Piecewise Linear Optimization for Public EV Charging Depots in Different Utility Environments

A. Brissette, David Coats, D. Scoffield
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Abstract

With the proliferation of electric vehicles (EVs), EV supply equipment technology is being pushed to increasingly higher power levels, such as extreme fast charging (XFC) at 300kW or more. As more public XFC depots are connected to electric distribution systems, utility operators will mitigate their impact with pricing schemes and programs such as demand response, demand charges, and time-varying prices. In this paper we describe an XFC management system that combines an on-site battery energy storage system and an optimization application that minimizes the cost to operate the depot in light of the utility pricing programs. We have designed the optimizer specially to use fast and simple linear programming so that it can be deployed to low-cost computing platforms. We also describe how several utility pricing schemes are integrated into a single piecewise model, reducing the engineering effort to implement the optimizer in different utility environments.
不同效用环境下公共电动汽车充电站分段线性优化
随着电动汽车(EV)的普及,电动汽车供电设备技术正被推向越来越高的功率水平,例如300kW或更高的极限快速充电(XFC)。随着越来越多的公共XFC仓库与配电系统连接,公用事业运营商将通过需求响应、需求收费和时变价格等定价方案和计划减轻其影响。在本文中,我们描述了一个XFC管理系统,该系统结合了一个现场电池储能系统和一个优化应用程序,该应用程序根据公用事业定价计划将运营仓库的成本降至最低。我们专门设计了优化器来使用快速和简单的线性规划,以便它可以部署到低成本的计算平台上。我们还描述了如何将几个公用事业定价方案集成到单个分段模型中,从而减少了在不同公用事业环境中实现优化器的工程工作量。
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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