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A Dependency Analysis Model for Resilient Wide Area Measurement Systems in Smart Grid

机译:智能电网中弹性广域测量系统的依赖性分析模型

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摘要

Wide Area Measurement Systems (WAMS) consist of the measuring and the communication layers (infrastructures) of smart grids, which are used to monitor, operate and control the electrical infrastructure. Resilience is a very important requirement in smart grids, since they must be able to resist in failures at any layer, caused both by intentional attacks or unintentional events. Thus, while cost optimization is usually the most important concern when designing WAMS, increasing the resilience of the WAMS layers should also be considered as an important constraint. In this paper we propose a model for WAMS designing that takes into consideration both optimization and resilience metrics. The proposed model extends a WAMS placement optimization model by combining an optimization algorithm with a graph-based dependency analysis approach that considers the internal dependencies between the measuring and the communication WAMS layers. Based on simulation results, we show that the proposed model increases WAMS resilience by reducing the dependency levels of carefully selected nodes and/or by selectively adding measurement units and/or communication links in places indicated by the proposed algorithm. Thus, our approach can be categorized as a hybrid resilience algorithm that combines both robustness and redundancy.
机译:广域测量系统(WAMS)由智能电网的测量和通信层(基础设施)组成,用于监控,操作和控制电力基础设施。弹性是智能电网的一个非常重要的要求,因为它们必须能够在任何层的故障中抵抗任何层,这是由故意攻击或无意事件引起的。因此,虽然成本优化通常是在设计WAM时最重要的问题,但增加了WAMS层的恢复性也应该被视为一个重要的约束。在本文中,我们提出了一种模型,了解考虑到优化和恢复度指标。所提出的模型通过将优化算法与基于图形的依赖性分析方法组合来扩展WAMS放置优化模型,该方法考虑测量和通信WAM层之间的内部依赖性。基于仿真结果,我们表明所提出的模型通过减少仔细选择节点的依赖等级和/或通过选择性地添加由所提出的算法所示的位置中的测量单元和/或通信链路来增加WAMS弹性。因此,我们的方法可以被归类为混合弹性算法,它结合了鲁棒性和冗余。

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