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Identification and Control of Stable and Unstable Systems by Using Genetic Algorithm Method

机译:基于遗传算法的稳定与不稳定系统辨识与控制

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Genetic algorithms can be applied for the identification and control of both stable and unstable systems. This paper brings systematically the development of the identification and the control for four processes of different behaviors. The contribution is focused on establishing optimal identified models by using two different approaches, least squares procedures and genetic algorithms optimization. In addition, a based PID controller for each process is synthesized applying genetic algorithms. Then, the processes' control based on reference model is also established and both control methods were compared. Concerning identification, simulation results showed that genetic algorithm reveals a better agreement in modeling the four types of considered models than least squares methods. On the other hand, it is shown also that the designed genetic based controllers are more reliable to stabilize the behaviors of the different studied processes than reference model controllers.
机译:遗传算法可以应用于稳定和不稳定系统的识别和控制。本文系统地介绍了针对不同行为的四个过程的识别和控制的发展。该贡献集中在通过使用两种不同的方法(最小二乘法和遗传算法优化)建立最佳识别模型上。此外,使用遗传算法综合了每个过程的基于PID的控制器。然后,还建立了基于参考模型的过程控制,并比较了两种控制方法。在识别方面,仿真结果表明,与最小二乘法相比,遗传算法在考虑的四种模型建模方面具有更好的一致性。另一方面,还表明与参考模型控制器相比,设计的基于遗传的控制器在稳定不同研究过程的行为方面更可靠。

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