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LC-Based Bandpass Continuous-Time Sigma-Delta Modulators with Widely Tunable Notch Frequency

机译:具有宽可调陷波频率的基于LC的带通连续时间Sigma-Delta调制器

摘要

This paper analyses the use of bandpass continuous-time ΣΔ modulators with widely programmable notch frequency for the efficient digitization of radio-frequency signals in the next generation of software-defined-radio mobile systems. The modulator architectures under study are based on a fourth-order loop filter - implemented with two LC-based resonators - and a finite-impulsive-response feedback loop in order to increase their flexibility and degrees of freedom. Several topologies are studied, considering three different cases for the embedded digital-to-analog converter, namely: return-to-zero, non-return-to-zero and raised-cosine waveform. In all cases, a notch-aware synthesis methodology is presented, which takes into account the dependency of the loop-filter coefficients on the notch frequency and compensates for the dynamic range degradation due to the variation of the notch. The synthesized modulators are compared in terms of their sensitivity to main circuit error mechanisms and the estimated power consumption over a notch-frequency tuning range of 0.1fs to 0.4fs. Time-domain behavioral and macromodel electrical simulations validate this approach, demonstrating the feasibility of the presented methodology and architectures for the efficient and robust digitization of radio-frequency signals with a scalable resolution and programmable signal bandwidth.
机译:本文分析了具有广泛可编程陷波频率的带通连续时间ΣΔ调制器在下一代软件定义的无线电移动系统中对射频信号的有效数字化的使用。所研究的调制器体系结构基于四阶环路滤波器(通过两个基于LC的谐振器实现)和有限冲激响应反馈环路,以提高其灵活性和自由度。考虑了嵌入式数模转换器的三种不同情况,研究了几种拓扑,即:归零,不归零和升余弦波形。在所有情况下,都提出了一种陷波感知综合方法,该方法考虑了环路滤波器系数对陷波频率的依赖性,并补偿了因陷波变化而导致的动态范围下降。比较了合成调制器对主电路误差机制的敏感性以及陷波频率调谐范围为0.1fs至0.4fs的估计功耗。时域行为和宏模型电气仿真验证了这种方法,证明了所提出的方法和体系结构对具有可扩展分辨率和可编程信号带宽的射频信号进行高效,鲁棒性数字化的可行性。

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