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Using EVs as distributed energy resources for critical load restoration in resilient power distribution systems

机译:在弹性配电系统中使用EVS作为分布式能量资源进行临界负载恢复

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摘要

Owing to the important role of the power system in modern societies, its resilience against natural disasters has become a top priority for power system operators and planners. Moreover, in recent years, due to the increasing number and severity of weather-related events, several operational solutions have been proposed to increase the resilience of power systems. For instance, in the distribution part of power systems, dynamic micro-grid (MG) formation can enhance resilience by means of distributed energy resources (DERs) when the main grid is unavailable. Following this concept, the capabilities of electric vehicles (EVs) such as vehicle-to-grid make it possible to use the energy stored inside them to restore critical loads. Therefore, the aggregation of EVs in the distribution system can be seen as a DER from the system operator viewpoint, and operators can benefit from this limited energy resource in MG formation. This study uses two types of EV aggregation for this purpose, i.e. a public parking lot and a residential parking. To improve system performance when using these resources, two steps should be taken: (i) employing a master-slave control technique in each MG and (ii) using a demand-side management programme.
机译:由于电力系统在现代社会中的重要作用,其对自然灾害的抵御能力已成为电力系统运营商和规划者的首要任务。此外,近年来,由于与天气相关事件的数量和严重程度越来越大,已经提出了几种运行解决方案来增加电力系统的弹性。例如,在电力系统的分布部分中,当主电网不可用时,动态微电网(MG)形成可以通过分布式能源(DER)来增强弹性。在此概念之后,电动车辆(EVS)的能力(例如车辆到网格)使得可以使用存储在它们内的能量来恢复临界负载。因此,分配系统中的EVS的聚合可以被视为来自系统操作员观点的DER,并且操作者可以从MG形成中受益于此有限的能源资源。本研究使用这项目的的两种EV聚合,即公共停车场和住宅停车。为了提高使用这些资源时的系统性能,应该使用两个步骤:(i)使用需求侧管理程序在每个MG和(II)中使用主从控制技术。

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