DME数据能力的潜力

D. Zeng, F. Box, J. Ashley, L. Globus, Dmitri Baraban, F. Niles, B. Phillips
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引用次数: 3

摘要

美国联邦航空管理局(FAA)和航空利益相关方正在对国家空域系统(NAS)进行现代化改造,使其从基于模拟通信、固定对固定导航和监视的操作;通过下一代航空运输系统(NextGen)计划,实现基于数字通信、基于性能的导航(PBN)和广播自动相关监视(ADS-B)的操作。为了提高空中交通的安全、保障和效率,正在引入更多的数字信息技术来提供额外的通信、导航和监视(CNS)服务。通过航空无线电技术的进步,有可能增加现有系统的数据容量和功能,同时仍然保持向后兼容性,而不会增加对已经拥挤的航空频谱的需求。本文提出了透明地将数据能力引入距离测量设备(DME)信号的概念,并确定了可能利用这种数据能力的潜在航空应用。在进行研究时,我们开发了用于评估DME数据容量的分析和模拟模型。我们还评估了各种可能启用的CNS服务,发现DME频谱可以更有效地使用,为数据交换提供了一个通道,以支持额外的CNS服务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DME potential for data capability
The Federal Aviation Administration (FAA) and aviation stakeholders are modernizing the National Airspace System (NAS) from operations based on analog communications, fix-to-fix navigation, and surveillance; to operations based on digital communications, Performance Based Navigation (PBN), and Automatic Dependent Surveillance-Broadcast (ADS-B), through the Next Generation Air Transportation System (NextGen) program. To improve the safety, security, and efficiency of air traffic operations, more digital information technologies are being introduced to provide additional Communications, Navigation, and Surveillance (CNS) services. Through aviation radio technology advancement, it may be possible to increase the data capacity and functionality of existing systems and still maintain backward compatibility without increasing the demand on the already crowded aviation spectrum. This paper presents concepts for transparently introducing data capabilities into the Distance Measuring Equipment (DME) signal, and identifies potential aviation applications that may make use of this data capability. In conducting our research, we developed both analytical and simulation models for assessing the DME data capacities. We also evaluated various potential CNS services that could be enabled, and found that DME spectrum could be used more efficiently, providing a channel for data exchange to support additional CNS services.
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