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Statistical properties of backscattering signals from doppler current measurement systems

机译:多普勒电流测量系统反向散射信号的统计特性

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Backscattering signals from acoustic Doppler current measurement systems are assumed to obey Gaussian properties in the time domain and the energy from the Doppler to be concentrated in a narrow frequency area. This assumption makes the estimation of the Doppler shift, proportional to the ocean current, a classical signal processing problem. It is of great interest to verify that the data, does in fact obey these Gaussian assumptions, since otherwise estimation errors can result, when an estimatorbased on these assumptions is used. This is common practice in commercial systems. It has been noted through the use of ADCM systems that they are not always are as accurate as they should have been, [1]. This could be because the Doppler signal was morecomplex than has been assumed. Different statistical measures have therefore been used, such as 3D spectrograms, normal probability tests, Chi-Square tests, Skewness analysis and Kurtosis analysis, to verify the signal content. In this paper, real datafrom four locations has been analyzed, compared and discussed, using a variety of signal analysis and statistical tools.
机译:假设来自声电流测量系统的反向散射信号在时域中的高斯性质和来自多普勒的能量集中在窄频率区域中。该假设使得多普勒偏移的估计,与海洋电流成比例,经典信号处理问题。验证数据,实际上是否遵守这些高斯假设,因此在使用这些假设上的估计误差时,可以遵守这些高斯假设的估计错误。这是商业系统的常见做法。已经通过使用ADCM系统来指出,它们并不总是如此准确,[1]。这可能是因为多普勒信号是Morecomplex而不是被假设。因此,已经使用了不同的统计措施,例如3D谱图,正常概率测试,Chi-Square试验,抗静脉分析和峰分析,以验证信号内容。在本文中,使用各种信号分析和统计工具进行了分析,比较和讨论了真实的DataFrom四个位置。

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