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作 者:陈礼频[1] 杜新伟[1] 汪伟[1] 曹开江[1] 任志超[1]
机构地区:[1]国网四川省电力公司经济技术研究院,成都610041
出 处:《电工技术学报》2016年第23期93-99,共7页Transactions of China Electrotechnical Society
摘 要:电力系统元件发生短路故障时,故障电阻客观存在且具有随机不确定特性。为提高电压暂降监测点配置方案在不同故障电阻条件下的工程适用性,需将故障电阻这一关键参数引入到监测点优化配置模型中。首先基于网络参数和短路计算构建临界故障电阻矩阵,在此基础上以监测点数最少为目标,以各故障点短路时最小电压暂降可观率为约束,建立考虑故障电阻随机不确定性的监测点优化配置模型,并用遗传算法求解最优配置方案。应用该方法对IEEE 30节点测试系统进行了仿真分析,结果表明该方法能有效监测非金属性短路故障引起的电压暂降,相比传统方法更具工程实用价值。When short-circuit fault occurs in a power system,fault resistance frequently existed,and the value of the fault resistance is random due to many factors. In order to effectively monitor voltage sags in the whole network,the variable of fault resistance should be added into optimal model. In the proposed method,matrix of critical fault resistance is established based on the parameters of power network and short circuit calculation,then optimal placement model considering randomness of fault resistances can be built. The constraint in the improved model is the observability rate of voltage sags,and the objective is to minimize the number of monitors placed in the whole network. Based on the optimal model, genetic algorithm is applied to obtain the best placement scheme. The proposed method has been applied to the IEEE 30-bus test system,simulation results show that,voltage sags caused by short-circuits resistances can be effectively monitored based on the improved method. Compared with traditional method,the proposed method can be more applicable in practical engineering.
关 键 词:电压暂降 故障电阻 监测点配置 临界故障电阻矩阵 电压暂降可观率
分 类 号:TM713[电气工程—电力系统及自动化]
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