An opportunistic wireless charging system design for an on-demand shuttle service

K. Doubleday, A. Meintz, T. Markel
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引用次数: 11

Abstract

System right-sizing is critical to implementation of in-motion wireless power transfer (WPT) for electric vehicles. This study introduces a modeling tool, WPTSim, which uses one-second speed, location, and road grade data from an on-demand employee shuttle in operation to simulate the incorporation of WPT at fine granularity. Vehicle power and state of charge are simulated over the drive cycle to evaluate potential system designs. The required battery capacity is determined based on the rated power at a variable number of charging locations. Adding just one WPT location can more than halve the battery capacity needed. Many configurations are capable of being self sustaining with WPT, while others benefit from supplemental stationary charging.
为按需班车服务设计的机会式无线充电系统
系统合适的尺寸是实现电动汽车动态无线电力传输(WPT)的关键。本研究引入了一种建模工具WPTSim,该工具使用运行中的按需员工班车的一秒速度、位置和道路坡度数据,以细粒度模拟WPT的结合。在整个行驶周期中模拟车辆功率和充电状态,以评估潜在的系统设计。所需的电池容量是根据在可变数量的充电位置的额定功率确定的。仅增加一个WPT位置就可以使所需的电池容量减少一半以上。许多配置能够通过WPT自我维持,而其他配置则受益于补充固定充电。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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