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A Design Approach for General Type-2 Fuzzy Logic Controllers with an Online Scheduling Mechanism

机译:具有在线调度机制的通用2型模糊逻辑控制器的设计方法

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This paper proposes a systematic approach to solve the design problem of General Type-2 (GT2) Fuzzy Logic Controllers (FLCs) with an online scheduling mechanism for performance enhancements. We firstly suggest constructing the GT2-FLC over its baseline type-1 and interval type-2 FLCs, and then to tune a single design parameter which defines the shape of the secondary membership functions. We present how the shape of the secondary membership function changes with respect to the design parameter and show resulting effect on the control surface generation. The presented comparative analysis on the control surfaces show that aggressive and smooth control surfaces can be easily generated by tuning the design parameter. We suggest tuning the design parameter by providing a tradeoff between robustness and performance of the control system. Also, to achieve satisfactory control performances for various steady-state points, we propose an online scheduling mechanism that tunes the design parameter with respect to the operating points. We perform a simulation study on a nonlinear system to validate our analyses and proposed design methods. The simulation results show that GT2-FLC has a potential to improve overall system performances in comparison to its type-1 and interval type-2 counterparts, while the developed scheduling mechanism provides an opportunity to achieve satisfactory results for various operating points.
机译:本文提出了一种系统方法来解决常规类型-2(GT2)模糊逻辑控制器(FLC)的设计问题,具有用于性能增强的在线调度机制。我们首先建议将GT2-FLC构建在基线类型1和间隔类型-2 FLC上,然后调整单个设计参数,该参数定义次要隶属函数的形状。我们介绍了次要隶属函数的形状如何改变设计参数,并显示对控制表面生成的产生影响。对控制表面的呈现比较分析表明,通过调整设计参数,可以容易地产生侵蚀性和平滑的控制表面。我们建议通过在控制系统的鲁棒性和性能之间提供权衡来调整设计参数。此外,为了实现各种稳态点的令人满意的控制性能,我们提出了一种在线调度机制,该机制调整关于操作点的设计参数。我们对非线性系统进行仿真研究,以验证我们的分析和提出的设计方法。仿真结果表明,与其类型-1和间隔类型-2对应相比,GT2-FLC具有改善整体系统性能的潜力,而开发的调度机制则提供了实现各种操作点的令人满意的结果的机会。

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