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Design and Practical Implementation of Multifrequency RF Front Ends Using Direct RF Sampling

机译:直接射频采样的多频射频前端的设计与实际实现

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摘要

The use of direct RF sampling has been explored as a means of designing multifrequency RF front ends. Such front ends will be useful to multifrequency RF applications such as global navigation satellite system receivers that use global positioning system (GPS) L1, L2, and L5 signals and Galileo signals. The design of a practical multifrequency direct RF sampling front end is dependent on having an analog-to-digital converter whose input bandwidth accommodates the highest carrier frequency and whose maximum sampling frequency is more than twice the cumulative bandwidth about the multiple carrier signals. The principle of direct RF sampling is used to alias all frequency bands of interest onto portions of the Nyquist bandwidth that do not overlap. This paper presents a new algorithm that finds the minimum sampling frequency that avoids overlap. This design approach requires a multifrequency bandpass filter for the frequency bands of interest. A prototype front end has been designed, built, and tested. It receives a GPS coarse/acquisition code at the L1 frequency and GPS antispoofing precision code at both L1 and L2. Dual-frequency signals with received carrier-to-noise ratios in excess of 52 dB-Hz have been acquired and tracked using this system.
机译:已经探索使用直接RF采样作为设计多频RF前端的方法。这种前端对于多频RF应用非常有用,例如使用全球定位系统(GPS)L1,L2和L5信号以及伽利略信号的全球导航卫星系统接收器。实际的多频直接RF采样前端的设计取决于模数转换器,其输入带宽可容纳最高载波频率,并且其最大采样频率是多个载波信号的累积带宽的两倍以上。直接射频采样的原理用于将所有感兴趣的频带混叠到奈奎斯特带宽中不重叠的部分上。本文提出了一种新算法,该算法找到了避免重叠的最小采样频率。这种设计方法要求针对感兴趣的频带使用多频带带通滤波器。原型前端已被设计,制造和测试。它在L1频率处接收GPS粗略/采集代码,在L1和L2处均接收GPS反欺骗精度代码。使用该系统已采集并跟踪了接收到的载波噪声比超过52 dB-Hz的双频信号。

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