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A Three-Step Method for Determining Unhealthy Time Period of GPS Satellite Orbit in Broadcast Ephemeris and Its Preliminary Applications for Precise Orbit Determination

机译:一种三步法,用于确定GPS卫星轨道在广播星历中的不健康时间段及其精确轨道测定的初步应用

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摘要

Abnormal information of satellite orbits inevitably appears in the broadcast ephemeris. Failure to obtain unhealthy information on GPS satellite orbits in precise orbit determination (POD) degrades GPS service performance. At present, the reliable unhealthy information published by the Center for Orbit Determination in Europe (CODE) is usually used, but it has at least one-day latency, and the current level of unhealthy information cannot fully meet the requirements of rapid and real-time geodetic applications, especially for non-IGS (International global navigation satellite systems (GNSS) Service) analysis centers and BeiDou navigation satellite system (BDS) users. Furthermore, the unhealthy orbit information detected by the traditional method, which is based on the synchronized pseudo-range residuals and regional observation network, cannot meet the requirement of setting separate sub-arcs in POD. In view of these problems, we propose a three-step method for determining unhealthy time periods of GPS satellite orbit in broadcast ephemeris during POD to provide reliable unhealthy information in near-real time. This method is a single-epoch solution, and it can detect unhealthy time periods in each sampling of observation in theory. It was subsequently used to detect unhealthy time periods for satellites G09 and G01 based on the 111 globally distributed tracking stations in the IGS. The performance of the new method was evaluated using cross-validation. Based on the test results, it detected an orbital leap for G09 in the broadcast ephemeris from 09:59:42 to 14:00:42 on 25 August 2017. Compared to the traditional method, the unhealthy start time using the three-step method was in better agreement with the information provided by CODE’s satellite crux files. G01 did not appear to have an orbital leap on the specified date, but it was misjudged by the traditional method. Furthermore, compared to the traditional method, the three-step method can perform unhealthy time period detection for a satellite all day long. In addition, precise orbit determination for unhealthy satellites is realized successfully with the unhealthy orbit arc information identified in this study. Compared to the CODE orbit, the root mean square and standard deviation of the new method for G09 are less than 2 cm, and the three-step method shows an improvement in accuracy compared with the traditional method. From the above results, it can be seen that this study can provide a feasible approach to meet the real-time unhealthy time period detection requirements of a satellite orbit in a broadcast ephemeris during POD. Furthermore, compared to waiting for updates of CODE’s satellite crux files or for accumulating delayed observation data, it has the potential to provide additional information in the process of generating ultra-rapid/real-time orbits.
机译:卫星轨道的异常信息不可避免地出现在广播星历中。在精确的轨道确定(POD)中未能获得关于GPS卫星轨道的不健康信息(POD)降低GPS服务性能。目前,通常使用欧洲(代码)轨道确定中心发布的可靠的不健康信息,但它至少有一天的延迟,目前的不健康信息水平不能完全满足快速和真实的要求 - 时间大地测量应用,特别是对于非IGS(国际全球导航卫星系统(GNSS)服务)分析中心和北斗导航卫星系统(BDS)用户。此外,通过传统方法检测的不健康轨道信息,它基于同步的伪范围残差和区域观察网络,不能满足在POD中设置单独的子弧的要求。鉴于这些问题,我们提出了一种三步法,用于在POD期间确定GPS卫星轨道的GPS卫星轨道的不健康时间段,以在近期提供可靠的不健康信息。该方法是单时期的解决方案,可以在理论上检测每个对观察的每个采样中的不健康的时间段。随后使用基于IGS中的111个全球分布的跟踪站来检测卫星G09和G01的不健康时间段。使用交叉验证评估新方法的性能。根据测试结果,它在2017年8月25日从09:59:42到14:00:42到14:00:42的G09中的轨道飞跃。与传统方法相比,使用三步法的不健康开始时间与代码卫星关键文件提供的信息更好。 G01在指定日期似乎没有轨道飞跃,但它被传统方法误判。此外,与传统方法相比,三步法可以为整天对卫星进行不健康的时间段检测。此外,与本研究中识别的不健康轨道信息成功实现了不健康卫星的精确轨道确定。与代码轨道相比,G09的新方法的根均线和标准偏差小于2cm,三步方法与传统方法相比,准确性提高。从上述结果可以看出,该研究可以提供可行的方法来满足卫生间期间广播星历中卫星轨道的实时不健康的时间段检测要求。此外,与等待代码卫星关键文件或用于累积延迟观察数据的更新相比,它有可能在生成超快速/实时轨道的过程中提供附加信息。

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