论文标题
用非线性模拟操作员量化精细量化的SISO系统中的容量增长
Quantifying the Capacity Gains in Coarsely Quantized SISO Systems with Nonlinear Analog Operators
论文作者
论文摘要
高速,高分辨率对数字转换器(ADC)的功耗是实施大型带宽MM波通信系统的限制因素。一种缓解的解决方案引起了近期兴趣,是在接收器上使用一些低分辨率ADC。尽管减少ADC的数量和分辨率降低了功耗,但由于粗量化引起的信息损失,通道容量减少了。这意味着由ADC的数量和解决方案支配的速率能权衡。最近,鉴于固定数量的低分辨率ADC,在采样和量化之前,实际上可实现的非线性模拟操作员的应用可能会大大降低上述速率损失。基于这些观察结果,这项工作着重于单输入单输出(SISO)通信方案,i)i)在各种假设下的能力表达式在一组可实施的非线性模拟功能的各种假设下表达,ii)提供了计算方法来计算通道能力数值,而iii则可以量化非线性运营商在SISO接收器中的使用。此外,还提供了使用65 nm散装CMOS技术的电路级模拟,以显示模拟域中所需的非线性操作员的可实现性。为各种模拟操作员量化了拟议电路的功率要求。
The power consumption of high-speed, high-resolution analog to digital converters (ADCs) is a limiting factor in implementing large-bandwidth mm-wave communication systems. A mitigating solution, which has drawn considerable recent interest, is to use a few low-resolution ADCs at the receiver. While reducing the number and resolution of the ADCs decreases power consumption, it also leads to a reduction in channel capacity due to the information loss induced by coarse quantization. This implies a rate-energy tradeoff governed by the number and resolution of ADCs. Recently, it was shown that given a fixed number of low-resolution ADCs, the application of practically implementable nonlinear analog operators, prior to sampling and quantization, may significantly reduce the aforementioned rate-loss. Building upon these observations, this work focuses on single-input single-output (SISO) communication scenarios, and i) characterizes capacity expressions under various assumptions on the set of implementable nonlinear analog functions, ii) provides computational methods to calculate the channel capacity numerically, and iii) quantifies the gains due to the use of nonlinear operators in SISO receiver terminals. Furthermore, circuit-level simulations, using a 65 nm Bulk CMOS technology, are provided to show the implementability of the desired nonlinear operators in the analog domain. The power requirements of the proposed circuits are quantified for various analog operators.