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Advanced traction rechargeable battery system for cableless mobile robot

机译:适用于无线移动机器人的先进牵引可充电电池系统

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Mobile robot often relies on a battery system as its power supply and such kind of mobile robot is called cableless mobile robot. In the past years, while there are many researches on automation and control techniques, mechanical and sensor designs of mobile robot, very little systematic and comprehensive work has been done in the design of rechargeable battery power system for cableless mobile robot. This paper discusses the above problem from three different aspects: selection of rechargeable battery type, battery management technique and energy renewal. In the section on selection of rechargeable battery, many different types of traction rechargeable battery are introduced and the factors that are crucial for cableless mobile robot applications are compared. The section on battery management technique focuses on battery state-of-charge (SOC) estimation. In the section on energy renewal, two typical charging techniques, conductive charging and inductive charging are discussed. In the final section, one implementation example, high power Ni-MH rechargeable battery system for TH-1 humanoid robot which is being developed by Tsinghua University, is introduced.
机译:移动机器人通常依靠电池系统作为其电源,这种移动机器人称为无绳移动机器人。近年来,尽管对移动机器人的自动化和控制技术,机械和传感器设计进行了许多研究,但是在设计用于无线移动机器人的蓄电池电源系统方面却很少进行系统和全面的工作。本文从三个不同方面讨论了上述问题:可充电电池类型的选择,电池管理技术和能量更新。在可充电电池的选择部分中,介绍了许多不同类型的牵引式可充电电池,并比较了对无线移动机器人应用至关重要的因素。电池管理技术部分着重于电池充电状态(SOC)估计。在能量更新部分中,讨论了两种典型的充电技术,即导电充电和感应充电。在最后一节中,介绍了一个实现示例,这是由清华大学开发的用于TH-1类人机器人的高功率镍氢充电电池系统。

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