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Fuzzy Rules Emulated Discrete-Time Controller Based on Plant's Input-Output Association

机译:基于工厂输入 - 输出关联的模糊规则模拟离散时间控制器

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摘要

In this work, an adaptive controller is designed by an adaptive network called fuzzy rules emulated network (FREN) for a class of nonlinear discrete-time systems when the mathematical model is completely neglected. The characteristic curve between the plant's input and output is drawn by results of the experimental setup. The design parameters are determined by the characteristic curve and utilized to design the controller. The network structure of FREN controller is established by the set of human knowledge-based IF-THEN rules according to the relation between the plant's input and output. The theoretical result is provided to guarantee the convergence of tracking error of the learning algorithm. Furthermore, experimental systems with the LED current control and the robotic system are constructed to validate the performance of the proposed controller.
机译:在这项工作中,当数学模型完全被忽略时,自适应控制器由称为模糊规则仿真网络(FREN)的自适应网络设计。 植物的输入和输出之间的特性曲线被实验设置的结果绘制。 设计参数由特性曲线确定并用于设计控制器。 FREN控制器的网络结构是根据工厂输入和输出之间的关系的基于人类知识的IF-DON-DEN-DON-DON-DEN-DEN-THEA的网络结构。 提供理论结果以保证学习算法的跟踪误差的收敛性。 此外,构造具有LED电流控制和机器人系统的实验系统以验证所提出的控制器的性能。

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