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Adaptive integrator-output bounding(AIB) for second order sigma-delta ADC

机译:用于二阶Sigma-Delta ADC的Adaptive Integrator-Output Reding(AIB)

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One of the essential issues of sigma-delta modulator (ΣΔM) design is to properly scale the integrators to avoid clipping, which may cause information loss and hence severe degradation in SNR. This paper presents a new approach, Adaptive Integrator-output Bounding (AIB), to second order 1-bit ΣΔM design. By adaptively controlling the feedback coefficient of the first integrator, the AIB design significantly extends the unclipping input level to full scale, while that of the standard design is usually 3dB lower. Therefore, provided that the integrator scaling factors are the same, the AIB scheme increases the actual dynamic range of an unclipped system, and thus improves the peak SNR. Moreover, simulation results show that, compared to the standard system, the quantization noise of the AIB design is less dependent on the input levels, which indicates that the AIB scheme is closer to the linear model of the ΣΔMs.
机译:Sigma-Delta调制器(ΣΔM)设计的一个基本问题是正确缩放积分器以避免剪辑,这可能导致信息丢失并因此在SNR中进行严重降级。本文介绍了一种新的方法,自适应集成器 - 输出边界(AIB),到二阶1位ΣΔM设计。通过自适应地控制第一积分器的反馈系数,AIB设计显着扩展了未击倒输入电平至满量程,而标准设计的速度通常是下部3DB。因此,如果集成器缩放因子是相同的,则AIB方案增加了未删除的系统的实际动态范围,从而改善了峰值SNR。此外,仿真结果表明,与标准系统相比,AIB设计的量化噪声较少依赖于输入电平,这表明AIB方案更接近ΣΔMS的线性模型。

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