System Identification and Heuristic Control of Segmented Ailerons for Enhanced Stability of Fixed Wing UAVs

Q4 Engineering
Abdul Sattar, Liuping Wang, A. Mohamed, A. Fisher
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引用次数: 0

Abstract

Different from conventional aircraft, an investigation on system identification and control design has been carried out on a small fixed wing unmanned aerial vehicle (UAV) with a multi-segment ailerons. The multi-segment aileron setup is configured as a multi-input and single-output system and each segment is modeled as a control input. Experiments are conducted in a wind tunnel to determine the frequency responses of the system and the corresponding transfer functions. Multiple PID controllers are designed and implemented in a cascaded form for each control surface. Furthermore, a heuristic switching control strategy is implemented for the aircraft where the multi-segment ailerons perform as a single-segment aileron in a normal flight condition, and adapts to multi-segment control when encountering severe turbulence or a large angle reference change. Experimental results reveal that although each control surface has the capability for stabilization of the aircraft, the proposed control strategy by combining the multiple actuation surfaces reduces the mean squared errors for the roll angle up to $37$ percent in the highly turbulent environment providing superior disturbance rejection properties to the aircraft.
固定翼无人机分段副翼系统辨识与启发式控制
与常规飞机不同,对小型多段副翼固定翼无人机进行了系统辨识与控制设计研究。多节段副翼装置被配置为一个多输入单输出系统,每个节段被建模为一个控制输入。在风洞中进行了试验,确定了系统的频率响应和相应的传递函数。多个PID控制器设计和实现在一个级联形式的每个控制面。此外,针对飞机在正常飞行状态下多段副翼作为单段副翼的情况,提出了一种启发式切换控制策略,以适应飞机在遇到强湍流或大角度参考变化时的多段控制。实验结果表明,虽然每个控制面都具有稳定飞机的能力,但通过组合多个驱动面,所提出的控制策略在高湍流环境下将滚转角的均方误差降低了37%,为飞机提供了优越的抗扰性能。
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来源期刊
Journal of Automation, Mobile Robotics and Intelligent Systems
Journal of Automation, Mobile Robotics and Intelligent Systems Engineering-Control and Systems Engineering
CiteScore
1.10
自引率
0.00%
发文量
25
期刊介绍: Fundamentals of automation and robotics Applied automatics Mobile robots control Distributed systems Navigation Mechatronics systems in robotics Sensors and actuators Data transmission Biomechatronics Mobile computing
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