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Analysis of driving efficiency for LRV wheels using forced-slip method
Authors:Zhongchao Liang  Haibo Gao  Liang DingZongquan Deng  Jianjun Qu
Institution:School of Mechatronics Engineering, Harbin Institute of Technology, Harbin 150001, China
Abstract:To investigate and improve the mobility of the Lunar Roving Vehicle (LRV), it is necessary to consider the mechanical properties of the interaction between the wheels and the ground. In this paper, a new solution method, the forced-slip solution method, which uses a semi-empirical approach, was presented. That is, given the wheel’s vertical load and drawbar pull or driving torque as known input values, the unknown slip ratio can be resolved. The alternative method involves predicting the mechanics for a given slip ratio. The proposed method correlates better with actual wheel movements, and by studying a single wheel, this solution method can also be used to resolve the mechanical properties of the front and rear wheels in a four-wheel-drive (4WD) LRV configuration. It can also be used to consider the multi-pass effect of the rear wheels on lunar soil. The calculation results show that the 4WD LRV driving efficiency varies with the position of the center of mass. Thus, the LRV driving efficiency can be optimized by adjusting the position of its center of mass.
Keywords:Terramechanics  Forced-slip  Multi-pass effect  Lunar roving vehicle  Driving efficiency
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