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HCCI Engine Combustion-Timing Control: Optimizing Gains and Fuel Consumption Via Extremum Seeking

机译:HCCI发动机燃烧正时控制:通过极值寻优优化增益和燃料消耗

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摘要

Homogenous-charge-compression-ignition (HCCI) engines have the benefit of high efficiency with low emissions of $hbox{NO}_{x}$ and particulates. These benefits are due to the autoignition process of the dilute mixture of fuel and air during compression. However, because there is no direct-ignition trigger, control of ignition is inherently more difficult than in standard internal combustion engines. This difficulty necessitates that a feedback controller be used to keep the engine at a desired (efficient) setpoint in the face of disturbances. Because of the nonlinear autoignition process, the sensitivity of ignition changes with the operating point. Thus, gain scheduling is required to cover the entire operating range of the engine. Controller tuning can therefore be a time-intensive process. With the goal of reducing the time to tune the controller, we use extremum seeking (ES) to tune the parameters of various forms of combustion-timing controllers. In addition, in this paper, we demonstrate how ES can be used for the determination of an optimal combustion-timing setpoint on an experimental HCCI engine. The use of ES has the benefit of achieving both optimal setpoint (for maximizing the engine efficiency) and controller-parameter tuning tasks quickly.
机译:均质压缩压缩点火(HCCI)发动机具有高效率的优点,同时排放的hbox {NO} _ {x} $和颗粒物较低。这些好处归因于压缩过程中燃料和空气的稀混合物的自燃过程。但是,由于没有直接点火扳机,因此点火控制从本质上比标准内燃机更困难。该困难使得必须使用反馈控制器来在面对干扰的情况下将发动机保持在期望的(有效)设定点。由于非线性自燃过程,点火灵敏度随工作点而变化。因此,需要进行增益调度以覆盖发动机的整个工作范围。因此,控制器调整可能是一个耗时的过程。为了减少调整控制器的时间,我们使用极值搜索(ES)来调整各种形式的燃烧正时控制器的参数。此外,在本文中,我们演示了如何将ES用于确定实验HCCI发动机的最佳燃烧正时设定点。使用ES的好处是可以快速实现最佳设定值(最大程度地提高发动机效率)和控制器参数调整任务。

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