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A Novel Coordinative Resident Electric Vehicle Charging Mechanism

机译:一种新型的协同式居民电动汽车充电机制

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With advanced Electric Vehicles (EVs) techniques being introduced in these decades, EVs are expected to be widely adopted as resident vehicles due to their low greenhouse gas emission and low operating costs. Meanwhile, the resident EV charging activities will be a challenging problem for the power grid and will cause severe voltage fluctuations, high Peak-to-Average Ratio (PAR) and increasing the blackout possibility. Therefore the random and unpredictable resident EV charging activities calls for an efficient and coordinative mechanism. In this paper, the general scenario of resident EV charging activities is studied and the charging activity is analyzed by queuing theory. Based on that, the novel mechanism is proposed to coordinate the charging load and the grid peak load through wireless communication as well as to set EVs a proper charging moment. Through this mechanism, all arriving EVs can be fully charged before a specific time, and the grid peak load shall not be largely increased. A comparative study is carried out by simulating the uncontrolled charging mechanism with the proposed EV charging mechanism. And the result indicates that the proposed mechanism works efficiently on reducing the grid peak load as well as the grid PAR.
机译:在过去的几十年中,随着先进的电动汽车(EV)技术的引入,由于其低温室气体排放和低运行成本,预计电动汽车将被广泛用作居民汽车。同时,居民电动汽车的充电活动对于电网将是一个挑战性的问题,并且将导致严重的电压波动,较高的峰均比(PAR)和增加停电的可能性。因此,随机且不可预测的居民电动汽车充电活动需要一种有效且协调的机制。本文研究了居民电动汽车充电行为的一般情况,并通过排队论对其进行了分析。在此基础上,提出了一种新颖的机制,可以通过无线通信协调充电负荷和电网峰值负荷,并为电动汽车设置适当的充电时刻。通过这种机制,所有到达的EV都可以在特定时间之前充满电,并且电网峰值负载不会大大增加。通过用提出的EV充电机制模拟不受控制的充电机制进行了比较研究。结果表明,所提出的机制在降低电网峰值负荷以及降低电网PAR上均有效。

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