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Intelligent-search technique based strategic placement of synchronized measurements for power system observability

机译:基于智能搜索技术的同步测量的战略位置,以实现电力系统的可观察性

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Synchronized phasor measurements placement problem is commonly solved by formulating it as a mathematical optimization problem, which is limited by huge computational burden especially for larger systems. This paper proposes a novel intelligent search based approach for placement of phasor measurement units (PMUs) in the power system while maintaining complete observability. The proposed approach works in two stages. Stage I utilizes best first search to identify the possible locations of PMUs in order to obtain system observability and these locations are used as inputs to stage II. Stage II determines the optimal locations of PMUs by applying pruning to the inputs received from stage I, such that the system observability is achieved with the minimum number of PMUs. The proposed approach has been further extended to incorporate the presence of conventional flow measurements. An important feature of the proposed placement method is its capability to handle both single as well as multiple flow measurements connected to a bus. The proposed method has been tested on IEEE 14-bus, IEEE 30-bus and a practical 246-bus Indian networks for system intact condition as well as during single transmission line and single PMU loss. The effectiveness of the proposed method has been demonstrated by comparing the numerical results obtained using the proposed method with the existing methods. (C) 2015 Elsevier Ltd. All rights reserved.
机译:同步相量测量放置问题通常通过将其公式化为数学优化问题来解决,这受到巨大的计算负担的限制,尤其是对于大型系统。本文提出了一种新颖的基于智能搜索的方法,用于在电力系统中放置相量测量单元(PMU),同时保持完整的可观察性。拟议的方法分两个阶段进行。第一阶段利用最佳的首次搜索来识别PMU的可能位置,以获得系统的可观察性,这些位置被用作第二阶段的输入。阶段II通过对从阶段I接收的输入进行修剪来确定PMU的最佳位置,从而以最少的PMU数量实现系统的可观察性。所提出的方法已被进一步扩展以包含常规流量测量的存在。所提出的放置方法的一个重要特征是它能够处理连接到总线的单个和多个流量测量。所提出的方法已经在IEEE 14总线,IEEE 30总线和实用的246总线印度网络上进行了测试,以确保系统完好无损,以及在单条传输线和单个PMU丢失的情况下。通过将使用该方法获得的数值结果与现有方法进行比较,证明了该方法的有效性。 (C)2015 Elsevier Ltd.保留所有权利。

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