首页> 外文期刊>International Journal of Automotive Technology >DEVELOPMENT OF A CONTROL STRATEGY BASED ON THE TRANSMISSION EFFICIENCY WITH MECHANICAL LOSS FOR A DUAL MODE POWER SPLIT-TYPE HYBRID ELECTRIC VEHICLE
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DEVELOPMENT OF A CONTROL STRATEGY BASED ON THE TRANSMISSION EFFICIENCY WITH MECHANICAL LOSS FOR A DUAL MODE POWER SPLIT-TYPE HYBRID ELECTRIC VEHICLE

机译:基于传输损耗和机械损耗的双模动力混合动力混合动力汽车控制策略的开发

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摘要

In this study, a control strategy for a dual mode power split-type hybrid electric vehicle (HEV) is developed based on the powertrain efficiency. To evaluate the transmission characteristics of the dual mode power split transmission (PST), a mechanical loss model of the transmission (TM loss) is constructed. The transmission efficiency, including the TM loss, is evaluated for the dual mode PST. Two control strategies for the dual mode PST are proposed. An optimal operation line (OOL) control strategy is developed to maintain a high engine thermal efficiency by controlling the engine operation point on the OOL. A speed ratio (SR) control strategy is proposed to obtain a greater transmission efficiency by shifting the engine operation point when the dual mode PST operates near the mechanical points. Using the TM loss and the proposed control strategies, a vehicle performance simulation is conducted to evaluate the performance of the two control strategies for dual mode PST. The simulation results demonstrate that, for the SR control strategy, the engine efficiency decreases because the engine operates beyond the OOL. However, the transmission efficiency of the dual mode PST increases because the PST operates near the mechanical point where the PST shows the greatest transmission efficiency. Consequently, the fuel economy of the SR control strategy is improved by 3.8% compared with the OOL control strategy.
机译:在这项研究中,基于动力总成效率,开发了一种双模式动力分体式混合动力电动汽车(HEV)的控制策略。为了评估双模式功率分配传输(PST)的传输特性,构建了传输的机械损耗模型(TM loss)。对于双模式PST,将评估包括TM损耗在内的传输效率。提出了双模式PST的两种控制策略。通过控制OOL上的发动机工作点,开发了一种最佳操作线(OOL)控制策略来维持较高的发动机热效率。提出了一种速比(SR)控制策略,通过在双模PST在机械点附近运行时转移发动机运行点来获得更高的传动效率。使用TM损失和提出的控制策略,进行了车辆性能仿真,以评估双模式PST的两种控制策略的性能。仿真结果表明,对于SR控制策略,发动机效率会降低,因为发动机的运行超出了OOL。但是,由于PST在PST显示最大传输效率的机械点附近操作,因此双模式PST的传输效率会提高。因此,与OOL控制策略相比,SR控制策略的燃油经济性提高了3.8%。

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