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首页> 外文期刊>Analog Integrated Circuits and Signal Processing >Bandwidth-efficient calibration method for nonlinear errors in M-channel time-interleaved ADCs
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Bandwidth-efficient calibration method for nonlinear errors in M-channel time-interleaved ADCs

机译:M通道时间交错ADC中非线性误差的带宽有效校准方法

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摘要

In order to enhance the effective resolution of time-interleaved analog-to-digital converters (TI-ADCs), both linear and nonlinear channel mismatches should be carefully calibrated. This paper concentrates on a bandwidth-efficient background calibration method for nonlinear errors in M-channel TI-ADCs. It utilizes the least-mean square algorithm as well as a certain degree of oversampling to achieve adaptive mismatch tracking. The calibration performance and computational complexity are investigated and evaluated through behavioral-level simulations. Furthermore, a calibration strategy for narrow-band input signals is proposed and verified as an improvement of the basic calibration structure for such signals.
机译:为了提高时间交错的模数转换器(TI-ADC)的有效分辨率,应该仔细校准线性和非线性通道失配。本文着重于针对M通道TI-ADC中非线性误差的带宽有效背景校准方法。它利用最小均方算法以及一定程度的过采样来实现自适应失配跟踪。通过行为级仿真研究和评估了校准性能和计算复杂性。此外,提出并验证了窄带输入信号的校准策略,作为对此类信号基本校准结构的改进。

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