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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Modeling and Dynamical Feedback Control of a Vehicle Diesel Engine Speed and Air-Path
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Modeling and Dynamical Feedback Control of a Vehicle Diesel Engine Speed and Air-Path

机译:车用柴油机转速和风道的建模与动态反馈控制

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This paper presents a modeling and dynamical feedback stabilization control of a diesel engine which is equipped with a variable geometry turbocharger (VGT) and exhaust gas recirculation (EGR) valve. A fourth-order dimensional nonlinear model which takes into account the engine crankshaft speed dynamics and the air-path dynamics is proposed for the considered diesel engine. The difficulties for the control design are that the referred system is nonlinear, nonminimum phase unstable and coupled system. The fuel flow rate W-f which is considered as input for the engine crankshaft subsystem and acts as an external perturbation for the three-order dimensional nonminimum phase air-path subsystem. The global control objectives are to track desired values of engine speed, intake manifold pressure and compressor flow mass rate which can be suitably chosen according to low emission criterions. For the considered objectives, a dynamical feedback stabilization control with a two-loop structure of inner outer loop is proposed. The inner loop considers a control based on a Lyapunov function which realizes the desired engine speed trajectory tracking. The outer loop which is developed from a particular extended nonlinear air-path subsystem with its modified outputs concerns the coordinated EGR and VGT control and ensures both the desired intake manifold pressure and the desired compressor mass flow rate trajectory tracking. Meanwhile, this outer loop dynamical feedback stabilization control provides also the external fuel mass flow rate perturbation rejection. From the corresponding numerical simulation results, the proposed method efficiency is validated.
机译:本文介绍了柴油机的建模和动态反馈稳定控制,该柴油机配备了可变几何涡轮增压器(VGT)和排气再循环(EGR)阀。针对所考虑的柴油机,提出了考虑发动机曲轴转速动力学和风道动力学的四阶非线性模型。控制设计的困难在于所涉及的系统是非线性,非最小相位不稳定和耦合系统。燃料流量W-f被视为发动机曲轴子系统的输入,并充当三维非最小相位空气路径子系统的外部扰动。总体控制目标是跟踪发动机速度,进气歧管压力和压缩机流量质量率的期望值,这些值可以根据低排放标准进行适当选择。针对所考虑的目标,提出了一种具有内外环两环结构的动态反馈稳定控制。内循环考虑基于李雅普诺夫(Lyapunov)功能的控制,该功能可实现所需的发动机转速轨迹跟踪。由特定的扩展的非线性空气路径子系统开发的外部回路及其修改后的输出涉及EGR和VGT的协调控制,并确保所需的进气歧管压力和所需的压缩机质量流率轨迹。同时,该外环动态反馈稳定控制还提供了外部燃料质量流量扰动抑制。从相应的数值模拟结果验证了所提方法的有效性。

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