Fuzzy Torque Distribution Control for a Parallel Hybrid Electric Vehicle

Jong-Seob Won, R. Langari
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引用次数: 1

Abstract

A fuzzy torque distribution controller for energy management (and emission control) of a parallel-hybrid electric vehicle is proposed. The proposed controller is implemented in terms of a hierarchical architecture which incorporates the mode of operation of the vehicle as well as empirical knowledge of energy flow in each mode. Moreover, the rule set for each mode of operation of the vehicle is designed in view of an overall energy management strategy that ranges from maximal emphasis on battery charge sustenance to complete reliance on the electrical power source. The proposed control system is evaluated via computational simulations under the FTP75 urban drive cycle. Simulation results reveal that the proposed fuzzy torque distribution strategy is effective over the entire operating range of the vehicle in terms of performance, fuel economy as well as emissions.
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并联混合动力汽车的模糊转矩分配控制
提出了一种用于并联混合动力汽车能量管理(及排放控制)的模糊转矩分配控制器。所提出的控制器采用分层结构实现,该结构结合了车辆的操作模式以及每种模式下能量流的经验知识。此外,根据整体能源管理策略,从最大限度地强调电池充电维持到完全依赖电源,设计了车辆每种运行模式的规则集。在FTP75城市驱动循环下,通过计算仿真对所提出的控制系统进行了评估。仿真结果表明,所提出的模糊转矩分配策略在整个行驶里程内的性能、燃油经济性和排放方面都是有效的。
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