一种提高WAM定位精度的高度修正技术

M. Garcia, R. Mueller, E. Innis, Boris Veytsman
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引用次数: 7

摘要

广域复用(WAM)被认为是国家空域系统(NAS)中广播自动相关监视(ADS-B)的主要备用源之一。雷达目前是空中交通监视的主要来源,ADS-B准备在2020年取代雷达进入FAA ADS-B Out任务。WAM服务既可以作为全面ADS-B服务的过渡,也可以作为雷达维护和扩展的一种节省成本的备用监视替代方案。与WAM相关的挑战之一是飞机报告高度的准确性。Exelis公司参与了一项贸易研究,为美国联邦航空局科罗拉多州WAM第二阶段项目调查了在大范围内纠正飞机高度的各种替代方案,通过整合NOAA生成的快速更新周期(RUC)天气数据网格,Exelis公司确定飞机高度误差可以显著降低(小于200英尺)。讨论和分析了WAM方法的高度校正贸易研究及其结果。
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An enhanced altitude correction technique for improvement of WAM position accuracy
Wide Area Multilateration (WAM) is being considered as one of the primary backup sources of air traffic surveillance to Automatic Dependent Surveillance-Broadcast (ADS-B) in the National Airspace System (NAS). Radar is currently the primary source of air traffic surveillance, with ADS-B poised to succeed radar leading into the FAA ADS-B Out mandate in 2020. WAM service could serve as both a transition to full ADS-B service and a cost-saving backup surveillance alternative to radar maintenance and expansion. One of the challenges associated with WAM is the accuracy of the aircraft's reported altitude. After engaging in a trade study to investigate various alternatives to correcting aircraft altitudes in a wide region for the FAA Colorado WAM Phase II program, Exelis determined that the aircraft altitude errors could be reduced significantly (less than 200') by integrating the Rapid Update Cycle (RUC) weather data grid generated by NOAA. The altitude correction trade study for WAM approach and results are discussed and analyzed.
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