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Multi-Satellite Cycle-Slip Detection and Exclusion Using the Noise Subspace of Residual Dynamics

机译:残余动力学噪声子空间的多卫星周期滑移检测与排除

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Real-time detection of cycle-slips on undifferenced carrier-phase measurements is an important task to properly exclude wrong phase trackers from precise positioning algorithms. The detection is especially challenging in high-dynamic mobile scenarios, where traditional approaches (as those based on single-channel polynomial fitting) may easily lead to false positives. Using a multi-channel formulation of the problem, the proposed technique takes benefit of the available data redundancy (high number of tracked satellites) in order to ameliorate the false positives. This robustness is accomplished by adaptively estimating the orthogonal subspace spanned by the polynomial time-varying residuals obtained from all available channels (treated as a vector process), and using that subspace to form efficient channel combinations with cancelled satellite-receiver dynamics. The main advantage of the multi-channel approach is that wrong measurements can be discarded without needing any positioning estimate nor phase-ambiguity solver, thus improving the accuracy, reliability and integrity of positioning. The performance improvement is shown by means of theoretical analysis and computer simulations.
机译:在无差异的载波相位测量值上实时检测周跳是将精确的相位跟踪器正确排除在精确定位算法之外的一项重要任务。在高动态移动场景中,这种检测尤其具有挑战性,在这种情况下,传统方法(如基于单通道多项式拟合的方法)可能容易导致误报。使用问题的多通道表示法,所提出的技术利用了可用的数据冗余(大量跟踪卫星)来减轻误报。通过自适应地估计从所有可用信道(视为矢量过程)获得的多项式时变残差所覆盖的正交子空间,并使用该子空间来形成具有抵消的卫星接收器动态特性的有效信道组合,可以实现这种鲁棒性。多通道方法的主要优点在于,不需要任何定位估计或相位模糊解算器就可以丢弃错误的测量结果,从而提高了定位的准确性,可靠性和完整性。通过理论分析和计算机仿真可以显示性能的提高。

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