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Random vibration testing with kurtosis control by IFFT phase manipulation

机译:通过IFFT相位控制进行峰度控制的随机振动测试

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Non-Gaussian random shaker testing with kurtosis control is introduced in the paper as a way of increasing or decreasing the excitation crest factor (CF). The CF increase is required for more accurate simulation of ground vehicle vibrations and the CF decrease is useful in other applications such as modal testing. Using kurtosis as a measure of CF behavior leads to closed-form solution for making the IFFT generation non-Gaussian by special phase manipulation. A universal phase selection procedure capable of modeling random excitations with a high or low kurtosis has been developed. Because of the analytical solution advantage, the proposed phase method meets time restrictions critical for shaker controller operation. Low CF values achieved by the suggested analytical kurtosis-based solution are close enough to those obtained by the known method of sequential moment minimization, which considers moments of higher order but by numerical optimization only. In the case of CF increase, the developed phase manipulation algorithm randomizes high peaks in terms of their amplitude, position, and the number of severe peaks per data block. This ensures realistic variability of high peak behavior distinct from having just one high peak of narrow height variation in all data blocks as in another known approach of on-band phase limiting that is also a numerical technique, not an analytical solution as the proposed method.
机译:本文介绍了采用峰度控制的非高斯随机振动器测试,作为增加或减小励磁波峰因数(CF)的一种方法。为了更准确地模拟地面车辆的振动,需要增加CF值,而CF减小值在模态测试等其他应用中很有用。使用峰度作为CF行为的量度,将导致通过特殊的相位处理使IFFT生成非高斯型的闭式解。已经开发出一种通用的相位选择程序,该程序能够对具有高或低峰度的随机激励进行建模。由于解析解决方案的优势,提出的相位方法满足了对振动台控制器操作至关重要的时间限制。通过建议的基于峰度的分析解决方案实现的低CF值与通过已知惯性矩最小化方法获得的CF值足够接近,后者考虑了高阶矩,但仅通过数值优化即可。在CF增加的情况下,已开发的相位处理算法会根据幅度,位置和每个数据块的严重峰数量将高峰随机化。这确保了高峰值行为的实际可变性,不同于在所有数据块中只有一个高度变化窄的高峰值,这是另一种已知的带内相位限制方法,该方法也是一种数值技术,而不是所提出的方法的解析解决方案。

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