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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Real-Time IMEP Estimation and Control Using an In-Cylinder Pressure Sensor for a Common-Rail Direct Injection Diesel Engine
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Real-Time IMEP Estimation and Control Using an In-Cylinder Pressure Sensor for a Common-Rail Direct Injection Diesel Engine

机译:使用共轨直喷柴油机的缸内压力传感器实时IMEP估算和控制

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摘要

An in-cylinder pressure-based control method is capable of improving engine performance, as well as reducing harmful emissions. However, this method is difficult to be implemented in a conventional engine management system due to the excessive data acquisition and long computation time. In this study, we propose a real-time indicated mean effective pressure (IMEP) estimation method using cylinder pressure in a common-rail direct injection diesel engine. In this method, difference pressure integral (DPI) was applied to the estimation. The DPI requires only 180 pressure data points during one engine cycle from top dead center to bottom dead center when pressure data are captured at every crank angle. Therefore, the IMEP can be estimated in real time. To further reduce the computational load, the IMEP was also estimated using DPI at 2 deg, 3 deg, and 4 deg crank angle resolutions. Furthermore, based on the estimated IMEP, we controlled IMEP using a radial basis function network and linear feedback controller. As a result of the study, successful estimation and control were demonstrated through engine experiments.
机译:基于缸内压力的控制方法能够改善发动机性能,并减少有害排放物。然而,由于过多的数据采集和较长的计算时间,该方法难以在常规发动机管理系统中实施。在这项研究中,我们提出了一种在共轨直喷柴油机中使用气缸压力的实时指示平均有效压力(IMEP)估计方法。在此方法中,将差压积分(DPI)应用于估计。当在每个曲柄角捕获压力数据时,从上止点到下止点的一个发动机循环中,DPI仅需要180个压力数据点。因此,可以实时估计IMEP。为了进一步减少计算负荷,还使用DPI在2度,3度和4度曲柄角分辨率下估计了IMEP。此外,基于估计的IMEP,我们使用径向基函数网络和线性反馈控制器控制IMEP。研究的结果是,通过发动机实验证明了成功的估计和控制。

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