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Towards optimized exchange topologies in smart distribution grids

机译:走向智能配电网中的优化交换拓扑

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The smart grid is a highly relevant application area for distributed algorithms. Many of these algorithms use a predefined topology to control the information exchange between the distributed entities. Consequently, this exchange topology has a strong impact on the performance of the distributed algorithm. For several algorithms their distributed nature is part of the algorithm itself. Furthermore, the properties of the virtual links defined by the exchange topology are determined by the characteristics of the underlying communication infrastructure (CIS). This work aims to design optimized exchange topologies that support certain distributed algorithms that can be used for reactive scheduling in smart distribution grids. For this purpose, supportable algorithms have to be identified and their communication requirements have to be derived. In addition, relevant properties and a suitable degree of abstraction of the CIS have to be determined. Finally it has to be investigated whether properties of the smart grid and the distributed energy resources (DER) and controllable loads are significant factors that can be used to achieve an increased performance of the supported algorithm.
机译:智能电网是分布式算法的高度相关的应用领域。这些算法中的许多算法都使用预定义的拓扑来控制分布式实体之间的信息交换。因此,这种交换拓扑结构对分布式算法的性能有很大的影响。对于几种算法,它们的分布式性质是算法本身的一部分。此外,由交换拓扑定义的虚拟链路的属性由基础通信基础结构(CIS)的特性确定。这项工作旨在设计优化的交换拓扑,以支持可用于智能配电网中的反应式调度的某些分布式算法。为此,必须确定可支持的算法,并得出其通信要求。另外,必须确定CIS的相关属性和合适的抽象度。最后,必须研究智能电网的属性以及分布式能源(DER)和可控负载是否是可用于实现所支持算法的更高性能的重要因素。

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