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Reducing the Error of Digital Algorithms for Deductive Signal Processing Based on Their Multi-Stage Discrete Fourier Transform by the Difference Digital Filters

机译:基于差分数字滤波器的多阶离散傅里叶变换,减少数字算法的误差

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The issues of using digital methods of discrete Fourier transform of polyharmonic signals for their deductive processing by elementary devices of nanoelectronics or programmable logic devices are considered. Deductive processing of digital signals is performed on the basis of their discrete Fourier transform by adding and shifting time samples of these signals. Their digital difference filtering with integer difference coefficients provides such a discrete Fourier transform without performing multiplication operations. Unerroric of deductive processing of polyharmonic signals based on their discrete Fourier transform, which does not require multiplication operations, will reduce the error of such processing on elementary nanoelectronics devices and programmable logic devices.
机译:考虑了将多谐波信号的离散傅里叶变换的数字方法用于通过纳米电子学的基本器件或可编程逻辑器件进行演绎处理的问题。通过对数字信号的时间样本进行相加和移位,可以在数字信号的离散傅立叶变换的基础上执行数字信号的演绎处理。它们具有整数差分系数的数字差分滤波可提供这种离散的傅立叶变换,而无需执行乘法运算。基于多谐波信号的离散傅立叶变换进行的不需要乘法运算的演绎处理的错误,将减少基本纳米电子器件和可编程逻辑器件上此类处理的误差。

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