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Plug-in electric vehicle interactions with a small office building: An economic analysis using DER-CAM

机译:插电式电动汽车与小型办公大楼的交互:使用DER-CAM的经济分析

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It is generally believed that plug-in electric vehicles (PEVs) offer environmental and energy security advantages compared to conventional vehicles. Policies are stimulating electric transportation deployment, and PEV adoption may grow significantly. New technology and business models are being developed to organize the PEV and building interface and their interaction with the wider grid. This paper analyzes the PEVs' integration into a building's Energy Management System (EMS). This relationship is modeled by the Distributed Energy Resources Customer Adoption Model (DER-CAM), which finds optimal equipment combinations to meet microgrid requirements at minimum cost, carbon footprint, or other criteria. Results show that vehicle batteries are valuable to the building and a contractual relationship that shares the benefit between building and vehicle owner is possible. Under a simple annual fixed payment and energy exchange agreement, vehicles are primarily used to avoid peak demand charges and supply cheaper off-peak electricity to the building during workdays.
机译:通常认为,与传统车辆相比,插入式电动车辆(PEV)具有环境和能源安全优势。政策正在刺激电力运输的部署,而PEV的采用可能会显着增长。正在开发新技术和商业模型来组织PEV和建筑界面以及它们与更广泛的网格的交互。本文分析了PEV集成到建筑物的能源管理系统(EMS)中的情况。这种关系是由分布式能源客户采用模型(DER-CAM)建模的,该模型找到了以最小的成本,碳足迹或其他标准满足微电网要求的最佳设备组合。结果表明,车辆电池对建筑物很有价值,并且可能共享与建筑物和车辆所有者之间的利益的合同关系。根据简单的年度固定付款和能源交换协议,车辆主要用于避免高峰时段的用电需求,并在工作日内为建筑物提供便宜的非高峰时段用电。

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