非整周期采样信号相位差估计的相频匹配方法

涂亚庆,沈艳林,沈廷鳌,陈宝欣

振动与冲击 ›› 2017, Vol. 36 ›› Issue (6) : 7-10.

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PDF(764 KB)
振动与冲击 ›› 2017, Vol. 36 ›› Issue (6) : 7-10.
论文

非整周期采样信号相位差估计的相频匹配方法

  • 涂亚庆,沈艳林,沈廷鳌,陈宝欣
作者信息 +

Phase and frequency matching based phase difference estimation method for non-integer periods  sampling signals

  • TU Yaqing1,SHEN Yanlin1,2,SHEN Ting’ao1,CHEN Baoxin1
Author information +
文章历史 +

摘要

为提高信号非整周期采样条件下相位差的估计精度,改善方法的抗噪性能,提出一种非整周期采样信号相位差估计的相频匹配方法。该方法通过两路正弦信号的分段Hilbert变换、互相关、自相关、相位加权平均等技术获得两路信号的相位差。理论分析表明,分段Hilbert变换有效抑制了正弦信号非整周期采样对Hilbert变换的影响。仿真实验结果表明,与互相关法、Hilbert变换法、数据延拓式相关法相比,本文方法改善了非整周期采样信号的相位差估计方法的抗噪性能,提高了相位差的估计精度,其相位差估计误差更接近克拉美罗下限。科氏流量计流量检测实验证实了本文方法的有效性。

Abstract

To improve the precision and anti-interference performance of phase difference estimation for non-integer periods  sampling signals,a phase and frequency matching based phase difference estimation method  was proposed.The phase difference estimation  was obtained by means of the segmented Hilbert transform to suppress the effect of non-integer periods  sampling sinusoidal signals on the Hilbert transform.The simulation results demonstrate that compared with the methods of cross-correlation,Hilbert transform and data extension-based correlation, the proposed method has better phase difference estimation performance for non-integer periods sampling signals in terms of its estimation precision and anti-interference performance.Its phase difference estimation errors are closer to Cramer-Rao lower bound (CRLB).The measurement experiments  on the flow rates of Coriolis mass flowmeter validate the effectiveness of the proposed method.

关键词

相位差估计 / 相频匹配 / 非整周期采样 / 分段Hilbert变换

Key words

phase difference estimation / phase and frequency matching / non-integer periods  / sampling / segmented Hilbert transform

引用本文

导出引用
涂亚庆,沈艳林,沈廷鳌,陈宝欣. 非整周期采样信号相位差估计的相频匹配方法[J]. 振动与冲击, 2017, 36(6): 7-10
TU Yaqing1,SHEN Yanlin1,2,SHEN Ting’ao1,CHEN Baoxin1 . Phase and frequency matching based phase difference estimation method for non-integer periods  sampling signals[J]. Journal of Vibration and Shock, 2017, 36(6): 7-10

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