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Multivariable controller design for aircraft longitudinal autopilot based on particle swarm optimization algorithm

机译:基于粒子群算法的飞机纵向自动驾驶仪多变量设计

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This paper presents an optimized controller based on multi-objective particle swarm optimization (MOPSO) for a longitudinal axes of multivariable system in one of the aircraft flight conditions. This controller has been developed to control the attack angle and pitch attitude angle independently. These angles are required for designing a set of direct force modes for longitudinal axes. A particle swarm optimization algorithm is used to find the global optimal solution for this problem. The autopilot system in military or civil aircrafts is an essential component and in this paper, the autopilot system via 3 degree of freedom model for the control and guidance of aircraft is considered. The effectiveness of the proposed controller is illustrated by considering the HIMAT military aircraft. The simulation results verify the merits of the proposed controller.
机译:本文提出了一种基于多目标粒子群优化(MOPSO)的优化控制器,用于飞机飞行条件之一下的多变量系统纵轴。该控制器已开发为独立控制迎角和俯仰角。这些角度是设计纵向轴的一组直接作用力模式所必需的。使用粒子群优化算法来找到该问题的全局最优解。军用或民用飞机的自动驾驶系统是必不可少的组成部分,在本文中,考虑了通过3自由度模型对飞机进行控制和制导的自动驾驶系统。建议的控制器的有效性通过考虑HIMAT军用飞机来说明。仿真结果验证了所提出控制器的优点。

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