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首页> 外文期刊>Control Systems Technology, IEEE Transactions on >Air-to-Fuel Ratio Switching Frequency Control for Gasoline Engines
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Air-to-Fuel Ratio Switching Frequency Control for Gasoline Engines

机译:汽油发动机的空燃比切换频率控制

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摘要

Modern gasoline internal combustion engines use a variety of technologies to enhance the efficiency of fresh air induction. These technologies, which include variable valve timing and variable intake geometry systems, also make it more difficult to predict the mass of fresh air that is trapped during the induction stroke of the engine because they not only affect the residual gas fraction of the trapped air charge, but also the wave dynamics of the system. As the number of controllable actuators increases, this estimation problem becomes even more difficult. As these technologies continue to develop, the importance of robustness in air-to-fuel ratio control continues to grow. This paper presents an air-to-fuel ratio control algorithm based on a switching frequency regulator that has favorable robust stability properties in the presence of both input and model errors. Instead of modeling the air path system with a simplified model, this control architecture considers the air estimate as a control input. As a result, air estimation errors behave like input errors, not modeling errors. By using the rich-to-lean and lean-to-rich air-to-fuel ratio switching frequencies of the pre-catalyst exhaust gas oxygen sensor as the primary feedback signal, the control laws are completely independent of the parameters of the plant model. The performance of this controller is demonstrated both with a robust stability analysis and through a vehicle-based experimental validation.
机译:现代汽油内燃机使用多种技术来提高新鲜空气的引入效率。这些技术,包括可变气门正时和可变进气几何系统,也使预测发动机进气冲程期间捕获的新鲜空气质量变得更加困难,因为它们不仅影响捕获的充气的残余气体分数,还包括系统的波动动力学。随着可控致动器的数量增加,该估计问题变得更加困难。随着这些技术的不断发展,鲁棒性在空燃比控制中的重要性不断提高。本文提出了一种基于开关频率调节器的空燃比控制算法,该算法在存在输入误差和模型误差的情况下具有良好的鲁棒稳定性能。该控制体系结构没有使用简化模型对空气路径系统进行建模,而是将空气估计值作为控制输入。结果,空气估计误差的行为类似于输入误差,而不是建模误差。通过将催化剂前排气氧传感器的浓淡比和浓淡比空燃比切换频率用作主要反馈信号,控制律完全独立于工厂模型的参数。鲁棒的稳定性分析和基于车辆的实验验证都证明了该控制器的性能。

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