首页 /研究 /An Improved Force-Angle Stability Margin for Radial Symmetrical Hexapod Robot Subject to Dynamic Effects
MANIPULATION

An Improved Force-Angle Stability Margin for Radial Symmetrical Hexapod Robot Subject to Dynamic Effects

Shidong Long, Guiyang Xin, Hua Deng, Guoliang Zhong

发表年份
2015
引用次数
10
访问权限
开放获取

摘要

This paper presents a study on stability monitoring for a radial symmetrical hexapod robot under dynamic conditions. The force-angle stability margin (FASM) measure method has been chosen as the stability criterion. This is because it is suitable for the stability analysis, in terms of external forces or manipulator loads acting on the body. Considering that a radial symmetrical hexapod robot can tumble along the contact point besides tip-over axis, this paper proposes an improved FASM measure method. Furthermore, it provides the method for calculating the stability angle of contact point and simplifies the algorithm of FASM. To verify the improved FASM measure method, three potential dynamic situations have been simulated. The simulation results confirm that, under dynamic conditions, the improved FASM is efficient, simple in terms of calculation cost and sensitive to manipulator loads and external disturbances. This means it has practical value in on-line controllers.

关键词

HexapodControl theory (sociology)Computer scienceMeasure (data warehouse)Stability (learning theory)Margin (machine learning)RobotPoint (geometry)SimulationMathematics

相关论文

查看 MANIPULATION 分类全部论文