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A RAIM APPROACH TO GNSS OUTLIER AND CYCLE SLIP DETECTION USING L1 CARRIER PHASE TIME-DIFFERENCES

机译:使用L1载波相位时间差异的GNSS异常值和循环滑动检测的RAIM方法

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Cycle slips are a common error source in Global Navigation Satellite System (GNSS) carrier phase measurements. In this paper, the cycle slip problem is approached using Receiver Autonomous Integrity Monitoring (RAIM) methodology. Carrier phase measurements are used here in a single-receiver time-differential positioning method where integer ambiguities are canceled, but any cycle slips remain. The performance of the method was assessed by comparing the detection results to a Real-Time Kinematic (RTK) solution and by manual data examination. Postprocessing results obtained using authentic Global Positioning System (GPS) measurements logged by low-cost single-frequency receivers show that the method is able to reliably detect and identify single errors but fails in an exemplary multiple outlier scenario. As no reference receiver is needed, the method is a potential means to produce cycle-slip-corrected data usable in any postprocessing application.
机译:循环滑动是全局导航卫星系统(GNSS)载波相位测量中的常见错误源。在本文中,使用接收方自主完整性监测(RAIM)方法来接近周期滑移问题。这里使用载波相位测量以取消整数歧义的单接收器时间差分定位方法,但是仍然存在任何循环滑动。通过将检测结果与实时运动(RTK)解决方案进行比较并通过手动数据检查来评估该方法的性能。使用低成本单频接收器记录的真实全球定位系统(GPS)测量获得的后处理结果表明该方法能够可靠地检测和识别单个错误,但在示例性多个异常值方案中失败。由于不需要参考接收器,该方法是在任何后处理应用程序中产生可用的周期滑动校正数据的潜在装置。

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