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首页> 外文期刊>IOSR journal of electrical and electronics engineering >Theoritical And Simulation Based Approach For Dynamic Stability Of Aircraft Longitudinal And Roll Control Movement
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Theoritical And Simulation Based Approach For Dynamic Stability Of Aircraft Longitudinal And Roll Control Movement

机译:基于理论与仿真的飞机纵向辊控制运动动态稳定性方法

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In this paper we consider two of aircraft, i.e., pitch and roll control movement based on available secondary data. The work cose studies is considered here and the original work is carried forward with intelligent design such as ANN(artifical neural network), ANFIS (artificial neuro fuzzy inference system) and nnhination of PID controller with Fuzzy compensation techniques. Intelligent control design methode m is prevented to examine the overall performance of controllers, primarily based on time response . at aircraft pitch control system is designed for Linear and Non-linear models and the effect of is observed on the performance of Flight control system (FCS), whereas the roll is designed with rate gyro and rate integrating gyro. The controllers are designed on the basis , A endeling of the aircraft system for roll and Pitch movement control. The controllers are designee on linearized model of aircraft so as to simplify the design process, with the idea of dynam ic mode, motor for aircraft pitch control by controlling the movement of elevators and modeling at rate integrating gyro for F-16 fighter aircraft. A quantitative analysis of controllers has been carried out in environment. It is concluded from the results that combination of Fuzzy-PID controller provides best results with reference to aircraft pitch and roll control movement respectively.
机译:在本文中,我们认为基于可用次要数据的飞机,即俯仰和滚动控制运动。这里考虑了工作提醒研究,并通过智能设计,如ANN(人工神经网络),ANFIS(人工神经网络)和PID控制器的NNHination,具有模糊补偿技术,以智能设计向前推进。防止智能控制设计Methode M,以检查控制器的整体性能,主要基于时间响应。在飞机俯仰控制系统中设计用于线性和非线性模型,并且在飞行控制系统(FCS)的性能上观察到的效果,而辊设计有速率陀螺仪和集成陀螺仪的速率。控制器是在基础上设计的,用于滚动和俯仰运动控制的飞机系统的集成。控制器是在线化飞机线性化模型的指定者,以简化设计过程,通过控制电梯的运动,通过控制F-16战斗机的速度集成陀螺仪的速度和建模的飞机音调控制。在环境中进行了对控制器的定量分析。从结果结合的结果结束,模糊PID控制器的组合分别为飞机间距和滚动控制运动提供了最佳结果。

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