Model of the software and hardware complex of automated flight instruction for cadets based on the reference flight pattern

А.О. Красноруцький, В. В. Шмаков, С. В. Неминущий, І. Г. Криков, В. М. Ушань
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Abstract

Information is provided regarding the developed model of the software-hardware complex of the automated flight instruction of cadets based on the reference image of the flight. It is proposed to model the movement of a helicopter between two support points as the movement of a material point that has mass and is affected by gravity. The movement model is represented by a system of differential equations of the first order, which describes the movement parameters: air speed, angle of inclination of the trajectory, flight height and distance of movement. Based on the existing regulatory rules for the operation of aircraft, a system of restrictions on movement parameters has been defined. The set of basic flight control bodies is substantiated, the laws of pilot control and restrictions on control parameters, which are also determined by the rules of helicopter operation, are set. The task of finding optimal control parameters at the stage of acceleration of a helicopter at a constant altitude has been formalized. The general structure of the adaptive search system has been built. Procedures for finding optimal parameters have been created using a combined method of finding optimal control parameters based on single-criteria conditional and vector optimization methods. Based on the model experiment, the optimal value of the parity criterion in the method of adaptive convolution of the optimal criterion vector is determined. The calculated data of the proposed model made it possible to find in real time the parameters of the movement of the helicopter under the control of the pilot, the history of the deviation of this movement from the ideal, and the dynamic forecast of such deviation. The possibility of obtaining predicted solutions in the case of existing linear control laws or approximate to linear control laws has been established experimentally. The parameters of the model were determined experimentally. A system of commands of an electronic instructor in verbal form is proposed for correcting the pilot's behavior and bringing his actions closer to optimal ones. Recommendations regarding the practical application of the developed model are substantiated.
基于参考飞行模式的学员自动飞行教学软硬件综合体模型
提供了基于飞行参考图像的学员自动飞行教学软硬件综合体的开发模型。提出将直升机在两个支撑点之间的运动建模为具有质量且受重力影响的质点的运动。该运动模型由一阶微分方程组表示,该方程组描述了运动参数:空气速度、弹道倾角、飞行高度和运动距离。基于现有的飞机运行监管规则,定义了一套运动参数限制系统。确定了基本飞行控制体的集合,确定了由直升机操作规则确定的飞行员控制规律和控制参数的限制条件。对直升机在恒定高度加速度阶段的最优控制参数求解问题进行了形式化研究。建立了自适应搜索系统的总体结构。寻找最优参数的程序已经创建使用基于单准则条件和矢量优化方法的寻找最优控制参数的组合方法。在模型实验的基础上,确定了最优准则向量自适应卷积方法中奇偶准则的最优值。利用该模型的计算数据,可以实时获取直升机在驾驶员控制下的运动参数、运动偏离理想状态的历史以及对运动偏离的动态预测。实验证明了在已有线性控制律或近似线性控制律的情况下,获得预测解的可能性。通过实验确定了模型的参数。提出了一种以口头形式的电子教官命令系统,用于纠正飞行员的行为,使其行为更接近最佳状态。最后,对所开发模型的实际应用提出了建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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