A Fuel Cell Power Supply System Based on Charging Scheduling of Multiple Lithium Batteries

K. Song, Shao-Huan Song, Sz-Sheng Wang
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引用次数: 2

Abstract

In recent years, various service-oriented mobile robots have become more and more popular. These mobile robots need electrical power for continuous work for some duration using some kind of battery and hence a battery charging system is required. In order to increase the durability of robot operation, it is desirable to provide a power generation as well as a power supply system onboard the robot. This paper presents a design and implementation of a power supply system combining a fuel cell and lithium batteries to increase durability. It will be a new option to provide durable and environment-friendly energy for mobile robot. In this paper, we propose a charging logic to manage fuel-cell charging of multiple lithium polymer batteries, so that the power supply system can switch among lithium polymer batteries according to the load requirement. Experimental results of the developed power supply system on a laboratory mobile robot verified the effectiveness of the proposed design.
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基于多锂电池充电调度的燃料电池供电系统
近年来,各种服务型移动机器人越来越受欢迎。这些移动机器人需要使用某种电池连续工作一段时间的电力,因此需要电池充电系统。为了增加机器人操作的耐久性,希望在机器人上提供发电和供电系统。本文提出了一种结合燃料电池和锂电池的供电系统的设计和实现,以增加耐用性。这将是为移动机器人提供耐用和环保能源的新选择。本文提出了一种充电逻辑来管理多节锂聚合物电池的燃料电池充电,使供电系统能够根据负载需求在锂聚合物电池之间切换。所开发的电源系统在实验室移动机器人上的实验结果验证了所提出设计的有效性。
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