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A Stochastic Program for Siting and Sizing Fast Charging Stations and Small Wind Turbines in Urban Areas

机译:用于在城市地区的快速充电站和小型风力涡轮机采用和施加快速充电站的随机计划

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摘要

Small wind turbines (SWTs) are promoted to be used in urban areas to mitigate the carbon footprint and expensive upgrades expected from high penetration levels of fast charging stations (FCSs). In this paper, a planning framework is proposed to amplify the total benefit for the owners of FCSs and SWTs as well as local distribution companies (LDCs). A stochastic program is developed to site and size SWTs along with FCSs in urban and suburban areas considering their specific wind characteristics, statutory regulations, turbine clustering studies, and geographic constraints. A worthiness metric is also proposed to rank FCS candidate locations based on their attractiveness to electric-vehicle (EV) drivers. An electric distribution network is overlaid onto a geographic map of downtown Chicago to assess the introduced planning framework. Results show that new efficient SWTs in urban areas can realistically justify their own investments over the long-term, and reduce the overall system losses and support FCS loads. In the case study presented, the investments yield a present value of $15M in profit, in 20 years, with an investment of $23M-only $6M of which is capital due in year one, while the rest consists of annual operation and maintenance costs.
机译:促进了小型风力涡轮机(SWTS)用于在城市地区使用,以减轻高速充电站(FCSS)的高渗透水平预期的碳足迹和昂贵的升级。在本文中,提出了规划框架,以放大FCSS和SWTS业主的总收益以及地方配送公司(LDC)。考虑到他们的特定风特征,法定法规,涡轮机聚类研究和地理约束,开发了一个随机和郊区的FCSS和城市和郊区的FCSS。还提出了一个值得度的指标,以基于对电动汽车(EV)驱动程序的吸引力进行排名FCS候选地点。电配电网络覆盖在芝加哥市中心的地理图上,以评估引入的规划框架。结果表明,城市地区的新高效SWTS可以在长期地区实地为自己的投资进行了良好地,并降低整体系统损失并支持FCS负荷。在提出的案例研究中,该投资在20年内产生了1500万美元的现值,投资为2300万美元,其中仅为300万美元,而其余的资金是由于年度运营和维护组成成本。

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