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Constrained Optimization of Fuel Efficiency for RCCI Engines

机译:限制RCCI发动机的燃油效率优化

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Fuel efficiency optimization and emission reduction have become essential parts of engine research, due to the growing demand for environmental protection. In this paper, a computationally efficient optimization method has been applied to maximize the fuel efficiency under constraints of maximum pressure rise rate and various pollutant emissions using the combination of multiple regression analysis and particle swarm optimization. This optimization method has been applied to a Reactivity Controlled Compression Ignition (RCCI) engine. First, a data-driven model has been identified, which shows good agreement with experimental data for gIMEP as well as emissions. Using this RCCI model in the proposed optimization method, the optimal operating conditions for highest gross indicated thermal efficiency are determined under various conflicting emission and safety constraints.
机译:由于对环境保护的需求不断增长,燃油效率优化和减排已成为发动机研究的必要条件。在本文中,应用了计算上有效的优化方法,以利用多元回归分析和粒子群优化的组合来最大化最大压力上升率和各种污染物排放的燃料效率。该优化方法已应用于反应性控制压缩点火(RCCI)发动机。首先,已经识别了数据驱动的模型,其与GIMEP的实验数据以及排放显示了良好的一致性。在所提出的优化方法中使用该RCCI模型,在各种冲突的发射和安全约束下确定最高总粗效效率的最佳操作条件。

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