Design of a Tactile Sensing Robotic Gripper and Its Grasping Method
Shoujie Li, Linqi Ye, Chongkun Xia, Xueqian Wang, Bin Liang
- 发表年份
- 2021
- 引用次数
- 11
摘要
Although computer vision has the advantages of long detection distance and large amount of information, it also has certain limitations for complex scenes such as dimness, reflections, and smoke. In order to solve the problem of robot grasping in these scenes, we designed a novel gripper that can search, identify and grasp objects based on tactile information. The gripper can effectively grasp the objects in real life, and can sense the shape and posture of the objects through the touch. We proposed a lifting finger structure that allows the gripper to switch between sensing and grasping modes. We applied visual-tactile detection methods to obtain tactile information and propose a feature extraction algorithm based on U-net. We designed a method of grasping the center of mass of the object contour, and the success rate of the grasping can reach 85%. In addition, we also designed experiments to show the feasibility of object searching and grasping by tactile information when visual information is not available.
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