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Two-Stage Optimization Method for Network Reconfiguration and Load Recovery During Power System Restoration

机译:电力系统恢复期间网络重新配置和负载恢复的两级优化方法

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Network reconfiguration and load recovery (NRLR) during power system restoration is a complex mixed-integer nonlinear programming (MINP) problem, which is difficult to be solved efficiently. To address this problem, this paper proposes a two-stage optimization method for NRLR. The first stage, based on the DC power flow considering frequency characteristics, focuses on the integer variables and provides the optimal plan for transmission line charging and load pick-ups. Then in the second stage, an expanded AC optimal power flow with frequency constraints and load ZIP model is established to minimize the restoration duration of the plan generated by the first stage. The comprehensive restoration plan can be obtained through the iterative optimization process. Case study is undertaken on a 10-machine 39-bus system. Simulation results reveal that the restoration plans obtained from the proposed method are highly efficient, while the computation time satisfies the requirement of online application.
机译:电力系统恢复期间的网络重新配置和负载恢复(NRLR)是复杂的混合整数非线性编程(MINP)问题,这难以有效地解决。为了解决这个问题,本文提出了对NRLR的两级优化方法。第一阶段基于考虑频率特性的直流电流,专注于整数变量,并为传输线充电和负载拾取提供最佳计划。然后,在第二阶段,建立具有频率约束和负载ZIP模型的扩展的AC最佳功率流动,以最小化第一阶段产生的计划的恢复持续时间。通过迭代优化过程可以获得综合修复计划。案例研究是在10台机器39总线系统上进行的。仿真结果表明,从所提出的方法获得的恢复计划是高效的,而计算时间满足在线应用的要求。

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