A Rule-Based Energy Management Strategy for a New BSG Hybrid Electric Vehicle

Shaohua Liu, Changqing Du, Yan Fuwu, Wang Jun, Li Zheng, Luo Yuan
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引用次数: 23

Abstract

This paper focuses on the analysis of energy management for hybrid electric vehicle of BSG type. A well designed control strategy is a significant factor for obtaining lower fuel consumption, less emission as well as satisfying drivability. To ensure engine operating in the optimal fuel consumption region and coordinate the power split between electrical and mechanical energy sources, an adaptive power splitting algorithm is presented and discussed here on the basis of a new BSG hybrid electric vehicle equipped with both a battery of higher capacity and a motor of higher peak power. Also a smart regenerative braking method is proposed to realize the maximum energy saving purpose. The proposed hybrid electric vehicle (HEV) algorithm simulation results are compared with those of a conventional vehicle with similar configuration as HEV. And the simulation results show that the overall dynamic performance, fuel consumption and emission are all greatly improved.
基于规则的新型BSG混合动力汽车能量管理策略
本文主要对BSG型混合动力汽车的能量管理进行了分析。设计良好的控制策略是获得低油耗、低排放和令人满意的驾驶性能的重要因素。为保证发动机运行在最优油耗区域,协调电机和机械能之间的功率分配,提出了一种自适应功率分配算法,并以一种同时配备高容量电池和高峰值功率电机的新型BSG混合动力汽车为例进行了讨论。并提出了一种智能再生制动方法,以实现最大节能的目的。将所提出的混合动力汽车(HEV)算法的仿真结果与与HEV结构相似的传统汽车的仿真结果进行了比较。仿真结果表明,改进后的汽车整体动力性能、油耗和排放均有较大改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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