FlightQM: a multi-agent system for the analysis of flight qualities

Teodor-Florin Fortiş, A. Fortis, S. Balint
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Abstract

The central objective of this paper is to describe the multi-actor system that was developed in order to support advances in flying quality research applied for unmanned aerial vehicles (UAVs). Different mathematical models were considered for conducting researches regarding the longitudinal flight with constant forward velocity, applicable for unmanned aerial vehicles. In the context of these models there is a high interest for numerical investigation related to the effect of neglecting nonlinearities as concerns the accuracy of the flying qualities prediction for different particular movements of the unattended flying vehicle around its centre of mass. Particularly, when the automatic flight control system fails, at any stage of the flight, it may lead to the occurrence of oscillatory movements, which may drastically affect the integrity of the aircraft, especially in the landing phase. Given the large amount of computational effort that could be required by the different numerical investigations, an agile and scalable solution, adaptable to different variations of the mathematical models, is required. The multi-actor solution presented in this paper was developed in relation with a set of initial execution scenarios, described for various flight conditions.
FlightQM:用于分析飞行质量的多智能体系统
本文的中心目标是描述为支持应用于无人机的飞行质量研究进展而开发的多参与者系统。针对适用于无人机的纵向匀速飞行问题,采用了不同的数学模型进行研究。在这些模型的背景下,人们对忽略非线性的影响的数值研究非常感兴趣,因为非线性关系到无人驾驶飞行器在其质心周围不同特定运动的飞行质量预测的准确性。特别是当自动飞行控制系统发生故障时,在飞行的任何阶段,都可能导致振荡运动的发生,这可能会极大地影响飞机的完整性,特别是在着陆阶段。考虑到不同的数值研究可能需要大量的计算工作,需要一个灵活和可扩展的解决方案,以适应不同的数学模型变化。本文提出的多参与者解决方案是与一组初始执行场景相关的,描述了各种飞行条件。
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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