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Data-Availability-Constrained Placement of PMUs and Communication Links in a Power System

机译:电源系统中PMU和通信链路的数据可用性约束放置

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This paper presents a solution to placing a minimum number of phasor measurement units (PMUs) and communication links in a power system so that the steady-state availability of synchrophasor data at each bus meets a prescribed level. For this purpose, a Markov model suitable for the evaluation of synchrophasor availability is built. The model contains a set of binary decision variables representing actions or inactions to maintain PMUs or to utilize communication links. The decision variables are solved to minimize an expected cost for maintaining a PMU network and utilizing data links for synchrophasor inference, subject to a set of synchrophasor availability requirements at the buses. The new aspects of development in this paper concern first the selection of decision variables so that their solutions immediately imply whether a PMU should be placed at a bus and whether a communication link should be established between two buses and, second, the solution to PMU network placement in a large-scale electric network. In addition, permanent and random intermittent PMU outages are modeled. A five-bus power system is used to demonstrate the problem formulation, and placement results are presented. A method to treat a large power system as interconnected smaller power systems with common boundary buses is proposed to address the curse of dimensionality encountered. Each smaller power system formulates an independent optimal placement problem with constraints on matching boundary placement. The steps involved are illustrated through a 14-bus system. The complexity and optimality of a divided problem are compared to that of the original problem.
机译:本文提出了一种在电源系统中放置最少数量的相量测量单元(PMU)和通信链路的解决方案,以使每条总线上的同步相量数据的稳态可用性达到规定水平。为此,建立了适合评估同步相量可用性的马尔可夫模型。该模型包含一组二进制决策变量,这些变量代表维护PMU或利用通信链路的行动或不作为。解决决策变量以使维护PMU网络和利用数据链路进行同步相量推断的预期成本降至最低,这取决于总线上的一组同步相量可用性要求。本文开发的新方面首先涉及决策变量的选择,以便其解决方案立即暗示是否应将PMU放置在总线上,以及是否应在两条总线之间建立通信链接,其次是PMU网络的解决方案。放置在大型电网中。此外,还对永久性和随机性间歇性PMU中断进行了建模。使用五总线电源系统演示问题的解决方案,并给出放置结果。提出了一种将大型电力系统视为具有公共边界母线的互连小型电力系统的方法,以解决遇到的维数问题。每个较小的电源系统都会制定一个独立的最佳布局问题,并在匹配边界布局方面有所限制。通过14总线系统说明了涉及的步骤。将已划分问题的复杂性和最优性与原始问题进行了比较。

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