Lifetime Optimization for a Grid-Friendly DC Fast Charge Station With Second Life Batteries

M. D’Arpino, Massimo Cancian
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引用次数: 2

Abstract

Electrified vehicle (EV) batteries that have reached the automotive end of life are providing a low-cost energy storage solution for grid-connected systems, such as DC fast charge stations (DCFCs). There are several challenges associated with the integration of second life batteries (SLBs) in power systems, such as the definition of a systematic approach for the concurrent optimization of performance and lifetime with the aim of minimizing the investment and operating costs. This paper proposes the application of automotive SLBs to DCFC stations where high-power grid connection is not available or feasible. The SLBs are charged using a low-power grid connection and then provide DCFC power to the EVs. An optimal control problem has been formulated to identify the energy management control (EMC) strategy that allows minimizing the replacement rate of the SLBs, while ensuring the EV load request is match.
二次电池直流快速充电站的使用寿命优化
电动汽车(EV)电池已经达到了汽车的使用寿命,为直流快速充电站(DCFCs)等并网系统提供了一种低成本的储能解决方案。将二次寿命电池(slb)集成到电力系统中存在一些挑战,例如定义一种系统方法来同时优化性能和寿命,以最大限度地减少投资和运营成本。本文提出将车载slb应用于不具备或不具备大功率并网条件的DCFC站。slb使用低功率电网连接充电,然后为电动汽车提供DCFC电源。在保证电动汽车负载要求匹配的前提下,提出了最小化slb替换率的能量管理控制(EMC)策略。
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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