Direct Sequence Spread Spectrum Signal’s Demodulator Acquisition Implementation Based on Fast Fourier Transform. Part 2. Carrier Frequency Estimation

E. Brusin
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Abstract

Signals with direct spread spectrum are widespread in modern communication and navigation systems. Often for communication channels in which such signals are used, significant changes in the carrier frequency in relation to the information speeds of the received signals are characteristic. In particular, for communication channels with significant Doppler shift. Therefore, estimation of the carrier frequency plays a key role in solving the problem of initial synchronization of demodulators of signals with direct spectral broadening. In the first part of the paper, the main approaches to solving the initial synchronization problem were presented. In this part of the paper an algorithm for estimating the carrier frequency based on the analysis of the received signal uncertainty function cross section in the delay plane was proposed. The carrier frequency estimation is based on the fast Fourier transform using an iterative dichotomous search procedure. The results of its efficiency analysis are presented; the variance of the estimates obtained in the implementation of the proposed estimation algorithm are compared with the Cramer-Rao boundary.
基于快速傅立叶变换的直接序列扩频信号解调采集实现。第2部分。载波频率估计
直接扩频信号在现代通信和导航系统中广泛应用。通常在使用这种信号的通信信道中,载波频率相对于接收信号的信息速度的显著变化是特征。特别是对于具有显著多普勒频移的通信信道。因此,载波频率的估计是解决直接扩频信号解调初始同步问题的关键。本文第一部分介绍了解决初始同步问题的主要方法。本文提出了一种基于延迟平面接收信号不确定函数截面分析的载波频率估计算法。载波频率估计基于快速傅立叶变换,采用迭代二分类搜索方法。给出了其效率分析结果;将该估计算法实现过程中得到的估计方差与Cramer-Rao边界进行了比较。
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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