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Performance Evaluation and Optimization of Communication Infrastructure for the Next Generation Air Transportation System

机译:下一代航空运输系统通信基础设施的性能评估和优化

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摘要

Automatic dependent surveillance-broadcast (ADS-B) is one of the fundamental surveillance technologies to improve the safety, capacity, and efficiency of the national airspace system. ADS-B shares its frequency band with current radar systems that use the same 1,090 MHz band. The coexistence of radar systems and ADS-B systems is a key issue to detect and resolve conflicts in the next generation air transportation system (NextGen). This paper focuses on the performance evaluation of ADS-B with existing radar systems and performance optimization of ADS-B systems to improve the safety and efficiency of conflict detection and resolution in NextGen. We have developed a simulation environment which models the complex interplay among the air traffic load, the radar systems, the ADS-B systems, and the wireless channel. A simple model is used to derive an analytical expression for a performance metric of ADS-B. This model is then used to design an adaptive ADS-B protocol for maximizing the information coverage while guaranteeing reliable and timely communication in air traffic surveillance networks. Simulation results show that the effect of ADS-B interference on the current radar system is negligible. The operational ability of ADS-B meets the performance requirements of conflict detection and resolution in air traffic control. However, upgrades are required in the current radar system for operation within an ADS-B environment since the current radars can significantly degrade the ADS-B performance. Numerical results indicate that the proposed adaptive protocol has the potential to improve the performance of conflict detection and resolution in air traffic control.
机译:自动相关广播监视(ADS-B)是提高国家空域系统的安全性,容量和效率的基本监视技术之一。 ADS-B与当前使用相同1,090MHz频段的雷达系统共享其频段。雷达系统和ADS-B系统的共存是检测和解决下一代航空运输系统(NextGen)中冲突的关键问题。本文着重于利用现有雷达系统对ADS-B进行性能评估以及对ADS-B系统进行性能优化,以提高NextGen中冲突检测和解决的安全性和效率。我们已经开发了一种模拟环境,可以对空中交通负载,雷达系统,ADS-B系统和无线通道之间的复杂相互作用进行建模。使用一个简单的模型可以得出ADS-B性能指标的解析表达式。然后,该模型用于设计自适应ADS-B协议,以最大程度地覆盖信息,同时确保空中交通监视网络中可靠,及时的通信。仿真结果表明,ADS-B干扰对当前雷达系统的影响可以忽略不计。 ADS-B的运行能力满足空中交通管制中冲突检测和解决的性能要求。但是,当前的雷达系统需要升级才能在ADS-B环境中运行,因为当前的雷达会大大降低ADS-B的性能。数值结果表明,所提出的自适应协议具有改善空中交通管制中冲突检测和解决性能的潜力。

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