全球导航卫星系统应用
计算机科学
伽利略(卫星导航)
假警报
全球定位系统
卫星导航
Boosting(机器学习)
实时计算
电子工程
人工智能
工程类
遥感
电信
地质学
作者
Daniele Borio,Cillian O’Driscoll,Gérard Lachapelle
标识
DOI:10.1109/taes.2009.5259196
摘要
The growing demand of location, navigation and positioning services is boosting the development of new signals and modulations that will be adopted by new global navigation satellite systems (GNSS), such as the European Galileo, the Chinese Compass and the modernized GPS. A common feature of these new modulations is the presence of two channels, the data and pilot components, that separately carry the navigation message and the ranging information. Three different techniques, noncoherent combining, coherent combining with sign recovery and differentially coherent combining, are analyzed for the joint acquisition of data and pilot signals. For each acquisition strategy the probabilities of detection and false alarm are provided. In particular closed-form expressions for the probabilities of coherent channel combining and of the differentially coherent integration strategy are derived. To the best of our knowledge these expressions are new. Monte Carlo simulations are used to support theoretical analysis demonstrating the accuracy of the proposed models.
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