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Hierarchy and decoupling in multivariable fuzzy controllers for a class of power electronics systems

机译:一类电力电子系统的多变量模糊控制器的层次和解耦

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Multi-input/multi-output fuzzy logic based controllers allow the inclusion of different types of knowledge about the controlled process. The application of multivariable fuzzy controllers in a real process is difficult due to practical limitations. After revising the available methods, the paper describes two approaches to the implementation of a MIMO fuzzy controller in a real process. Introducing a loop structure for the fuzzy controller, the first approach is based on the decomposition method and the second on a mixed decomposition and hierarchical structure. The approach allows an important reduction in a global fuzzy relation needed to control the process under consideration - the parallel operation of uninterruptible power supplies. The process multivariable and nonlinear characteristics makes it an appropriate one to test the presented methods. Simulation results are presented based on the two controller types and they are characterised in absolute terms and in relation to each other.
机译:基于多输入/多输出模糊逻辑的控制器允许包含有关受控过程的不同类型的知识。由于实际限制,在实际过程中难以应用多变量模糊控制器。在修改可用方法之后,本文描述了在实际过程中实现MIMO模糊控制器的两种方法。在介绍模糊控制器的回路结构时,第一种方法基于分解方法,第二种方法基于混合分解和层次结构。该方法可以显着减少控制所考虑过程所需的全局模糊关系-不间断电源的并行操作。该过程的多变量和非线性特性使其成为测试所提出方法的合适方法。基于两种控制器类型给出了仿真结果,并以绝对术语和相互关联的方式对它们进行了表征。

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