遥操作
仿人机器人
计算机科学
机器人
模拟
可扩展性
机械设计
延迟(音频)
遥控机器人学
机械系统
稳健性(进化)
控制工程
两足机器人
机器人控制
机器人末端执行器
机械手
作者
Ill-Woo Park,Junghyun Oh,Suhan Park
标识
DOI:10.1142/s0219843626500027
摘要
This paper presents the mechanical design of a human-ridable giant humanoid robot that enables intuitive pilot-in-the-loop whole-body control. Despite the steady development of humanoid robots, humanoids continue to be constrained by human-scale strength and size, with poor scalability of transmissions and structures at large sizes and teleoperation limits in latency and situational awareness. To overcome such limitations, we introduce the mechanical design of a human-ridable giant humanoid with a cockpit-style human–machine interface (HMI): An internal robot (IR) with gravity-compensated zero-torque joint stream angles to the external robot (ER) arms, while the ER lower body provides bipedal stabilization and locomotion. This approach preserves situational awareness, mitigates teleoperation latency and viewpoint issues and couples human decision making with robotic strength, reach and endurance. We define the objectives for rideability, biped operation in human environments, and protective, high-tech packaging realized via seated posture, nonwearable manipulator HMI, height-first co-design, rapid low-cost fabrication and vertical integration. In addition, we detail the subsystem design and demonstrate stable walking and whole-body tasks.
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