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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Fuel economy and NO^sub x^ emission potential investigation and trade-off of a hybrid electric vehicle based on dynamic programming
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Fuel economy and NO^sub x^ emission potential investigation and trade-off of a hybrid electric vehicle based on dynamic programming

机译:基于动态规划的混合动力汽车燃油经济性和NO ^ sub x ^排放潜力的研究与权衡

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摘要

Hybrid electric vehicles (HEVs) combined with more than one power source offer additional flexibility to improve the fuel economy and to reduce pollutant emissions. The dynamic-programming-based supervisory controller (DPSC) presented here investigates the fuel economy improvement and emissions reduction potential and demonstrates the trade-off between fuel economy and the emission of nitrogen oxides (NO^sub x^) for a state-of-charge-sustaining parallel HEV. A weighted cost function consisting of fuel economy and emissions is proposed in this paper. Any possible engine-motor power pairs meeting with the power requirement is considered to minimize the weighted cost function over the given driving cycles through this dynamic program algorithm. The fuel-economy-only case, the NO^sub x^-only case, and the fuel-NO^sub x^ case have been achieved by adjusting specific weighting factors, which demonstrates the flexibility and advantages of the DPSC. Compared with operating the engine in the NO^sub x^-only case, there is 17.4 per cent potential improvement in the fuel-economy-only case. The fuel-NO^sub x^ case yields a 15.2 per cent reduction in NO^sub x^ emission only at the cost of 5.5 per cent increase in fuel consumption compared with the fuel-economy-only case. [PUBLICATION ABSTRACT]
机译:混合动力电动汽车(HEV)结合了多个电源,为提高燃油经济性和减少污染物排放提供了更大的灵活性。本文介绍的基于动态程序的监督控制器(DPSC)研究了燃油经济性的改善和减排潜力,并证明了燃油经济性与氮氧化物(NO ^ sub x ^)排放之间的权衡。维持电荷的并联混合动力车。本文提出了一种由燃油经济性和排放构成的加权成本函数。通过该动态程序算法,可以考虑满足功率要求的任何可能的发动机-电动机功率对,以在给定的驾驶周期内最小化加权成本函数。通过调整特定的权重因子已经实现了仅燃料经济情况,仅NO x子情况和燃料NO x情况,这证明了DPSC的灵活性和优点。与仅使用NOxsub x ^的情况下运行发动机相比,仅使用燃油经济性的情况下可提高17.4%的潜力。与仅使用燃料经济的情况相比,仅使用NO-sub x燃料的情况就减少了15.2%的NOxsub x排放量,而燃料消耗却增加了5.5%。 [出版物摘要]

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