Power-to-Gas Systems for Active Load Management at EV Charging Sites with High DER Penetration

R. Jain, Kazunori Nagasawa, Santosh Veda
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Abstract

Intermittent renewable systems and increasing electric vehicle (EV) penetrations increase load intermittency—and will require expensive distribution system infrastructure upgrades. Power-to-gas (P2G) systems are highly controllable loads that can be modulated to regulate the net load behind the meter. In this work, we present an active load management approach using P2G systems to regulate the net load for an EV charging station with high penetrations of renewable generation. The system also validates the feasibility of the proposed approach using a 750-kW electrolyzer operated with the distribution system in a real-time power-hardware-in-the-loop test. Finally, we evaluate the impact of the size of the P2G system on its ability to regulate the net load.
高DER渗透电动汽车充电点主动负荷管理的电转气系统
间歇性可再生能源系统和不断增加的电动汽车(EV)渗透率增加了间歇性负荷,并将需要昂贵的配电系统基础设施升级。电力到天然气(P2G)系统是高度可控的负载,可以通过调制来调节仪表后的净负载。在这项工作中,我们提出了一种主动负荷管理方法,使用P2G系统来调节具有高可再生能源发电渗透率的电动汽车充电站的净负荷。该系统还通过与配电系统一起运行的750 kw电解槽进行了实时电力-硬件在环测试,验证了所提出方法的可行性。最后,我们评估了P2G系统的大小对其调节净负荷能力的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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