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Optimal grey-fuzzy controller design for a constant turning force system

机译:恒定转向力系统的最佳灰色模糊控制器设计

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In this paper the grey-fuzzy control scheme is proposed to control the turning process with constant cutting force under various cutting conditions. The grey-fuzzy control scheme consists of two parts: the grey predictor and the fuzzy logic controller. When we use the grey-fuzzy control scheme to design the constant turning force system, it is necessary to adjust the control parameters of both the grey predictor and the fuzzy controller (i.e., the sample size and grey constants of the grey predictor, and the scaling factors of the fuzzy controller) for guaranteeing stability and obtaining optimal control performances. Therefore, in order to search for the optimal control parameters by way of systematic reasoning instead of the time-consuming trial-and-error procedure, in this paper the Taguchi method is applied to search for the optimal control parameters of both the grey predictor and the fuzzy controller such that the grey-fuzzy controller is an optimal controller. Computer simulations are performed to verify the effectiveness of the above optimal grey-fuzzy control scheme designed by the Taguchi method. It is shown that satisfactory performances have been achieved by the optimal grey-fuzzy control scheme designed in this way.
机译:本文提出了一种灰色模糊控制方案,以在各种切削条件下以恒定切削力控制车削过程。灰色模糊控制方案由两部分组成:灰色预测器和模糊逻辑控制器。当我们使用灰色模糊控制方案设计恒定转向力系统时,有必要调整灰色预测器和模糊控制器的控制参数(即,灰色预测器的样本大小和灰度常数,以及模糊控制器的比例因子),以确保稳定性并获得最佳控制性能。因此,为了通过系统推理而不是费时的反复试验来搜索最优控制参数,本文采用田口方法来搜索灰色预测器和最优预测器的最优控制参数。模糊控制器,以使灰色模糊控制器是最优控制器。进行计算机仿真以验证由Taguchi方法设计的上述最佳灰模糊控制方案的有效性。结果表明,以这种方式设计的最佳灰模糊控制方案已获得令人满意的性能。

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