arXiv:2511.20226cs.RO2025-11

让软体机器人学会用柔性控制应对复杂任务

Toward generic control for soft robotic systems

  • 以人类运动控制为灵感,用高阶意图替代精确指令
  • 跨形态软体机器人实现稳定安全的通用行为迁移
  • 适合追求鲁棒性和泛化能力的机器人研究者

软体机器人发展迅速,但其控制方法仍分散:不同结构和驱动方式需定制控制器,阻碍理论整合与大规模应用。通用控制框架亟待建立,关键障碍在于持续使用基于刚体的控制逻辑——依赖精确模型和低层严格执行。该范式对刚体有效,却无法适用于软体机器人,因软体机器人的鲁棒性与适应性恰恰源于对近似动作表示的容忍与利用,即控制柔顺性,而非需消除的干扰。控制应从抑制柔顺转向主动利用。人类运动控制正是此原则体现:不计算精确动力学或下达肌肉级命令,而是通过高层运动意图表达意图,局部细节由反射与生物力学机制自主解决。该架构实现鲁棒、灵活与跨任务泛化。受此启发,我们提出基于控制柔顺性的通用软体机器人控制框架,并在多种形态与驱动机制的机器人上验证。结果表明,系统实现稳定、安全且跨平台可迁移的行为,说明拥抱控制柔顺性而非抗拒,或可成为统一软体机器人控制的普适基础。

原文摘要 · Abstract (English)

Soft robotics has advanced rapidly, yet its control methods remain fragmented: different morphologies and actuation schemes still require task-specific controllers, hindering theoretical integration and large-scale deployment. A generic control framework is therefore essential, and a key obstacle lies in the persistent use of rigid-body control logic, which relies on precise models and strict low-level execution. Such a paradigm is effective for rigid robots but fails for soft robots, where the ability to tolerate and exploit approximate action representations, i.e., control compliance, is the basis of robustness and adaptability rather than a disturbance to be eliminated. Control should thus shift from suppressing compliance to explicitly exploiting it. Human motor control exemplifies this principle: instead of computing exact dynamics or issuing detailed muscle-level commands, it expresses intention through high-level movement tendencies, while reflexes and biomechanical mechanisms autonomously resolve local details. This architecture enables robustness, flexibility, and cross-task generalization. Motivated by this insight, we propose a generic soft-robot control framework grounded in control compliance and validate it across robots with diverse morphologies and actuation mechanisms. The results demonstrate stable, safe, and cross-platform transferable behavior, indicating that embracing control compliance, rather than resisting it, may provide a widely applicable foundation for unified soft-robot control.

软体机器人控制框架柔顺控制通用性

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