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The controlled splitting strategy for power system based on a decomposition algorithm

机译:基于分解算法的电力系统控制分裂策略

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As one of effective emergency control measures that are taken to keep the interconnected power grids from collapse caused by cascading failure, controlled splitting received broad recognition and approbation from engineering field and academic circle. The optimal controlled splitting problem is essentially an optimal graph splitting problem subjected to complicated topology constraints and large-scale, nonlinear constraints. In this paper, a complete model of the optimal controlled splitting of the power system is proposed, and a new decomposition algorithm searching for optimal splitting strategy was proposed. The complete model was converted into coupling sub-problems: graph partition problems and optimal power flow problem. The graph partition problem is solved by CGKP(Connected Graph Constrained Knapsack Problem) algorithm. Load and generation power adjustment variables are taken as transfer variables between the sub-problems. The results of the samples demonstrate the validity of the new model and method.
机译:作为防止互联电网因级联故障而崩溃的有效应急控制措施之一,受控分裂受到了工程界和学术界的广泛认可和认可。最优控制分裂问题本质上是受到复杂拓扑约束和大规模非线性约束的最优图分裂问题。提出了电力系统最优控制分裂的完整模型,提出了一种寻找最优分裂策略的新分解算法。完整的模型被转换为耦合子问题:图分配问题和最优潮流问题。图分割问题通过CGKP(连通图约束背包问题)算法解决。负荷和发电功率调节变量被视为子问题之间的传递变量。样本结果证明了新模型和新方法的有效性。

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