基于活塞轨迹的HCCI燃烧控制模型

Chen Zhang, Ke Li, Zongxuan Sun
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引用次数: 4

摘要

在此之前,作者提出了基于活塞轨迹的均匀装药压缩点火(HCCI)燃烧控制的概念,并展示了可变活塞轨迹对燃烧开始时间、热损失量和指示输出功的影响。为了在实际应用中实现这种新的控制,必须开发一种具有简化化学动力学的面向控制的模型。本文提出了这样一个模型,并与现有的两种模型进行了比较:一种是使用全局反应的简化模型,另一种是包含详细化学反应机理的复杂模型。该模型采用循环分离方法,在保证预测精度的同时,大大减少了计算时间。在面向控制的模型上还实现了一个反馈控制器,通过改变轨迹来控制HCCI燃烧相位。仿真结果表明,燃烧相位可以任意调节,验证了基于活塞轨迹的燃烧控制方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A control-oriented model for piston trajectory-based HCCI combustion
Previously, the authors have proposed the concept of piston trajectory-based homogeneous charge compression ignition (HCCI) combustion control enabled by a free piston engine and shown the effects of variable piston trajectories on the start of combustion timing, heat loss amount and indicated output work. In order to realize this new control in practical applications, a control-oriented model with reduced chemical kinetics has to be developed. In this paper, such a model is presented and is compared to two existing models: a simplified model using a global reaction and a complex model including detailed chemical reaction mechanisms. A cycle separation method is employed in the proposed model to significantly reduce the computational time and guarantee the prediction accuracy simultaneously. A feedback controller is also implemented on the control-oriented model to control the HCCI combustion phasing by varying the trajectories. The simulation results show that the combustion phasing can be adjusted as desired, which demonstrates the effectiveness of the piston trajectory-based combustion control.
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