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首页> 外文期刊>IEEE Transactions on Circuits and Systems. II >Adaptive digital correction of analog errors in MASH ADCs. I. Off-line and blind on-line calibration
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Adaptive digital correction of analog errors in MASH ADCs. I. Off-line and blind on-line calibration

机译:MASH ADC中模拟错误的自适应数字校正。一,离线和盲在线校准

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摘要

Cascaded delta-sigma (MASH) modulators for higher order oversampled analog-to-digital conversion rely on precise matching of contributions from different quantizers to cancel lower order quantization noise from intermediate delta-sigma stages. This first part of the paper studies the effect of analog imperfections in the implementation, such as finite gain of the amplifiers and capacitor ratio mismatch, and presents algorithms and architectures for digital correction of such analog imperfections, as well as gain and spectral distortion in the signal transfer function. Digital correction is implemented by linear finite-impulse response (FIR) filters, of which the coefficients are determined through adaptive off line or on-line calibration. Of particular interest is an on-line "blind" calibration technique, that uses no reference and operates directly on the digital output during conversion, with the only requirement on the unknown input signal that its spectrum be bandlimited. Behavioral simulations on dual-quantization oversampled converters demonstrate near-perfect adaptive correction and significant improvements in signal-to-quantization-noise performance over the uncalibrated case, using as few as 5 FIR coefficients. An alternative on line adaptation technique using test signal injection and experimental results from silicon are presented in the second part, in a companion paper.
机译:用于更高阶过采样模数转换的级联delta-sigma(MASH)调制器依赖于来自不同量化器的贡献的精确匹配,以消除来自中间delta-sigma级的低阶量化噪声。本文的第一部分研究了模拟缺陷在实现中的影响,例如放大器的有限增益和电容器比率失配,并提出了用于数字校正此类模拟缺陷以及增益和频谱失真的算法和架构。信号传递功能。数字校正是通过线性有限脉冲响应(FIR)滤波器实现的,其系数是通过自适应离线或在线校准确定的。特别令人关注的是一种在线“盲”校准技术,该技术不使用参考,并且在转换过程中直接对数字输出进行操作,唯一需要的是对未知输入信号进行频谱限制。对双量化过采样转换器的行为仿真表明,在未经校准的情况下,仅使用5个FIR系数,就可以实现近乎完美的自适应校正和信噪比性能的显着改善。在第二部分的随附论文中,提出了一种使用测试信号注入和硅实验结果的替代在线自适应技术。

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