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Smart Grid Solution for Charging and Discharging Services Based on Cloud Computing Scheduling

机译:基于云计算调度的智能电网充放电解决方案

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Smart Grid (SG) technology represents an unprecedented opportunity to transfer the energy industry into a new era of reliability, availability, and efficiency that will contribute to our economic and environmental health. On the other hand, the emergence of electric vehicles (EVs) promises to yield multiple benefits to both power and transportation industry sectors, but it is also likely to affect the SG reliability, by consuming massive energy. Nevertheless, the plug-in of EVs at public supply stations must be controlled and scheduled in order to reduce the peak load. This paper considers the problem of plug-in EVs at public supply stations (EVPSS). A new communication architecture for SG and cloud services is introduced. Scheduling algorithms are proposed in order to attribute priority levels and optimize the waiting time to plug-in at each EVPSS. To the best of our knowledge, this is one of the first papers investigating the aforementioned issues using new network architecture for SG based on cloud computing. We evaluate our approach via extensive simulations and compare it with two other recently proposed works, based on real supply energy scenario in Toronto. Simulation results demonstrate the effectiveness of the proposed approach when considering real EVs charging-discharging loads at peak-hours period.
机译:智能电网(SG)技术为将能源行业带入可靠性,可用性和效率的新时代提供了前所未有的机会,它将为我们的经济和环境健康做出贡献。另一方面,电动汽车(EV)的出现有望给电力和交通运输行业带来多重好处,但它也可能通过消耗大量能源来影响SG的可靠性。然而,必须控制和安排公共供应站的电动汽车的插入式电源,以减少峰值负载。本文考虑了公共供应站(EVPSS)的插电式电动汽车问题。引入了用于SG和云服务的新通信架构。提出了调度算法,以分配优先级并优化每个EVPSS上插件的等待时间。据我们所知,这是使用基于云计算的SG的新网络架构研究上述问题的第一批论文之一。我们通过广泛的模拟评估了我们的方法,并根据多伦多的实际能源供应情况,将其与其他两项最近提出的工作进行了比较。仿真结果表明,在考虑高峰时段的实际电动汽车充放电负荷时,该方法的有效性。

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