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首页> 外文期刊>IEEE Transactions on Power Systems >Optimal Metering Systems for Monitoring Power Networks Under Multiple Topological Scenarios
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Optimal Metering Systems for Monitoring Power Networks Under Multiple Topological Scenarios

机译:多种拓扑场景下监控电网的最佳计量系统

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摘要

This work presents a methodology for designing optimal metering systems for real-time power system monitoring, taking into account different topologies that the network may experiment. Genetic algorithms are employed to achieve a trade-off between investment costs and reliability of the state estimation process under many different topology scenarios. This is done by formulating a fitness function where the cost of the metering system is minimized, while no critical measurements and/or critical sets are allowed in the optimal solution. An efficient algorithm for the identification of critical measurements and sets (irrespective of state estimation runs) is employed during the evaluation of the fitness function. Simulation results illustrate the performance of the proposed method.
机译:这项工作提出了一种用于设计实时电力系统监控的最佳计量系统的方法,同时考虑了网络可能试验的不同拓扑。在许多不同的拓扑方案下,采用遗传算法来在投资成本和状态估计过程的可靠性之间进行权衡。这是通过制定适应度函数来实现的,在该函数中,计量系统的成本已降至最低,而最佳解决方案中不允许进行严格的测量和/或严格设置。在对适应度函数进行评估时,采用了一种有效的算法来识别关键度量和集(与状态估计运行无关)。仿真结果说明了该方法的性能。

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