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Lyapunov-based constrained engine torque control using electronic throttle and variable cam timing

机译:基于Lyapunov的受限发动机扭矩控制使用电子节流阀和可变凸轮定时

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In this paper, predictive control of a spark ignition engine equipped with an electronic throttle and a variable cam timing actuator is considered. The objective is to adjust the throttle angle and the engine cam timing in order to reduce the exhaust gas emissions while maintaining fast and monotonic transient engine torque response. To this end, using a mean-value nonlinear model for the air intake system of the engine, a receding horizon control scheme based on a flexible control Lyapunov function is developed. The proposed control scheme can adjust the throttle plate angle and the cam timing to provide a fast and monotonic air flow response into the engine cylinders, while explicitly taking into account constraints. Compared to a previous parameter governor controller, the simulation results show that the proposed solution provides better performance in terms of settling time. Moreover, the computational complexity of the algorithm is compatible with current electronic control units, despite using a full nonlinear model.
机译:在本文中,考虑了配备有电子节气门的火花点火发动机和可变凸轮正时致动器的预测控制。目的是调整节流阀和发动机凸轮定时,以减少排气排放,同时保持快速和单调的瞬态发动机扭矩响应。为此,利用用于发动机的进气系统的平均值非线性模型,开发了基于灵活控制Lyapunov函数的后退地平线控制方案。所提出的控制方案可以调节节流板角度和凸轮定时,以在发动机汽缸中提供快速和单调的空气流量响应,同时明确地考虑到约束。与先前的参数调速器控制器相比,仿真结果表明,所提出的解决方案在稳定时间方面提供了更好的性能。此外,尽管使用完整的非线性模型,但算法的计算复杂性与当前的电子控制单元兼容。

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