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Stabilization Using a Discrete Fuzzy PDC Control with PID Controllers and Pole Placement: Application to an Experimental Greenhouse

机译:使用带有PID控制器和立杆位置的离散模糊PDC控制进行稳定化:在实验性温室中的应用

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This paper proposes a control strategy for complex and nonlinear systems, based on a parallel distributed compensation (PDC) controller. A solution is presented to solve a stability problem that arises when dealing with a Takagi-Sugeno discrete system with great numbers of rules. The PDC controller will use a classical controller like a PI, PID, or RST in each rule with a pole placement strategy to avoid causing instability. The fuzzy controller presented combines the multicontrol approach and the performance of the classical controllers to obtain a robust nonlinear control action that can also deal with time-variant systems. The presented method was applied to a small greenhouse to control its inside temperature by variation in ventilation rate inside the process. The results obtained will show the efficiency of the adopted method to control the nonlinear and complex systems.
机译:本文提出了一种基于并行分布式补偿(PDC)控制器的复杂和非线性系统控制策略。提出了解决具有大量规则的Takagi-Sugeno离散系统时出现的稳定性问题的解决方案。 PDC控制器将在每个规则中使用经典控制器(例如PI,PID或RST)以及极点放置策略,以避免引起不稳定性。提出的模糊控制器结合了多控制方法和经典控制器的性能,以获得鲁棒的非线性控制动作,该动作也可以处理时变系统。所提出的方法被应用于小型温室中,以通过过程中通风速率的变化来控制其内部温度。所得结果将表明所采用方法控制非线性和复杂系统的效率。

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