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Design and evaluation of NextGen aircraft separation assurance concepts

机译:NextGen飞机分离保证概念的设计和评估

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摘要

To support the development and evaluation of future function allocation concepts for separation assurance systems for the Next Generation Air Transportation System, this paper presents the design and human-in-the-loop evaluation of three feasible function allocation concepts that allocate primary aircraft separation assurance responsibilities and workload to: 1) pilots; 2) air traffic controllers (ATC); and 3) automation. The design of these concepts also included rules of the road, separation assurance burdens for aircraft of different equipage levels, and utilization of advanced weather displays paired with advanced conflict detection and resolution automation. Results of the human-in-the-loop simulation show that: a) all the concepts are robust with respect to weather perturbation; b) concept 1 (pilots) had highest throughput, closest to assigned spacing, and fewest violations of speed and altitude restrictions; c) the energy of the aircraft during the descent phase was better managed in concepts 1 and 2 (pilots and ATC) than in concept 3 (automation), in which the situation awareness of pilots and controllers was lowest, and workload of pilots was highest. The paper also discusses further development of these concepts and their augmentation and integration with future air traffic management tools and systems that are being considered for NextGen.
机译:为了支持下一代航空运输系统的分离保证系统的未来功能分配概念的开发和评估,本文介绍了分配主要飞机分离保证责任的三种可行功能分配概念的设计和在环评估工作量为:1)飞行员; 2)空中交通管制员(ATC); 3)自动化。这些概念的设计还包括道路规则,不同装备水平的飞机的分离保证负担,以及先进的天气显示与先进的冲突检测和解决方案自动化的结合。人体在环仿真的结果表明:a)所有概念在天气扰动方面都是可靠的; b)概念1(飞行员)的吞吐量最高,最接近分配的间隔,并且对速度和高度限制的违反最少。 c)与概念3(自动化)相比,概念1和2(飞行员和空中交通管制)在飞机下降阶段的能量得到了更好的管理,在概念3(飞行员和管制员)中,飞行员和管制员的处境意识最低,飞行员的工作量最高。本文还讨论了这些概念的进一步发展,以及它们与NextGen正在考虑的未来空中交通管理工具和系统的增强和集成。

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