arXiv:2509.21085cs.ROcs.NI2025-09被引 3

利用无人机地面效应实现低功耗高精度边缘检测

Flight Dynamics to Sensing Modalities: Exploiting Drone Ground Effect for Accurate Edge Detection

  • 通过分析飞行姿态与指令变化捕捉地面效应波动,作为新传感模态
  • 检测误差仅0.051米,比基线方法提升86%准确率
  • 功耗仅43mW,适合轻量级无人机快速部署

基于无人机的快速精准环境边缘检测对灾害救援和自主导航极具价值。现有雷达或视觉方法成本高、计算负担重。本文提出AirTouch系统,将传统飞行控制中视为干扰的地面效应转化为边缘检测的有利因素。核心思路是通过分析无人机姿态传感器读数与飞行指令,识别地面效应变化——通常发生在两种材质交界处,从而实现边缘定位。我们结合理论分析、算法设计与实现,充分挖掘地面效应潜力,不牺牲飞行稳定性,达成高效精准的场景边缘检测。对比视觉方法,本方案在资源效率与检测能力上更具优势。大量实验表明,系统平均检测距离误差为0.051米,优于基线86%;仅需43mW功耗,为低成本、高能效边缘检测提供新范式。

原文摘要 · Abstract (English)

Drone-based rapid and accurate environmental edge detection is highly advantageous for tasks such as disaster relief and autonomous navigation. Current methods, using radars or cameras, raise deployment costs and burden lightweight drones with high computational demands. In this paper, we propose AirTouch, a system that transforms the ground effect from a stability "foe" in traditional flight control views, into a "friend" for accurate and efficient edge detection. Our key insight is that analyzing drone basic attitude sensor readings and flight commands allows us to detect ground effect changes. Such changes typically indicate the drone flying over a boundary of two materials, making this information valuable for edge detection. We approach this insight through theoretical analysis, algorithm design, and implementation, fully leveraging the ground effect as a new sensing modality without compromising drone flight stability, thereby achieving accurate and efficient scene edge detection. We also compare this new sensing modality with vision-based methods to clarify its exclusive advantages in resource efficiency and detection capability. Extensive evaluations demonstrate that our system achieves a high detection accuracy with mean detection distance errors of 0.051m, outperforming the baseline method performance by 86%. With such detection performance, our system requires only 43 mW power consumption, contributing to this new sensing modality for low-cost and highly efficient edge detection.

无人机边缘检测地面效应低功耗

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