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Design of Real-Time Control Based on DP and ECMS for PHEVs

机译:基于DP和ECMS的PHEVS实时控制设计

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A real-time control is proposed for plug-in-hybrid electric vehicles (PHEVs) based on dynamic programming (DP) and equivalent fuel consumption minimization strategy (ECMS) in this study. Firstly, the resulting controls of mode selection and series mode are stored in tables through offline simulation of DP, and the parallel HEV mode uses ECMS-based real-time algorithm to reduce the application of maps and avoid manual adjustment of parameters. Secondly, the feedback energy management system (FMES) is built based on feedback from SoC, which takes into account the charge and discharge reaction (CDR) of the battery, and in order to make full use of the energy stored in the battery, the reference SoC is introduced. Finally, a comparative simulation on the proposed real-time controller is conducted against DP, the results show that the controller has a good performance, and the fuel consumption value of the real-time controller is close to the value using DP. The engine operating conditions are concentrated in the low fuel consumption area of the engine, and when the driving distance is known, the SoC can follow the reference SoC well to make full use of the energy stored in the battery.
机译:基于动态编程(DP)和等效燃料消耗最小化策略(ECMS)的插入式混合动力电动车(PHEV)提出了一个实时控制。首先,Mode选择和串联模式的所得到的控制通过DP的离线模拟存储在表中,并行HEV模式使用基于ECM的实时算法来减少地图的应用,避免手动调整参数。其次,反馈能量管理系统(FMES)是基于SOC的反馈来构建的,这考虑了电池的充电和放电反应(CDR),并且为了充分利用存储在电池中的能量,引入了SOC。最后,对所提出的实时控制器的比较仿真进行了针对DP进行的,结果表明控制器具有良好的性能,并且实时控制器的燃料消耗值接近使用DP的值。发动机操作条件集中在发动机的低燃料消耗区域中,并且当已知驱动距离时,SOC可以遵循参考SOC,以充分利用存储在电池中的能量。

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