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Design and Evaluation of a Corridors-in-the-sky Concept: The Benefits and Feasibility of Adding Highly Structured Routes to a Mixed Equipage Environment

机译:对天空走廊的设计与评估 - 天空概念:将高度结构化路线添加到混合设备环境中的益处和可行性

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A human-in-the-loop simulation of a Corridors-in-the-sky concept was conducted that focused on investigating the potential benefits and feasibility of the concept with human operators in a realistic environment. In this simulation, the definition of "corridors" was changed from meaning separate corridor airspace with dedicated corridor controllers to highly structured routes with potentially common speeds and avionics equipage. The change in definition allowed the concept to be realizable within the mid-term Next Generation Air Transportation System (NextGen) timeframe and mitigated many of the feasibility issues that were identified in earlier research. Feasibility and benefits were tested through the variance of traffic levels within the test airspace (High and Max). In the High Traffic condition, the radar (R-side) and supporting data (D-side) controllers managed a high level of traffic without aircraft being rerouted out of the congested sectors. In the Max Traffic condition, a traffic flow manager and area supervisors worked together to reroute aircraft out of the congested sectors. Four different procedures were tested with different corridor structures: (1) no specific corridors (No Corridors), (2) only equipped aircraft within corridors (Equipped in Corridors), (3) only unequipped aircraft within corridors (Unequipped in Corridors), and (4) a mix of both equipped and unequipped aircraft within corridors (Mixed in Corridors). Surrounding non-corridor traffic consisted of a 50/50 mix of Data Comm and non-Data Comm equipped aircraft in all conditions. The results of the study indicate that the Equipped in Corridors condition showed the greatest benefits with the highest levels of throughput and the lowest reported workload relative to the other conditions. In contrast, the Unequipped in Corridors condition showed little throughput or workload benefits relative to the No Corridors condition. The results for the Mixed in Corridors condition fell in between the values observed for Equipped in Corridors and No Corridors. Feedback from the participants revealed that the observed reduction in benefits when unequipped aircraft were in the corridors was a result of the workload associated with the communications and monitoring required for the unequipped corridor aircraft as well as the display clutter of their data blocks. In addition, the study showed that the concept was feasible and was well received by the participants. Service for equipage was also shown to be feasible with fewer Data Comm equipped aircraft rerouted than non-Data Comm equipped aircraft.
机译:所述的人 - 在半实物仿真走廊,在最天空概念进行了该集中在逼真的环境调查与人类运营商概念的潜在好处和可行性。在该模拟中,“走廊”的定义是从意思与专用走廊控制器高度结构化的途径单独走廊空域具有潜在共同速度和航空电子设备装备改变。在定义的变化使这一概念成为中期下一代航空运输系统(NextGen)的时间框架内实现的,并减轻许多在早期的研究中确定的可行性问题。可行性和收益均通过测试空域(高和Max)内的流量水平的变化进行测试。在高流量条件下,雷达(R侧),并支持数据(d侧)控制器所管理的高级别流量的无飞机的拥塞扇区被重新路由进行。在最大的交通状况,交通流量经理和区域主管共同努力,重新路由飞机离开拥挤的行业。 (1)没有具体的走廊(否走廊),(2)走廊内仅装备的飞机(装备在走廊),(3)走廊内仅装载的飞机(未装备在走廊),和:四种不同的程序,用不同的走廊结构测试(4)两者都配和未装载的飞机的走廊内的混合物(在走廊混合)。周围的非交通走廊包括在所有条件:1比例混合数据通信和非数据通信装备的飞机的。这项研究的结果表明,装备于走廊状况表现出与吞吐量相对于其他条件最低报工作量的最高水平和最大的效益。相比之下,未装载在走廊状况表现出相对的无走廊条件的小产量或工作量的好处。对于混合在走廊条件的结果落在观察到配备在走廊和无走廊的值之间。从参与者的反馈显示,在好处所观察到的减少当未装备的飞机是在走廊是与所述通信相关联的和监测所必需的未装备的飞机走廊以及它们的数据块的显示混乱的工作量的结果。此外,研究表明,这个概念是可行的,由参与者的一致好评。对于装备服务也显示出与重新路由比非数据通信装备的飞机更少数据通信装备的飞机是可行的。

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