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Stochastic Energy Management of Electric Bus Charging Stations With Renewable Energy Integration and B2G Capabilities

机译:具有可再生能源集成和B2G功能的电动总线充电站随机能源管理

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In this paper, the stochastic energy management of electric bus charging stations (EBCSs) is investigated, where the photovoltaic (PV) with integrated battery energy storage systems (BESS) and bus-to-grid (B2G) capabilities of electric buses (EBs) are included for cost-effective charging of EBs. Also, the day-ahead dynamic prices are derived to mitigate charging impacts on power distribution systems. This problem is formulated as a distributionally robust Markov decision process (DRMDP) with uncertain transition probabilities and costs to address the impacts of random bus loads with inaccurate probability density function estimation. An event-based ambiguity set with combined statistical distance and moment information is developed to achieve minimax-regret criteria for less-conservative and robust solutions. To facilitate practical applications with reduced computational complexity, a heuristic regret function is proposed, based on which the dynamic prices are derived. Case studies based on EB data from St. Albert Transit and IEEE test feeders indicate that the proposed method can minimize EB charging cost with mitigated impacts on power distribution systems.
机译:在本文中,研究了电动总线充电站(EBCS)的随机能量管理,其中光伏(PV)具有集成电池储能系统(BESS)和电网(B2G)电动总线(EBS)的汇流能力包括用于EB的成本效益的充电。此外,推出了最新的动态价格,以减轻对配电系统的充电影响。该问题的配制为具有不确定的转换概率和成本,以解决随机总线负载的影响而具有不准确的概率密度函数估计的转换稳定性的马尔可夫决策过程(DRMDP)。开发了一种基于事件的歧义,具有组合统计距离和时刻信息的模糊,以实现最低保守和强大的解决方案的最小遗憾标准。为了便于计算复杂性降低的实际应用,提出了一种启发式遗憾功能,基于该动态价格得到的。基于ST的EB数据的案例研究来自St. Albert Transit和IEEE测试馈线表明该方法可以将EB充电成本最小化,对配电系统的缓解影响。

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