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Analysis of Various Operating Strategies for a Parallel-Hybrid Diesel Powertrain with a Belt Alternator Starter

机译:用带交流发电机启动器的平行混合柴油动力总成的各种操作策略分析

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The sustainable use of energy and the reduction of pollutant emissions are main concerns of the automotive industry. In this context, Hybrid Electric Vehicles (HEVs) offer significant improvements in the efficiency of the propulsion system and allow advanced strategies to reduce pollutant and noise emissions. The paper presents the results of a simulation study that addresses the minimization of fuel consumption, NO_x emissions and combustion noise of a medium-size passenger car. Such a vehicle has a parallel-hybrid diesel powertrain with a high-voltage belt alternator starter. The simulation reproduces real-driver behavior through a dynamic modeling approach and actuates an automatic power split between the Internal Combustion Engine (ICE) and the Electric Machine (EM). Typical characteristics of parallel hybrid technologies, such as Stop & Start, regenerative braking and electric power assistance, are implemented via an operating strategy that is based on the reduction of total losses. After model calibration and validation against available experimental data, various Hybrid Operating Strategies (HOS) have been examined. These are investigated over the New European Driving Cycle (NEDC) and the Artemis Urban Cycle (AUC) in terms of fuel economy, NO_x emissions and combustion noise. Finally, optimal calibrations are suggested as the best compromise between all the analyzed targets.
机译:该能源的可持续利用和污染物排放的减少是汽车行业的主要关注点。在此背景下,混合动力电动汽车(HEV)提供了在推进系统的效率显著改善,让先进的战略,以减少污染物和噪音排放。本文提出了一种模拟研究的结果地址油耗,排放NO_x的和中型乘用车的燃烧噪声的最小化。这种车辆具有并联混合动力系统的柴油用高电压带交流发电机起动器。仿真通过动态建模方法再现真实驾驶行为和驱动内燃机(ICE)和电机(EM)之间的自动功率分流。并联式混合动力技术,如停止和启动,再生制动和电力援助,的典型特征是通过一个基于的总损失的降低的操作策略来实现。模型校准和验证针对实验数据之后,各种混合操作策略(HOS)已经被检查。这些在燃油经济性,NO_x的排放和燃烧噪音方面研究在新欧洲行驶循环(NEDC)和阿尔忒弥斯城市循环(AUC)。最后,优化校准提示为所有被分析的目标之间的最佳平衡。

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