全球定位系统
校准
计算机科学
异常(物理)
空中航行
磁测
实时计算
遥感
磁异常
航空航天工程
模拟
惯性导航系统
工程类
物理
数学
统计
地理
地球物理学
电信
量子力学
惯性参考系
凝聚态物理
标识
DOI:10.1109/taes.2021.3101567
摘要
Magnetic anomaly navigation is gaining popularity as an alternative-navigation system that addresses the challenges of GPS denial. Magnetic anomaly navigation has recently been flight test proven on an F-16 aircraft. The corrupting magnetic environment on this operational platform is 2–3 orders of magnitude larger than previous flight-tests on geo-survey aircraft, while also displaying stochastic drift. The difficult magnetic environment of the platform necessitated a combination of batch and online calibration to obtain accurate navigation solutions. Superiority of the new method is shown in comparison to prior published methods. Real navigation results on the F-16 are shown to obtain accuracies 50% better than these competing methods, with low-altitude results obtaining 59-m distance root-mean-squared errors on 1.5 h flights versus 111 m using batch-only calibrations.
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