A study of discrete-time sliding mode control for SI engine idle speed control

Yang Zhang, N. Kurihara
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引用次数: 4

Abstract

This paper investigates the application to the provision of integral discrete sliding mode tracking control with input constraint for engine idling speed control because the control logic are always implemented in discrete-time by microprocessors. The subject of this experiment is to improve the stability of the system against disturbances such as fuel purges and torque loads. A discrete Sliding mode control based on servo system is employed that effectively remove the steady-state error when the bias power disturbance occurs. The control logic also concluded a design of feedback compensation gain, derived from the control input difference, to compensate for control input constraint. A mean-value engine model combined with dead time and superimposed disturbances was constructed in Matlab/Simulink. The simulation results showed the issue relating to steady-state deviation was successfully solved under the disturbances having bias power, and also robustness was maintained during engine speed fluctuations.
SI发动机怠速控制的离散滑模控制研究
由于控制逻辑总是由微处理器在离散时间内实现,本文研究了在发动机空转速度控制中提供带输入约束的积分离散滑模跟踪控制的应用。本实验的主题是提高系统的稳定性,以抵抗诸如燃油净化和扭矩负载等干扰。采用基于伺服系统的离散滑模控制,有效地消除了偏置功率扰动时的稳态误差。控制逻辑中还总结了反馈补偿增益的设计,由控制输入差分导出,以补偿控制输入约束。在Matlab/Simulink中构建了考虑死区时间和叠加扰动的均值引擎模型。仿真结果表明,该方法成功地解决了偏置功率扰动下的稳态偏差问题,并在发动机转速波动时保持了鲁棒性。
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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