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Using ultracapacitors as energy-storing devices on a mobile robot platform power system for ultra-fast charging

机译:在移动机器人平台电源系统上使用超级电容器作为储能设备进行超快速充电

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摘要

The large charging times required by conventional batteries constitute an important limitation in many applications. The use of ultracapacitors as energy storage elements allows substantially faster charging. This paper presents a power supply system developed in order to validate the possibility of providing a mobile robot platform with an electrical energy storage system based on ultracapacitors and batteries, ensuring both the autonomy and the charging time required by this vehicle. Both simulations results and experimental results – also presented in this paper – validate this possibility. Using exclusively one ultracapacitors module as energy-storing device of the new power supply system, the mobile platform achieved an autonomy of 22 minutes after a charging time of 1 minute and 57 seconds. The charging time is less than 10% of the autonomy time. The system also proved its ability to properly charge lead-acid batteries or nickel–metal hydride batteries, which may be used as energy-storing devices, allowing the mobile platform to achieve greater autonomy than the one obtained with ultracapacitors (at the cost of larger charging times).
机译:常规电池所需的大充电时间构成了许多应用中的重要限制。使用超级电容器作为能量存储元件可以大大加快充​​电速度。本文提出了一种电源系统,旨在验证为移动机器人平台提供基于超级电容器和电池的电能存储系统的可能性,从而确保该车辆所需的自主性和充电时间。本文还介绍了仿真结果和实验结果,均验证了这种可能性。该移动平台仅使用一个超级电容器模块作为新电源系统的储能设备,在充电时间为1分钟57秒后,可实现22分钟的自主权。充电时间少于自治时间的10%。该系统还证明了其能够对铅酸电池或镍金属氢化物电池正确充电的能力,这些铅酸电池或镍氢电池可以用作能量存储设备,从而使移动平台能够获得比超级电容器更大的自主权(但其成本更高)。充电时间)。

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