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CS detection and correction techniques for RTK positioning using single-frequency GNSS receivers: trends and comparison

机译:使用单频GNSS接收机进行RTK定位的CS检测和校正技术:趋势和比较

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摘要

Nowadays, high-accuracy satellite-based positioning and navigation solutions are obtained using carrier-phase observations together with a differential correction scheme. A slip of only a few carrier-phase cycles can, however, bias observations causing a reduction in position accuracy. Therefore, reliable detection and handling of cycle slips (CSs) is essential for achieving high-accuracy positioning performance. Generally, it is harder to resolve CS in single-frequency observations, but the area deserves attention as differential positioning using low-cost single-frequency receivers is expected to be the key for many emerging mass-market applications. This study reviews and compares CS detection and correction techniques for single-frequency GNSS receivers with respect to their application for low-cost real-time kinematic (RTK) positioning. No prior performance comparison of CS detection and correction techniques exists; thereby, the authors have proposed four parameters to assess performance quality of CS resolution scheme for RTK positioning. Subsequently, an up-to-date list of existing techniques, classified according to the CS detection strategy, is reviewed with respect to measurement model, CS correction approach and test results. The techniques are also analysed for performance quality and it is observed that they do not conform to all parameters. Finally, conclusions are drawn and future research directions are proposed at the end.
机译:如今,使用载波相位观测以及差分校正方案可以获得高精度的基于卫星的定位和导航解决方案。但是,只有几个载波相位周期的偏差会导致观察结果偏差,从而导致位置精度下降。因此,对周跳(CS)进行可靠的检测和处理对于实现高精度定位性能至关重要。通常,在单频观测中很难解决CS问题,但是该领域值得关注,因为使用低成本单频接收机进行差分定位有望成为许多新兴大众市场应用的关键。这项研究回顾和比较了单频GNSS接收机的CS检测和校正技术,以及它们在低成本实时运动(RTK)定位中的应用。不存在CS检测和校正技术的先前性能比较;因此,作者提出了四个参数来评估用于RTK定位的CS分辨率方案的性能。随后,针对测量模型,CS校正方法和测试结果,对根据CS检测策略分类的现有技术的最新列表进行了审查。还分析了这些技术的性能质量,发现它们不符合所有参数。最后得出结论,最后提出了今后的研究方向。

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