电动汽车充电控制对频率响应的影响——GB系统的研究

F. Sanchez, F. Gonzalez-Longatt, J. Rueda, P. Palensky
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引用次数: 4

摘要

减少环境污染的愿望推动了汽车电气化的发展,电池技术的进步也推动了汽车电气化的发展。如果不加以管理,电动汽车(EV)充电将增加高峰需求,给电网带来压力。然而,如果管理得当,电动汽车可以为电力系统运营商提供有用的服务,例如快速注入有功功率,从而改善扰动后的系统频率响应(SFR)。本文的目的是评估连接到频率响应充电站的电动汽车集群在发电损失事件后对SFR供应的影响。该评估考虑了英国2025年的电动汽车充电需求,考虑了三种不同的日常充电模式。建立了包含测量延迟和控制充电器时间响应影响的电动汽车集群通用模型。将模型和情景集成到代表GB电力系统的单区域模型中,并使用2025年系统惯性的最小期望值。研究结果强调了将电动汽车作为动态储能系统用于不同类型充电对SFR的好处,以及测量延迟对响应动力学的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Electric Vehicle Charging Control on the Frequency Response: Study of the GB System
The growth of vehicle electrification is driven by the desire to reduce environmental pollution, and it is fueled by advancements in battery technology. If left unmanaged, electric vehicle (EV) charging will increase peak demand and put a strain on the electricity networks. However, if properly managed, EVs can provide useful services to the power system operator such as fast active-power injection which serves to improve the system frequency response (SFR) after a disturbance. The objective of this paper is to assess the impact that clusters of EVs, connected to frequency-responsive charging stations, have on the provision of SFR after a loss of generation event. The assessment considers EV charging demand in Great Britain (GB) for the year 2025 considering three different daily charging patterns. A generic model for the EV clusters is developed which includes the effects of measurement delays and control charger time response. The model and scenarios are integrated into a single-area model representative of the GB power system and the minimum expected values for the system's inertia in the year 2025 are used. The results obtained highlight the benefits on the SFR of utilizing EVs as a dynamic energy storage system for different types of charging and the impact of the measurement delay on the dynamics of the response.
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