Tao C W, Taur J S
Nat. I-Lan Inst. of Technol.
IEEE Trans Syst Man Cybern B Cybern. 2000;30(4):510-6. doi: 10.1109/3477.865168.
In this paper, a flexible complexity reduced design approach for PID-like fuzzy controllers is proposed. With the linear combination of input variables as a new input variable, the complexity of the fuzzy mechanism of PID-like fuzzy controllers is significantly reduced. However, the performance of the complexity reduced fuzzy PID controller may be degraded since the degree of freedom is decreased by the combination of input variables. To alleviate the drawback and improve the performance of the complexity reduced PID-like fuzzy controller, a flexible complexity reduced design approach is introduced in which the functional scaling factors are heuristically generated. Since the functional scaling factors are heuristically created, they can be easily adjusted for the flexible complexity reduced PID-like fuzzy controller without a priori knowledge of the exact mathematical model of the plant. Moreover, heuristic scaling factors are implemented as functionals. Therefore, the complexity of the flexible PID-like fuzzy controller will not be increased. Further, the stability of the fuzzy control system with a flexible complexity reduced PID-like fuzzy controller is discussed. Finally, the simulation results are also included to show the effectiveness of the PID-like fuzzy controller designed with the flexible complexity reduced approach.
本文提出了一种用于类PID模糊控制器的灵活降低复杂度的设计方法。通过将输入变量的线性组合作为一个新的输入变量,类PID模糊控制器的模糊机制的复杂度显著降低。然而,由于输入变量的组合降低了自由度,降低复杂度的模糊PID控制器的性能可能会下降。为了缓解这一缺点并提高降低复杂度的类PID模糊控制器的性能,引入了一种灵活降低复杂度的设计方法,其中功能缩放因子是通过启发式生成的。由于功能缩放因子是通过启发式创建的,因此无需工厂精确数学模型的先验知识,就可以轻松地为灵活降低复杂度的类PID模糊控制器调整它们。此外,启发式缩放因子被实现为泛函。因此,灵活类PID模糊控制器的复杂度不会增加。进一步讨论了具有灵活降低复杂度的类PID模糊控制器的模糊控制系统的稳定性。最后,还给出了仿真结果,以表明采用灵活降低复杂度方法设计的类PID模糊控制器的有效性。