用仿生标记布局提升视觉触觉传感的三维形貌重建精度
StereoTacTip: Vision-based Tactile Sensing with Biomimetic Skin-Marker Arrangements
- 通过新算法实现标记点的精准匹配与追踪
- 提出折射深度校正模型,减少介质引起的畸变
- 适合做高精度触觉感知或机器人灵巧操作的研究者
基于视觉的触觉传感器(VBTS)因输出信息丰富而表现优异。近期基于标记点的VBTS在立体相机下可实现高精度几何重建。然而,许多系统采用复杂的仿生皮肤-标记布局,导致从标记点重构皮肤表面时存在困难。本文提出新型立体视觉触觉传感器StereoTacTip,为实现精确几何重建,引入四项技术:(i) 基于德劳内三角剖分环编码的新算法实现立体标记点匹配与追踪;(ii) 折射深度校正模型,修正内部介质引起的深度畸变;(iii) 由标记点位置反推皮肤法向量,实现表面形态修正;(iv) 支持多接触场景下的几何重建。实验中成功在大尺度3D地图上重建地形拓扑结构。其中(i)(ii)两项虽专为仿生标记设计,但可普遍提升各类标记式VBTS性能。本工作强调,深入理解复杂皮肤-标记结构对获取准确几何信息至关重要。
原文摘要 · Abstract (English)
Vision-Based Tactile Sensors (VBTSs) stand out for their superior performance due to their high-information content output. Recently, marker-based VBTSs have been shown to give accurate geometry reconstruction when using stereo cameras. \uhl{However, many marker-based VBTSs use complex biomimetic skin-marker arrangements, which presents issues for the geometric reconstruction of the skin surface from the markers}. Here we investigate how the marker-based skin morphology affects stereo vision-based tactile sensing, using a novel VBTS called the StereoTacTip. To achieve accurate geometry reconstruction, we introduce: (i) stereo marker matching and tracking using a novel Delaunay-Triangulation-Ring-Coding algorithm; (ii) a refractive depth correction model that corrects the depth distortion caused by refraction in the internal media; (iii) a skin surface correction model from the marker positions, relying on an inverse calculation of normals to the skin surface; and (iv)~methods for geometry reconstruction over multiple contacts. To demonstrate these findings, we reconstruct topographic terrains on a large 3D map. Even though contributions (i) and (ii) were developed for biomimetic markers, they should improve the performance of all marker-based VBTSs. Overall, this work illustrates that a thorough understanding and evaluation of the morphologically-complex skin and marker-based tactile sensor principles are crucial for obtaining accurate geometric information.
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