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A pseudojoint estimation of time delay and scale factor for M-wave analysis

机译:时滞和比例因子的伪联合估计,用于M波分析

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摘要

A pseudojoint estimation of time scale and time delay between an unknown deterministic transient type signal and a reference signal is proposed. The method is based on the separation between the estimations of the two dependent parameters. The time autocorrelation function (TACF) preserves the time scale and is invariant with respect to the time delay between the signals. The time scale factor can, thus, be estimated independently from time delay using the TACFs of the two signals. After estimating the time scale factor, the signal can be scaled by the estimated amount. The time delay is then estimated without bias due to the time scale factor. To obtain high resolution joint estimates, the time scale factor is estimated in the scale domain from the scale transforms of the TACFs of the two signals. The proposed method has low computational cost. Moreover, the results on synthetic signals show good performance of the method with respect to the Cramer-Rao lower bound and the joint maximum likelihood estimation. A possible application of the technique to the analysis of electromyogram (EMG) signals detected during electrically elicited contractions is also presented. In a few representative cases, it is shown that the time scale estimate reveals myoelectric manifestations of muscle fatigue and is less affected by M-wave truncation than spectral EMG attributes.
机译:提出了不确定的瞬态信号与参考信号之间时标和时延的伪联合估计。该方法基于两个相关参数的估计之间的分离。时间自相关函数(TACF)保留了时间标度,并且相对于信号之间的时间延迟是不变的。因此,可以使用两个信号的TACF独立于时间延迟来估计时间比例因子。在估计时间比例因子之后,可以按估计的量对信号进行比例缩放。然后,可以估计时间延迟,而不会由于时间比例因子而产生偏差。为了获得高分辨率联合估计,从两个信号的TACF的比例转换中,在比例域中估计时间比例因子。该方法计算成本低。此外,关于合成信号的结果表明,该方法相对于Cramer-Rao下界和联合最大似然估计具有良好的性能。还介绍了该技术在分析电诱发收缩期间检测到的肌电图(EMG)信号方面的可能应用。在一些代表性案例中,研究表明,时标估计显示出肌肉疲劳的肌电表现,并且与频谱肌电图属性相比,受M波截断的影响较小。

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