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A Simulation Based Analysis of 12V and 48V Microhybrid Systems Across Vehicle Segments and Drive Cycles

机译:基于模拟的基于跨越车辆段和驱动循环的12V和48V微内含系统的分析

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The majority of studies in automotive electrification technology focus on the performance of high voltage HEV and EV powertrains. With the introduction of microhybrid systems as a near term technology trend, this work focuses on an analysis of low voltage (<60V) systems across multiple vehicle segments and region-specific regulatory drive cycles. Vehicle simulation results are presented for 12V and 48V vehicle systems equipped with start-stop and regenerative braking, features commonly associated with microhybrid vehicles. Simulation results show that fuel economy benefits from start-stop vary significantly between drive cycles. In contrast, total energy recuperation is similar across all vehicle classes for 12V microhybrid systems. For 48V systems, total recuperated energy increases with vehicle mass while the percent fuel economy benefit is highest for lighter vehicles. The results suggest that a single 12V electrification system may be implemented for a range of segments and that technology adaptation trends will be influenced by region specific regulatory drive cycles.
机译:汽车电气化技术的大部分研究侧重于高压HEV和EV电力的性能。随着MicroHybrid系统作为近期技术趋势的推出,这项工作侧重于跨多个车辆段和区域特定的调节循环的低压(<60V)系统的分析。车辆仿真结果呈现出配备起动和再生制动的12V和48V车辆系统,其特征通常与微杂车相关。仿真结果表明,在驱动循环之间,燃油经济性来自起动停止的效益显着变化。相比之下,在所有车辆类别中,总能量恢复相似,用于12V微内脏系统。对于48V系统,总恢复的能量随着车辆的增加而增加,而燃油经济性百分比较轻的车辆最高。结果表明,单个12V电气化系统可以实现一系列段,并且技术适应趋势将受到特定的调节驱动循环的影响。

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