首页> 外文期刊>Journal of intelligent material systems and structures >Landing efficiency control of a six-degree-of-freedom aircraft model with magnetorheological dampers: Part 1-Modeling
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Landing efficiency control of a six-degree-of-freedom aircraft model with magnetorheological dampers: Part 1-Modeling

机译:磁流变阻尼器六自由度飞机模型的着陆效率控制:第1部分型号

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This work presents landing efficiency control of a six-degree-of-freedom aircraft model, which has a controllable landing gear system with magnetorheological damper. Due to lengthy contents, this work is divided into two parts. In Part 1, both the kinematic and dynamic equations of the six-degree-of-freedom aircraft model are derived. After determining the principal design parameters of magnetorheological damper based on commercial Beechcraft Baron B55 (passive oleo-strut type) damper, the kinematic equations are derived using the aircraft body coordinate frame and homogeneous coordinates of the reference frame, while the dynamic equations are derived using Euler–Lagrange equation to represent the heave, roll, and pitch motions of the aircraft model. In Part 2, the landing performance based on landing efficiencies is analyzed through the landing motions using various controllers.
机译:这项工作介绍了六自由度飞机模型的着陆效率控制,该飞机模型具有可控制的着陆齿轮系统,具有磁流变阻尼器。 由于内容冗长,这项工作分为两部分。 在第1部分中,推导出六维自由度飞机模型的运动和动态方程。 在基于商业Beechcraft Baron B55(被动Ole-Strut型)阻尼器的基于商业Beechcraft Baron B55(被动Ole-Strut Type)阻尼器之后,使用飞机体坐标帧和参考帧的均匀坐标导出运动方程,而动态方程使用 Euler-Lagrange方程代表飞机模型的升降,滚动和俯仰运动。 在第2部分中,通过使用各种控制器通过着陆运动来分析基于着陆效率的着陆性能。

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