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Light Aviation And Flight Safety: Monitoring System For Unpressurised Cabins. Flight And Physiological Data Acquisition

机译:轻型航空和飞行安全:非加压舱的监控系统。飞行和生理数据采集

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摘要

The majority of light aviation aircrafts cabins are unpressurised and this may pose risks for the safety of both pilots and passengers. As altitude increases partial oxygen pressure decreases and this situation may lead to early stages of hypoxia affecting pilot's capabilities to perform simple tasks. These factors combined in several ways may affect significantly the capability of a pilot to conduct a safe flight. Some work has been developed in this area and results show that even small changes in altitude can decrease pilot's oxygen level significantly. Thus, as pilot's behaviour and flying capabilities are affected, flight safety is compromise too. This work is generally focused on the acquisition and study of flight operational and physiological data that may affect pilot's capabilities and thus flight safety. To perform such objectives data acquired from the aircraft contains several items such as geographic coordinates, attitude, altitude, speed, g-load, heading, absolute pressure and temperature inside the cabin; also data acquired from the pilot contains several parameters such as cerebral oximetry, electroencephalography (EEG) and electrocardiography (ECG). As pilot's own safety and comfort are important issues we developed a portable system that may be installed and operated in a safe and ergonomic way inside any light (small) aircraft cabin. Also this equipment is flexible enough so that it may be used inside a hypobaric chamber or in a flight simulator to test, prior a real flight, some specific pilot's reactions to different flight scenarios. The specific objective of this paper is to report the acquisition, processing and monitoring of flight data collected directly and in real time from both the aircraft and the pilot, so it may be analysed to determine pilot's major physiological changes facing different flight scenarios and the consequents alterations of his flying capabilities. Legislation for pilot licensing is quite similar all over Europe, and in practice it is not capable to prevent such in-flight individual performance problems. Taking in account the results of this work we also sustain the basis for a revision of the actual European legislation for pilot licensing, thus improving flight safety.
机译:大多数轻型飞机机舱没有压力,这可能对飞行员和乘客的安全构成风险。随着海拔升高,部分氧气压力降低,这种情况可能导致缺氧的早期阶段,影响飞行员执行简单任务的能力。这些因素以几种方式结合在一起,可能会严重影响飞行员进行安全飞行的能力。该区域已经开展了一些工作,结果表明,即使高度的微小变化也可以显着降低飞行员的氧气水平。因此,随着飞行员的行为和飞行能力受到影响,飞行安全也受到损害。这项工作通常集中于可能影响飞行员能力并因此影响飞行安全的飞行运行和生理数据的获取和研究。为了执行这样的目标,从飞机上获取的数据包含几个项目,例如地理坐标,姿态,高度,速度,g负载,航向,机舱内的绝对压力和温度;从飞行员那里获得的数据还包含多个参数,例如脑血氧饱和度,脑电图(EEG)和心电图(ECG)。由于飞行员自身的安全性和舒适性是重要问题,因此我们开发了一种便携式系统,该系统可以在任何轻型(小型)机舱内以安全且符合人体工程学的方式进行安装和操作。该设备还足够灵活,因此可以在减压舱内或飞行模拟器中使用,以在实际飞行之前测试特定飞行员对不同飞行场景的反应。本文的具体目标是报告从飞机和飞行员直接且实时收集的飞行数据的采集,处理和监控,因此可以对其进行分析以确定飞行员面对不同飞行场景的主要生理变化及其后果。他飞行能力的改变。在整个欧洲,飞行员执照的立法非常相似,实际上,它无法防止此类飞行中的个人绩效问题。考虑到这项工作的结果,我们还为修订欧洲实际驾驶执照法规奠定了基础,从而提高了飞行安全性。

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