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Smart charge management of electric vehicles in decentralized power supply systems

机译:分散电源系统中电动车辆的智能电荷管理

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In the world wide discussion on reducing CO2 emissions, the utilization of electric vehicles is considered to be a reasonable approach. But an essential contribution to CO2 reduction can only be reached by integrating the vehicles into the electrical grid as controlled loads. Demand side management allows scheduling the charging process so that vehicle accumulators are charged during time periods of high regenerative power supply or low grid load. By this means the electric vehicles can be largely supplied by CO2 free energy sources and the utilization of the power supply infrastructure can be improved. Additional investment in the replacement reserve and the expansion of the grid transmission capacity can be avoided, especially in urban areas. This contribution will introduce different concepts for the integration of electric vehicles into the electrical grid, which allow a large utilization of stochastically fluctuating regenerative energy sources. Furthermore, incentive concepts for influencing the behavior of vehicle users, in order to create a temporal correlation between the charging time of the vehicle and the availability of power from regenerative sources, will be introduced and their effects discussed.
机译:在全球范围内讨论减少CO 2 排放,电动汽车的利用被认为是合理的方法。但只能通过将车辆集成到电网中作为受控负载来达到对CO 2 减小的基本贡献。需求侧管理允许调度充电过程,使得车辆蓄能器在高再生电源或低网格负载的时间段期间充电。通过这意味着电动车辆可以很大程度上由CO 2 自由能源提供,并且可以提高电源基础设施的利用。可以避免额外投资更换储备和栅格传输能力的扩展,尤其是城市地区。这种贡献将引入不同的概念,用于将电动车集成到电网中,这允许大量利用随机波动的再生能源。此外,将引入用于影响车辆用户的行为的激励概念,以便在车辆的充电时间和来自再生源的功率的可用性之间产生时间相关性,并讨论其效果。

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