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The Signal Quality Monitoring Method based on Multi-correlation Algorithm for GNSS Modernized Signals

机译:基于GNSS现代化信号的多相关算法的信号质量监测方法

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Satellite signal anomalies result from a failure of the signal generating hardware on one of the GNSS space vehicles. These anomalies may cause severe distortions of the autocorrelation peak inside GNSS receivers,which could threaten the position accuracy and integrity of GNSS,especially for safety critical applications. Digital distortion caused by failures inside the baseband generation unit is an important kind of deformations. Multi-correlator technique,as a prevalent Signal Quality Monitoring (SQM) method,has shown good performance on detecting digital distortion of BPSK modulated signals. However,traditional multi-correlator technique,which depends on detecting correlation peak,is not applicable for modernized BOC signals because of their different characteristics in correlation domain. Hence,we give a modified multi-correlator method that combines BPSK-LIKE algorithm and multi-correlator technique to detect the distortion. The proposed method can be achieved easily in a modified GNSS receiver. Firstly,we utilize BPSK-LIKE tracking loop to deal with received signals so that the impact of the sub-carrier on BOC signals is eliminated and ambiguity problem on correlation functions is avoided. The values of correlation and the code phases in tracking loop are output to detection module. Then,a modified correlation-domain detection algorithm is presented to achieve digital distortion detection for BOC signals. Considering that,for BOC signals,the generation of pseudo-noise (PN) code and subcarrier are two separate procedures onboard navigation satellites,two detection methods including Ratio Tests and Symmetry Tests are used to monitor PN code distortion and subcarrier distortion respectively. The results show that the proposed method can detect digital deformation of BOC-modulated signals effectively. By increasing correlators and the length of input signals,the detection performance can be improved. In addition,correlator space has a significant impact on detecting PN code distortion. Compared with traditional multi-correlator technique,the modified method has shown similar performance on detecting PN code distortion.
机译:卫星信号异常由信号发生在GNSS空间车辆之一上的信号发生故障。这些异常可能导致GNSS接收器内的自相关峰的严重扭曲,这可能威胁到GNSS的位置准确性和完整性,特别是对于安全关键应用。基带生成单元内的故障引起的数字扭曲是一种重要的变形。多相相关器技术作为普遍的信号质量监测(SQM)方法,在检测BPSK调制信号的数字失真上表现出良好的性能。然而,传统的多相相关器技术取决于检测相关峰值,这不适用于现代化的BOC信号,因为它们的相关域中的不同特性。因此,我们提供了一种改进的多相关器方法,将BPSK样算法和多相相关器技术组合以检测失真。所提出的方法可以在修改的GNSS接收器中轻松实现。首先,我们利用类似BPSK的跟踪环路来处理接收信号,使得子载波对BOC信号的影响被消除,并且避免了相关函数的模糊问题。跟踪环路中的相关性和代码阶段的值输出到检测模块。然后,提出了一种修改的相关域检测算法以实现BOC信号的数字失真检测。考虑到,对于BOC信号,伪噪声(PN)代码和子载波的产生是船上导航卫星的两个单独的程序,包括比率测试和对称测试的两个检测方法分别用于监测PN码失真和子载波失真。结果表明,该方法可以有效地检测BOC调制信号的数字变形。通过增加相关器和输入信号的长度,可以提高检测性能。此外,相关器空间对检测PN码失真具有显着影响。与传统的多相相关器技术相比,修改方法在检测PN码失真上显示了类似的性能。

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