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用于安全人机交互的敏感气球传感器设计。

Design of a Sensitive Balloon Sensor for Safe Human-Robot Interaction.

机构信息

Department of Mechanical Engineering, Ajou University, San 5, Woncheon-dong, Yeongtong-gu, Suwon 443-749, Korea.

出版信息

Sensors (Basel). 2021 Mar 19;21(6):2163. doi: 10.3390/s21062163.

Abstract

As the safety of a human body is the main priority while interacting with robots, the field of tactile sensors has expanded for acquiring tactile information and ensuring safe human-robot interaction (HRI). Existing lightweight and thin tactile sensors exhibit high performance in detecting their surroundings. However, unexpected collisions caused by malfunctions or sudden external collisions can still cause injuries to rigid robots with thin tactile sensors. In this study, we present a sensitive balloon sensor for contact sensing and alleviating physical collisions over a large area of rigid robots. The balloon sensor is a pressure sensor composed of an inflatable body of low-density polyethylene (LDPE), and a highly sensitive and flexible strain sensor laminated onto it. The mechanical crack-based strain sensor with high sensitivity enables the detection of extremely small changes in the strain of the balloon. Adjusting the geometric parameters of the balloon allows for a large and easily customizable sensing area. The weight of the balloon sensor was approximately 2 g. The sensor is employed with a servo motor and detects a finger or a sheet of rolled paper gently touching it, without being damaged.

摘要

由于在与机器人交互时人体安全是首要考虑因素,因此触觉传感器领域已经扩展,以获取触觉信息并确保安全的人机交互(HRI)。现有的轻量级和超薄触觉传感器在检测周围环境方面表现出了很高的性能。然而,由于故障或突然的外部碰撞而导致的意外碰撞仍然会对带有薄触觉传感器的刚性机器人造成伤害。在本研究中,我们提出了一种用于接触感应的敏感气球传感器,以减轻刚性机器人大面积的物理碰撞。气球传感器是一种压力传感器,由低密度聚乙烯(LDPE)制成的可充气体和粘贴在其上的高灵敏度和柔性应变传感器组成。具有高灵敏度的基于机械裂纹的应变传感器能够检测到气球应变的极小变化。调整气球的几何参数可以实现大而易于定制的感应区域。气球传感器的重量约为 2 克。该传感器与伺服电机一起使用,可以检测到轻轻触摸它的手指或一卷纸,而不会损坏。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa14/8003634/3c435528546f/sensors-21-02163-g001.jpg

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