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Analysis of Energy-Efficient Management of a Light-Duty Parallel-Hybrid Diesel Powertrain with a Belt Alternator Starter

机译:带交流发电机启动器轻型平行杂交柴油动力总成的节能管理分析

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The paper presents the main results of a study on the simulation of energy efficient management of on-board electric and thermal systems for a medium-size passenger vehicle featuring a parallel-hybrid diesel powertrain with a high-voltage belt alternator starter. A set of advanced technologies has been considered on the basis of very aggressive fuel economy targets: base-engine downsizing and friction reduction, combustion optimization, active thermal management, enhanced aftertreatment and down-speeding. Mild-hybridization has also been added with the goal of supporting the downsized/down-speeded engine performance, performing energy recuperation during coasting phases and enabling smooth stop/start and acceleration. The simulation has implemented a dynamic response to the required velocity and manual gear shift profiles in order to reproduce real-driver behavior and has actuated an automatic power split between the Internal Combustion Engine (ICE) and the Electric Machine (EM). Typical parallel hybrid technology functions, such as Stop&Start, regenerative braking and power assistance from the EM have all been implemented in the GT-Drive model. After model calibration and validation versus the available experimental data, the energy management strategies of such a hybrid configuration were investigated. The results obtained for the New European Driving Cycle (NEDC) and a Real Life Driving Cycle (RLDC) have been discussed, in terms of fuel economy and performance.
机译:本文介绍了在车载电和热系统的能量效率的管理的模拟对于中等大小客车设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一个研究的主要结果。一套先进的技术,一直被认为是非常积极的燃油经济性指标的基础上:基发动机小型化,减少摩擦,燃烧优化,主动热管理,提高后处理和降速。还增加了轻度 - 杂交的目的是支持缩小/下调的发动机性能,在滑行阶段进行能量恢复,并实现平滑停止/开始和加速度。该模拟已经实现了对所需速度和手动换档轮廓的动态响应,以便再现实际驱动器行为,并且已经在内燃机(ICE)和电机(EM)之间致动自动功率。典型的并行混合技术功能,例如来自EM的停止和启动,再生制动和功率辅助,都在GT驱动模型中实现。在模型校准和验证与可用的实验数据相反,调查了这种混合配置的能量管理策略。在燃料经济性和性能方面,已经讨论了新的欧洲驾驶周期(NEDC)和现实生活驾驶周期(RLDC)获得的结果。

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