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A Foreground Calibration for M-Channel Time-Interleaved Analog-to-Digital Converters Based on Genetic Algorithm

机译:基于遗传算法的M渠道时交错模数转换器的前景校准

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The time-interleaved analog-to-digital converter has shown to be a key component of the latest ultra-wide band systems. Unfortunately, the sub-analog-to-digital converters are prone to parameter deviations caused by process-voltage-temperature, which can affect the output linearity. This article presents a foreground time-interleaved analog-to-digital converter mismatch calibration, which is one of the few available in the literature that can be adapted to any interleaving factor and calibrate overall frequency-dependent mismatches. Moreover, the proposed scheme is highly suited to state-of-the-art transceivers without the need for extra analog expensive circuitry or input signal purity. The foreground signal and correction structure complexity are greatly alleviated due to the developed mismatch detection and genetic algorithm logic. Numerical simulations and measurement results are presented. A commercial 3.6-GS/s time-interleaved analog-to-digital converter was utilized to verify the algorithm performance and experimental issues regarding mixed mismatches are addressed.
机译:时间交织的模数转换器已经显示为最新的超宽带系统的关键组件。遗憾的是,子模数转换器容易达到由处理电压 - 温度引起的参数偏差,这会影响输出线性度。本文介绍了前台时间交错的模数转换器不匹配校准,这是文献中的少数可用的,其可以适应任何交织因子并校准整体频率依赖的不匹配。此外,所提出的方案非常适合最先进的收发器,而无需额外的模拟昂贵的电路或输入信号纯度。由于发达的失配检测和遗传算法逻辑,前景信号和校正结构复杂性大大缓解。提出了数值模拟和测量结果。利用商业3.6-GS / S的时间交错的模数转换器来验证有关混合不匹配的算法性能和实验问题。

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