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Methodology for modelling plug-in electric vehicles in the power system and cost estimates for a system with either smart or dumb electric vehicles

机译:为电力系统中的插电式电动汽车建模的方法论以及采用智能或哑电动汽车的系统的成本估算

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The article estimates the costs of plug-in electric vehicles (EVs) in a future power system as well as the benefits from smart charging and discharging EVs (smart EVs). To arrive in a good estimate, a generation planning model was used to create power plant portfolios, which were operated in a more detailed unit commitment and dispatch model. In both models the charging and discharging of EVs is optimised together with the rest of the power system. Neither the system cost nor the market price of electricity for EVs turned out to be high (36-263 €/vehicle/year in the analysed scenarios). Most of the benefits of smart EVs come from smart timing of charging although benefits are also accrued from provision of reserves and lower power plant portfolio cost. The benefits of smart EVs are 227 €/vehicle/year. This amount has to cover all expenses related to enabling smart EVs and need to be divided between different actors. Additional benefits could come from the avoidance of grid related costs of immediate charging, but these were not part of the analysis.
机译:本文估算了未来电力系统中的插电式电动汽车(EV)的成本,以及智能充电和放电EV(智能EV)的收益。为了获得良好的估计,使用了发电计划模型来创建电厂投资组合,并在更详细的机组承诺和调度模型中进行操作。在这两种模型中,电动汽车的充电和放电都与其他电力系统一起进行了优化。电动汽车的系统成本和电力市场价格都没有很高(在分析的情况下为36-263欧元/车辆/年)。智能电动汽车的大部分好处来自智能充电定时,尽管好处还来自提供储备和降低电厂投资组合成本。智能电动车的好处是每辆车每年227欧元。该金额必须涵盖与启用智能电动汽车相关的所有费用,并且需要在不同参与者之间进行分配。避免与电网相关的即时充电成本可能会带来额外的好处,但这不是分析的一部分。

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