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Electric Vehicle into the Grid: Charging Methodologies Aimed at Providing Ancillary Services Considering Battery Degradation

机译:电动汽车并网:旨在提供考虑电池退化的辅助服务的充电方法

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The necessity of transport electrification is already undeniable due to, among other facts, global Greenhouse Gas (GHG) emissions and fossil-fuel dependency. In this context, electric vehicles (EVs) play a fundamental role. Such vehicles are usually seen by the network as simple loads whose needs have to be supplied. However, they can contribute to the correct operation of the network or a microgrid and the provision of ancillary services and delay the need to reinforce the power lines. These concepts are referred to as Vehicle-to-Grid (V2G), Vehicle-to-Building (V2B) and Vehicle-to-Home (V2H). In paper, a deep classification and analysis of published charging strategies is provided. In addition, optimal charging strategies must minimise the degradation of the batteries to increase their lifetime, since it is considered that the life of a battery ends when its capacity is reduced by 20% with respect to its nominal capacity. Therefore, an optimal integration of EVs must consider both grid and batteries impact. Finally, some guidelines are proposed for further research considering the current limitations of electric vehicle technology. Thus, these proposed guidelines are focused on V2G optimal management, enabling new business models while keeping economic viability for all parts involved.
机译:由于全球温室气体(GHG)排放和对化石燃料的依赖等事实,运输电气化的必要性已经不可否认。在这种情况下,电动汽车(EV)发挥着重要作用。网络通常将此类车辆视为必须满足需求的简单负载。但是,它们可能有助于网络或微电网的正确运行以及辅助服务的提供,并延迟了加固电源线的需求。这些概念称为“车辆到网格(V2G)”,“车辆到建筑物(V2B)”和“车辆到家庭(V2H)”。在本文中,提供了对已发布收费策略的深入分类和分析。另外,最佳的充电策略必须最小化电池的退化以增加其寿命,因为认为当其容量相对于标称容量减少20%时,电池的寿命就结束了。因此,电动汽车的最佳集成必须同时考虑电网和电池的影响。最后,考虑到电动汽车技术的当前局限性,提出了一些指导方针以供进一步研究。因此,这些拟议的指南侧重于V2G最佳管理,在维持所有相关部分的经济可行性的同时,启用了新的业务模型。

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