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Two-Degree-of-Freedom H Control of Diesel Engine Air Path System with Nonlinear Feedforward Controller ?

机译:自由度 h 用非线性馈电控制器控制柴油机空气路径系统

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In this research, we developed a two-degree-of-freedom control system for a Diesel engine air path system. First, a physical air path model of the Diesel engine was developed. Then, a feedforward controller was designed based on the inverse of the developed physical model, thus reducing the computational effort in real-time calculation. The feedback controller was designed by using anH∞control theory by regarding the plant nonlinearities and the response delay of the actuators as uncertainties to the nominal model. The feedforward and feedback controllers were implemented as a two-degree-of-freedom control scheme. Further, an anti-windup scheme was introduced in the feedback controller to reduce the overshoot in the intake manifold pressure response. The effectiveness of the proposed method was evaluated by conducting not only simulations using the nonlinear physical model, but also experiments using a real Diesel engine.
机译:在这项研究中,我们为柴油发动机空气路径系统开发了两级自由度控制系统。首先,开发了柴油发动机的物理空气路径模型。然后,基于开发的物理模型的倒数设计了一种前馈控制器,从而降低了实时计算中的计算工作。反馈控制器是通过使用Anh∞Control理论而设计的植物非线性以及致动器作为标称模型的不确定性的响应延迟来设计。前馈和反馈控制器被实现为双程度自由度控制方案。此外,在反馈控制器中引入了反转方案,以减少进气歧管压力响应的过冲。通过使用非线性物理模型的模拟不仅进行模拟,还通过使用真正的柴油发动机进行实验来评估所提出的方法的有效性。

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