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A Cycle Slip Detection Framework for Reliable Single Frequency RTK Positioning

机译:可靠的单频RTK定位的周跳检测框架

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摘要

Single frequency real-time kinematic (RTK) positioning is expected to be the leading implementation platform for a variety of emerging GNSS mass-market applications. During RTK positioning, the most common source of measurement errors is carrier-phase cycle slips (CS). The presence of CS in carrier-phase measurements is tested by a CS detection technique and correspondingly taken care of. While using CS prone measurement data, positioning reliability is an area of concern for RTK users. Reliability can be linked with the CS detection scheme through a least squares (LS) adjustment process. This paper proposes a CS detection framework for reliable RTK positioning using single-frequency GNSS receivers. The scheme uses double differenced measurements for CS detection via LS adjustment using a detection, identification, and adaptation approach. For reliable positioning, the procedure to link the detection and identification stages is described. Through tests conducted on kinematic data, internal and external reliability are theoretically determined by calculating minimal detectable bias (MDB) and marginally detectable errors, respectively. After introducing CS, the actual values of MDB are found to be four cycles, which are higher than the theoretically obtained values of one and two cycles. Although CS detection for reliable positioning is implemented for single-frequency RTK users, the proposed procedure is generic and can be used whenever CS are detected through statistical tests during LS adjustment.
机译:单频实时运动学(RTK)定位有望成为各种新兴GNSS大众市场应用程序的领先实施平台。在RTK定位过程中,最常见的测量误差源是载波相位周期滑动(CS)。通过CS检测技术测试载波相位测量中CS的存在,并进行相应的处理。使用CS倾向测量数据时,定位可靠性是RTK用户关注的领域。可以通过最小二乘(LS)调整过程将可靠性与CS检测方案联系起来。本文提出了一种使用单频GNSS接收机进行可靠RTK定位的CS检测框架。该方案使用检测,识别和自适应方法通过LS调整将双差测量用于CS检测。为了进行可靠的定位,描述了链接检测和识别阶段的过程。通过对运动数据进行测试,从理论上通过分别计算最小可检测偏差(MDB)和边缘可检测误差来确定内部和外部可靠性。引入CS后,发现MDB的实际值为四个周期,高于理论上获得的一个周期和两个周期的值。尽管为单频RTK用户实现了用于可靠定位的CS检测,但是建议的过程是通用的,只要在LS调整期间通过统计测试检测到CS,就可以使用该过程。

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