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首页> 外文期刊>Journal of Energy Resources Technology >Optimization-Based Energy Management Strategy for a 48-V Mild Parallel Hybrid Electric Power System
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Optimization-Based Energy Management Strategy for a 48-V Mild Parallel Hybrid Electric Power System

机译:48 V轻度并联混合电力系统基于优化的能量管理策略

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The application of a 48-V mild hybrid powertrain system is one of the eco-friendly technologies for global CO_2 reduction in the present sector of hybrid electric vehicles (HEVs). It is well known that the energy management strategy is crucial for improving the fuel economy of the HEVs. Therefore, the strengths and the limitations of dynamic programming (DP) global optimization strategy and adaptive equivalent consumption minimization strategy (ECMS) for this kind of powertrain system under new European driving cycle (NEDC) and federal test procedure (FTP75) driving cycles are discussed in this paper. The results of the DP global optimization solution have also been adopted as a reference for evaluating the degree of optimality of real-time controllers. The reference start of charge (SOC) was found to be a very important parameter for the real-time ECMS approach. Thus, an adaptive ECMS approach using the SOC obtained from DP global optimization algorithm as a reference SOC in real-time ECMS control was studied. The study results in this paper may provide some theoretical support for future energy management optimization of a 48-V mild hybrid parallel powertrain system.
机译:48 V轻度混合动力总成系统的应用是混合动力汽车(HEV)当前行业中用于全球减少CO_2的环保技术之一。众所周知,能源管理战略对于提高混合动力汽车的燃油经济性至关重要。因此,讨论了在新的欧洲驾驶循环(NEDC)和联邦测试程序(FTP75)驾驶循环下,这种动力总成系统的动态编程(DP)全局优化策略和自适应等效消耗最小化策略(ECMS)的优缺点。在本文中。 DP全局优化解决方案的结果也已被用作评估实时控制器的最优程度的参考。对于实时ECMS方法,发现基准充电开始(SOC)是非常重要的参数。因此,研究了一种自适应ECMS方法,该方法将DP全局优化算法获得的SOC用作实时ECMS控制中的参考SOC。本文的研究结果可能为将来的48V温和混合动力并联系统动力管理优化提供理论支持。

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