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Different architectures and modes of operation of HEV based on permanent magnet-electric variable transmission with rule-based and fuzzy logic global control strategy

机译:基于基于规则和模糊逻辑全局控制策略的永磁电动变速箱的混合动力汽车的不同架构和操作模式

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In this paper, permanent magnet-dual mechanical ports (PM-DMP) machine is used as an electrical variable transmission (EVT), instead of the Toyota hybrid system (THS) transmission, in hybrid electric vehicle (HEV). In this paper, a new tactic to strategise the power management and torque distribution in the studied HEV system is developed. This strategy is based on the combination of rule-based and fuzzy logic control (RB-FLC). According to this strategy, different architectures with all modes of operation of the series/parallel HEV based on PM-EVT have been achieved. Using the vehicle specifications, engine, battery, and other control parameters of the Prius HEV, the appealing features of PM-EVT unit and the proposed RB-FLC power management strategy are explored in comparison to the SPHEV obtained from ADVISOR 2002. The obtained results give a specific conclusion that the Prius SPHEV can be successfully replaced by the HEV based on the PM-EVT with the proposed control strategy.
机译:在本文中,永磁双机械端口(PM-DMP)机器被用作混合动力电动汽车(HEV)中的电动可变变速器(EVT),而不是丰田混合动力系统(THS)变速器。本文提出了一种新的策略,以策略化研究的混合动力汽车系统中的动力管理和扭矩分配。该策略基于基于规则和模糊逻辑控制(RB-FLC)的组合。根据该策略,已经实现了基于PM-EVT的具有串联/并联HEV的所有操作模式的不同架构。与从ADVISOR 2002获得的SPHEV相比,使用Prius HEV的车辆规格,发动机,电池和其他控制参数,探索了PM-EVT单元的吸引力特征和建议的RB-FLC电源管理策略。给出了一个具体的结论,即基于PM-EVT的混合动力电动汽车可以成功地将Prius SPHEV替换为拟议的控制策略。

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