引用本文:王砚平,鲍威,李赢,姚斯磊,郭瑞鹏,林玲,况静.考虑N-1故障的安全约束机组组合模型及约束削减方法[J].电力自动化设备,2021,41(7):
WANG Yanping,BAO Wei,LI Ying,YAO Silei,GUO Ruipeng,LIN Ling,KUANG Jing.Model and constraint-reduction method for security-constrained unit commitment considering N-1 contingency[J].Electric Power Automation Equipment,2021,41(7):
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考虑N-1故障的安全约束机组组合模型及约束削减方法
王砚平1, 鲍威1, 李赢2, 姚斯磊2, 郭瑞鹏1, 林玲1, 况静1
1.浙江大学 电气工程学院,浙江 杭州 310027;2.国网浙江省电力有限公司舟山供电公司,浙江 舟山 316000
摘要:
考虑N-1故障的安全约束机组组合问题规模庞大,对其进行数值求解十分困难。为此,基于直流潮流和线路开断分布因子,建立混合整数线性规划模型并提出约束削减方法。约束削减方法包括两步:根据并联支路潮流之间的关系选出需要监视的支路,以减少并联支路的安全约束;推导故障态潮流的上界,将其与故障态支路容量进行比较,以消除冗余的故障态安全约束。该约束削减方法可以在不改变最优解的前提下,大幅缩减安全约束机组组合问题的规模以及求解时间。IEEE 30和IEEE 118节点测试系统的仿真分析结果验证了所提模型及约束削减方法的有效性。
关键词:  安全约束机组组合  N-1故障  混合整数线性规划  约束削减方法  监视支路  故障态潮流上界
DOI:10.16081/j.epae.202105002
分类号:TM73
基金项目:国家自然科学基金资助项目(51777184)
Model and constraint-reduction method for security-constrained unit commitment considering N-1 contingency
WANG Yanping1, BAO Wei1, LI Ying2, YAO Silei2, GUO Ruipeng1, LIN Ling1, KUANG Jing1
1.College of Electrical Engineering, Zhejiang University, Hangzhou 310027, China;2.Zhoushan Power Supply Company of State Grid Zhejiang Electric Power Co.,Ltd.,Zhoushan 316000, China
Abstract:
The scale of SCUC(Security-Constrained Unit Commitment) problem considering N-1 contingency is huge, and its numerical solution is very difficult, for which, a mixed-integer linear programming model is built and a constraint-reduction method is proposed. The constraint-reduction method includes two steps: the branches needed to be monitored are selected according to the relationship of power flow between parallel branches, so that the security constraints of parallel branches are reduced; the upper bound of post-contingency power flow is deduced and compared with the branch capacity of post-contingency to remove redundant post-contingency security constraints. The constraint-reduction method can greatly reduce the scale and solution time of SCUC problem without changing the optimal solution. The simulative and analysis results of IEEE 30-and 118-bus test systems verify the effectiveness of the proposed model and constraint-reduction method.
Key words:  security-constrained unit commitment  N-1 contingency  mixed-integer linear programming  constraint-reduction method  monitored branch  upper bound of post-contingency power flow

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