arXiv:2604.08528cs.RO2026-04被引 3

用声音感应实现夹爪内物体滑动的实时高精度检测

A-SLIP: Acoustic Sensing for Continuous In-hand Slip Estimation

  • 通过夹爪内置麦克风阵列捕捉接触振动,识别滑动
  • 多麦克风配置使方向误差降低64%,精度提升12%
  • 适合需要低成本实时反馈的机器人抓取场景

可靠的手中操作需要准确、实时的夹持面滑动估计。现有基于视觉、电容或力矩测量的触觉传感方法在体积、耐用性以及同时估计滑动方向与大小之间存在根本权衡。本文提出A-SLIP,一种集成于平行爪夹爪中的多通道声学感知系统,用于估计抓握平面内的连续滑动。该传感器由位于纹理硅胶接触垫后方的压电麦克风组成,用于捕获结构化接触引起的振动。A-SLIP模型将同步多通道音频处理为对数梅尔频谱图,利用轻量级卷积网络联合预测滑动的存在性、方向和大小。在机器人及外部诱发滑动条件下实验中,经过微调的四麦克风配置平均方向误差为14.1度,检测准确率比基线最高提升12%,方向误差降低32%。相比单麦克风配置,多通道设计使方向误差减少64%,幅度误差减少68%,凸显空间声学感知在解决滑动方向模糊问题中的重要性。进一步闭环反应控制测试表明,A-SLIP可实现可靠、低成本、实时的手中滑动估计。项目视频与详细信息见https://a-slip.github.io。

原文摘要 · Abstract (English)

Reliable in-hand manipulation requires accurate real-time estimation of slip between a gripper and a grasped object. Existing tactile sensing approaches based on vision, capacitance, or force-torque measurements face fundamental trade-offs in form factor, durability, and their ability to jointly estimate slip direction and magnitude. We present A-SLIP, a multi-channel acoustic sensing system integrated into a parallel-jaw gripper for estimating continuous slip in the grasp plane. The A-SLIP sensor consists of piezoelectric microphones positioned behind a textured silicone contact pad to capture structured contact-induced vibrations. The A-SLIP model processes synchronized multi-channel audio as log-mel spectrograms using a lightweight convolutional network, jointly predicting the presence, direction, and magnitude of slip. Across experiments with robot- and externally induced slip conditions, the fine-tuned four-microphone configuration achieves a mean absolute directional error of 14.1 degrees, outperforms baselines by up to 12 percent in detection accuracy, and reduces directional error by 32 percent. Compared with single-microphone configurations, the multi-channel design reduces directional error by 64 percent and magnitude error by 68 percent, underscoring the importance of spatial acoustic sensing in resolving slip direction ambiguity. We further evaluate A-SLIP in closed-loop reactive control and find that it enables reliable, low-cost, real-time estimation of in-hand slip. Project videos and additional details are available at https://a-slip.github.io.

触觉传感滑动检测机器人抓取

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