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Idle speed control system design based on engine torque management

机译:基于发动机扭矩管理的怠速控制系统设计

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摘要

In this paper, a physics/map-based spark ignition (SI) engine model is deduced for controller design, consisting of air-path model and engine speed model. Based on this model, an idle speed control system is designed based on model inverse-dynamics in the framework of engine torque management system. Firstly, the desired engine idle speed is transformed into the desired engine combustion torque using the inverse-dynamic of engine speed model. Secondly, the desired engine combustion torque is transformed into the desired airflow entering the cylinder using a map. Finally, the desired airflow is transformed into the desired throttle angle by using the inverse-dynamics of air-path model. Then, the engine idle speed is achieved by tracking the desired throttle angle. The simulation results are provided to demonstrate the effectiveness of the proposed control system.
机译:在本文中,推导了基于物理/地图的火花点火(SI)发动机模型用于控制器设计,该模型包括风道模型和发动机转速模型。基于该模型,在发动机扭矩管理系统的框架下,基于模型逆动力学设计了怠速控制系统。首先,使用发动机速度模型的逆动力学将期望的发动机怠速转化为期望的发动机燃烧扭矩。其次,使用映射将期望的发动机燃烧转矩转换成进入气缸的期望的气流。最后,通过使用风道模型的逆动力学,将所需的气流转换为所需的节气门角。然后,通过跟踪所需的节气门角度来达到发动机怠速速度。仿真结果提供了证明所提出的控制系统的有效性。

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