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Exploring Human Factors Issues for Urban Air Mobility Operations

机译:探索城市空中交通运营的人为因素

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Urban air mobility (UAM) is receiving increased attention in aviation as a system for passenger and cargo-carrying new entrants in urban airspace. In order to develop a safe and efficient system, numerous possible concepts of operation for UAM are being explored throughout industry and research domains, the features and assumptions of which may differ according to near, medium and far term operations. Much of the current research into the development of UAM has dominantly focused on technological and engineering capabilities, such as vehicle development. Although these areas of research are essential to furthering UAM, research into the role of the human operator in UAM is limited. The research described in this paper aims to begin to address this gap by investigating the capabilities and implications of human operators as traffic managers in the UAM system, focusing on near-term UAM operations. A human in the loop air traffic control simulation was used to investigate the effect of UAM traffic density, airspace routes and communication procedures on subjective workload and efficiency-related task performance. Findings indicate that medium and high-density operations were associated with high workload. A reduction in verbal communications through a letter of agreement, and optimized routes, were associated with reduced workload and increased performance efficiency. However, even with these adjustments, reported workload remained high, particularly during the high-density scenario. Future research should focus on the human operator roles and responsibilities, and the amount of involvement, in UAM system management. Particular focus should be directed on the impact of reduced human operator involvement and increased automation, on the safety and efficiency of UAM operations and the integration of UAM with traditional air traffic management.
机译:城市空中交通(UAM)作为一种用于城市领空中旅客和货物运输的新进入者的系统,在航空领域受到越来越多的关注。为了开发安全有效的系统,正在整个工业和研究领域探索UAM的多种可能的操作概念,其特性和假设可能会根据近期,中期和远期操作而有所不同。当前有关UAM开发的许多研究主要集中在技术和工程能力上,例如车辆开发。尽管这些研究领域对于推进UAM必不可少,但对操作员在UAM中的作用的研究仍然有限。本文中描述的研究旨在通过调查人类操作员作为UAM系统中的交通管理人员的能力和含义开始着手解决这一差距,重点是近期的UAM操作。空中交通管制仿真中的人员被用来调查UAM交通密度,空域路线和通信程序对主观工作量和与效率相关的任务绩效的影响。调查结果表明,中密度和高密度操作与高工作量相关。通过协议书减少口头交流和优化路线,可以减少工作量并提高性能效率。但是,即使进行了这些调整,报告的工作量仍然很高,尤其是在高密度情况下。未来的研究应着重于操作员在UAM系统管理中的角色和职责以及参与程度。应特别关注减少人工操作员参与和增加自动化的影响,对UAM运营的安全性和效率以及UAM与传统空中交通管理的整合的影响。

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