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Quantitative feedback design of air and boost pressure control system for turbocharged diesel engines

机译:涡轮增压柴油机空气和增压控制系统的定量反馈设计

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For modern diesel engines, variable geometry turbocharger (VGT) is used to boost engine power output. In addition, exhaust gas recirculation (EGR) is utilized to reduce engine out NO_ x emission. To realize these functions, a multivariable control system needs to control both VGT and EGR valve to deliver desired intake manifold (or boost) pressure, and desired EGR flow rate. This two-input and two-output system is nonlinear with cross-couplings between the boost and EGR responses to the input actuators, the system parameters are varying with different engine operating conditions. This paper proposes a closed loop design of a multivariable VGT/EGR controt system for a turbocharged diesel engine. The control system is synthesized based on quantitative feedback theory to maintain robust stability and performance via sequential MIMO loop shaping in the frequency domain. Experiment results are included from a turbocharged diesel engine to show the effectiveness of the proposed control design.
机译:对于现代柴油发动机,可变几何涡轮增压器(VGT)用于提高发动机功率输出。另外,利用排气再循环(EGR)来减少发动机排出的NO x排放。为了实现这些功能,多变量控制系统需要控制VGT和EGR阀以输送所需的进气歧管(或增压)压力和所需的EGR流量。该双输入双输出系统是非线性的,在增压和EGR对输入执行器的响应之间具有交叉耦合,系统参数随不同的发动机工况而变化。本文提出了一种用于涡轮增压柴油机的多变量VGT / EGR控制系统的闭环设计。该控制系统是基于定量反馈理论进行综合的,以通过频域中的顺序MIMO环路整形来保持鲁棒的稳定性和性能。涡轮增压柴油机的实验结果包括在内,以证明所提出的控制设计的有效性。

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