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Preventing Distribution Grid Congestion by Integrating Indirect Control in a Hierarchical Electric Vehicles’ Management System

机译:通过在分层电动汽车的管理系统中集成间接控制来防止配电网拥堵

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摘要

In this paper, a hierarchical management system is proposed to integrate electric vehicles (EVs) into a distribution grid. Three types of actors are included in the system: distribution system operators (DSOs), fleet operators (FOs), and EV owners. In contrast to a typical hierarchical control system where the upper level controller directly controls the lower level subordinated nodes, this study aims to integrate two common indirect control methods: market-based control and price-based control into the hierarchical EVs' management system. Specifically, on the lower level of the hierarchy, the FOs coordinate the charging behaviors of their EV users using a price-based control method. A parametric utility model is used on the lower level to characterize price elasticity of EVs and thus used by the FO to coordinate the individual EV charging. On the upper level of the hierarchy, the DSO uses the market-based control strategy to coordinate the limited power capacity of power transformer with FOs. To facilitate the application of the two indirect control methods into the system, a model describing decision tasks in control is used to specify the essential functions that are needed in the control system. The simulations illustrate the effectiveness of the proposed solutions.
机译:在本文中,提出了一种将电动汽车(EV)集成到配电网中的分层管理系统。系统中包括三种类型的参与者:配电系统运营商(DSO),车队运营商(FO)和电动汽车所有者。与上级控制器直接控制下级下级节点的典型分层控制系统相比,本研究旨在将两种常见的间接控制方法:基于市场的控制和基于价格的控制集成到分层式EV的管理系统中。具体而言,在层次结构的较低级别,FO使用基于价格的控制方法来协调其EV用户的充电行为。在较低级别上使用参数化实用新型来表征电动汽车的价格弹性,因此,FO可以使用它来协调单个电动汽车的收费。在层次结构的高层,DSO使用基于市场的控制策略来协调具有FO的电力变压器的有限功率容量。为了便于将两种间接控制方法应用到系统中,使用描述控制中决策任务的模型来指定控制系统所需的基本功能。仿真说明了所提出解决方案的有效性。

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