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Innovative techniques for Collective Detection of multiple GNSS signals in challenging environments

机译:集体检测多个GNSS信号在具有挑战性环境中的创新技术

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Collective Detection (CD) is an interesting technique for acquiring highly attenuated satellites signals in harsh environment. The idea of this approach is to process all signals in view collectively to take advantage of the spatial correlation between GNSS signals as vector acquisition. In this way, the acquisition of weak signals will be facilitated by the presence of stronger ones. Increasing the coherent integration time for acquisition of weak GNSS signals in challenging environments is limited by several sources which can increase the Doppler shift. In this study, we propose a new methodology for acquisition processing within the Collective Detection approach. The standard CD performs a coarse estimation of the user position in the position domain using a collective metric combining individual satellites correlations computed separately using the standard Fast Fourier Transform (FFT) for parallel code search acquisition. In the proposed algorithm, we compute the Collective Detection metrics in function of both the code phase and the Doppler frequency for all visible satellites by applying an efficient technique to estimate the Doppler frequency. The new approach consists of applying the Spectral Peak Location (SPL) delta-correction technique within the CD algorithm using the Bi-dimensional Parallel Search (BPS) acquisition method. The proposed acquisition method allows improving the accuracy of the Doppler estimation through FFT, and therefore enhancing the correlation energy. The application of this proposition is tested and validated with real GPS signals to illustrate the increased sensitivity and the reduced complexity.
机译:集体检测(CD)是在恶劣环境中获取高度减弱卫星信号的有趣技术。这种方法的思想是处理所有信号,统称为利用GNSS信号与矢量采集之间的空间相关性。通过这种方式,通过存在更强的存在,将促进弱信号的获取。提高采集弱GNSS信号在具有挑战性环境中的相干积分时间受到几个来源的限制,可以增加多普勒偏移。在这项研究中,我们提出了一种新的方法论在集体检测方法内采集处理。标准CD使用分别使用标准快速傅里叶变换(FFT)单独计算的单独卫星相关性的集体度量来执行位置域中的用户位置的粗略估计。在所提出的算法中,我们通过应用有效技术来估计多普勒频率来计算所有可见卫星的代码阶段和多普勒频率的集体检测度量。新方法包括使用双维并行搜索(BPS)采集方法在CD算法内应用光谱峰值位置(SPL)Δ-校正技术。所提出的采集方法允许通过FFT提高多普勒估计的准确性,从而提高相关能量。测试该命题的应用并用真实的GPS信号验证,以说明增加的灵敏度和复杂性降低。

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