首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >An approach to reduce vibration and avoid shimmy on landing gears based on an adapted eigenstructure assignment theory
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An approach to reduce vibration and avoid shimmy on landing gears based on an adapted eigenstructure assignment theory

机译:一种减少振动的方法,避免基于适应特征结构分配理论的着陆齿轮

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摘要

Landing gear shimmy is a self excited vibration phenomenon which must be avoided during aircraft design due to its potentially catastrophic behaviour. In a preliminary specification of structural properties of a landing gear, if shimmy is verified through the engineering process of analysis, typically is a difficult task to identify how its mechanical property must be modified to get a shimmy free system. In this sense, this article introduces an adaptation of the eigenstructure assignment theory (EAT) to design a nose landing gear free of the dynamic behaviour of shimmy. EAT is a classical theory employed to compute a feedback control gain which represents a linear transformation of the system states to control forces. The common application of this theory involves active and semi-active controllers, which require electro-mechanical actuators and additional source of energy. However, in this article EAT is adapted to write the matrix of gain in terms increments of structural stiffness and damping of the landing gear to update a previous design to get a shimmy free system. The proposed process allows to specify a desired new structural mode (though an eigenvector) and both frequency and damping ratio (through an eigenvalue). The strategy allows to compute new values of stiffness and damping to redesign a stable system with better vibration response of landing gear. The proposed approach can be applied in the eigenstructure assignment of any linear system, by means a practical process of changing the system properties (stiffness and damping), in the case of this article, to avoid landing gear shimmy. The results shows the effectiveness of the method.
机译:着陆齿轮Shimmy是一种自我激动的振动现象,在飞机设计期间必须避免由于其潜在的灾难性行为。在初步规格的着陆齿轮结构特性的规范中,如果通过工程分析过程验证了Shimmy,通常是难以确定其机械性能如何修改以获得闪亮的自由系统。从这个意义上讲,本文介绍了特征性分配理论(吃)的适应,以设计无闪亮的动态行为的鼻落着陆装置。吃是一种用于计算反馈控制增益的经典理论,该反馈控制增益表示系统状态的线性变换来控制力。该理论的常见应用涉及有源和半主动控制器,需要电动机械执行器和额外的能量来源。然而,在本文中,吃得适于在结构刚度的增长和降落齿轮的损坏方面的增益矩阵,以更新以前的设计以获得闪亮的自由系统。所提出的过程允许指定期望的新结构模式(虽然是特征向量)和频率和阻尼比(通过特征值)。该策略允许计算刚度和阻尼的新值,以重新设计具有更好振动齿轮的振动响应的稳定系统。所提出的方法可以应用于任何线性系统的特征结构分配,借助于改变系统性质(刚度和阻尼)的实际过程,在本文的情况下,以避免着陆齿轮闪光。结果显示了该方法的有效性。

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