DocumentCode :
3246607
Title :
Postural stability of wheeled mobile manipulators with flexible suspension considering tire friction model
Author :
Alipour, Khalil ; Moosavian, S. Ali A
Author_Institution :
Dept. of Mech. Eng., K.N. Toosi Univ. of Technol., Tehran, Iran
fYear :
2009
fDate :
14-17 July 2009
Firstpage :
764
Lastpage :
769
Abstract :
The mobility requirements on a rough terrain make a suspended wheeled mobile robot (SWMR) with multiple dexterous manipulators an appropriate choice. In this study, dynamics modeling and stability appraisal of SWMRs will be discussed. First, based on Newton-Euler´s formulation for a chain of rigid bodies, the closed-form dynamics model of such complicated systems in three dimensional maneuvers is developed. To this end, a twenty two degree-of-freedom SWMR is considered as a benchmark system. The studied system includes both sprung and unsprung elements. Also, the developed model involves both ride and handling analysis. Considering pneumatic tires, Dugoff tire friction model is adopted to describe the longitudinal and lateral forces produced at the contact patch of the wheels. Then, using the obtained dynamics, the effect of frictional effects on postural stability of such systems will accurately be investigated. It is shown that dynamic balance of the system decreases as the friction between the base and the ground increases. Finally, the new dynamic tip-over Moment-Height Stability (MHS) measure will be exploited to vigorously investigate the dynamic balance of a SWMR even after toppling down.
Keywords :
manipulators; mobile robots; suspensions (mechanical components); Dugoff tire friction model; closed-form dynamics model; flexible suspension; moment-height stability; multiple dexterous manipulators; pneumatic tires; postural stability; suspended wheeled mobile robot; tip-over stability; wheeled mobile manipulators; Acceleration; Force measurement; Friction; Manipulator dynamics; Mobile robots; Stability; Tires; Vehicle dynamics; Vehicles; Velocity measurement; Dugoff Friction Model; MHS Measure; Suspension System; Tip-Over Stability; Wheeled Mobile Robots;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Intelligent Mechatronics, 2009. AIM 2009. IEEE/ASME International Conference on
Conference_Location :
Singapore
Print_ISBN :
978-1-4244-2852-6
Type :
conf
DOI :
10.1109/AIM.2009.5229920
Filename :
5229920
Link To Document :
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