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Reconfigurable Quantization of Oversampled Signals Under Discrete-Time Filtering

机译:离散滤波下过采样信号的可重构量化

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In modern wireless applications such as carrier aggregation, oversampled ADCs are required to be reconfigurable, to accommodate varying spectral signal energy distributions and bandwidths of interest. While progress has been made using several circuit and system level techniques, a fundamental approach that considers the signal's spectral properties is lacking. In this paper, we re-evaluate the oversampling problem: we use a time-domain analysis to show that given a signal spectrum, quantization noise is decreased under certain discrete-time filtering operations. Using this alternate approach, a collection of ADC architectures are constructed, special cases of which, reduce to well-known data conversion techniques in literature. Analysis and simulations confirm comparable performance of the proposed ADCs with other oversampled ADCs such as modulators. When additional information about signal energy distribution is available, it is shown that the proposed ADC architectures are adaptable on a system level, thus surpassing the performance of modulation. Detailed theoretical explanations along with behavioral simulations are shown.
机译:在诸如载波聚合之类的现代无线应用中,过采样ADC需要可重新配置,以适应变化的频谱信号能量分布和感兴趣的带宽。尽管使用了几种电路和系统级技术已取得了进展,但缺乏一种考虑信号频谱特性的基本方法。在本文中,我们重新评估了过采样问题:我们使用时域分析表明,在给定信号频谱的情况下,在某些离散时间滤波操作下量化噪声会降低。使用这种替代方法,可以构建ADC架构的集合,其中的特例被简化为文献中众所周知的数据转换技术。分析和仿真证实了拟议ADC与其他过采样ADC(例如调制器)的可比性能。当可以获得有关信号能量分布的其他信息时,表明所建议的ADC体系结构可在系统级别进行调整,从而超越了调制性能。显示了详细的理论解释以及行为模拟。

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