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首页> 外文期刊>Trends in Ecology & Evolution >Communication-Failure-Resilient Distributed Frequency Control in Smart Grids: Part I: Architecture and Distributed Algorithms
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Communication-Failure-Resilient Distributed Frequency Control in Smart Grids: Part I: Architecture and Distributed Algorithms

机译:智能网格中的通信故障 - 弹性分布式频率控制:第一部分:架构和分布式算法

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摘要

Distributed algorithms have been proposed as options to scale control propositions to the massive number of intelligent energy devices, sub-systems, and distributed energy resources being integrated into the electricity grid. Distributed algorithms rely on the communication network for exchanging information. Failures in the communication network can jeopardize distributed decision-making and in the worst-case scenario can lead to system-level stability problems. This paper proposes a communication-failure-resilient architecture for distributed operation and control in smart grids with hybrid producer/consumer (prosumer) agents. We describe the relations between system-wide performance and communication failures and identify topological conditions on the cyber-physical network, under which prosumers can perform key operating tasks, such as distributed frequency regulation through an imperfect communication network.
机译:已经提出了分布式算法作为将控制命题的选项缩放到大量智能能量设备,子系统和分布式能源集成到电网中的分布式能源。 分布式算法依赖于通信网络进行交换信息。 通信网络中的失败可以危及分布式决策,并且在最坏情况下,可以导致系统级稳定性问题。 本文提出了一种用于具有混合生成器/消费者(PROSUMER)代理的智能电网中的用于分布式操作和控制的通信故障 - 弹性架构。 我们描述了系统范围的性能和通信故障之间的关系,并识别网络物理网络上的拓扑条件,在该网络中,可以通过不完美的通信网络来执行密钥操作任务,例如分布式频率调节。

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