电动汽车动态无线充电器的部署优化

Ahmed O. el Meligy, Eiman ElGhanam, Mohamed S. Hassan, A. Osman
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引用次数: 8

摘要

为了降低汽车尾气排放,电动汽车(EV)的市场份额迅速增加,这促使研究人员开发了多种充电技术,旨在最大限度地减少充电停机时间,降低电动汽车驾驶员的续航焦虑。在这些技术中,动态无线充电(DWC)因其在无线充电方面所做的大量工作而备受瞩目。然而,DWC 也带来了一些不可预见的挑战。这些挑战包括确定这些 DWC 的最佳位置,目的是最大限度地提高系统效率,同时通过最大限度地减少所需的充电车道长度来降低系统成本。本文的重点是利用交通模拟和非线性优化方法,提出部署优化问题,以找到最佳地点以及每个地点 DWC 车道的最佳长度,从而在满足给定预算的前提下实现系统总能量传输的最大化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deployment Optimization of Dynamic Wireless Chargers for Electric Vehicles
The pursuit of lower vehicle emissions has allowed the market share of electric vehicles (EVs) to rapidly increase, which has motivated researchers to develop several charging techniques, aiming to minimize the charging downtime and reduce the range anxiety of EV drivers. Of those techniques, dynamic wireless charging (DWC) has gained significant traction due to the substantial amount of work that has been done in wireless charging. However, with DWC, some unforeseen challenges have risen. These include identifying the optimum locations of those DWCs with the objective of maximizing the system efficiency while minimizing the system cost by minimizing the required lengths of charging lanes. This paper focuses on formulating the deployment optimization problem to find the optimum locations, along with the optimum length of DWC lanes at each location, by utilizing traffic simulations and non-linear optimization methods, aiming to maximize the total energy transfer of the system while meeting a given budget.
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