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Observer design of critical states for air path flow regulation in a variable geometry turbocharger exhaust gas recirculation diesel engine

机译:可变几何涡轮增压器废气再循环柴油机中用于调节空气路径流量的临界状态的观察器设计

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Modern automotive diesel engines rely on control strategies that must optimally manage the flows of fresh air and recirculated exhaust gas to achieve the best trade-off between torque demand and engine out emissions. An important aspect of the gas exchange regulation problem is the complex interaction between the variable geometry turbocharger (VGT) and the exhaust gas recirculation (EGR) valve and their associated flows. Control strategies that seek to optimize these flows must either have direct flow measurements or have access to the state variables that provide information on these flows. Furthermore, while the precise control of high-pressure (HP) EGR flow is essential, minimizing its usage is desirable given the engine durability concerns related to the excessive use of HP EGR, such as EGR valve coking and sticking, plugged EGR cooler, cylinder deposits, and valve deposits, to name a few. Exhaust gas recirculation may be optimally used if information on the level of inertness or leanness (oxygen content) of the exhaust gases is available. This paper presents the systematic design of observers for state variables that facilitate the design of such an optimal gas exchange control policy, thereby eliminating the need for direct sensing of the state variables for which the observer designs are proposed.
机译:现代汽车柴油发动机依赖于控制策略,该策略必须最佳地管理新鲜空气和再循环废气的流量,以在扭矩需求和发动机排放物之间取得最佳平衡。气体交换调节问题的一个重要方面是可变几何涡轮增压器(VGT)与废气再循环(EGR)阀及其相关流量之间的复杂相互作用。试图优化这些流量的控制策略必须直接进行流量测量,或者访问提供有关这些流量信息的状态变量。此外,虽然精确控制高压(HP)EGR流量至关重要,但鉴于与HP EGR过度使用有关的发动机耐用性问题(例如EGR气门结焦和卡死,EGR冷却器堵塞,气缸),需要最大程度地减少其使用沉积物和阀门沉积物,仅举几例。如果可以获得有关废气的惰性或稀薄程度(氧气含量)的信息,则可以最佳地使用废气再循环。本文介绍了用于状态变量的观测器的系统设计,该设计有利于设计这种最佳的气体交换控制策略,从而消除了直接感知建议为其设计观测器的状态变量的需求。

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