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Unmanned aircraft automatic flight control algorithm in a spin maneuver

机译:无人机自动飞行控制算法在旋转机动中

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摘要

Purpose - The paper aims to present an idea of automatic control algorithms dedicated to both small manned and unmanned aircraft, capable to perform spin maneuver automatically. This is a case of maneuver far away from so-called standard flight. The character of this maneuver and the range of aircraft flight parameters changes restrict application of standard control algorithms. Possibility of acquisition full information about aircraft flight parameters is limited as well in such cases. This paper analyses an alternative solution that can be applied in some specific cases. Design/methodology/approach - The paper uses theoretical discussion and breakdowns to create basics for development of structures of control algorithms. Simplified analytical approach was applied to tune regulators. Results of research were verified in series of software-in-the loop, computer simulations. Findings - The structure of the control system enabling aerobatic flight (spin flight as example selected) was found and the method how to tune regulators was presented as well. Practical implications - It could be a fundament for autopilots working in non-conventional flight states and aircraft automatic recovery systems. Originality/value - The paper presents author's original approach to aircraft automatic control when high control precision is not the priority, and not all flight parameters can be precisely measured.
机译:目的 - 本文旨在提出专用于小型载人和无人机的自动控制算法,能够自动执行旋转机动。这是远离所谓的标准飞行的机动的情况。这种机动的特征和飞机飞行参数范围改变了标准控制算法的应用。在这种情况下,收购有关飞机飞行参数的完整信息的可能性。本文分析了可以在某些特定情况下应用的替代解决方案。设计/方法/方法 - 本文使用理论讨论和故障来创建基础知识,用于开发控制算法结构。简化的分析方法应用于调节调节器。研究结果是循环软件循环,计算机模拟的验证结果。结果 - 发现了控制系统的结构,从而发现了有机飞行(作为选定的旋转飞行),以及如何调整调节器的方法。实际意义 - 在非传统航班国家和飞机自动恢复系统中工作的自动驾驶仪可能是一种基础。原创性/值 - 本文提出了作者原始的飞机自动控制方法当高控制精度不是优先级时,并非所有飞行参数都可以精确地测量。

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