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Optimal planning of the Nordic transmission system with 100% electric vehicle penetration of passenger cars by 2050

机译:到2050年,实现100%电动汽车普及乘用车的北欧变速箱系统的优化规划

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This paper presents the optimal planning of the Nordic backbone transmission system with 100% electric vehicle penetration of passenger cars by 2050. Electric vehicles will play an important role in the future energy systems and can reduce the greenhouse gas emission from the transport sector. However, the electric vehicles will increase the electricity consumption and might induce congestions in the transmission systems. In order to deal with the electricity consumption increase from the electric vehicle integration into the power system and maximize the social welfare, the optimal investments of the Nordic transmission system are studied. Case studies were conducted using the market simulation model EMPS (Efi's multi-area power market simulator) and two electric vehicle charging scenarios: a spot price based scenario and a dumb charging scenario. The electric vehicle charging power is assumed to be 3.68 kW with 1 phase 16 A. The complete electrification of the private passenger fleet increases the yearly power demand in the Nordic region with ca 7.5%. The profitable increases in transmission capacities are highest for dumb charging, but are very low for both dumb and spot price based charging compared to a Reference case. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了到2050年电动汽车普及率达到100%的北欧骨干传输系统的最佳规划。电动汽车将在未来的能源系统中扮演重要角色,并可以减少交通运输部门的温室气体排放。然而,电动车辆将增加电力消耗,并可能在传输系统中引起拥塞。为了应对因电动汽车集成到电力系统中而增加的电力消耗并最大化社会福利,研究了北欧变速系统的最佳投资。使用市场仿真模型EMPS(Efi的多区域电力市场仿真器)和两种电动汽车充电方案进行了案例研究:基于现货价格的方案和虚拟充电方案。假设电动汽车的充电功率为1相16 A时为3.68 kW。私人乘用车队的完全电气化将使北欧地区的年电力需求增加约7.5%。与参考案例相比,哑巴充电的传输容量的获利增加最高,但基于哑巴和现货价格的充电都非常低。 (C)2016 Elsevier Ltd.保留所有权利。

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