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机构地区:[1]贵州电力试验研究院,贵州贵阳550001 [2]贵州大学电气工程学院,贵州贵阳550025
出 处:《电力系统保护与控制》2015年第5期21-26,共6页Power System Protection and Control
基 金:贵州电网公司重点科技项目(K-GZ2012-098);贵州省科教青年英才培养工程项目(2012151)
摘 要:为完善串联谐振型故障限流器的系统侧应用技术,提出了一种考虑运行损耗的故障限流器布点优化和容量选择方法。初步构建了一个以全网损耗增量和限流电抗值总和最小为目标函数,以母线短路电流、母线电压、限流器阻抗及其安装候选位置为约束条件的数学模型。借助PSS/E和Matlab粒子群算法工具包,实现了该优化问题的求解。案例研究在一个修改的IEEE-39节点系统中展开,不同台数优化安装方案的比较结果表明,该方法是有效的。其模型引入了网损变量,完善了传统目标函数中的经济性指标。In order to improve the system-side application technology of series resonant-type fault current limiter (SRFCL), this paper proposes an optimization model and method constrained with power losses for optimal sitting and parameter selection of SRFCL. A mathematical model is initially developed based on particle swarm optimization (PSO) algorithm, whose objective function is subject to the minimization of the total impedance of SRFCLs and the power loss increment, bounded by the inequality constraints including short circuit current, bus voltage, current limiting reactance and candidate location. PSS/E sot^ware and the particle swarm optimization toolbox in Matlab are employed to solve the above optimization problem. The case study has been carried out in a modified IEEE-39 bus test system, and the comparison with the results from different SFCL placement schemes demonstrates that this methodology is effective, and it improves the economic indicator of the traditional method through introducing the system loss variable.
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