A Review on Control Strategies for Integration of Electric Vehicles with Power Systems

Prashant Akhade, M. Moghaddami, A. Moghadasi, A. Sarwat
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引用次数: 3

Abstract

Electric vehicles (EVs) are considered as portable sources of power which can be integrated with any infrastructure, including power grid at different geographical locations, forming a dynamically varying system. Grid-to-vehicle (G2V) and vehicle-to-grid (V2G) connections are considered as essential parts of the future smart grids which can considerably enhance the performance of the system in different aspects. The control strategy for integration of EVs plays a key role in enhancing the performance of power system. The aim of this paper is to study different types of control strategies for integration of electric vehicles with power grid. The control strategies that are used for G2V and V2G connections include multi-agent control, frequency control, aggregated control, virtual synchronous machine-based control, etc. which are reviewed in detail. Detailed comparisons between these control methods are presented in this paper. This paper further highlights the transient stability of power system on both distribution and wide-area levels.
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电动汽车与电力系统集成控制策略研究进展
电动汽车被认为是一种便携式电源,它可以与任何基础设施集成,包括不同地理位置的电网,形成一个动态变化的系统。电网到车辆(G2V)和车辆到电网(V2G)连接被认为是未来智能电网的重要组成部分,可以在不同方面大大提高系统的性能。电动汽车集成控制策略对提高电力系统性能起着至关重要的作用。本文的目的是研究电动汽车与电网集成的不同类型的控制策略。G2V和V2G连接所采用的控制策略包括多智能体控制、频率控制、聚合控制、基于虚拟同步机的控制等。本文对这些控制方法进行了详细的比较。本文从配电和广域两方面进一步强调了电力系统的暂态稳定问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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