Optimal EV Charger Level Specification for Residential Buildings with Renewable Energy

K. Knowles, Bilal Faye, Alex Orrson, Hussein Abdeltawab, Mesude Bayrakci-Boz, S. Anwar
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引用次数: 1

Abstract

Electric Vehicles (EVs) have witnessed high interest lately due to different environmental, socio-political, and economic factors. The chargers of EVs are categorized into three levels; L1 and L2. These chargers have different power ratings and prices. On the other hand, many houses started to add distributed energy resources such as photovoltaic (PV) to their existing power service. This paper investigates the optimal level of an EV charger for a residential building with renewable energy. The optimization aims to reduce the energy cost during the lifetime of the EV battery. The optimization constraints include the EV state of charge, the charging/discharging power limits of the EV, the EV expected availability, the house service size, and the EV maximum number of cycles. The study also investigates the feasibility of conducting a power service upgrade while keeping a power reserve for future load uncertainty. The problem is formulated as a non-convex optimization problem utilizing the Gurobi solver. The optimization problem is solved for different scenarios presenting different loads, PV power, and EV availability scenarios. Case studies are conducted using household data in Los Angeles, CA. The studies evaluated the energy cost saving for different levels of the chargers in the case of various PV sizes and energy tariffs. This research is a collaboration result between three commonwealth campuses in Pennsylvania State University.
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可再生能源住宅建筑电动汽车充电器最优等级规范
由于各种环境、社会政治和经济因素,电动汽车(ev)最近引起了人们的高度关注。电动汽车的充电器分为三个级别;L1和L2。这些充电器有不同的额定功率和价格。另一方面,许多家庭开始在现有的电力服务中增加光伏(PV)等分布式能源。本文研究了可再生能源住宅建筑中电动汽车充电器的最佳配置水平。优化的目的是降低电动汽车电池寿命期间的能量成本。优化约束包括电动汽车的充电状态、电动汽车的充放电功率限制、电动汽车的预期可用性、家庭服务规模和电动汽车的最大循环次数。该研究还探讨了在进行电力服务升级的同时保持电力储备以应对未来负荷不确定性的可行性。利用Gurobi求解器将该问题表述为一个非凸优化问题。针对不同负载、不同光伏功率、不同电动汽车可用性的场景,解决了优化问题。案例研究是利用加州洛杉矶的家庭数据进行的。研究评估了在不同光伏发电规模和能源关税的情况下,不同水平的充电器节省的能源成本。这项研究是宾夕法尼亚州立大学三个联邦校区合作的结果。
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