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Economic incentives for reducing peak power utilization in electric vehicle charging stations

机译:降低电动车辆充电站峰值电力利​​用的经济激励

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This paper examines the economic utility of a method to reduce peak grid load from Personal Electric Vehicles by employing distributed battery storage at charging stations. We introduce a system to cache power at PEV charging stations using batteries to smooth charging station peak loads, replenishing batteries when station load is low, without relying on centralized control. We perform comprehensive large-scale simulations to show that its adoption reduces average daily peak power levels by between 14% and 24% for typical urban and suburban grids. We propose a method for discharging and charging batteries that is driven by economic incentives for charging station operators based on differentiated peak and nonpeak energy prices. We find utility operators can influence charging station owners to invest in batteries by differentiating peak and nonpeak energy prices, and achieve peak power reductions without increasing aggregate charging station energy costs.
机译:本文通过采用充电站采用分布式电池储存来研究一种减少个人电动车辆峰值栅极载荷的方法的经济效用。我们向PEV充电站的缓存电力介绍了使用电池的缓存电力,以平滑充电站峰值负载,当站负荷低时,补充电池,而无需依赖集中控制。我们进行全面的大规模模拟,表明它的采用在典型的城市和郊区网格中通过14 %和24 %降低了平均每日峰值功率水平。我们提出了一种基于差异化峰值和非斑点能源价格的充电站运营商的经济激励驱动的放电和充电电池的方法。我们发现公用事业运营商可以影响充电站所有者通过区分峰值和非斑点能源价格来投资电池,并在不增加集合充电站能源成本的情况下实现峰值功率降低。

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