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Optimized MHSS ARAIM User Algorithms: Assumptions, Protection Level Calculation and Availability Analysis

机译:优化的MHSS ARAIM用户算法:假设,保护级别计算和可用性分析

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This paper describes and further develops two algorithms which are currently being considered by a bilateral EU-U.S. working group on Advanced Receiver Autonomous Integrity Monitoring (ARAIM) called Working Group C (WGC); the baseline ARAIM MHSS algorithm and an expansion of this approach termed Q*-MHSS. The availability performance, given either an equal or an optimized allocation of integrity and continuity budgets to all failure modes, is assessed. The paper furthermore proposes an improvement to the protection level calculations by introducing a geometry check to exclude weak geometries and corresponding fault modes leading to excessive protection levels. This is relevant in particular when considering constellation-wide consistent faults under relatively high constellation fault probabilities, such as may be necessary when initially starting ARAIM service with constellations that have a limited service history.
机译:本文介绍并进一步开发了两种算法,目前被双边欧盟-U.S考虑。高级接收人自主完整性监测(Asaim)的工作组称为工作组C(WGC);基线ARAIM MHSS算法和这种方法的扩展称为Q * -MHSS。评估可用性性能,给定相同或优化的完整性和连续性预算到所有失败模式,都会进行评估。此外,此外提出了通过引入几何检查来改进保护水平计算,以排除弱几何形状和相应的故障模式,导致保护水平过高。这尤其是在考虑在相对高的星座故障概率下的星座范围的一致故障时相关的,例如在最初使用具有有限服务历史的星座开始的Araim服务时可能是必要的。

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