College of Automation, Harbin Engineering University, Harbin 150001, China.
Sensors (Basel). 2019 Mar 23;19(6):1437. doi: 10.3390/s19061437.
Signal In Space (SIS) anomalies in satellite navigation systems can degrade satellite-based navigation and positioning performance. The occurrence of SIS anomalies from the BeiDou navigation satellite System (BDS) may be more frequent than for the Global Positioning System (GPS). In order to guarantee the integrity of BDS users, detecting and excluding SIS anomalies is indispensable. The traditional method through the comparison between the final precision ephemeris and the broadcast ephemeris is limited by the issue of long latency of precision ephemeris release. Through the statistical characteristics analysis of Signal In Space User Range Error (SISURE), we propose a real-time Instantaneous SISURE (IURE) estimation method by using the Kalman filtering-based carrier-smoothed-code to detect and exclude BDS SIS anomalies, in which the threshold for BDS IURE anomaly detection are obtained from the integrity requirement. The experimental results based on 1 Hz data from ground observations show that the proposed method has an estimation accuracy of 1.1 m for BDS IURE. The test results show that the proposed method can effectively detect the SIS anomalies caused by either orbit faults or clock faults.
卫星导航系统中的信号空间(SIS)异常会降低卫星导航和定位性能。北斗导航卫星系统(BDS)中的 SIS 异常的发生频率可能比全球定位系统(GPS)更高。为了保证 BDS 用户的完整性,检测和排除 SIS 异常是必不可少的。传统的通过比较最终精密星历和广播星历的方法受到精密星历发布长延迟的限制。通过对信号空间用户距离误差(SISURE)的统计特性进行分析,我们提出了一种基于卡尔曼滤波的载波平滑码的实时瞬时 SISURE(IURE)估计方法,通过该方法可以检测和排除 BDS 的 SIS 异常,其中 BDS IURE 异常检测的阈值是根据完整性要求确定的。基于地面观测的 1 Hz 数据的实验结果表明,该方法对 BDS IURE 的估计精度为 1.1 m。测试结果表明,该方法可以有效检测轨道故障或时钟故障引起的 SIS 异常。