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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Adaptive and predictive control of fuel injection with time delay consideration for air-fuel ratio regulation of gasoline direct injection engines
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Adaptive and predictive control of fuel injection with time delay consideration for air-fuel ratio regulation of gasoline direct injection engines

机译:汽油直喷发动机空燃比调节时滞燃料喷射的自适应及预测控制

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摘要

Accurate air-fuel ratio control is a key affecting factor for improving fuel economy and reducing exhaust emissions for internal combustion engines. Challenging issues in air-fuel control are the accurate estimation of cylinder air charge for achieving the stoichiometric in-cylinder air-fuel ratio and the disposition of measurement time delay from the oxygen sensor for removing its limits on the achievable feedback performance. In this article, based on hybrid discrete-continuous-time descriptions for the cylinder air charge dynamics and air-fuel feedback regulation controlled plant, a novel fuel injection controller with adaptive feedback and predictive feedforward is designed to ensure accurate air-fuel control of a gasoline direct injection engine. The feedforward fuel injection is determined based on the cylinder air charge prediction using unscented Kalman filter for the compensation of the injection delay and modelling error and the attenuation of the measurement noise. The feedback fuel compensation is designed as a proportional-integral structure with adaptive gains by means of an adaptive stabilization method of uncertain input delayed systems for the management of the transport delay and parameter uncertainty. The effectiveness of the proposed fuelling control against time delay, modelling error, measurement noise and parameter uncertainty is demonstrated by the simulation utilizing experimental data from a real V6 GDI engine.
机译:准确的空燃比控制是改善燃油经济性和减少内燃机废气排放的关键影响因素。空气燃料控制中的挑战性问题是用于实现化学计量的缸内空燃比和从氧气传感器的测量时间延迟的设置来实现对可实现的反馈性能的限制的准确估计。在本文中,基于用于气缸空气充电动力学和空气燃料反馈调节设备的混合离散连续时间描述,设计具有自适应反馈和预测前馈的新型燃料喷射控制器,以确保准确的空气燃料控制汽油直喷发动机。基于使用Unscented Kalman滤波器的汽缸空气电荷预测来确定馈电燃料喷射,以补偿注入延迟和建模误差以及测量噪声的衰减。反馈燃料补偿被设计为具有自适应增益的比例积分结构,通过适应性稳定方法,用于管理运输延迟和参数不确定性。利用真实V6 GDI发动机的实验数据,通过模拟来证明所提出的加油控制对时间延迟,建模误差,测量噪声和参数不确定性的有效性。

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