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Energy storage for electric vehicles

机译:电动汽车储能

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摘要

Electric vehicles have reached a mature technology today because they are superior to internal combustion engines (ICE) in efficiency, endurance, durability, acceleration capability and simplicity. Besides, they can recover some energy during regenerative braking and they are also friendly with the environment. However, the energy storage capability is one of their big drawbacks. Autonomous vehicles must carry all the energy they need for a given distance and speed. It means an energy storage system with high specific energy (Wh/kg) and high specific power (W/kg), which allows rapid charge to reduce the long charging time required today. This presentation shows some of the options under study to increase the energy storage capability and to reduce the charging time. A comparative study of different storage alternatives, such as chemical battery systems, ultracapacitors, flywheels and fuel cells are evaluated, showing the advantages and disadvantages of each one of them.
机译:如今,电动汽车已成为一项成熟的技术,因为它们在效率,耐用性,耐用性,加速能力和简单性方面均优于内燃机(ICE)。此外,它们可以在再生制动过程中回收一些能量,并且对环境友好。然而,能量存储能力是它们的主要缺点之一。在给定的距离和速度下,自动驾驶汽车必须携带其所需的所有能量。这意味着具有高比能量(Wh / kg)和高比功率(W / kg)的储能系统,可以快速充电以减少当今所需的长充电时间。本演示文稿展示了一些正在研究中的选项,它们可以提高能量存储能力并减少充电时间。对不同的存储替代方案(例如化学电池系统,超级电容器,飞轮和燃料电池)进行了比较研究,显示了每种存储方案的优缺点。

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