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Dynamic microgrid-based operations: A new operational paradigm for distribution networks

机译:基于微电网的动态运营:配电网络的新运营范例

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This paper expands the conventional concept of microgrids - predetermined groups of loads and generators electrically connected to each other and possibly to the main power grid - into a new concept of dynamic microgrids (DMs) which allows different groupings of these resources based on actual real time supply and demand conditions in the network. Under the DM paradigm, the distribution network is continuously partitioned into dynamically changing microgrid cells which can be leveraged to improve the operational performance of distribution networks. The paper describes algorithms to define DMs based on real time conditions and also proposes a DM-based operational strategy wherein DMs operate in tandem during normal operations and can function as islands during faults to minimize customer interruptions. Simulations on standard test systems are used to demonstrate how such a strategy can be leveraged to minimize the impact of disturbances on customers, maximize the deployment of renewable generation and improve asset utilization.
机译:本文将微电网的传统概念(预定的负载和发电机之间的电气连接以及可能与主电网的电气连接)的传统概念扩展为动态微电网(DM)的新概念,该概念允许根据实际的实时对这些资源进行不同的分组。网络中的供求条件。在DM范式下,配电网络被连续划分为动态变化的微电网单元,可以利用这些微电网来提高配电网络的运行性能。本文描述了基于实时条件定义DM的算法,并提出了一种基于DM的操作策略,其中DM在正常操作期间串联运行,并且在故障期间可以充当孤岛,以最大程度地减少客户中断。使用标准测试系统上的仿真来演示如何利用这种策略来最大程度地减少干扰对客户的影响,最大程度地利用可再生能源并提高资产利用率。

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