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Reference Feedforward in the Idle Speed Control of a Direct-Injection Spark-Ignition Engine

机译:直喷式火花点火发动机怠速控制中的参考前馈

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The direct-injection spark-ignition engine has emerged as a focus of research in improving fuel economy and controlling emissions. This engine can operate in multiple modes, including a stratified charge mode with an air-fuel ratio as large as 50:1. Operating in stratified mode results in improved fuel economy and reduced CO{sub}2 emissions. The stratified charge mode is employed during low speed and load conditions, such as during engine idle. The idle speed control problem is cast as a two-input-two-output control problem and a baseline feedback controller is developed based on an existing topology from the literature. Significant delays, however, inhibit our ability to improve the transient response via feedback alone. An improved scheme employing reference feedforward is proposed and several potential topologies are presented. A reference feedforward algorithm is derived and nonlinear simulation results are shown in which the system transient responses are improved considerably.
机译:直接喷射式火花点火发动机已经成为改善燃油经济性和控制排放的研究重点。该发动机可以多种模式运行,包括空燃比高达50:1的分层充气模式。以分层模式运行可提高燃油经济性并减少CO {sub} 2排放。在低速和负载情况下,例如在发动机怠速期间,采用分层充气模式。怠速控制问题被转换为两输入两输出控制问题,并且基于文献中的现有拓扑结构开发了基线反馈控制器。但是,明显的延迟会抑制我们仅通过反馈来改善瞬态响应的能力。提出了一种采用参考前馈的改进方案,并提出了几种潜在的拓扑。推导了参考前馈算法,并给出了非线性仿真结果,其中系统的瞬态响应得到了显着改善。

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