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Identification and idle speed control of internal combustion engines

机译:内燃机的识别和怠速控制

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This paper presents an integrated approach for the identification and control of internal combustion engines in idle-speed conditions. The inputs f the nonlinear identification model are the position of the idle speed air actuation system and the spark advance, while its outputs are the pressure inside the air intake manifold and the crank shaft speed. The estimated model is then used to synthesize an idle speed controller with the linear quadratic technique. The design procedure outlined here is currently bieng used by Magneti Marelli for the synthesis of commercial idle-speed regulators. Some identification and control results obtained by applying this method to a 1400 cm~3 commercial engine are reported to witness the effectiveness of the proposed approach.
机译:本文提出了一种用于怠速状态下内燃机识别和控制的综合方法。非线性识别模型的输入是怠速空气致动系统的位置和火花提前,而其输出是进气歧管内部的压力和曲轴转速。然后,将估计的模型用于通过线性二次技术来合成怠速控制器。 Magneti Marelli目前正在使用此处概述的设计程序来合成商用怠速调节器。据报道,通过将该方法应用于1400 cm〜3商业发动机,获得了一些识别和控制结果,证明了该方法的有效性。

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