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Design of a GA-based fuzzy PID controller for non-minimum phase systems

机译:基于GA的非最小相位模糊PID控制器设计。

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In this paper, a fuzzy PID controller, is investigated on the basis of genetic algorithms (GAs) to eliminate the undershoot of a nonminimum-phase(NMP) system and to improve the transient response at the same time. The proposed controller employs a two-stage control structure, where the fuzzy PI controller is reasonably sued to cancel out the effect of unstable zeros and the fuzzy PD controller is introduced for the reason of reducing the overshoot. The fuzzy control rules for both controllers are evolved and determined by the GAs. It is demonstrated by computer simulations in which satisfactory performance can be achieved even if the system is under perturbed conditions.
机译:在遗传算法(GA)的基础上,研究了模糊PID控制器,以消除非最小相位(NMP)系统的下冲,同时改善瞬态响应。所提出的控制器采用两阶段控制结构,其中合理地使用模糊PI控制器来抵消不稳定零点的影响,而模糊PD控制器则是出于减少过冲的原因而引入的。这两个控制器的模糊控制规则是由GA演化和确定的。计算机仿真表明,即使系统处于受干扰的条件下,也可以获得令人满意的性能。

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