This paper investigates the usage of battery storage systems in a fast charging station (FCS) for participation in energy markets and charging electrical vehicles (EVs) simultaneously. In particular, we focus on optimizing the scheduling strategies to reduce the overall operational cost of the system over its lifetime by combining the model of battery degradation and energy arbitrage. We implement the battery degradation as a penalty term within an energy arbitrage model and show that the battery degradation plays an important role in the optimal energy dispatch scheduling of the FCS system. In this case study, with different penalty coefficients for the battery degradation penalty term, it is found that including the penalty of battery usage in the scheduling model will reduce the number of small charging/discharging cycles, thereby prolonging the battery lifetime, while maintaining near optimal revenue from grid services.
翻译:本文件调查快速充电站使用电池储存系统参与能源市场和同时向电动车辆充电的情况,尤其侧重于优化时间安排战略,通过将电池降解和能源套利模式相结合,降低系统整个寿命期的总体运作成本,在能源套利模式中将电池退化作为一种惩罚性术语实施,并表明电池退化在FCS系统最佳能源发送时间安排中发挥着重要作用,在对电池降解处罚期采用不同的处罚系数的情况下,发现将电池使用处罚纳入时间安排模式将减少小型充电/电周期的数量,从而延长电池使用寿命,同时保持电网服务收入的接近最佳水平。