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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >PMU Placement Optimization for Efficient State Estimation in Smart Grid
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PMU Placement Optimization for Efficient State Estimation in Smart Grid

机译:PMU放置优化在智能电网中有效状态估计

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This paper investigates phasor measurement unit (PMU) placement for informative state estimation in smart grid by incorporating various constraints for observability. Observability constitutes an important property for PMU placement to characterize the depth of the buses' reachability by the placed PMUs, but addressing it solely by binary linear programming as in many works still does not guarantee a good estimate for the grid state. Some existing works have considered optimization of some estimation indices by ignoring the observability requirements for computational ease and thus potentially lead to trivial results such as acceptance of the estimate for an unobserved state component as its unconditional mean. In this work, the PMU placement optimization problem is considered by minimizing the mean squared error or maximizing the mutual information between the measurement output and grid state subject to observability constraints, which incorporate operating conditions such as presence of zero injection buses, contingency of measurement loss, and limitation of communication channels per PMU. The proposed design is thus free from the fundamental shortcomings in the existing PMU placement designs. The problems are posed as large scale binary nonlinear optimization problems involving thousands of binary variables, for which this paper develops efficient algorithms for computational solutions. Their performance is analyzed in detail through numerical examples on large scale IEEE power networks. The solution method is also shown to be extendable to AC power flow models, which are formulated by nonlinear equations.
机译:本文通过纳入可观察性的各种约束来调查智能电网中信息性状态估计的量量值测量单元(PMU)放置。可观察性构成PMU放置的重要属性,以表征放置的PMU的总线深度,但仅通过二进制线性编程来解决,因为在许多工作中仍然不保证对网格状态的良好估计。一些现有的作品通过忽略计算易于的可观察性要求,有可能导致一些估计指标的优化,从而可能导致琐碎的结果,例如接受未见状态分量的估计,因为其无条件的平均值。在这项工作中,通过最小化平均平方误差或通过可观察性约束来最大限度地提高测量输出和网格状态之间的互信息来考虑PMU放置优化问题,该操作条件包括零喷射总线的存在,测量损失的应急。并且每个PMU的通信信道的限制。因此,所提出的设计从现有的PMU放置设计中没有基本的缺点。问题是涉及数千个二进制变量的大规模二元非线性优化问题,其中本文为计算解决方案开发了高效的算法。通过大规模IEEE电力网络的数值示例详细分析了它们的性能。该解决方案方法也显示为可扩展到AC电力流模型,其由非线性方程配制。

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