梳理视觉触觉传感器分类体系,揭示两大核心原理与四类设计差异。
Classification of Vision-Based Tactile Sensors: A Review
- 按接触信号转译机制分为标记位移与像素强度两类主原理。
- 提出四类传感器:简单/形态标记型与反射/透明层型,各有硬件特点。
- 适合机器人触觉系统设计者参考,助其选型与创新方向判断。
视觉触觉传感器(VBTS)因高空间分辨率、低成本和易定制性,在机械手、夹持器和假肢中广泛应用。尽管具备相机模块等共性设计,其传感原理、材料组成、多模态方式及数据解析方法差异显著。本文提出一种新型分类体系,依据接触信号向触觉图像的转换机制,将技术分为两大主类:标记位移转导原理与像素强度转导原理。前者进一步细分为简单标记型(SMB)与形态标记型(MMB);后者包含反射层型(RLB)与透明层型(TLB)。本文对比分析四类传感器的硬件特性及组合形式,并讨论常用信息解析方法,揭示当前技术挑战与未来研究方向。
原文摘要 · Abstract (English)
Vision-based tactile sensors (VBTS) have gained widespread application in robotic hands, grippers and prosthetics due to their high spatial resolution, low manufacturing costs, and ease of customization. While VBTSs have common design features, such as a camera module, they can differ in a rich diversity of sensing principles, material compositions, multimodal approaches, and data interpretation methods. Here, we propose a novel classification of VBTS that categorizes the technology into two primary sensing principles based on the underlying transduction of contact into a tactile image: the Marker-Based Transduction Principle and the Intensity-Based Transduction Principle. Marker-Based Transduction interprets tactile information by detecting marker displacement and changes in marker density. In contrast, Intensity-Based Transduction maps external disturbances with variations in pixel values. Depending on the design of the contact module, Marker-Based Transduction can be further divided into two subtypes: Simple Marker-Based (SMB) and Morphological Marker-Based (MMB) mechanisms. Similarly, the Intensity-Based Transduction Principle encompasses the Reflective Layer-based (RLB) and Transparent Layer-Based (TLB) mechanisms. This paper provides a comparative study of the hardware characteristics of these four types of sensors including various combination types, and discusses the commonly used methods for interpreting tactile information. This~comparison reveals some current challenges faced by VBTS technology and directions for future research.
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