时间交错adc的有效信号重构方案

A. K. M. Pillai, H. Johansson
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引用次数: 6

摘要

时间交错模数转换器(adc)由于信道不匹配而表现出偏移、增益和时间倾斜误差。时间偏差产生非均匀采样信号,而不是期望的均匀采样信号。这引入了对数字信号重构器的需求,该重构器采用“非均匀样本”并生成“均匀样本”。在一般情况下,时间偏差是频率相关的,在这种情况下,应用非均匀采样的泛化。当数字重构器的带宽接近整个奈奎斯特带时,计算复杂度可能会变得令人望而却步。本文介绍了一种降低复杂度的新方案。该思想源于近年来基于多速率的线性定常系统的高效实现。然而,时间交错ADC(没有校正)是一个时变系统,这意味着这些基于多速率的技术不能直接使用,而需要针对这种情况进行适当的分析和扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient signal reconstruction scheme for time-interleaved ADCs
Time-interleaved analog-to-digital converters (ADCs) exhibit offset, gain, and time-skew errors due to channel mismatches. The time skews give rise to a nonuniformly sampled signal instead of the desired uniformly sampled signal. This introduces the need for a digital signal reconstructor that takes the “nonuniform samples” and generates the “uniform samples”. In the general case, the time skews are frequency dependent, in which case a generalization of nonuniform sampling applies. When the bandwidth of a digital reconstructor approaches the whole Nyquist band, the computational complexity may become prohibitive. This paper introduces a new scheme with reduced complexity. The idea stems from recent multirate-based efficient realizations of linear and time-invariant system . However, a time-interleaved ADC (without correction) is a time-varying system which means that these multirate-based techniques cannot be used straightforwardly but need to be appropriately analyzed and extended for this context.
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