Semantic grasping: planning task-specific stable robotic grasps

被引:0
作者
Hao Dang
Peter K. Allen
机构
[1] Columbia University,Computer Science Department
来源
Autonomous Robots | 2014年 / 37卷
关键词
Grasp planning; Task-specific grasping; Semantic grasping;
D O I
暂无
中图分类号
学科分类号
摘要
We present an example-based planning framework to generate semantic grasps, stable grasps that are functionally suitable for specific object manipulation tasks. We propose to use partial object geometry, tactile contacts, and hand kinematic data as proxies to encode task-related constraints, which we call semantic constraints. We introduce a semantic affordance map, which relates local geometry to a set of predefined semantic grasps that are appropriate to different tasks. Using this map, the pose of a robot hand with respect to the object can be estimated so that the hand is adjusted to achieve the ideal approach direction required by a particular task. A grasp planner is then used to search along this approach direction and generate a set of final grasps which have appropriate stability, tactile contacts, and hand kinematics. We show experiments planning semantic grasps on everyday objects and applying these grasps with a physical robot.
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页码:301 / 316
页数:15
相关论文
共 32 条
[1]  
Aleotti J(2012)A 3d shape segmentation approach for robot grasping by parts Robotics and Autonomous Systems 60 358-366
[2]  
Caselli S(2002)Shape matching and object recognition using shape contexts IEEE Transactions on Pattern Analysis and Machine Intelligence 24 509-522
[3]  
Belongie S(2008)Grasp synthesis from low-dimensional probabilistic grasp models Computer Animation and Virtual Worlds 19 445-454
[4]  
Malik J(2005)The neuroscience of grasping Nature Reviews Neuroscience 6 726-736
[5]  
Puzicha J(2009)Hand Posture Subspaces for Dexterous Robotic Grasping The International Journal of Robotics Research 28 851-867
[6]  
Ben Amor H(2011)Data-driven grasping Auton Robots 31 1-20
[7]  
Heumer G(2011)Robust grasping under object pose uncertainty Autonomous Robots 31 253-268
[8]  
Jung B(2007)Shape classification using the inner-distance IEEE Transactions on Pattern Analysis and Machine Intelligence 29 286-299
[9]  
Vitzthum A(2004)Graspit a versatile simulator for robotic grasping IEEE Robotics and Automation Magazine 11 110-122
[10]  
Castiello U(2010)Synthesizing Grasp Configurations with Specified Contact Regions The International Journal of Robotics Research 19 1209-1216