Decoupled PID controller for wind tunnel system

Ting-Feng Zhang, Zhizhong Mao, Ping Yuan
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引用次数: 3

Abstract

Implementation of a decoupled PID control strategy to a wind tunnel control system is described in this paper. Two coupled variables, stagnation pressure and Mach number, are controlled in the wind tunnel system. The wind tunnel exhibits common features of industrial systems including non-linear dynamics, time delay and coupling effects among variables. A decoupler is first introduced in this control scheme. Next, a reduced order model is determined for the decoupled wind tunnel process. Then, the PID controller is obtained using the non-dimensional tuning (NDT) algorithm. Simulation experiments have confirmed good regulatory and tracking properties of the proposed control system.
风洞系统解耦PID控制器
本文描述了一种解耦PID控制策略在风洞控制系统中的实现。在风洞系统中,滞止压力和马赫数是两个耦合变量。风洞具有工业系统的非线性动力学、时滞和变量间耦合效应等共同特征。在该控制方案中首先引入了解耦器。其次,确定了解耦风洞过程的降阶模型。然后,采用无量纲整定(NDT)算法得到PID控制器。仿真实验证明了该控制系统具有良好的调节和跟踪性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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