Unique measurement and modeling of total phase noise in wideband receiver

T. Guo, Xia Li, J. Pogge, Yu Song, R. Qiu
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Abstract

RF receivers are common in many modern electronic systems such as wideband beamforming and radar systems. Typically a receiver consists of an analog front-end followed by a digitizer. Note that improvement of analog circuits has proven difficult, and the overall receiver performance is usually limited by the analog front-end. Therefore, achieving low-distortion reception is highly desired, especially for wideband receivers. Among all performance degradation contributors, phase noise and jitter are especially troublesome since they cause random errors which are difficult to compensate. Each individual RF device contributes to phase noise, while the analog to digital converter (ADC) tends to effect time jitter. To quantify the system performance, it is desired to know the accumulated effect of individual phase noise sources and jitter. Under linear channel assumption, the total effect of all phase noise and jitter contributions along a channel can be represented by an accumulated phase noise at the ADC's output, called total phase noise. This paper focuses on measuring and modeling the total phase noise relying on unique optimization approaches. In contrast to traditional phase noise measurement that typically relies on hardware, a digital approach is proposed and developed. In particular, a measurement-based phase noise model is created. A modified spectrum fitting technique based on optimization is proposed and examined. It is confirmed that the total phase noise satisfies wide sense stationary (WSS) Gaussian process model.
宽带接收机总相位噪声的独特测量与建模
射频接收器在许多现代电子系统中很常见,如宽带波束形成和雷达系统。典型地,接收机由一个模拟前端和一个数字化仪组成。请注意,改进模拟电路已被证明是困难的,并且接收器的整体性能通常受到模拟前端的限制。因此,实现低失真接收是非常需要的,特别是对于宽带接收器。在所有导致性能下降的因素中,相位噪声和抖动尤其令人头疼,因为它们会引起难以补偿的随机误差。每个单独的射频器件都会产生相位噪声,而模数转换器(ADC)往往会产生时间抖动。为了量化系统的性能,需要知道各个相位噪声源和抖动的累积效应。在线性通道假设下,沿通道的所有相位噪声和抖动贡献的总影响可以用ADC输出处的累积相位噪声表示,称为总相位噪声。本文采用独特的优化方法对总相位噪声进行测量和建模。与传统的依赖硬件的相位噪声测量不同,本文提出并开发了一种数字相位噪声测量方法。特别地,建立了基于测量的相位噪声模型。提出并验证了一种基于优化的改进频谱拟合技术。结果表明,总相位噪声满足广义平稳高斯过程模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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