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Real-time energy management for a smart-community microgrid with battery swapping and renewables

机译:带有电池更换和可再生能源的智能社区微电网的实时能源管理

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Battery swapping station (BSS) is a new mode of supplying power to electric vehicles (EVs). As distributed and flexible energy storage as well as demand response (DR) sources, BSSs have great potentials to tackle both high penetration of variable renewable energy (VRE) sources and real-time EV charging. However, these potentials have not been fully explored as existing research mainly uses BSS for the single purpose of battery swapping. To make the full use of BSS, this paper presents a real-time energy management strategy for a BSS based smart community microgrid (SCMG), using VREs to supply EV batteries (EVBs) and conventional residential loads (RLs). A novel Lyapunov optimization framework based on queueing theory is designed to solve the proposed model. It addresses the variability of supply, demand and energy prices without assuming their forecasts or future distributions, and can also ensure the quality of service (QoS). The proposed method can simplify the complex energy scheduling and transform it into a single optimization problem, making it suitable for real-time applications, which require high computational efficiency. Simulation results found that BSS used for the dual purposes can improve the whole system economics and facilitate the utilization of renewable energy compared to isolated operation. It also demonstrates competency of the proposed algorithm compared to other benchmark algorithms. This work provides future SCMG operators insights into different underlying tradeoffs in managing electricity supply and demand cost-effectively with BSSs and VREs.
机译:电池交换站(BSS)是向电动汽车(EV)供电的一种新模式。作为分布式和灵活的能量存储以及需求响应(DR)的来源,BSS具有巨大的潜力,可以解决可变可再生能源(VRE)来源的高普及率和实时EV充电的问题。但是,由于现有研究主要将BSS用于电池交换的单一目的,因此尚未充分挖掘这些潜力。为了充分利用BSS,本文提出了一种基于BSS的智能社区微电网(SCMG)的实时能源管理策略,该策略使用VRE为EV电池(EVB)和常规住宅负载(RL)提供电源。设计了一种基于排队论的新型Lyapunov优化框架来求解该模型。它可以解决供需,能源价格的波动性,而无需假设其预测或未来分布,还可以确保服务质量(QoS)。所提出的方法可以简化复杂的能量调度并将其转化为单个优化问题,使其适合于需要高计算效率的实时应用。仿真结果表明,与隔离运行相比,用于双重目的的BSS可以提高整个系统的经济性并促进可再生能源的利用。与其他基准算法相比,它还展示了所提出算法的能力。这项工作为未来的SCMG运营商提供了有关在BSS和VRE中以经济高效的方式管理电力供需的不同折衷方案的见解。

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