Application of H∞ optimal design to automotive fuel control

H. Kuraoka, N. Ohka, M. Ohba, S. Hosoe, F. Zhang
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引用次数: 18

Abstract

This study seeks to apply H∞ robust control theory to the design of an automotive diesel pump control system, and also to compare the results with those when optimal regulator theory is applied. A diesel pump control system must respond quickly and undeviatingly whenever a driver pedals the accelerator. Fuel viscosity changes due to temperature variations exert a great influence on the control system, both statically and dynamically. First, we constructed a feedback system by applying optimal regulator theory to the diesel pump control. However, the control has to be achieved by switching several feedback gains in relation to the fuel temperature variations. Thus, the aim of the present study was directed to design a robust control system that can withstand parameters perturbation. To do this, we used a type one robust feedback system constructed by application of H∞ robust control theory.
H∞优化设计在汽车燃油控制中的应用
本研究旨在将H∞鲁棒控制理论应用于汽车柴油机泵控制系统的设计,并与最优调节器理论的应用结果进行比较。当驾驶员踩下油门时,柴油机泵控制系统必须迅速而准确地作出反应。温度变化引起的燃油粘度变化对控制系统的静态和动态影响很大。首先,将最优调节器理论应用于柴油机泵的控制中,构造了一个反馈系统。然而,控制必须通过切换与燃料温度变化有关的几个反馈增益来实现。因此,本研究的目的是设计一个能够承受参数扰动的鲁棒控制系统。为此,我们使用了应用H∞鲁棒控制理论构造的一类鲁棒反馈系统。
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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