存在有界错误时循环解决的完整性风险

S. Khanafseh, M. Joerger, B. Pervan
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引用次数: 5

摘要

本文介绍了在存在有界测量误差和故障的情况下,周期分辨率完整性风险上界的计算方法。在诸如舰载降落和自主空中加油等高精度应用中,必须估计和解决载波相位周期模糊度(或“固定模糊度”)。在同样要求高完整性的应用程序中,周期解析过程必须符合无故障完整性风险要求。在正常的错误条件下,无故障完整性风险可以很容易地使用现有的循环解析方法进行量化;即使存在已知的测量偏差,这也是正确的。然而,在故障假设下评估循环解决过程的完整性风险尚未得到解决。在罕见事件测量故障的情况下,如卫星故障和大气异常,故障的大小永远不会确切知道,但它通常可以被限制。这个边界可以是监视器最小可检测错误的结果,也可以是大量数据分析的结果,甚至可以是物理限制的结果。在本文中,我们开发了一种方法来考虑这些有界误差在计算导航系统的完整性风险,依赖于固定载波相位周期模糊。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrity risk of cycle resolution in the presence of bounded faults
This paper introduces a method to compute an upper bound on the integrity risk of cycle resolution in the presence of bounded measurement errors and faults. In high accuracy applications such as shipboard landing and autonomous airborne refueling, carrier phase cycle ambiguities must be estimated and resolved as integers (or `fixed ambiguities'). In applications that also demand high integrity, the cycle resolution process must comply with a fault-free integrity risk requirement. Under normal error conditions, fault-free integrity risk can readily be quantified using existing cycle resolution methods; this is true even in the presence of known measurement biases. However, evaluating the integrity risk of a cycle resolution process under fault hypotheses has not yet been addressed. In the case of rare-event measurement faults such as satellite failures and atmospheric anomalies, the magnitude of the fault is never exactly known, but it can often be bounded. The bound can either be a result of a monitor's minimum detectable error, from extensive data analysis, or even from physical limitation. In this paper, we develop a method to account for these bounded errors in the computation of the integrity risk for navigation systems that rely on fixed carrier phase cycle ambiguities.
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