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首页> 外文期刊>Journal of guidance, control, and dynamics >Robustness Analysis of Helicopter Ground Resonance with Parametric Uncertainties in Blade Properties
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Robustness Analysis of Helicopter Ground Resonance with Parametric Uncertainties in Blade Properties

机译:叶片特性参数不确定性的直升机地面共振鲁棒性分析

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摘要

This paper presents a stability robustness analysis of the helicopter ground-resonance phenomenon. By using the lifting procedure the uncertain linear-time-periodic model of the helicopter is transformed into an augmented uncertain linear-time-invariant model that allows the application of μ-analysis tools. The lifting procedure involves a periodic switching linear-time-invariant piecewise model computed using oversampling of the system period. The representativeness of the lifted model for various oversampling period values and methods is discussed and compared with a Floquet analysis for several parametric configurations. A μ-analysis is then applied to find the worst-case parametric configuration for a given rotor angular rate. The parametric uncertainties taken into account are the dynamic characteristics (stiffness and damping) of each blade hinge. A significant advantage of the proposed approach is that it enables performing ground-resonance analysis for a rotor with dissimilar blade properties due to aging effects. Considering uncertainties on the four blade hinge stiffnesses and damping factors, the μ-analysis performed on the lifted model leads to the conclusion that the worst case for degraded rotor stability corresponds to the symmetric perturbation of all the blades.
机译:本文提出了直升机地面共振现象的稳定性鲁棒性分析。通过使用提升程序,将直升机的不确定线性时间周期模型转换为可扩展的不确定线性时间不变模型,从而可以应用μ分析工具。提升过程涉及使用系统周期的过采样计算出的周期性切换线性时不变分段模型。讨论了针对各种过采样周期值和方法的提升模型的代表性,并与针对几种参数配置的Floquet分析进行了比较。然后应用μ分析以找到给定转子角速率的最坏情况参数配置。考虑到的参数不确定性是每个叶片铰链的动态特性(刚度和阻尼)。所提出的方法的显着优点在于,它能够对由于老化效应而具有不同叶片特性的转子执行地面共振分析。考虑到四个叶片铰链刚度和阻尼系数的不确定性,对提升模型进行的μ分析得出结论,即转子稳定性下降的最坏情况对应于所有叶片的对称扰动。

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