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Design of a flight stabilizer for fixed-wing aircrafts using H??? loop shaping method

机译:使用H的固定翼飞机飞行稳定器的设计循环整形方法

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Autopilot systems for unmanned aerial vehicles (UAVs) and aircrafts provide flight missions without need of human input and make them more reliable and efficient. The first step of designing an autopilot is a stabilizer mode. Conventional autopilot systems have inner and outer loops. Stabilizer is the inner loop for an autopilot. In this paper designing an aircraft control system ensures good performance and robustness that allows control of roll, pitch and yaw angles will be declared. Aircraft dynamics are used to design the model of the control system in the MATLAB Simulink environment. Using loop shaping method to achieve stable and robust control system will be the strategy. Generated controllers to find the most effective one are embedded in the X-plane which is one of the realistic simulations.
机译:用于无人驾驶飞机(UAV)和飞机的自动驾驶系统无需人工输入即可执行飞行任务,并使它们更可靠,更高效。设计自动驾驶仪的第一步是稳定器模式。常规的自动驾驶系统具有内环和外环。稳定器是自动驾驶仪的内部回路。在本文设计中,飞机控制系统可确保良好的性能和鲁棒性,从而可以声明侧倾角,俯仰角和偏航角。飞机动力学用于在MATLAB Simulink环境中设计控制系统的模型。使用环路整形方法来实现稳定和鲁棒的控制系统将是该策略。生成的控制器(用于找到最有效的控制器)被嵌入到X平面中,这是现实的仿真之一。

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