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Real-Time Detection and Repair of Cycle Slips in Triple-Frequency BDS Measurements

机译:三频BDS测量中的周跳的实时检测和修复

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To improve the effectiveness and reliability of cycle slips detection and repair, a real-time algorithm to detect, determine, and validate the cycle slips for triple-frequency BDS is proposed in this study, in which the geometry-free (GF) combination noise residual method and the GF code and phase combination method are utilized. At first, the optimal BDS triple-frequency GF phase combinations are selected. Then the GF code and phase combination method are used to detect all the cycle slips. After the cycle slips are detected, an effective simple round method using the optimal triple-frequency GF code and phase combinations is applied to calculate the cycle slips. The workflow of entire algorithm for cycle slips detection and repair is also designed. Finally, a BDS triple-frequency test is performed to test the proposed algorithm. Results show that the successive mixed small and big cycle slips can be detected and repaired effectively in real time. The 5-min signal unlock time and 1 small cycle slips can be also detected and corrected.
机译:为了提高周跳检测和修复的有效性和可靠性,提出了一种用于检测,确定和验证三频BDS周跳的实时算法,其中无几何(GF)组合噪声利用余数法和GF码及相位组合法。首先,选择最佳的BDS三频GF相位组合。然后,使用GF代码和相位组合方法来检测所有循环滑移。在检测到周跳之后,使用一种有效的简单舍入方法,使用最佳三频GF码和相位组合来计算周跳。还设计了用于循环滑移检测和修复的整个算法的工作流程。最后,进行了BDS三频测试以测试所提出的算法。结果表明,可以连续有效地检测和修复连续混合的小和大循环滑移。还可以检测并纠正5分钟的信号解锁时间和1个小循环打滑。

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