arXiv:2505.03761cs.RO2025-05被引 5

通过一体化设计提升软体机器人的实用性与可靠性

Soft yet Effective Robots via Holistic Co-Design

  • 同步优化机器人结构与控制策略,打破传统逐级设计局限
  • 结合真实原型验证与高效代理指标,减少仿真到现实的差距
  • 兼顾功能、耐用性和可制造性,适合工业落地应用

软体机器人凭借材料柔性具有天然安全性,适用于人机交互或脆弱环境。但其开发复杂,需整合材料、几何、驱动与自主性,传统串行设计流程缺乏反馈,难以平衡任务性能与耐用性、可制造性等多目标。本文回顾新兴的一体化设计方法,发现其虽能探索非传统结构,但仍存在三大瓶颈:依赖单一指标的仿真评估、忽略实际可实现性导致模拟与现实性能偏差、计算成本高限制设计空间探索。为此提出一种整体化协同设计框架,融合多元设计价值、引入真实原型迭代评估,并通过代理指标与模型控制提升效率。该框架同时优化功能性、耐用性与可制造性,有望提升软体机器人的可靠性与普及度,推动人机交互变革。

原文摘要 · Abstract (English)

Soft robots promise inherent safety via their material compliance for seamless interactions with humans or delicate environments. Yet, their development is challenging because it requires integrating materials, geometry, actuation, and autonomy into complex mechatronic systems. Despite progress, the field struggles to balance task-specific performance with broader factors like durability and manufacturability - a difficulty that we find is compounded by traditional sequential design processes with their lack of feedback loops. In this perspective, we review emerging co-design approaches that simultaneously optimize the body and brain, enabling the discovery of unconventional designs highly tailored to the given tasks. We then identify three key shortcomings that limit the broader adoption of such co-design methods within the soft robotics domain. First, many rely on simulation-based evaluations focusing on a single metric, while real-world designs must satisfy diverse criteria. Second, current methods emphasize computational modeling without ensuring feasible realization, risking sim-to-real performance gaps. Third, high computational demands limit the exploration of the complete design space. Finally, we propose a holistic co-design framework that addresses these challenges by incorporating a broader range of design values, integrating real-world prototyping to refine evaluations, and boosting efficiency through surrogate metrics and model-based control strategies. This holistic framework, by simultaneously optimizing functionality, durability, and manufacturability, has the potential to enhance reliability and foster broader acceptance of soft robotics, transforming human-robot interactions.

软体机器人协同设计可制造性仿真-现实差距

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