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Dynamic Sliding Mode Control of Air-to-fuel ratio in Internal Combustion Engines Using the Hybrid Extended Kalman Filter

机译:使用混合延长卡尔曼滤波器的内燃机空气到燃料比的动态滑动模式控制

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The large modeling uncertainties and the nonlinearities associated with air manifold and fuel injection in spark ignition (SI) engines has given rise to difficulties in the task of designing an adequate controller for air-to-fuel ratio (AFR) control. Although sliding mode control approaches has been suggested, the inescapable time-delay between control action and measurement update results in chattering. This paper proposes the implementation of a nonlinear observer based control scheme incorporating the hybrid extended Kalman filter (HEKF) and the dynamic sliding mode control (DSMC). The results established upon the proposed methodology are given which demonstrate superior performance in terms of reducing the chattering magnitude.
机译:与火花点火(Si)发动机的空气歧管和燃料喷射相关的大型建模不确定性和非线性在设计适用于空气 - 燃料比(AFR)控制的方面的任务方面具有困难。尽管已经提出了滑动模式控制方法,但是控制动作与测量更新之间的不可避免的时间延迟导致抖动。本文提出了一种基于非线性观察者的控制方案的实现,其包含混合扩展卡尔曼滤波器(HEKF)和动态滑模控制(DSMC)。给出了在提出的方法中建立的结果,其在减少抖动幅度方面表现出卓越的性能。

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