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Design of a single pilot cockpit for airline operations

机译:用于航空公司运营的单个飞行员驾驶舱设计

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Rising fuel and operating expenses for commercial airline operators coupled with a predicted pilot labor shortage drives the need for a reduction in costs while continuing to service passengers. One possible solution to reduce recurring costs and mitigate the effects of a pilot shortage is the transition to a single pilot cockpit. Three different design alternatives for implementing a single pilot cockpit in commercial domestic jetliners were identified: the no change option represented by a two pilot cockpit, a single pilot with no additional support, and a single pilot with an onboard support system that automates some of the removed copilot roles. Design alternatives were evaluated using three models: (1) life-cycle cost, (2) reliability, and the (3) processing times for flight procedures based on a human processor simulation. The lifecycle cost model was used to determine the savings generated by a single pilot cockpit. Reliability analysis was done to establish failure rates relative to the target level of safety. A human performance model was developed to evaluate the time on task for each task in the Flight Crew Operating Manual (FCOM) for each alternative. The procedure models were decomposed into component tasks and actions required to complete the procedure. The ranking of alternative designs during utility/cost analysis was found to be (1) the no change option, (2) the single pilot with an onboard support system, and (3) the single pilot with no additional support. We found a tradeoff between the two pilot utility and single pilot with onboard support through cost savings. Based on the analysis of results, the single pilot with an onboard support system was judged to have the best chance for becoming a realistic single pilot cockpit system which will reduce recurring airline operating costs, maintain or improve flight safety, and maintain airline serviceability.
机译:商业航空公司运营商的燃料和营业费用上升与预测的飞行员劳动力短缺的燃料和运营费用驱动需求降低成本,同时继续提供服务乘客。一种可能的解决方案,以减少重复成本并减轻飞行员短缺的影响是转换到单个飞行员驾驶舱。确定了三种不同的设计替代商业家庭喷气式飞机中的飞行员驾驶舱:两个飞行员驾驶舱代表的没有变化选项,单个导航飞行员没有额外的支持,以及一个带有板载支持系统的单个导频,可以自动化一些删除了Copilot角色。使用三种模型进行评估设计替代方案:(1)基于人类处理器模拟的飞行过程的可靠性,(2)可靠性和(3)处理时间。生命周期成本模型用于确定单个飞行员驾驶舱产生的节省。完成可靠性分析以确定相对于目标安全水平的故障率。开发了一种人力绩效模型,以评估每种替代方案的飞行机组手册(FCOM)中每项任务的任务时间。程序模型被分解成组件任务和完成程序所需的操作。在公用事业/成本分析期间的替代设计排名被发现是(1)没有更改选项,(2)单个导频,带有板载支持系统,(3)单个导频,没有额外支持。我们在两种试点实用程序和单一的飞行员之间发现了一个通过成本节省的车载支持之间的权衡。根据结果​​的分析,判断具有车载支持系统的单个导频,以成为成为现实单一试点驾驶舱系统的最佳机会,这将减少重复的航空公司运营成本,维护或改善飞行安全性,维护航空公司的可维护性。

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