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On Computing Reliable Optimal Grasping Forces
DOI:10.1109/TRO.2012.2183057.png)
摘要
En 中文
This paper presents algorithms for optimal grasping forces. The previous work reveals that contact forces with minimal sum or maximum of normal force components can be written as positive combinations of primitive contact forces, to which the corresponding primitive contact wrenches express the required resultant wrench as their positive combination with minimum coefficients in terms of the L-1 or L-infinity metric. On this basis, we first propose an algorithm to compute such a set of primitive contact forces and the minimum contact forces. Moreover, considering the uncertainty in the actual friction coefficient, we develop another algorithm to determine the minimum required friction coefficient and the corresponding minimum contact forces within a given limit on their magnitude so that such contact forces are more reliable in practice. As our algorithms do not rely on any general optimization technique, they are very efficient and easy to implement. These algorithms can also be used in grasp quality evaluation and optimal grasp planning.
Keyword:
Contact force distribution
grasping
multifingered robot hand
optimal contact force
ray shooting
stability
期刊
IF:
10.5
论文数:
3.3K
被引数:
2.8W
机构
引用论文
Dynamic force distribution in multifingered grasping by decomposition and positive combination分解和正组合在多指抓取中的动态力分布

