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MATTER-ELEMENT MODELING OF PARALLEL STRUCTURE AND APPLICATION ABOUT EXTENSION PID CONTROL SYSTEM

机译:扩展PID控制系统的并行结构物元建模与应用。

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This article describes in detail a new method via the extension predictable algorithm of the matter-element model of parallel structure tuning the parameters of the extension PID controller. In comparison with fuzzy and extension PID controllers, the proposed extension PID predictable controller shows higher control gains when system states are away from equilibrium, and retains a lower profile of control signals at the same time. Consequently, better control performance is achieved. Through the proposed tuning formula, the weighting factors of an extension-logic predictable controller can be systematically selected according to the control plant. An experimental example through industrial field data and site engineers' experience demonstrates the superior performance of the proposed controller over the fuzzy controller.
机译:本文通过并行结构的物元模型的扩展可预测算法对扩展PID控制器的参数进行调整,详细描述了一种新方法。与模糊和扩展PID控制器相比,所提出的扩展PID可预测控制器在系统状态偏离平衡时显示出更高的控制增益,并且同时保留了较低的控制信号轮廓。因此,获得了更好的控制性能。通过提出的调整公式,可以根据控制工厂系统地选择扩展逻辑可预测控制器的加权因子。通过工业现场数据和现场工程师的经验进行的实验示例证明了所提出的控制器优于模糊控制器的性能。

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