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Research on Modeling and Simulation of SI Engine for AFR Control Application

机译:用于AFR控制的SI发动机建模与仿真研究。

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摘要

Accurate AFR control with TWC is a significant method to reduce the exhaust emission of SI engines. To followthe up to date model-based methodology in automotive industries, a virtual engine simulation platform was carriedout to simulate a SGMW B15 engine based on enDYNA and improved by adding the AFR path dynamic models. Experimentsand simulation results were compared for the model validation both about the engine performance at steady state,and especially the AFR path transient response. Also a soft ECU model was designed for the control algorithm implementation.Simulation results shows that the engine model is appropriate for simulating SI engine operated at steady and transientstate, and the close-loop PID controller has better performance for suppressing the overshoot of AFR signal duringtransient throttle position varying. The simulation model described in this work could support the AFR control algorithmdevelopment as a proper virtual engine control objects.
机译:使用TWC进行精确的AFR控制是减少SI发动机废气排放的重要方法。为了跟上汽车行业基于模型的最新方法,开发了一个虚拟发动机仿真平台,以基于enDYNA并通过添加AFR路径动态模型进行改进来模拟SGMW B15发动机。对实验和仿真结果进行了比较,以验证模型在稳态下的发动机性能,尤其是AFR路径瞬态响应。仿真结果表明,该发动机模型适合于模拟稳态和瞬态运行的SI发动机,并且闭环PID控制器在抑制瞬态过程中AFR信号的过冲方面具有更好的性能。油门位置变化。本文中描述的仿真模型可以支持将AFR控制算法开发为适当的虚拟发动机控制对象。

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