基于机载多普勒激光雷达的新型空速信息系统的开发与评估

T. Iijima, T. Uemura, N. Matayoshi, J. Entzinger, Jun Matsumoto, S. Ueda, E. Yoshikawa
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引用次数: 3

摘要

我们开发了一种新的空速信息系统的原型,利用了实用的机载多普勒光探测和测距(激光雷达)的技术进步。该系统使用激光雷达实时感知飞机前方数十秒的风速,并使用该数据通过新设计的座舱显示器和/或直接向自动油门系统提供称为L-PSPD(基于激光雷达的预测空速指示器)的预测空速信息和称为L-TSPD(基于激光雷达的目标空速指示器)的目标进近速度。通过飞行模拟器和飞行试验进行了一系列试验评估,验证了系统的有效性。结果表明,该系统提高了空速控制性能,减少了风切变和湍流条件下进近时的工作量。我们从视觉辅助任务表现、脑电图(EEG)、心电图(ECG)和眼记录仪的主观评价数据和客观工作量数据中得出了每种显示方式的优缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and evaluation of a new airspeed information system utilizing airborne Doppler LIDAR
We have developed a prototype of a new air speed information system leveraging the technological advance of a practical airborne Doppler Light Detection and Ranging (LIDAR). The proposed system uses the LIDAR to sense wind speeds up to several tens of seconds ahead of an aircraft in real time, and uses the data to provide predictive airspeed information called L-PSPD (LIDAR-based predicted airspeed indicator) and a target approach speed called a L-TSPD (LIDAR-based target airspeed indicator) to the pilot via a newly designed cockpit display and/or directly to the autothrottle system. A series of piloted evaluations was carried out by flight simulator and flight test to verify the effectiveness of the system. The results indicate that the proposed system improved airspeed control performance and reduced workload during approaches under windshear and turbulent conditions. We obtained the advantages and disadvantages of each proposed display from subjective evaluation data and objective workload data from visual secondary task performance, electroencephalogram (EEG), electrocardiogram (ECG) and eye recorder.
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