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Methodology for robust monitoring of voltage sags based on equipment trip probabilities

机译:基于设备跳闸概率的稳健监测电压骤降的方法

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This paper presents a new methodology for installing monitors into a distribution network to optimally and robustly monitor the voltage sag performance of the entire network. The developed methodology allows distribution network planners to specify budgetary requirements and future loading forecasts and output a robust set of monitoring locations for voltage sag performance monitoring. The research utilizes an artificial immune system optimization (A1S) algorithm to discover a range of near-optimal monitoring locations based on minimization of expected equipment trips at a bus. An estimate for the probable number of equipment trips is defined using a new probabilistic measure known as sag trip probability (STP). The optimized solutions are analyzed for robustness across a range of uncertain future network loading and topology scenarios. The results show the methodology applied to a 295 bus generic distribution network with uncertain load growth for the next 15 years.
机译:本文提出了一种将监控器安装到配电网络中的最佳方法,以最佳,可靠地监控整个网络的电压骤降性能。所开发的方法使配电网络规划人员可以指定预算要求和未来的负荷预测,并输出一组可靠的监视位置,用于电压暂降性能监视。这项研究利用人工免疫系统优化(A1S)算法,通过将公交车上预期的设备行程最小化,发现了一系列最佳监控位置。使用一种称为下垂跳闸概率(STP)的新概率测度来定义设备跳闸的可能次数。分析了优化的解决方案在不确定的未来网络负载和拓扑方案范围内的鲁棒性。结果表明,该方法适用于未来15年负荷增长不确定的295总线通用配电网络。

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