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A Comparison of Direct Radio Frequency Sampling and Conventional GNSS Receiver Architectures

机译:直接射频采样与常规GNSS接收器架构的比较

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摘要

The novel concept of a direct radio frequency (RF) sampling receiver front end was analyzed, experimentally tested, and compared with a traditional superheterodyne front end that uses mixing to downconvert the signal before sampling. This study's goal was to demonstrate that signal power and phase are not adversely influenced by the use of direct RF sampling. The direct RF sampling strategy examined in this work uses sampling rates that are much lower than the carrier frequency but more than twice the signal bandwidth. Such a system employs a bandpass filter in front of the analog-to-digital converter (ADC) to avoid sensitivity loss via aliasing of out-of-band noise and interfering signals. This design approach was evaluated analytically to determine the effects of sample clock jitter, and experimental results using GPS signals were used to confirm the analytical results. The results indicate that direct RF sampling yields performance equivalent to that of superheterodyne mixing.
机译:对直接射频(RF)采样接收器前端的新颖概念进行了分析,实验测试,并与传统的超外差前端进行了比较,后者使用混合技术在采样前对信号进行下变频。这项研究的目的是证明使用直接RF采样不会对信号功率和相位产生不利影响。在这项工作中研究的直接RF采样策略使用的采样率远低于载波频率,但是信号带宽的两倍以上。这样的系统在模数转换器(ADC)的前面采用了带通滤波器,以避免由于带外噪声和干扰信号的混叠而导致灵敏度下降。对这种设计方法进行了分析评估,以确定样本时钟抖动的影响,并使用GPS信号的实验结果来确认分析结果。结果表明,直接射频采样产生的性能与超外差混频相当。

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