首页> 外文会议>SAE Fuels and Lubricants Meeting and Exhibition >Transient Control of HCCI Combustion by Aid of Variable Valve Timing Through the Use of an Engine State Corrected CA50-Controller Combined With an In-Cylinder State Estimator Estimating Lambda
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Transient Control of HCCI Combustion by Aid of Variable Valve Timing Through the Use of an Engine State Corrected CA50-Controller Combined With an In-Cylinder State Estimator Estimating Lambda

机译:通过使用发动机状态校正的CA50-Contrument借助于可变气门定时通过使用发动机状态校正CA50控制器的瞬态控制与缸内状态估计器估计Lambda

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One of the main challenges with the Homogeneous Charge Compression Ignition, HCCI, combustion system is to control the Start Of Combustion, SOC, for varying load and external conditions. A method to achieve this on a cycle-by-cycle basis is to vary the valve timing based on a feedback signal from the SOC of previous cycles. The control can be achieved with two basic valve-timing strategies named the Overlap and the IVC-method. The Overlap-method works by trapping of residuals while the IVC-method affects the effective compression ratio. In an earlier paper it has been shown that if the two methods are incorporated into one controller, SOC can be controlled in a relatively large operating window although the transient performance was not sufficient. The reason is that a simple PI controller cannot be made fast enough to cope with the transients without magnifying the cycle-to- cycle variations of the combustion into instability. It has also been shown that a controller based around a non-linear compensation extended with an engine state correction will improve the control performance. The non-linear compensation used is based on the inverse of the non-linear function from valve timings to ignition delay. In this work an in-cylinder state estimator is added to the non-linear compensation controller in order to further improve the control performance. The in-cylinder state estimator is in the present version estimating lambda and aimed at improving load transients. Control performance from engine tests conducted on a single-cylinder engine equipped with a hydraulic valve system is reported.
机译:具有均匀电荷压缩点火,HCCI,燃烧系统的主要挑战之一是控制燃烧,SOC的开始,用于不同的负载和外部条件。在逐个周期基础上实现这一点的方法是基于来自先前循环的SOC的反馈信号来改变气门正时。可以通过命名重叠和IVC方法的两个基本阀门定时策略来实现控制。重叠方法通过捕获残差而在IVC-方法影响有效压缩比时起作用。在较早的纸张中,已经表明,如果这两种方法结合到一个控制器中,则可以在相对大的操作窗口中控制SOC,尽管瞬态性能不足以足够。原因是简单的PI控制器不能足够快地应对瞬态,而不会将燃烧的循环变化放大到不稳定性。还显示,基于具有发动机状态校正的非线性补偿的控制器将提高控制性能。使用的非线性补偿是基于从气门定时到点火延迟的非线性函数的倒数。在该工作中,将缸内状态估计器添加到非线性补偿控制器中,以进一步提高控制性能。缸内状态估计器处于本发明的版本,估计Lambda并且旨在改善负载瞬变。报道了在配备有液压阀系统的单缸发动机上进行的发动机测试的控制性能。

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