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GEOMETRIC MECHANICS FOR SAND-SWIMMING

机译:沙滩游泳的几何力学

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摘要

Sand-swimming, a form of desert burrowing, offers interesting potential as a locomotion mode for robots operating in loose, granular environments. Unfortunately, the computational cost of modeling the relevant physics raises obstacles to a thorough exploration of the system dynamics. Geometric mechanics offers techniques for reducing the complexity of evaluating gaits, thereby offering the potential for exploring a gait design space; unfortunately, these tools have historically been restricted to systems with linear, analytical dynamics. In this paper, we present a framework for combining empirical data from nonlinear models with geometric gait evaluation methods. The resulting tools both reduce the computational costs of describing sand-swimming and reveal fundamental aspects of the motion.
机译:沙游泳,一种沙漠穴居形式,提供有趣的潜力作为在松动,颗粒环境中运行的机器人的运动模式。不幸的是,建模相关物理学的计算成本提高了对系统动态的彻底探索的障碍。几何力学提供了降低评估Gaits复杂性的技术,从而提供了探索步态设计空间的潜力;不幸的是,这些工具历史上仅限于具有线性,分析动态的系统。在本文中,我们提出了一种与几何步态评估方法相结合的实证数据与非线性模型相结合的框架。由此产生的工具既减少了描述沙滩游泳的计算成本,并揭示运动的基本方面。

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