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Practical improvements to real and imaginary spectral based modal parameter measurements of SDOF systems

机译:对基于实数和虚数频谱的SDOF系统模态参数测量的实际改进

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摘要

For a single degree of freedom system, especially with non-light damping, the use of the real spectral part of either the displacement or velocity responses (or the transfer functions based on them) has the advantages of determining the natural frequency (f_n) directly, independent of the response parameter, and providing an accurate measurement for damping (ζ). However, this method is sensitive to spectral phase errors due to temporal misalignment of the signal or due to net inter-channel delay differences caused by signal filtering. Two techniques are presented to correct for these errors; one based on the correct temporal alignment of the impulsive part, and the other on the infimum of the imaginary spectral part. These are first demonstrated using a numerical model, and are shown to facilitate the correct measurement of f_n and bring ζ within the expected error limits due to quantisation. Secondly, they are applied to an experimental system and are seen to greatly improve the consistency between measurements using different methods.
机译:对于单自由度系统,尤其是在非光阻尼的情况下,使用位移或速度响应的实谱部分(或基于它们的传递函数)具有直接确定固有频率(f_n)的优势,与响应参数无关,并提供精确的阻尼(ζ)测量。然而,由于信号的时间未对准或由于信号滤波引起的净信道间延迟差异,该方法对频谱相位误差敏感。提出了两种技术来纠正这些错误。一个基于脉冲部分的正确时间对齐,另一个基于虚频谱部分的最小。这些首先使用数值模型进行了证明,并显示为有助于f_n的正确测量,并且由于量化使ζ处于预期的误差范围内。其次,它们被应用于实验系统,并被认为可以大大提高使用不同方法进行测量之间的一致性。

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