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Electric vehicles contribution for frequency control with inertial emulation

机译:电动汽车对惯性仿真的频率控制的贡献

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This work proposes a novel primary frequency control technique with electric vehicles (EV), the combination of inertial emulation and droop control, for isolated systems. Being EV dispersed along the grids, the impacts of possible delayed actions are assessed. Islanded systems have reduced inertia and so load/generation imbalance situations may lead to large frequency deviations. Therefore, this paper focuses essentially on the EV contribution for primary reserves provision, in order to allow a safe integration of further intermittent Renewable Energy Sources (RES). An avant-garde generation dispatch was adopted for the test system used in this work, fully reliant on RES, mainly conventional hydro units and some wind generation. The studied disturbances include a rapid shortfall on wind power production and a sequence of consecutive events caused by the variability of the wind resource in an ordinary situation. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项工作提出了一种用于电动汽车(EV)的新颖的主频率控制技术,该技术将惯性仿真和下垂控制相结合,用于隔离系统。由于电动汽车沿着电网分散,评估了可能的延迟动作的影响。孤岛系统的惯性减小,因此负载/发电不平衡的情况可能导致较大的频率偏差。因此,本文主要侧重于为一级储备准备金的EV贡献,以便允许安全集成其他间歇性可再生能源(RES)。这项工作中使用的测试系统采用了先进的发电调度,完全依赖于RES,主要依靠常规水力发电机和一些风力发电。所研究的扰动包括风力发电的快速短缺以及在正常情况下由风资源的可变性引起的一系列连续事件。 (C)2015 Elsevier B.V.保留所有权利。

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