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Optimal Peak Pressure and Exhaust Temperature Tracking Control for a Two-Zone HCCI Engine Model with Mean Burn Duration

机译:具有平均烧伤持续时间的双区HCCI发动机模型的最佳峰值压力和排气温度跟踪控制

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Combustion in HCCI engines depends on several parameters such as temperature, pressure, thermochemistry of the cylinder gases, etc. These variables affect the two significant combustion parameters: ignition timing and combustion duration. Controlling ignition timing and burn rate in such engines over a range of engine speeds and loads is an inherently challenging task. Existing single-zone HCCI engine-control models fail to accurately estimate the combustion parameters. Moreover, such models lacked the absolute dynamic control of all the valves. Although certain CFD-based multi-zone models have been reported in literature, they are quite unwieldy for the development of fast and efficient HCCI-engine controllers. This paper outlines a physics-based two-zone model of an HCCI engine with an empirical mean burn duration model in order to better predict combustion parameters and facilitate controller development. The discrete nonlinear model is linearized about an operating point and the resulting linearized model is used to create an effective LQR-based tracking controller for peak pressure and exhaust gas temperature.
机译:HCCI发动机中的燃烧取决于若干参数,例如气缸气体的温度,压力,热化学等。这些变量影响了两个显着的燃烧参数:点火正时和燃烧持续时间。在一系列发动机速度和负载范围内控制这种发动机的点火正时和烧伤率是一个固有的具有挑战性的任务。现有的单区域HCCI发动机控制模型无法准确估计燃烧参数。此外,这种模型缺乏对所有阀门的绝对动态控制。虽然文献中报告了某些基于CFD的多区模型,但它们对于快速高效的HCCI-Engine控制器的开发非常笨拙。本文概述了一种基于物理的HCCI发动机的两个区域模型,具有经验的平均燃烧持续时间模型,以便更好地预测燃烧参数并促进控制器开发。离散非线性模型是线性化的关于操作点,并且所得到的线性化模型用于创建有效的基于LQR的跟踪控制器,用于峰值压力和废气温度。

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