无人机振动运动对前进速度的依赖

A. Fortis, S. Balint, Teodor-Florin Fortiş
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引用次数: 1

摘要

如果无人机在纵向匀速飞行过程中,自动飞行控制系统(AFCS)失效,且升降舵偏转不在安全区间内,则会导致飞行振荡。在给定初始条件下,利用基于scala的Akka actor系统,研究了安全区间、振荡周期、俯仰率和迎角变化范围与前向速度变化的关系。数值计算表明,随着前向速度的增大,振动周期和安全区间的横截面减小。随着前向速度的增加,迎角和俯仰率的变化范围也呈现下降趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dependence of the Oscillatory Movements of an Unmanned Aerial Vehicle on the Forward Velocity
If, during a longitudinal flight with constant forward velocity of an unmanned aerial vehicle (UAV), the automatic flight control system (AFCS) fails and the elevator deflection is not in the safe interval, then the flight becomes oscillatory. In this paper, the dependence of the safe interval, the period of oscillations and the ranges of variations of the pitch rate and of the angle of attack on the variation of the forward velocity are investigated numerically, in the context of a fixed value for the elevator deflection and for certain given initial conditions, by using an Scala-based Akka actor system. It is shown numerically that, for increasing values of the forward velocity, the period of oscillations and the crossection of the safe interval are decreasing. The same descending trend can be observed concerning the dependence of the ranges of the angle of attack and pitch rate, when the forward velocity increases.
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