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首页> 外文期刊>Applied Sciences >A Calibration Method for Nonlinear Mismatches in M -Channel Time-Interleaved Analog-to-Digital Converters Based on Hadamard Sequences
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A Calibration Method for Nonlinear Mismatches in M -Channel Time-Interleaved Analog-to-Digital Converters Based on Hadamard Sequences

机译:基于Hadamard序列的M通道时间交错模数转换器非线性不匹配的标定方法。

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摘要

The time-interleaved analog-to-digital converter (TIADC) is an architecture used to achieve a high sampling rate and high dynamic performance. However, estimation and compensation methods are required to maintain the dynamic performance of the constituent analog-to-digital converters (ADCs) due to channel mismatches. This paper proposes a blind adaptive method to calibrate the nonlinear mismatches in M -channel TIADCs ( M -TIADCs). The nonlinearity-induced error signal is reconstructed by the proposed multiplier Hadamard transform (MHT) structure, and the nonlinear parameters are estimated by the filtered-X least-mean square (FxLMS) algorithm. The performance of cascade calibration is also analyzed. The numerical simulation results show that the proposed method consumes much less hardware resources while maintaining the calibration performance.
机译:时间交错的模数转换器(TIADC)是一种用于实现高采样率和高动态性能的体系结构。然而,由于信道失配,需要估计和补偿方法来维持组成的模数转换器(ADC)的动态性能。本文提出了一种盲自适应方法来校准M通道TIADC(M -TIADC)中的非线性失配。通过提出的乘数Hadamard变换(MHT)结构重构非线性引起的误差信号,并通过滤波X最小均方(FxLMS)算法估计非线性参数。还分析了级联校准的性能。数值仿真结果表明,该方法在保持标定性能的同时,消耗的硬件资源少得多。

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