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Enhancement of mechanical strength, computational power, and heat management for fieldwork humanoid robots

机译:增强野外作业人形机器人的机械强度,计算能力和热量管理

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Robots need to gain high power and robustness for them to be used in hostile environments such as disaster site. In this paper, design methodology of a humanoid robot with robustness is proposed. Electro-Hydrostatic Actuators are adopted to provide backdrivability and mechanical robustness. Parallel-serial hybrid mechanisms and its protection mechanisms are used in joint structure to enhance structural strength. MCU and FPGA are used to realize fast motor control and acquisition of sensory data from large number of sensors. Cooling system was developed to ensure performance under high load and enhance reliability of the robot. Development of robust robot system of a disaster response humanoid robot is reported.
机译:机器人需要获得强大的动力和坚固性,才能在灾难现场等恶劣环境中使用。本文提出了一种具有鲁棒性的类人机器人设计方法。电动静液压执行器被采用以提供反向驱动性和机械坚固性。并行结构中采用了并行-串行混合机制及其保护机制,以增强结构强度。 MCU和FPGA用于实现快速电机控制以及从大量传感器中获取传感数据。开发冷却系统以确保在高负载下的性能并增强机器人的可靠性。报道了灾害响应类人机器人的鲁棒机器人系统的开发。

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