A dynamic model of a skydiver with validation in wind tunnel and free fall

IF 1.8 Q3 AUTOMATION & CONTROL SYSTEMS IFAC Journal of Systems and Control Pub Date : 2022-12-01 DOI:10.1016/j.ifacsc.2022.100207
Anna Clarke , Per-Olof Gutman
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引用次数: 2

Abstract

An innovative approach of gaining insight into motor skills involved in human body flight is proposed. The key idea is the creation of a model autonomous system capable of virtually performing skydiving maneuvers.

A dynamic skydiver model and simulator is developed, comprising biomechanical, aerodynamic, and kinematic models, dynamic equations of motion, and a virtual reality environment. Segment relative orientations, and resulting inertial body angular position and velocity are measured in skydiving experiments in a vertical wind tunnel and in free fall. These experimental data are compared with corresponding simulation data to tune and verify the model for basic skydiving maneuvers. The model is further extended to reconstruct advanced aerial maneuvers, such as transitions between stable equilibria. The experimental data are used to estimate skydiver’s conscious inputs as a function of time, via an Unscented Kalman Filter modified for this purpose.

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一个经过风洞和自由落体验证的跳伞运动员动力学模型
提出了一种深入了解人体飞行运动技能的创新方法。关键思想是创建一个能够虚拟执行跳伞动作的模型自主系统。开发了一种动态跳伞者模型和模拟器,包括生物力学、空气动力学和运动学模型、动态运动方程和虚拟现实环境。在垂直风洞和自由落体的跳伞实验中,测量了节段的相对方向,以及由此产生的惯性体角位置和速度。将这些实验数据与相应的模拟数据进行比较,以调整和验证基本跳伞动作的模型。该模型被进一步扩展以重建高级空中机动,例如稳定平衡之间的转换。实验数据用于通过为此目的修改的无迹卡尔曼滤波器来估计跳伞者的意识输入作为时间的函数。
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来源期刊
IFAC Journal of Systems and Control
IFAC Journal of Systems and Control AUTOMATION & CONTROL SYSTEMS-
CiteScore
3.70
自引率
5.30%
发文量
17
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