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Fuel-assisted in-cylinder oxygen fraction transient trajectory shaping control for diesel engine combustion mode switching

机译:柴油机燃烧模式切换的燃油辅助缸内氧分数瞬变轨迹整形控制

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This paper presents a method for shaping the transient trajectory of in-cylinder oxygen fraction at intake valve closing (IVC) when combustion mode is switched from one to another in Diesel engines. To achieve this purpose, based on a non-equilibrium transient trajectory shaping (NETTS) control method, the fuel injection amount was adjusted within a given range (accommodated by adjusting fuel injection timing accordingly). Through air-path and fuel-path cooperative control, the transient trajectory of in-cylinder oxygen fraction can be bounded by a series of shaped-boundaries during tracking error converging. The dwell time between two consecutive combustion mode switching events can be effectively reduced. To evaluate the control algorithm, co-simulations were conducted using a GT-Power (a high-fidelity industry standard 1-D computational engine model software package) engine model and Matlab/SIMULINK.
机译:本文提出了一种在柴油机中将燃烧模式从一种切换到另一种时,在进气门关闭(IVC)时确定缸内氧气分数瞬态轨迹的方法。为了实现该目的,基于非平衡瞬变轨迹整形(NETTS)控制方法,将燃料喷射量调节在给定范围内(通过相应地调节燃料喷射正时来调节)。通过空气路径和燃料路径的协同控制,在跟踪误差收敛期间,缸内氧分数的瞬态轨迹可以受到一系列形状边界的限制。可以有效地减少两个连续燃烧模式切换事件之间的停留时间。为了评估控制算法,使用GT-Power(高保真行业标准的一维计算引擎模型软件包)引擎模型和Matlab / SIMULINK进行了联合仿真。

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