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Review of energy storage systems for vehicles based on technology, environmental impacts, and costs

机译:根据技术,环境影响和成本审查车辆的能量存储系统

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摘要

Reduction in fossil fuel dependency has been an issue worldwide for several years. One of the solutions in the transportation sector to reduce the GHG, is the replacement of combustion engine vehicles with electric and hybrid vehicles. Furthermore, to make EVs competitive with ICEV, it is imperative to reduce the relatively high manufacturing cost, increase the range of those vehicles and find solutions to drastically reduce recharge times to a comparable ICEV refuelling time. Battery, Fuel Cell, and Super Capacitor are energy storage solutions imple-mented in electric vehicles, which possess different advantages and disadvantages. The combination of these Energy Storage Systems, rather than the sole use of one solution, has the potential to meet the required performance results, with regards to high energy density, lower energy consumption and a longer driving range of EVs, to replace ICEVs permanently. However, challenges such as energy management, size and cost of the energy storage systems, are essential concerns and need to be focused on for the production and adoption of EVs. Furthermore, limitations and requirements for changing power train configurations of conventional vehicles stimulate a market for biofuels and synthetic fuels, which also show potential to reduce greenhouse gas emission. This paper provides a review of energy systems for light-duty vehicles and highlights the main characteristics of electric and hybrid vehicles based on power train structure, environmental perspective, and cost. The review provides an overview of different solutions possible, which have the potential to significantly reduce GHG emissions in the transportation sector.
机译:化石燃料依赖的减少几年来全世界是一个问题。运输部门的一个解决方案是减少温室气体,是更换带电气和混合动力车辆的内燃机车辆。此外,为了使EVS竞争ICEV,必须降低相对较高的制造成本,增加这些车辆的范围,并找到解决方案,以大大降低充电时间,以相当的ICEV加油时间。电池,燃料电池和超级电容器是能量存储解决方案在电动车辆中实现的能量存储解决方案,具有不同的优缺点。这些能量存储系统的组合,而不是一种解决方案的唯一使用,具有符合所需的性能结果,关于高能量密度,较低的能量消耗和EV的较长驾驶范围,以永久替换ICEV。然而,诸如能量存储系统的能源管理,规模和成本等挑战,这是必要的担忧,并且需要专注于生产和采用EVS。此外,传统车辆的电力列车配置的局限性和要求刺激了生物燃料和合成燃料的市场,这也表现出减少温室气体排放的潜力。本文对轻型车辆的能量系统提供了综述,并突出了基于电力列车结构,环境视角和成本的电动和混合动力车辆的主要特性。审查概述了不同的解决方案,可能有可能显着降低运输部门的温室气体排放。

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