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Fractional Order Particle Swarm Optimization to Optimize a Fractional Order PID Controller for a Vertical Take-Off and Landing System

机译:分数阶粒子群优化,优化用于垂直起飞和着陆系统的分数阶PID控制器

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A Vertical Take-Off and Landing (VTOL) system is highly unstable and hence a robust controller is needed to stabilize it in finite time. This work presents the design of a Fractional Order Proportional-Integral-Derivative (FOPID) controller to stabilize the VTOL system. The applied FOPID controller has been tuned, to achieve the desired performance and robustness, by Fractional Order Particle Swarm Optimization (FOPSO), which is a modified form of the original PSO obtained by generalizing the order of the velocity derivative to a real number 0 ≤ a ≤ 1. This helps in smoother transitions, better exploration and longer memory of the particles. The results obtained using the FOPID controller has been compared with the conventional PID controller. It has been found that the FOPID controller exhibits superior performance and robustness.
机译:垂直起飞和降落(VTOL)系统非常不稳定,因此需要强大的控制器来稳定有限时间。 这项工作介绍了分数顺序比例积分衍生物(FOPID)控制器的设计,以稳定VTOL系统。 应用的FoPID控制器已经调整,以实现所需的性能和鲁棒性,通过分数阶粒子群优化(FOPSO),这是通过通过概括速度衍生物的顺序为实数0≤的原始PSO的修改形式。 a≤1.这有助于更平滑的过渡,更好的探索和颗粒的更长内存。 使用FoPID控制器获得的结果与传统的PID控制器进行了比较。 已经发现,FoPID控制器具有卓越的性能和鲁棒性。

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