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On dithered A/D conversion of multidimensional smooth non-bandlimited signals

机译:多维平滑无带限信号的抖动A / D转换

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Conventional method for sampling smooth multidimensional non-bandlimited signal requires the use of anti-aliasing lowpass prefilter. In spatial sampling applications, such as in geographical surveillance, sampling operation takes place before filtering. Aliasing of sampled signal is inevitable in such cases. Recently, sampling and quantization of one-dimensional smooth non-bandlimited signals in the absence of a lowpass prefilter has been studied in the literature [1]. Two-dimensional extensions of the one-dimensional non-bandlimited signal sampling results are derived in this work. Smoothness of signal can be translated to a decaying Fourier spectrum. The maximum error between signal and its reconstruction is distortion. The distortion when signal is sampled on a uniform grid with high-precision quantizers, imitating the Nyquist-style sampling, is analyzed and bounded. It is shown that, with the help of a known dither, the signal of interest can be reconstructed with similar reconstruction distortion while using only single-bit quantizers. An example illustrates that the distortion is limited by the slowest spectral decay law among all directions in the Fourier transform domain.
机译:采样平滑多维非带限信号的常规方法需要使用抗混叠低通预滤波器。在空间采样应用中,例如在地理监视中,采样操作发生在过滤之前。在这种情况下,不可避免地会混淆采样信号。最近,在文献中已经研究了在没有低通前置滤波器的情况下对一维平滑非带限信号的采样和量化[1]。一维非带限信号采样结果的二维扩展是在这项工作中得出的。信号的平滑度可以转换为衰减的傅立叶频谱。信号及其重构之间的最大误差是失真。分析并限制了模仿高精度奈奎斯特(Nyquist)样式采样的信号在具有高精度量化器的均匀网格上采样时的失真。结果表明,借助已知的抖动,可以仅使用一位量化器,以类似的重构失真来重构感兴趣的信号。一个示例说明,失真受到傅立叶变换域中所有方向中最慢的频谱衰减定律的限制。

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