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A User-Oriented Approach to Designing FIR Deconvolution Filters

机译:以用户为导向的FIR Deconvolution过滤器的方法

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摘要

Based on learning in input-output signal domain and controlling noise amplification by varying sampling rate, a pragmatic approach is developed for designing FIR deconvolution filters with the desired noise gains producing accurate as possible output time-domain waveforms for filter support intervals defined by a user. As an example, FIR linear phase digital differentiator is designed by the developed methodology for so-called logarithmic derivative technique and its performance is compared with that of the appropriate equiripple minimax and maximally linear differentiators.
机译:基于输入输出信号域的学习和通过变化采样率控制噪声放大,开发了一种用于设计FIR Deconvolution滤波器的务实方法,其具有所需的噪声增益,这些噪声增益为可能的输出时间域波形而产生精确的滤波器支撑间隔的滤波器间隔。作为示例,FIR线性相位数字差分器由开发的对数衍生物技术的开发方法设计,并且其性能与适当的相同的最小值和最大线性差异的性能进行比较。

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