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Engine Fuel Economy Optimization for Different Hybrid Architectures Using 1-D Simulation Technique

机译:使用1-D仿真技术对不同混合架构的发动机燃油经济性优化

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Hybridization of off road vehicles is in its early phase but it is likely to increase in coming years. In order to improve fuel economy and overall emission of the 3.3 litre tractor model, various kinds of engine hybridization is studied. This paper presents a methodology to predict vehicle fuel consumption and emission using 1-D software by coupling Ricardo Wave and Ricardo Ignite. Initially, An acceptable agreement within 5% deviation between simulation and experimental is established for engine steady state points, both for engine performance and NO_x emission parameters. Engine fuel consumption and emission maps are predicted using Ricardo WAVE model. These maps are used as an input to IGNITE model for predicting cumulative fuel consumption. Same calibrated model is used further for studying idle start stop and fully hybrid P0 type hybrid architecture. The hybrid P0 type involves idle start stop, e-boost and regeneration. Model predicts overall significant reduction in cumulative fuel consumption and NO_x, HC and CO emission.
机译:偏离道路车辆的杂交处于早期阶段,但未来几年可能会增加。为了提高燃油经济性和3.3升拖拉机模型的整体排放,研究了各种发动机杂交。本文介绍了通过耦合Ricardo波和Ricardo Ignite使用1-D软件来预测车辆燃料消耗和发射的方法。最初,为发动机性能和NO_X发射参数建立了用于发动机稳态点的仿真和实验之间的5%之间的可接受协议。使用Ricardo波模型预测发动机燃料消耗和发射图。这些地图用作点燃模型以预测累积燃料消耗的输入。进一步用于研究怠速启动停止和完全混合P0型混合架构的相同校准模型。混合P0类型涉及空闲开始停止,e-boost和再生。模型预测累积燃料消耗和NO_X,HC和CO发射的总体显着降低。

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