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Why Analog-to-Information Converters Suffer in High-Bandwidth Sparse Signal Applications

机译:为什么模数转换器在高带宽稀疏信号应用中会受苦

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摘要

In applications where signal frequencies are high, but information bandwidths are low, analog-to-information converters (AICs) have been proposed as a potential solution to overcome the resolution and performance limitations of high-speed analog-to-digital converters (ADCs). However, the hardware implementation of such systems has yet to be evaluated. This paper aims to fill this gap, by evaluating the impact of circuit impairments on performance limitations and energy cost of AICs. We point out that although the AIC architecture facilitates slower ADCs, the signal encoding, typically realized with a mixer-like circuit, still occurs at the Nyquist frequency of the input to avoid aliasing. We illustrate that the jitter and aperture of this mixing stage limit the achievable AIC resolution. In order to do so, we designed an end-to-end system evaluation framework for examining these limitations, as well as the relative energy-efficiency of AICs versus high-speed ADCs across the resolution, receiver gain and signal sparsity. The evaluation shows that the currently proposed AICs have no performance benefits over high-speed ADCs. However, AICs enable 2–10X in energy savings in low to moderate resolution (ENOB), low gain applications.
机译:在信号频率高而信息带宽低的应用中,已提出了模数转换器(AIC)作为克服高速模数转换器(ADC)的分辨率和性能限制的潜在解决方案。但是,此类系统的硬件实现尚待评估。本文旨在通过评估电路缺陷对AIC的性能限制和能源成本的影响来填补这一空白。我们指出,尽管AIC体系结构可简化ADC的运行速度,但通常采用类似混频器的电路实现的信号编码仍会在输入的奈奎斯特频率下发生,以避免混叠。我们说明了该混合级的抖动和孔径限制了可实现的AIC分辨率。为了做到这一点,我们设计了一个端到端的系统评估框架,以检查这些限制以及AIC与高速ADC在分辨率,接收器增益和信号稀疏性方面的相对能效。评估表明,当前提出的AIC与高速ADC相比没有性能优势。但是,在低至中等分辨率(ENOB),低增益应用中,AIC可使能源节省2-10倍。

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