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Flight simulation study of airplane state awareness and prediction technologies

机译:飞机状态意识和预测技术的飞行仿真研究

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Airplane state awareness (ASA) is a pilot performance attribute derived from the more general attribute known as situation awareness. Airplane state alludes primarily to attitude and energy state, but also infers other state variables, such as the state of automated or autonomous systems, that can affect attitude or energy state. Recognizing that loss of ASA has been a contributing factor to recent accidents, an industry-wide team has recommended several Safety Enhancements (SEs) to resolve or mitigate the problem. Two of these SEs call for research and development of new technology that can predict energy and/or auto-flight system states, and intuitively notify or alert flight crews to future unsafe or otherwise undesired states. In addition, it is desired that future air vehicles will be able to operate with a high degree of awareness of their own well-being. This form of ASA requires onboard predictive capabilities that can inform decision-making functions of critical markers trending to unsafe states. This paper describes a high-fidelity flight simulation study designed to address the two industry-recommended SEs for current aircraft, as well as this desired self-awareness capability for future aircraft. Eleven commercial airline crews participated in the testing, completing more than 220 flights. Flight scenarios were utilized that span a broad set of conditions including several that emulated recent accidents. An extensive data set was collected that includes both qualitative data from the pilots, and quantitative data from a unique set of instrumentation devices. The latter includes a head-/eye-tracking system and a physiological measurement system. State-of-the-art flight deck systems and indicators were evaluated, as were a set of new technologies. These included an enhancement to the bank angle indicator; predictive algorithms and indications of where the auto-flight system will take the aircraft and when automation mode changes will occur or where energy-related problems may occur; and synoptic (i.e., graphical) depictions of the effects of loss of flight critical data, combined with streamlined electronic checklists. Topics covered by this paper include the research program context, test objectives, descriptions of the technologies under test, platform and operational environment setup, a summary of findings, and future work.
机译:飞机状态意识(ASA)是从被称为情景意识的更一般属性导出的导频的性能属性。飞机状态暗指主要是态度和能量状态,也推断其他状态变量,如自动或自治系统的状态,会影响态度或能量状态。认识到ASA的丢失一直是一个促进因素近期事故,全行业团队已经推荐了几种安全增强功能(SES)来解决或缓解这一问题。这些社会企业的两个呼叫用于研究,可以预测的能量和/或自动飞行系统状态的新技术的开发,并直观地通知或警告机组人员未来的不安全或其他的不良状态。此外,它希望未来的飞行器将能够以高度的自身福利的意识来操作。 ASA的形式要求板载可以通知趋势不安全状态的关键标志的决策职能的预测能力。本文介绍一种高保真的飞行模拟研究,旨在解决当前飞机的两个行业推荐的社企,以及为未来的飞机所需的这种自我意识能力。十一商用飞机机组人员参加了测试,完成了220多个航班。飞行方案进行了利用跨一套广泛的条件,包括几个是模拟近期事故。一个广泛的数据集收集,其包括从一组独特的仪表装置的从所述导频定性数据,和定量数据。后者包括一个头戴式/眼睛跟踪系统和生理测量系统。国家的最先进的飞行甲板系统和指标进行评价,因为是一套新技术。这些包括增强向银行角度指示器;预测算法及在自动飞行系统将采取飞机和自动化时模式改变将发生或可能发生的能源相关问题的迹象;和飞行关键数据的损失的影响,具有流线型电子清单组合天气(即,图形)描绘。通过本文内容包括研究计划方面,测试目标,测试,平台和运行环境设置的技术的描述,结果的总结和未来的工作。

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