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Modeling of Electric Vehicle Charging Systems in Communications Enabled Smart Grids

机译:基于通信的智能电网中的电动汽车充电系统建模

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摘要

We consider a queuing model with applications to electric vehicle (EV) charging systems in smart grids. We adopt a scheme where an Electric Service Company (ESCo) broadcasts a one bit signal to EVs, possibly indicating 'on-peak' periods during which electricity cost is high. EVs randomly suspend/resume charging based on the signal. To model the dynamics of EVs we propose an M/M/oo queue with random interruptions, and analyze the dynamics using time-scale decomposition. There exists a trade-off: one may postpone charging activity to 'off-peak' periods during which electricity cost is cheaper, however this incurs extra delay in completion of charging. Using our model we characterize achievable trade-offs between the mean cost and delay perceived by users. Next we consider a scenario where EVs respond to the signal based on the individual loads. Simulation results show that peak electricity demand can be reduced if EVs carrying higher loads are less sensitive to the signal.
机译:我们考虑一种排队模型,并将其应用于智能电网中的电动汽车(EV)充电系统。我们采用的方案是,电力服务公司(ESCo)向电动车广播一位信号,这可能表示电费高昂的“高峰”时段。电动汽车根据信号随机中止/恢复充电。为了对电动汽车的动力学建模,我们提出了带有随机中断的M / M / oo队列,并使用时间尺度分解分析了动力学。需要权衡取舍:可以将充电活动推迟到电费便宜的“非高峰”时期,但是这会导致充电完成的额外延迟。使用我们的模型,我们可以描述在平均成本和用户感知的延迟之间可以实现的折衷。接下来,我们考虑一种情况,其中电动汽车基于各个负载对信号做出响应。仿真结果表明,如果负载较高的电动汽车对信号的敏感度较低,则峰值用电量可以降低。

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