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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Analysis of Filter-Bank-Based Methods for Fast Serial Acquisition of BOC-Modulated Signals
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Analysis of Filter-Bank-Based Methods for Fast Serial Acquisition of BOC-Modulated Signals

机译:BOC调制信号快速串行采集的基于滤波器组的方法分析

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Binary-offset-carrier (BOC) signals, selected for Galileo and modernized GPS systems, pose significant challenges for the code acquisition, due to the ambiguities (deep fades) which are present in the envelope of the correlation function (CF). This is different from the BPSK-modulated CDMA signals, where the main correlation lobe spans over 2-chip interval, without any ambiguities or deep fades. To deal with the ambiguities due to BOC modulation, one solution is to use lower steps of scanning the code phases (i.e., lower than the traditional step of 0.5 chips used for BPSK-modulated CDMA signals). Lowering the time-bin steps entails an increase in the number of timing hypotheses, and, thus, in the acquisition times. An alternative solution is to transform the ambiguous CF into an “unambiguous” CF, via adequate filtering of the signal. A generalized class of frequency-based unambiguous acquisition methods is proposed here, namely the filter-bank-based (FBB) approaches. The detailed theoretical analysis of FBB methods is given for serial-search single-dwell acquisition in single path static channels and a comparison is made with other ambiguous and unambiguous BOC acquisition methods existing in the literature.
机译:由于相关函数(CF)的包络中存在歧义(深度衰减),为伽利略(Galileo)和现代化的GPS系统选择的二进制偏移载波(BOC)信号对代码获取提出了重大挑战。这与BPSK调制的CDMA信号不同,后者的主要相关波瓣跨越2个码片的间隔,没有任何歧义或深度衰减。为了解决由于BOC调制而引起的歧义,一种解决方案是使用较低的步骤来扫描码相位(即,低于用于BPSK调制的CDMA信号的传统的0.5码片的步骤)。降低时间步阶需要增加时序假设的数量,从而增加采集时间。另一种解决方案是通过对信号进行充分的滤波,将模糊的CF转换为“明确的”CF。这里提出了广义的基于频率的明确采集方法,即基于滤波器组的方法。给出了用于单路径静态通道上的串行搜索单驻留捕获的FBB方法的详细理论分析,并与文献中存在的其他歧义和明确BOC捕获方法进行了比较。

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