一类非线性MIMO系统的自适应滑模控制:在涡轮增压柴油机上的应用

S. Larguech, Sinda Aloui, O. Pagès, A. Hajjaji, A. Chaari
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引用次数: 10

摘要

针对一类非线性多输入多输出系统,提出了一种自适应滑模控制方法。为了在不影响跟踪性能的前提下减少抖振现象,将经典滑模律的不连续项替换为自适应比例导数(PD)项。通过在控制律中加入鲁棒项,减小了由PD项引起的逼近误差的影响。基于李雅普诺夫稳定性分析,导出了系统的参数、自适应律和鲁棒控制项。整体自适应滑模方案保证了跟踪误差的渐近收敛到零和闭环系统中所有信号的有界性。将该方法应用于某涡轮增压柴油机。仿真结果表明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Sliding Mode Control for a class of nonlinear MIMO systems: Application to a Turbocharged Diesel Engine
An Adaptive Sliding Mode Control (ASMC) for a class of nonlinear Multi Input Multi Output (MIMO) systems is presented in this paper. In order to reduce the chattering phenomenon without deteriorating the tracking performance, the discontinuous term of the classical sliding mode law is substituted with an adaptive Proportional Derivative (PD) term. The effect of the approximation error which arises from the PD term is reduced by adding a robust term in the proposed control law. All parameters, adaptive laws and robust control term, are derived based on the Lyapunov stability analysis. The overall adaptive sliding mode scheme guarantees the asymptotic convergence to zero of tracking errors and the boundedness of all signals in the closed-loop system. The proposed approach is applied to a Turbocharged Diesel Engine. Simulation results are presented to show the efficiency of the proposed method.
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