arXiv:2506.22472eess.SPcs.RO2025-06

仿蜘蛛网光波导系统实现抗干扰的冲击检测与定位

Optical Waveguide-based Spider Web Enables Resilient Impact Detection and Localization

  • 六根径向排列的TPU波导通过螺旋线连接,模拟蜘蛛网结构
  • 振动传播延迟仅5毫秒,支持高精度事件定位
  • 即使传感器失效仍能可靠识别冲击,适合柔性传感场景

蜘蛛利用蛛网作为多功能工具,通过振动捕获猎物并感知环境。受此生物功能启发,我们提出一种仿蜘蛛网的光学波导系统,用于实现稳健的冲击检测与定位。该结构由六根透明热塑性聚氨酯(TPU)波导呈辐射状排列,并通过螺旋状TPU丝连接,模拟圆蛛网形态。利用耦合的发光二极管与光电二极管测量振动引起的光传输损耗,实现实时检测。我们系统表征了单个波导,分析张力、冲击位置和断裂角度等关键参数以优化振动响应。完整系统在可控实验中验证,显示相邻半径间振动传播延迟为5毫秒,显著提升定位能力。我们展示了基于时间延迟分析的鲁棒冲击检测与定位算法,在传感器故障情况下仍能可靠识别事件。该研究凸显了仿生光学波导结构在自适应传感中的潜力,适用于软体机器人、结构监测与环境感知。

原文摘要 · Abstract (English)

Spiders use their webs as multifunctional tools that enable capturing and localizing prey and more general environmental sensing through vibrations. Inspired by their biological function, we present a spider web-inspired optical waveguide system for resilient impulse detection and localization. The structure consists of six clear thermoplastic polyurethane (TPU) waveguides arranged radially and interconnected by a spiral TPU thread, mimicking orb spider webs. Light transmission losses, induced by vibrations, are measured via coupled LEDs and photo-diodes, allowing real-time detection. We systematically characterize individual waveguides, analyzing key parameters such as tension, impulse position, and break angle to optimize vibrational response. The complete system is validated through controlled experiments, revealing a 5 ms propagation delay in vibration transfer between adjacent radii, enhancing localization capabilities. We demonstrate a robust impulse detection and localization algorithm leveraging time delay analysis, achieving reliable event identification even in cases of sensor failure. This study highlights the potential of bioinspired optical waveguide structures for adaptive sensing, with applications in soft robotics, structural monitoring, and environmental sensing.

仿生传感光波导冲击定位

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