Morita Nobutomo, Nogami Hirofumi, Higurashi Eiji, Sawada Renshi
Advanced Manufacturing Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), 807-1 Shuku-machi, Tosu, Saga 841-0052, Japan.
Department of Mechanical Engineering, Faculty of Engineering, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka 819-0395, Japan.
Sensors (Basel). 2018 Jan 23;18(2):326. doi: 10.3390/s18020326.
The purpose of this paper is to show the feasibility of grasping force control by feeding back signals of the developed micro-laser Doppler velocimeter (μ-LDV) and by discriminating whether a grasped object is slipping or not. LDV is well known as a high response surface velocity sensor which can measure various surfaces-such as metal, paper, film, and so on-thus suggesting the potential application of LDV as a slip sensor for grasping various objects. However, the use of LDV as a slip sensor has not yet been reported because the size of LDVs is too large to be installed on a robotic fingertip. We have solved the size problem and enabled the performance of a feasibility test with a few-millimeter-scale LDV referred to as micro-LDV (μ-LDV) by modifying the design which was adopted from MEMS (microelectromechanical systems) fabrication process. In this paper, by applying our developed μ-LDV as a slip sensor, we have successfully demonstrated grasping force control with three target objects-aluminum block, wood block, and white acrylic block-considering that various objects made of these materials can be found in homes and factories, without grasping force feedback. We provide proofs that LDV is a new promising candidate slip sensor for grasping force control to execute target grasping.
本文的目的是通过反馈已开发的微型激光多普勒测速仪(μ-LDV)的信号,并辨别被抓取物体是否在滑动,来展示抓握力控制的可行性。激光多普勒测速仪(LDV)是一种众所周知的高响应表面速度传感器,它可以测量各种表面,如金属、纸张、薄膜等,因此表明LDV作为抓取各种物体的滑动传感器具有潜在的应用价值。然而,由于LDV的尺寸太大,无法安装在机器人指尖上,因此尚未有将其用作滑动传感器的报道。我们通过修改采用微机电系统(MEMS)制造工艺的设计,解决了尺寸问题,并使用几毫米规模的LDV(即微型激光多普勒测速仪(μ-LDV))进行了可行性测试。在本文中,通过将我们开发的μ-LDV用作滑动传感器,我们成功地展示了对铝块、木块和白色丙烯酸块这三个目标物体的抓握力控制,考虑到在家庭和工厂中可以找到由这些材料制成的各种物体,且无需抓握力反馈。我们提供了证据,证明LDV是一种用于抓握力控制以执行目标抓取的有前途的新型滑动传感器。