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Mode Shift Control for a Hybrid Heavy-Duty Vehicle with Power-Split Transmission

机译:带有动力总成变速器的混合动力重型汽车的模式转换控制

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Given that power-split transmission (PST) is considered to be a major powertrain technology for hybrid heavy-duty vehicles (HDVs), the development and application of PST in the HDVs make mode shift control an essential aspect of powertrain system design. This paper presents a shift schedule design and torque control strategy for a hybrid HDV with PST during mode shift, intended to reduce the output torque variation and improve the shift quality (SQ). Firstly, detailed dynamic models of the hybrid HDV are developed to analyze the mode shift characteristics. Then, a gear shift schedule calculation method including a dynamic shift schedule and an economic shift schedule is provided. Based on the dynamic models and the designed shift schedule, a mode shift performance simulator is built using MATLAB/Simulink, and simulations are carried out. Through analysis of the dynamic equations, it is seen that the inertia torques of the motor–generator lead to the occurrence of transition torque. To avoid the unwanted transition torque, we use a mode shift control strategy that coordinates the motor–generator torque to compensate for the transition torque. The simulation and experimental results demonstrate that the output torque variation during mode shift is effectively reduced by the proposed control strategy, thereby improving the SQ.
机译:鉴于动力分配传输(PST)被认为是混合动力重型车辆(HDV)的主要动力总成技术,因此PST在HDV中的开发和应用使得模式转换控制成为动力总成系统设计的重要方面。本文提出了具有模式转换的带有PST的混合动力HDV的换挡计划设计和转矩控制策略,旨在减少输出转矩变化并提高换挡质量(SQ)。首先,开发了混合HDV的详细动态模型以分析模式转换特性。然后,提供了一种包括动态变速表和经济变速表的变速表计算方法。基于动态模型和设计的换档时间表,使用MATLAB / Simulink构建了模式换档性能模拟器,并进行了仿真。通过对动力学方程的分析,可以看出电动发电机的惯性转矩会导致过渡转矩的产生。为了避免不必要的过渡扭矩,我们使用一种模式转换控制策略来协调电动发电机扭矩以补偿过渡扭矩。仿真和实验结果表明,所提出的控制策略有效地减小了模式转换时的输出转矩变化,从而改善了SQ。

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