefore, there is point in deciding a reasonable scheme. Firstly, electrical cohesion rate is proposed in order to represent electrical characteristics. Next, Based on assessment of network reconfiguration and cohesion rate, a skeleton-network reconfiguration method is proposed. Firstly, quantitatively reflecting grid characteristics by node-condensation and line-condensation, evaluating connection degree of network itself topology linked by network reconfiguration rate and considering quality of grid safety constraints. Next, skeleton network comprehensive evaluation model will be set up. Furthermore, simulated annealing based parti-cle swarm optimization algorithm with compression factor is employed in forming skeleton network containing most of the important nodes and key lines. At last, the New England 10-unit 39 bus system is employed to confirm reasonabil-ity of skeleton-network reconfiguration optimized model and correctness of solving method proposed.(
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