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首页> 外文期刊>IEEE Transactions on Control Systems Technology >An Optimized Real-Time Energy Management Strategy for the Power-Split Hybrid Electric Vehicles
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An Optimized Real-Time Energy Management Strategy for the Power-Split Hybrid Electric Vehicles

机译:动力分配混合动力汽车的优化实时能源管理策略

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This paper proposes a new real-time energy management strategy (R-EMS) to improve the fuel economy performance of the power-split hybrid electric vehicles (HEVs). Being different from most conventional optimization-based EMS, the R-EMS does not need priori information of the driving cycle and is used to the online control of HEV. The forward dynamic model of power-split powertrain is built based on the Prius MY10. At each instant, the proposed R-EMS tries to minimize the equivalent consumed power of the HEV, which is the weighted summation of gasoline power and battery output power. The equivalence factor of battery output power has a clear physical meaning that is the efficiency of gasoline energy transferred to battery energy. Another two coefficients are introduced to control the state of charge (SOC) of battery. By considering the engine torque and engine speed as two independent or dependent design variables, respectively, the 2-D R-EMS and 1-D R-EMS are formed. Several typical driving cycles are used to simulate the performance of the R-EMS, and the results show that the proposed R-EMS not only maintains the battery SOC but also saves the fuel consumption compared with the rule-based EMS.
机译:本文提出了一种新的实时能源管理策略(R-EMS),以改善动力分配混合动力汽车(HEV)的燃油经济性。与大多数传统的基于优化的EMS不同,R-EMS不需要行驶周期的先验信息,而是用于HEV的在线控制。基于Prius MY10建立了动力分配动力总成的前向动态模型。在每个时刻,建议的R-EMS都会尝试使HEV的等效消耗功率最小化,这是汽油功率和电池输出功率的加权总和。电池输出功率的等效因数具有明确的物理意义,即将汽油能量转换为电池能量的效率。引入另外两个系数来控制电池的充电状态(SOC)。通过将发动机扭矩和发动机转速分别视为两个独立的或从属的设计变量,就形成了2-D R-EMS和1-D R-EMS。通过几个典型的驾驶循环来模拟R-EMS的性能,结果表明,与基于规则的EMS相比,所提出的R-EMS不仅保持了电池SOC,而且节省了燃油消耗。

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