自适应神经网络滤波器在时间交错A/D转换系统补偿中的应用

Ce Fu, Hui Wang
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引用次数: 0

摘要

时间交错A/D转换系统是提高宽带船载软件电台ADC采样率的一种有效方法。由于制造过程中的误差,时间交错ADC系统中的所有ADC并不完全相同。这意味着在数字信号处理中引入了增益和偏置失配误差。本文提出了一种基于自适应神经网络滤波的失配误差补偿方法。这种方法不需要更多关于输入信号的特殊信息,除了整个ADC系统的频带限制为奈奎斯特频率。然后补偿可以在adc仍在运行时工作。这里我们采用遗传算法对网络中的初始权值进行优化,该算法将反向传播与遗传算法相结合,优势互补。通过时间交错ADC系统的仿真验证了补偿方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive neural network filter in compensation of time interleaved A/D converter system
A time interleaved A/D converter system is a good way to significantly increase the sampling rate of an ADC for wideband shipborne software radio station. Due to errors in the manufacturing process, all ADCs in a time interleaved ADC system are not exactly identical. It means that gain and offset mismatch errors are introduced in digital signal processing. In this paper we present a method based on adaptive neural network filter for compensation of the mismatch errors. This method needs no more special information about the input signal except that it should be band limited to the Nyquist frequency for the whole ADC system. Then the compensation can be working while the ADCs are still running. Here we adopt the genetic algorithm to optimize the initial weight value in the network, this algorithm makes complementary advantages for combining back propagation and genetic algorithms. The compensation method has been validated with simulations from a time interleaved ADC system.
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