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Flying Schedule-Matching Descents to Explore Flight Crews' Perceptions of Their Load and Task Feasibility

机译:飞行计划匹配下降以探索机组人员对其负荷和任务可行性的看法

摘要

Multiple studies have investigated the development and use of ground-based (controller) tools to manage and schedule traffic in future terminal airspace. No studies have investigated the impacts that such tools (and concepts) could have on the flight-deck. To begin to redress the balance, an exploratory study investigated the procedures and actions of ten Boeing-747-400 crews as they flew eight continuous descent approaches in the Los Angeles terminal airspace, with the descents being controlled using speed alone. Although the study was exploratory in nature, four variables were manipulated: speed changes, route constraints, clearance phraseology, and winds. Despite flying the same scenarios with the same events and timing, there was at least a 50 second difference in the time it took crews to fly the approaches. This variation is the product of a number of factors but highlights potential difficulties for scheduling tools that would have to accommodate this amount of natural variation in descent times. The primary focus of this paper is the potential impact of ground scheduling tools on the flight crews performance and procedures. Crews reported "moderate to low" workload, on average; however, short periods of intense and high workload were observed. The non-flying pilot often reported a higher level of workload than the flying-pilot, which may be due to their increased interaction with the Flight Management Computer, when using the aircraft automation to assist with managing the descent clearances. It is concluded that ground-side tools and automation may have a larger impact on the current-day flight-deck than was assumed and that studies investigating this impact should continue in parallel with controller support tool development.
机译:多项研究调查了地面(控制器)工具的开发和使用,以管理和调度未来终端空域的交通。尚无研究调查此类工具(和概念)可能对驾驶舱造成的影响。为了纠正这种平衡,一项探索性研究调查了十名波音747-400机组人员在洛杉矶终端领空连续飞行八次连续下降进近时的程序和动作,仅通过速度来控制下降。尽管该研究本质上是探索性的,但还是操纵了四个变量:速度变化,路线限制,通行语言和风。尽管在相同的事件和时间下飞行相同的场景,但机组人员飞行进场的时间至少相差50秒。这种变化是多种因素共同作用的结果,但突出显示了计划工具的潜在困难,因为这些工具必须适应下降时间的自然变化量。本文的主要重点是地面调度工具对机组人员的绩效和程序的潜在影响。机组人员平均称工作量“中等至低”;然而,观察到短期的高强度和高工作量。非飞行飞行员通常报告的工作量高于飞行飞行员,这可能是由于在使用飞机自动化来管理下降许可时,他们与飞行管理计算机的交互性增加。结论是,地面工具和自动化对当今驾驶舱的影响可能会比假定的要大,调查这种影响的研究应与控制器支持工具的开发同时进行。

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