训练最新一代飞机飞行员与其他飞机机组人员互动的方法

I. S. Muravyov
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引用次数: 0

摘要

一方面,由于驾驶舱高度自动化和机组人员的信息过载,另一方面,由于飞行员对空中交通决策的责任,训练最新一代飞机的飞行员在飞行中与其他机组人员互动变得复杂。由于没有训练飞行员在同一空域与其他机组人员互动的统一方法,因此需要发展质量训练。为了解决这个问题,已经开发了一种方法,该方法基于对飞行员在训练时需要处理的信息量的初步计算,这些信息量取决于有效形成飞行中空中交通概念模型所需的信息类型。形成空中交通概念模型的方法是基于“带吸收的随机漫步”数学模型的应用。该方法包括三个阶段。在第一个飞行阶段,飞行员应该在途中操作训练飞行。在第二训练阶段的第一次飞行中,学员评估被评估飞机接近(分离)学员飞机的趋势。在第二阶段的第二次飞行中,评估的飞机位置由机组人员位置和高度报告确定,在第三次飞行中-由机组人员位置,航向和高度报告确定。在第三个训练阶段,当主要在航线上操作三个航班时,受训人员应该根据在同一空域操作的机组人员报告的所有参数来评估空情。经过第二和第三阶段的飞行训练,飞行员要对飞行区域内的飞机数量、飞机位置和飞机运动的顺序进行综合的空情分析和评估。实验结果表明,与对照组飞行员相比,实验组飞行员在评估空中情况和与同一飞行区域的其他机组人员互动方面的效率要高24%。实验结果的处理表明,采用本文提出的训练方法时,最新一代飞机机组人员在自动驾驶模式下互动的可靠性显著提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Method of training pilots of the latest-generation aircraft to interact with crews of other aircraft
Training pilots of latest-generation aircraft to interact with other crews in flight is complicated by the high level of cockpit automation and information overload of crews, on the one hand, and by the responsibility of pilots for decisions made regarding air traffic, on the other hand. Since the unified methodology for training pilots to interact with other crews in the same airspace is not available, the development of qualitative training is required. To address this issue, a method, based on a preliminary calculation of the amount of information which is necessary to process by a pilot when training depending on the type of this information for the efficient formation of a conceptual model of air traffic in flight, has been developed. The method of forming a conceptual model of air traffic is based on the application of a mathematical model of “random walk with absorption”. The method consists of three phases. In the first flight phase, a pilot should operate a training flight en route. In the first flight of the second training phase, a trainee evaluates the tendency for the approach (separation) of the assessed aircraft to the trainee aircraft. In the second flight of the second phase, the assessed aircraft position is determined by the crew position and altitude reports, in the third flight – by the crew position, heading and altitude reports. In the third training phase, when operating three flights primarily en route, a trainee is supposed to evaluate the air situation according to all the parameters reported by crews operating in the same airspace. After flights of the second and third training phases, the pilot is meant to analyze and evaluate the air situation while operating a flight comprehensively by the number of aircraft in the flight area, their position and the sequence of their motion. The experimental results made it possible to determine that participants in the experimental group were 24% more efficient in evaluating the air situation and interacting with other crews in flight in the same flight area compared to the control group pilots. Processing of the experimental results showed that when employing the proposed training method, the reliability of the latest-generation aircraft crew interaction at the automatic piloting mode was statistically significantly increased.
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