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Parallel structure of fuzzy PID controller under different paradigms

机译:不同范式下模糊PID控制器的并行结构

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The development of fuzzy PID controllers need the construction of a three-dimensional rule base, which makes its design very complicated in terms of rule base structure and implementation of inferencing. Due to these disadvantages, design of a two input fuzzy PID controller structures become an interest which is a combination of two term fuzzy logic controllers i.e. fuzzy PI and fuzzy PD controllers. Analytical structures for parallel structure configuration of fuzzy proportional-integral-derivative (PID) controllers are derived using minimum triangular norm, different combinations of triangular co-norms (maximum, drastic sum), different inference methods (such as Mamdani minimum, Larsen product, drastic product, bounded product and standard sequence) and center-of-sum denazification method. This work also discuss about how to derive the analytical structures for Parallel structure of fuzzy PID controller (i.e., Fuzzy PI + Fuzzy PD controller) under different classes. A series of computer simulations are pursued and are included to demonstrate the effectiveness of the parallel structure fuzzy PID (FPI + FPD) controller and fuzzy PID controller over the conventional controller applied to time-delay systems, non-linear and complex systems.
机译:模糊PID控制器的发展需要构建三维规则库,这使得规则库的结构和推理的实现变得非常复杂。由于这些缺点,两个输入模糊PID控制器结构的设计引起人们的兴趣,该结构是两个术语模糊逻辑控制器即模糊PI和模糊PD控制器的组合。模糊比例-积分-微分(PID)控制器的并行结构配置的解析结构是使用最小三角范数,三角协范的不同组合(最大,奇数和),不同的推理方法(例如Mamdani最小值,Larsen乘积,剧烈的积,有界积和标准序列)和求和中心脱氮方法。这项工作还讨论了如何在不同类别下导出模糊PID控制器(即Fuzzy PI + Fuzzy PD控制器)的并行结构的解析结构。进行了一系列的计算机仿真,以证明并行结构模糊PID(FPI + FPD)控制器和模糊PID控制器相对于应用于时滞系统,非线性和复杂系统的常规控制器的有效性。

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