PROBLEMS OF DIFFERENTIAL AND TOPOLOGICAL DIAGNOSTICS. PART 8. AIRCRAFT MOVEMENT AND ALGORITHMS FOR ITS DIAGNOSIS

Maxim V. Shamolin
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Abstract

This work is the eighth work of the cycle on differential and topological diagnostics. In it, a qualitative and numerical mathematical experiment is carried out to diagnose the control system of an aircraft during its planning from altitudes close to orbital, with an initial velocity close to the first cosmic velocity. And we have shown that the proposed diagnostic algorithms work successfully when searching for various kinds of reference faults, in particular, malfunctions of control signal sensors from a gyrostabilized platform, malfunctions close to to the reference ones, for trajectory measurements with an error, as well as in the case of continuous express diagnostics. At the same time, a certain diagnostic algorithm is built and used in accordance with the previously developed methodology.
微分和拓扑诊断问题。第8部分。飞机运动及其诊断算法
这项工作是关于微分和拓扑诊断周期的第八项工作。本文采用定性和数值的数学实验方法,对飞机在接近轨道高度、初始速度接近第一宇宙速度的情况下进行规划时的控制系统进行了诊断。结果表明,所提出的诊断算法在搜索各种参考故障,特别是陀螺稳定平台控制信号传感器的故障,与参考故障接近的故障,具有误差的轨迹测量以及连续快速诊断的情况下,都是成功的。同时,根据已有的方法,建立了一定的诊断算法并加以应用。
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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