Integrity monitoring of NavIC by parsing broadcast ephemeris

IF 1.2 Q4 REMOTE SENSING
Sony Devalapally, Krishna Reddy Desireddy, Naveen Kumar Perumalla
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引用次数: 0

Abstract

Abstract Global navigation satellite systems (GNSS) are used to provide position estimation to the users. These navigation systems must meet the required navigation parameters (RNP) parameters. Among them integrity being the important parameter, defined as a navigation system’s honesty of the information provided to the user by satellites. The extremity of error due to clocks, ephemeris etc., broadcasted in navigation message of NavIC will result in inaccurate information provided by the satellites that tamper the Navigation with Indian constellation (NavIC) system integrity. The information provided by the satellites may be faulty due to various error sources and cannot be used for applications which require very high accuracy. Integrity of the information provided by satellites plays a vital role and the system needs to be notified accordingly. The traditional methods receiver autonomous integrity monitoring (RAIM) algorithms require both navigation and observation data for implementation and involves several computations, hence in this paper an efficient approach considering only navigation message is proposed to monitor the integrity of NavIC. The NavIC Navigation data of 28 days data corresponding to 4 months is collected from IGS website. The integrity check is performed considering the satellite‘s User Range Accuracy Upper Bound (URA UB), fit interval and health parameters from navigation message. It is observed from the results that there are specific instances of integrity failure of NavIC system. However, it is also noticed that 99.5 % of times the integrity provided by NavIC is within specified limits that guarantee the NavIC utility for critical applications.
基于广播星历分析的导航系统完整性监测
摘要全球导航卫星系统(GNSS)用于向用户提供位置估计。这些导航系统必须满足所需的导航参数(RNP)参数。其中完整性是重要参数,定义为导航系统对卫星提供给用户的信息的诚实性。NavIC导航消息中广播的时钟、星历表等造成的极端误差将导致卫星提供的信息不准确,从而干扰印度星座导航系统的完整性。卫星提供的信息可能由于各种误差源而出现故障,并且不能用于要求非常高精度的应用。卫星提供的信息的完整性起着至关重要的作用,需要相应地通知系统。传统的接收机自主完整性监测(RAIM)算法需要导航和观测数据才能实现,并且需要多次计算,因此本文提出了一种只考虑导航消息的有效方法来监测NavIC的完整性。NavIC导航数据的28天数据对应于4个月从IGS网站收集。完整性检查是根据卫星的用户范围精度上限(URA-UB)、拟合间隔和导航消息中的健康参数进行的。从结果中可以观察到,NavIC系统存在特定的完整性故障实例。然而,也注意到99.5 % NavIC提供的完整性在特定限制范围内的次数,以保证NavIC在关键应用中的效用。
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来源期刊
Journal of Applied Geodesy
Journal of Applied Geodesy REMOTE SENSING-
CiteScore
2.30
自引率
7.10%
发文量
30
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