HOMIE用低成本可穿戴设备实现人形机器人高效灵巧操作。
HOMIE: Humanoid Loco-Manipulation with Isomorphic Exoskeleton Cockpit

- 通过踏板+外骨骼+磁感应手套构成统一操控舱,实现全身协调控制。
- 任务完成时间缩短一半,支持高低区域自由操作,手部自由度超15。
- 开源且仅需500美元,适合机器人研发与教学使用。
通用化人形机器人运动-操作协同面临巨大挑战,需协调全身控制与高接触精度的物体操作。本文提出半自主遥操作系统HOMIE,结合强化学习策略(映射至踏板)、同构外骨骼臂控装置及动作传感手套,构建统一操控舱,实现对人形机器人的自由操作并建立数据飞轮。策略引入上肢姿态课程、高度追踪奖励与对称性利用等新设计,使系统可实现特定高度的行走与蹲下,并无缝适配任意上肢姿态。外骨骼通过消除逆动力学依赖,实现更快更精准的臂控;手套采用霍尔传感器而非伺服电机,使小型设备亦能实现15个以上自由度,自由适配各类灵巧手模型。相比以往系统,HOMIE具备显著效率优势(任务耗时减半)、更广工作范围(可自由触及高低位置及各类物体),且成本仅为500美元。系统完全开源,演示与代码见https://homietele.github.io/。
原文摘要 · Abstract (English)
Generalizable humanoid loco-manipulation poses significant challenges, requiring coordinated whole-body control and precise, contact-rich object manipulation. To address this, this paper introduces HOMIE, a semi-autonomous teleoperation system that combines a reinforcement learning policy for body control mapped to a pedal, an isomorphic exoskeleton arm for arm control, and motion-sensing gloves for hand control, forming a unified cockpit to freely operate humanoids and establish a data flywheel. The policy incorporates novel designs, including an upper-body pose curriculum, a height-tracking reward, and symmetry utilization. These features enable the system to perform walking and squatting to specific heights while seamlessly adapting to arbitrary upper-body poses. The exoskeleton, by eliminating the reliance on inverse dynamics, delivers faster and more precise arm control. The gloves utilize Hall sensors instead of servos, allowing even compact devices to achieve 15 or more degrees of freedom and freely adapt to any model of dexterous hands. Compared to previous teleoperation systems, HOMIE stands out for its exceptional efficiency, completing tasks in half the time; its expanded working range, allowing users to freely reach high and low areas as well as interact with any objects; and its affordability, with a price of just $500. The system is fully open-source, demos and code can be found in our https://homietele.github.io/.
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