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Two New Sliding DTFT Algorithms for Phase Difference Measurement Based on a New Kind of Windows

机译:基于一种新型Windows的两种新的滑动DTFT相位差测量算法

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For the ultra-low frequency signals or adjacent Nyquist frequency signals, which exist in the vibration engineering domain, the traditional DTFT-based algorithm shows serious bias for phase difference measurement. It is indicated that the spectrum leakage and negative frequency contribution are the essential causes of the bias. In order to improve the phase difference measurement accuracy of the DTFT-based algorithm, two new sliding DTFT algorithms for phase difference measurement based on a new kind of windows are proposed, respectively. Firstly, the new kind of windows developed by convolving conventional rectangular windows is introduced, which obtains a stronger inhibition of spectrum leakage. Then, with negative frequency contribution considered, two new formulas for phase difference calculation under the new kind of windows are derived in detail. Finally, the idea of sliding recursive is proposed to decrease the computational load. The proposed algorithms are easy to be realized and have a higher accuracy than the traditional DTFT-based algorithm. Simulations and engineering applications verified the feasibility and effectiveness of the proposed algorithms.
机译:对于振动工程领域中存在的超低频信号或相邻的奈奎斯特频率信号,传统的基于DTFT的算法显示出严重的相位差测量偏差。结果表明,频谱泄漏和负频率贡献是造成偏置的根本原因。为了提高基于DTFT的算法的相差测量精度,分别提出了两种新的基于新型窗口的滑动DTFT滑动相差测量算法。首先,介绍了通过对常规矩形窗进行卷积而开发的新型窗,这种窗对频谱泄漏的抑制作用更强。然后,在考虑了负频率贡献的情况下,详细推导了两种在新型窗口下用于相位差计算的新公式。最后,提出了滑动递归的思想,以减少计算量。与传统的基于DTFT的算法相比,所提出的算法易于实现并且具有更高的精度。仿真和工程应用验证了所提算法的可行性和有效性。

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