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Planar locomotion of a vibration-driven system with two internal masses

机译:具有两个内部质量的振动驱动系统的平面运动

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A vibration-driven system is modelled to achieve the expected planar locomotion in the present paper. The system is composed of a main rigid body and two internal and movable masses. Coulomb dry friction and nonholonomic constraint of the body are considered to model stick-slip effect and to ensure the motion without sideslip. It is seen that driving periodically the two masses in two orthogonal directions leads to the expected planar locomotion. Correspondingly, the translational and rotary velocities of the system are analytically obtained. As a result, the system can move not only along oblique line in any given slope but also along folding lines derived from the oblique lines in the different slopes.
机译:本文以振动驱动系统为模型,以实现预期的平面运动。该系统由一个刚性主体和两个内部和可移动质量组成。库仑干摩擦和身体的非完整约束被认为可以模拟粘滑效应并确保运动而没有侧滑。可以看出,在两个正交方向上周期性地驱动两个质量块会导致预期的平面运动。相应地,系统地获得了平移速度和旋转速度。结果,该系统不仅可以沿着任何给定斜率的斜线移动,而且可以沿着从不同斜率的斜线导出的折叠线移动。

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