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Modelling and Control of a Virtual Skydiver

机译:虚拟跳伞运动员的建模与控制

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An innovative approach of gaining an insight into motor skills involved in human body flight is proposed. Body flight is the art of maneuvering during the free fall stage of skydiving, which is a rapidly developing sport. The key idea is creating an autonomous system capable of performing skydiving maneuvers in a virtual way, and turning it into a powerful tool for improving instruction methods. Towards this goal, the Skydiver Simulator is developed, comprising Biomechanical, Aerodynamic, and Kinematic Models, Dynamic Equations of Motion, and a Virtual Reality Environment. A Two-Input-Two-Output controller is designed to track the desired inertial motion, producing commands in terms of limbs movements. The natural kinematic redundancy of the human body is resolved by introducing movement patterns, constructed according to ergonomic considerations and empirical knowledge of how skydiving maneuvers are performed. The controller is designed with the use of Quantitative Feedback Theory, providing robustness for dealing with plant non-linearities and inaccurate execution of the movement patterns. The skydiver simulator allowed reconstruction of many challenging aspects of body-flight observed by practicing skydivers. The virtual skydiver, comprising a controller and a guidance algorithm, was shown to autonomously perform meaningful body flight missions.
机译:提出了一种创新的方法,即获得洞察涉及人体飞行中涉及的运动技能。机身飞行是在跳伞的自由秋季机动的艺术,这是一种迅速发展的运动。关键的想法正在创建一种能够以虚拟方式执行跳伞运动的自主系统,并将其转换为改进指令方法的强大工具。为此目的,开发了跳伞模拟器,包括生物力学,空气动力学和运动模型,动态运动的动态方程和虚拟现实环境。双输入二输出控制器旨在跟踪所需的惯性运动,在肢体运动方面产生命令。通过引入运动模式来解决人体的天然运动冗余,根据符合人体工程学考虑和经验知识进行跳伞运动如何进行。控制器设计利用定量反馈理论,为处理植物非线性和不准确的运动模式的执行提供鲁棒性。 Skydiver模拟器允许通过练习跳伞者观察到的身体飞行的许多具有挑战性的方面。包括控制器和引导算法的虚拟跳伞iver被证明是自主地执行有意义的身体飞行任务。

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