Linearization approach for anti-windup synthesis and implementation for DC motor speed control

N. Saqib, M. Rehan, N. Iqbal
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引用次数: 1

Abstract

In this note, we present the method for designing the anti-windup gain for non-linear systems having input saturation. The non-linear systems are considered to be operated at one operating point having the load variations. The non-linear model is linearized around the operating point. Then by using that linearized model, dynamic output feedback compensator that meet the desired performance criterion's is designed by neglecting the input saturation of the system. An existing linear matrix inequality based approach is used for computing anti-windup gain of the linearized model so that the closed loop system will be asymptotically stable. The design is then implemented on the non-linear DC servo motor. The steps including calibration, controller discretization, and implementation were detailed. It is worth noting that the simulation and experimental results demonstrate similar performance. Simulations and experimental results, showing recovery from wind-up, are performed under both without and with load conditions.
直流电动机转速控制的线性化反绕组综合与实现
在本文中,我们提出了具有输入饱和的非线性系统的抗绕组增益的设计方法。非线性系统被认为是在一个工作点上运行,并具有负载变化。非线性模型在工作点周围线性化。然后利用该线性化模型,在忽略系统输入饱和的情况下,设计了满足期望性能标准的动态输出反馈补偿器。利用现有的基于线性矩阵不等式的方法计算线性化模型的抗缠绕增益,使闭环系统渐近稳定。然后在非线性直流伺服电机上实现了该设计。详细介绍了标定、控制器离散化和实现等步骤。值得注意的是,仿真和实验结果显示了相似的性能。模拟和实验结果表明,在无负载和有负载条件下,从上弦恢复。
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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