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Control of dual-loop EGR engine air-path systems with adjustable intake manifold condition priorities

机译:控制具有可调节进气歧管条件优先级的双环EGR发动机空气路径系统

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Dual-loop EGR (exhaust gas recirculation) systems can provide the authorities of controlling the engine intake manifold gas conditions for steady-state and transient operations of advanced combustion modes. Due to the inherent transport delay of an air-path system, the response of the intake manifold oxygen concentration is usually slower than those of the pressure and temperature under conventional control methods. This paper presents a control methodology for dual-loop EGR engine air-path with adjustable intake manifold gas condition priorities, which means that any of the three intake manifold indices can be set with the highest control priority to obtain fast response during transient operations. The reference governor technique and a feedforward control are combined to achieve such a control objective. An acceptable control input set is obtained and the optimal input is chosen from this set according to the priority order. Simulations are conducted on a GT-Power engine model and the results show that the proposed control methodology is valid.
机译:双环EGR(废气再循环)系统可以提供控制发动机进气歧管气体条件的机构,以获得高级燃烧模式的稳态和瞬态操作。由于空路系统的固有传输延迟,进气歧管氧浓度的响应通常比传统控制方法下的压力和温度较慢。本文介绍了具有可调节进气歧管气体条件优先级的双环EGR发动机空气路径的控制方法,这意味着可以以最高控制优先级设置三种进气歧管指数中的任何一种,以在瞬态操作期间获得快速响应。参考调速技术和前馈控制被组合以实现这种控制目标。获得可接受的控制输入集,并且根据优先级顺序从该集中选择最佳输入。仿真在GT电力发动机模型上进行,结果表明,所提出的控制方法有效。

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