首页> 外文会议>European Rotorcraft Forum >AUTOROTATION: PHYSIOLOGICAL MEASURES OF WORKLOAD
【24h】

AUTOROTATION: PHYSIOLOGICAL MEASURES OF WORKLOAD

机译:自身自然:工作量的生理措施

获取原文

摘要

The workload assessment to perform a full autorotation on the AS-350 aircraft (Airbus Helicopters) was performed during a Flight Test Campaign with 80 flight hours and 227 data collection procedures, considering 10 pilots with different piloting skill levels, among such military pilots, flight instructors, and test pilots. During the tests, these pilots were subjected to unexpected engine failures, to evaluate the actual reaction time of each pilot, and to test the ability to make a safe landing under the conditions prescribed by the aircraft manufacturer. The testing method used began with unexpected engine failures when only the lead test pilot knew that the engine failure would be simulated. In the sequence, several points of autorotation were performed, from the simplest profile to the most complex. All the procedures have registered the performance parameters and handling qualities of the aircraft, along with the physiological parameters of the pilots. The aircraft was equipped with dedicated instrumentation for in-flight testing and the pilots have been instrumented with an Electroencephalogram (EEG), Electrocardiogram (EKG), Respiration Belt and Galvanic Skin Response (GSR), Eye Tracking and Face Recognition Camera equipment. This instrumentation was employed to determine physiological markers that could determine the pilot workload, quantitatively, reducing the subjectivity of measures that use only qualitative scales of evaluation, such as Handling Qualities Rate (HQR) and Bedford Workload Scale (WL). In this work, only the preliminary results of the analysis obtained by the Galvanic Skin Response markers will be presented. Major potential applications of the results from the present research range from cockpit design guidelines and human-machine interface systems for supporting pilotage such as more effective alarm systems, interactive cockpits, enhancement of active autopilots with semi-automatic flight commands. Besides that, the results and conclusions from this research can also improve processes and methods for the training-based formation of pilots, along with the development of flight simulators with physiological measurements parameters quantification, feeding back data for a piloting performance assessment.
机译:在使用80个飞行时间和227个数据收集程序的飞行测试活动期间进行工作量评估,以在飞行时间和227个数据收集程序中进行,考虑到不同的驾驶技能水平,在此类军用飞行员,飞行中教师和测试飞行员。在测试期间,这些飞行员​​受到意外发动机故障,以评估每个飞行员的实际反应时间,并测试在飞机制造商规定的条件下进行安全降落的能力。当只有铅测试试验试验时,使用的测试方法开始于意外的发动机故障,即将模拟发动机故障。在序列中,从最简单的轮廓到最复杂的简单曲线进行几个自动点。所有程序都注册了飞机的性能参数和处理素质,以及飞行员的生理参数。该飞机配备了用于机芯测试的专用仪器,并且飞行员已经用脑电图(EEG),心电图(EKG),呼吸带和电镀皮肤响应(GSR),眼睛跟踪和面部识别相机设备进行了炼油机。该仪器用于确定可以确定的生理标记,可以确定地,定量地,降低仅使用定性评估的度量的措施的主观性,例如处理质量率(HQR)和Bedford工作负载量表(WL)。在这项工作中,只有通过电丙琥珀色皮肤响应标记获得的分析的初步结果将被提出。来自本研究范围的主要潜在应用来自驾驶舱设计指南和人机界面系统,用于支持诸如更有效的报警系统,互动驾驶舱,具有半自动飞行命令的活动自动驾驶舱的增强。此外,该研究的结果和结论还可以改善基于培训的飞行员的过程和方法,以及使用生理测量参数量化的飞行模拟器的开发,送回数据进行试验性能评估。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号