arXiv:2605.18482cs.RO2026-05

通过双向光传感实现软晶格结构拉伸与压缩的精准追踪

Bidirectional Optical sensors for Actuation Tracking (BOAT) in soft lattice systems

论文配图:Bidirectional Optical sensors for Actuation Tracking (BOAT) in soft lattice systems
图 1 · 摘自论文原文
  • 采用椭球形双波导结构,通过表面图案化设计实现双向变形感知
  • 100次压力循环测试中响应高度重复,可在+50 kPa至-40 kPa区间区分拉伸与压缩
  • 可嵌入气动人工肌肉系统,支持虚拟孪生实时同步

软机器人中晶格结构日益普及,亟需能监测全局形变(特别是压缩与拉伸)的先进传感方案。本文提出一种新型双向光学传感器(BOAT),基于两个图案化波导以椭球几何布局构成,可与晶格结构一体打印,并集成于嵌入式气动人工肌肉(PAM)中。当PAM拉伸或收缩时,嵌入式波导弯曲导致输出信号变化,从而清晰区分压缩与拉伸状态。通过数值模拟优化波导结构及双BOAT嵌入的晶格单元设计。在+50 kPa至-40 kPa范围内进行100次连续压力循环实验,验证了响应的高度可重复性,实现可靠的状态判别。最终,利用传感器反馈实现数字孪生,完成物理单元与其虚拟副本的持续同步。结果表明,BOAT是软晶格机器人系统中形变监测的强大且可靠的解决方案。

原文摘要 · Abstract (English)

The growing adoption of lattice-based structures in soft robotics creates a need for advanced sensing solutions capable of monitoring their global deformation, particularly compression and extension. In this work, we address this challenge by introducing a novel optical sensor based on two patterned waveguides arranged in an ellipsoidal geometry. This Bidirectional Optical sensor for Actuation Tracking (BOAT) is seamlessly co-printed with a lattice structure actuated by an embedded pneumatic artificial muscle (PAM), and its performance is assessed. During PAM elongation or contraction, the bending of the embedded BOAT waveguides induces output signal variations that enable a clear discrimination between compression and extension states. The designs of both each specific waveguide structure (by surface patterning) and of the sensorized lattice-based unit embedding two BOATs are supported by numerical simulations. Experimental calibration over 100 consecutive pressure cycles ranging from +50 kPa to $-$40 kPa demonstrates a highly repeatable response, allowing a reliable distinction between extension and compression. Finally, sensor feedback is used to implement a digital shadow, enabling continuous synchronization between the whole sensorized unit and its virtual counterpart. These results establish BOAT as a powerful and reliable approach for deformation monitoring in soft lattice-based robotic systems.

软体机器人光学传感形变追踪数字孪生

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