首页> 外文期刊>International Journal of Adaptive Control and Signal Processing >Redundant wavelet processing on the half-axis with applications to signal denoising with small delays: Theory and experiments
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Redundant wavelet processing on the half-axis with applications to signal denoising with small delays: Theory and experiments

机译:半轴上的冗余小波处理及其在小延迟信号去噪中的应用:理论和实验

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摘要

A wavelet transform on the negative half real axis is developed using an average-interpolation scheme. This transform is redundant and can be used to perform causal wavelet processing, such as on-line signal denoising, without delay. Nonetheless, in practice some boundary effects occur and thus a small amount of delay is required to reduce them. The effect of this delay is studied using a numerical example of a signal with large noise and sharp transients. It is shown that the delay required to obtain acceptable denoising levels is decreased by using the proposed redundant transform instead of a non-redundant one. We also present results from the experimental implementation of the proposed algorithm for the denoising of a feedback signal during the control of a three-phase permanent-magnet synchronous brushless DC motor.
机译:使用平均插值方案开发了负半实轴上的小波变换。此变换是多余的,可以无延迟地执行因果小波处理(例如,在线信号降噪)。但是,实际上会发生一些边界效应,因此需要少量的延迟来减小它们。使用具有大噪声和尖锐瞬变的信号的数值示例来研究此延迟的影响。结果表明,通过使用提议的冗余变换而不是非冗余变换,减少了获得可接受的降噪电平所需的延迟。我们还提供了从实验实现的结果提出的算法的三相永磁同步无刷直流电动机的控制过程中的反馈信号的去噪。

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