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Proof-of-Concept of a Networked Validation Environment for Distributed Air/Ground NextGen Concepts

机译:分布式空中/地面NextGen概念的网络验证环境的概念验证

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The National Airspace System (NAS) must be improved to increase capacity, reduce flight delays, and minimize environmental impacts of air travel. NASA has been tasked with aiding the Federal Aviation Administration (FAA) in NAS modernization. Automatic Dependent Surveillance-Broadcast (ADS-B) is an enabling technology that is fundamental to realization of the Next Generation Air Transportation System (NextGen). Despite the 2020 FAA mandate requiring ADS-B Out equipage, airspace users are lacking incentives to equip with the requisite ADS-B avionics. A need exists to validate in flight tests advanced concepts of operation (ConOps) that rely on ADS-B and other data links without requiring costly equipage. A potential solution is presented in this paper. It is possible to emulate future data link capabilities using the existing in-flight Internet and reduced-cost test equipment. To establish proof-of-concept, a high-fidelity traffic operations simulation was modified to include a module that simulated Internet transmission of ADS-B messages. An advanced NASA ConOp, Flight Deck Interval Management (FIM), was used to evaluate technical feasibility. A preliminary assessment of the effects of latency and dropout rate on FIM was performed. Flight hardware that would be used by proposed test environment was connected to the simulation so that data transfer from aircraft systems to test equipment could be verified. The results indicate that the FIM ConOp, and therefore, many other advanced ConOps with equal or lesser response characteristics and data requirements, can be evaluated in flight using the proposed concept.
机译:必须改进国家空域系统(NAS),以增加容量,减少航班延误并最小化航空旅行对环境的影响。 NASA的任务是协助联邦航空局(FAA)进行NAS现代化。自动相关监视广播(ADS-B)是一项启用技术,对实现下一代航空运输系统(NextGen)至关重要。尽管2020年FAA强制要求配备ADS-B Out设备,但空域用户仍缺乏动力来配备必要的ADS-B航空电子设备。需要在飞行测试中验证依赖ADS-B和其他数据链路的先进操作概念(ConOps),而无需昂贵的设备。本文提出了一种潜在的解决方案。使用现有的机上互联网和成本降低的测试设备可以模拟未来的数据链接功能。为了建立概念验证,对高保真交通运营模拟进行了修改,以包括一个模拟ADS-B消息在Internet上传输的模块。先进的NASA ConOp,驾驶舱间隔管理(FIM),用于评估技术可行性。初步评估了潜伏期和辍学率对FIM的影响。拟议的测试环境将使用的飞行硬件已连接至仿真,因此可以验证从飞机系统到测试设备的数据传输。结果表明,可以使用所提出的概念在飞行中评估FIM ConOp,以及具有相同或更小的响应特性和数据要求的许多其他高级ConOps。

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