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Methodology and Measurement Setup for Analog-to-Digital Converter Postcompensation

机译:模数转换器后补偿的方法和测量设置

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摘要

We present a methodology for nonlinearity compensation amenable to a wide variety of analog-to-digital converters (ADCs). To that purpose, a postcompensation scheme for a commercial ADC is presented and two compensator models are considered: 1) the memory polynomial (MP) and 2) the modified generalized MP. Since the proposed method does not use any information about the compensated architecture, it can be applied to different ADC designs. Furthermore, we address the measurement and characterization setup of the device under test by making a study of the quality of the signals involved to verify the improvement obtained. The issue of the training sequences required by the proposed compensation method is also addressed in detail. Despite the common use of a single training signal, we propose to use several sinusoids in the bandwidth of interest. With this, it is possible to show that the generalization properties of the estimated postcompensator are greatly enhanced compared with the case of a single sinusoid training sequence. As verified by the measurements, considerable gain in accuracy can be obtained using the proposed methodology. In particular, a 10-dB increment in spurious free dynamic range is obtained using the proposed postcompensators over the complete Nyquist frequency band.
机译:我们提出了一种适用于各种模数转换器(ADC)的非线性补偿方法。为此,提出了一种商用ADC的后补偿方案,并考虑了两个补偿器模型:1)存储器多项式(MP)和2)修改后的广义MP。由于建议的方法不使用任何有关补偿架构的信息,因此可以将其应用于不同的ADC设计。此外,我们通过研究所涉及信号的质量来验证所获得的改进,从而解决了被测设备的测量和特性设置问题。还详细解决了所提出的补偿方法所要求的训练序列的问题。尽管通常使用单个训练信号,但我们建议在目标带宽中使用几个正弦波。这样,可以表明与单个正弦曲线训练序列的情况相比,估计后补偿器的泛化特性大大提高了。如通过测量所证实的,使用所提出的方法可以在准确性上获得可观的增益。特别是,使用拟议的后补偿器在整个奈奎斯特频带上可获得10 dB的无杂散动态范围增量。

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