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Design and implementation of gain-scheduling flight control system on PC/104 platform

机译:PC / 104平台增益调度飞行控制系统的设计与实现

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This paper focused on the design and implementation of guidance and gain-scheduling autopilot for modeled rocket. Autopilot implemented by using classical gain-scheduling method that designed to work within certain velocity and angle-of-attack (AOA). Input command for the autopilot is provided by guidance system which processed kinematic and dynamic of the rocket, so it could follow the desired trajectory. Guidance and autopilot were implemented together with the navigation system and nonlinear model of the rocket using Hardware-in Loop Simulation (HILS) on PC/104. Results showed that the designed gain-scheduling autopilot is stable on nonlinear model tests and also on delay effect and digital implementation tests, with acceptable transient and steady state performance. Integration with navigation system showed that the overall systems could follow the desired trajectory with 10 m final error distance on windy condition.
机译:本文专注于设计和实施指导和增益调度自动驾驶仪的自动驾驶仪。通过使用经典增益调度方法实现的自动驾驶仪,该方法设计用于在某些速度和攻击角度(AOA)内工作。自动驾驶仪的输入命令由引导系统提供,该指导系统处理了火箭的运动和动态,因此可以遵循所需的轨迹。使用PC / 104上的硬件环路仿真(HIL)与火箭的导航系统和非线性模型一起实现了指导和自动驾驶仪。结果表明,设计的增益调度自动驾驶仪在非线性模型测试中稳定,并且还具有延迟效果和数字实现测试,具有可接受的瞬态和稳态性能。与导航系统的集成显示,整个系统可以遵循所需的轨迹,在有风状态下具有10米的最终误差距离。

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