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Modeling and control of gasoline PPC engine approaching high efficiency with constraints

机译:汽油PPC发动机对高效率的建模与控制

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摘要

Gasoline-fueled Partially Premixed Combustion is an advanced combustion concept approaching high efficiency as well as low emissions. The most challenging task on controlling a gasoline PPC engine is to regulate the maximum pressure rise rate to reduce engine noise and durability problem. A trade-off relationship between pressure rise rate and soot emissions is observed as a function of pilot injection event. In this paper, a control-oriented model is developed to predict in-cylinder pressure and engine outputs through fuel injection events. Thereafter, two controllers structured with PI and MPC are designed and evaluated separately. Simulation results show that, both controllers satisfy the objective of achieving desired engine load and combustion phasing, with the constraints of pressure rise rate and soot emissions simultaneously. MPC controller produces a smoother transient move with less overshoot, comparing with PI controller with a fast response.
机译:汽油燃料部分预混燃烧是一种先进的燃烧概念,接近高效率和低排放。控制汽油PPC发动机的最具挑战性的任务是调节最大压力上升速率,以降低发动机噪声和耐用性问题。观察到压力率和烟灰排放之间的权衡关系作为试点注射事件的函数。在本文中,开发了一种面向控制的模型以通过燃料喷射事件预测缸内压力和发动机输出。此后,单独设计和评估具有PI和MPC的两个控制器。仿真结果表明,两个控制器都满足了实现所需发动机负荷和燃烧相位的目的,同时增加压力上升速率和烟灰排放的约束。 MPC控制器通过较少的过冲,与快速响应的PI控制器相比,产生更平滑的瞬态移动。

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