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Estimation of Modal Parameters Using a Wavelet-Based Approach

机译:基于小波方法的模态参数估计

摘要

Modal stability parameters are extracted directly from aeroservoelastic flight test data by decomposition of accelerometer response signals into time-frequency atoms. Logarithmic sweeps and sinusoidal pulses are used to generate DAST closed loop excitation data. Novel wavelets constructed to extract modal damping and frequency explicitly from the data are introduced. The so-called Haley and Laplace wavelets are used to track time-varying modal damping and frequency in a matching pursuit algorithm. Estimation of the trend to aeroservoelastic instability is demonstrated successfully from analysis of the DAST data.
机译:通过将加速度计响应信号分解为时频原子,可以直接从航空弹性飞行测试数据中提取模态稳定性参数。对数扫描和正弦脉冲用于生成DAST闭环激励数据。介绍了构造为从数据中明确提取模态阻尼和频率的新型小波。所谓的Haley和Laplace小波用于在匹配追踪算法中跟踪时变模态阻尼和频率。通过对DAST数据的分析,成功证明了航空弹性不稳定的趋势。

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