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Fuzzy Controllers With Maximum Sensitivity for Servosystems

机译:伺服系统具有最大灵敏度的模糊控制器

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In this paper, new Takagi-Sugeno proportional-integral-fuzzy controllers (PI-FCs) to control a class of servosystems are proposed. The controlled plants in these control systems (CSs) are of integral type. In the first phase, there are designed linear PI controllers tuned in terms of the extended symmetrical optimum method to ensure the imposed overshoot and settling time with respect to the set point and to three possible types of load disturbance inputs. The connections between the two design parameters of the linear controllers and the desired maximum sensitivity and complementary sensitivity considering one of the disturbance inputs are derived. Then, accepting the approximate equivalence between the fuzzy controllers and the linear ones in certain conditions and using the modal equivalence principle, an attractive design method for the PI-FCs is proposed. With this respect, the design method guarantees maximum imposed sensitivity and complementary sensitivity for the CSs and, therefore, good responses with respect to modifications of the set point and of the disturbance inputs, and robustness with respect to model uncertainties. An application in speed control of a nonlinear servosystem with variable load, accompanied by experimental results, is provided to validate the new results, the fuzzy controllers, and a design method
机译:本文提出了一种新型的Takagi-Sugeno比例积分模糊控制器(PI-FC),用于控制一类伺服系统。这些控制系统(CS)中的受控设备为一体型。在第一阶段,设计了线性PI控制器,该线性PI控制器根据扩展的对称最优方法进行了调整,以确保相对于设定值和三种可能的负载扰动输入施加强加的过冲和建立时间。推导了线性控制器的两个设计参数与考虑到干扰输入之一的所需最大灵敏度和互补灵敏度之间的关系。然后,在一定条件下接受模糊控制器与线性控制器之间的近似等效性,并采用模态等效原理,提出了一种有吸引力的PI-FC设计方法。在这方面,该设计方法保证了CS的最大施加灵敏度和互补灵敏度,因此,对于设置点和干扰输入的修改具有良好的响应,并且对于模型不确定性具有鲁棒性。结合实验结果,提供了一种在变负荷非线性伺服系统速度控制中的应用,以验证新的结果,模糊控制器和设计方法。

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