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Design, analysis and modeling of a novel hybrid powertrain system based on hybridized automated manual transmission

机译:基于混合自动变速箱的新型混合动力总成系统的设计,分析和建模

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摘要

Hybrid electric vehicles are widely accepted as a promising short to mid-term technical solution due to noticeably improved efficiency and lower emissions at competitive costs. In recent years, various hybrid powertrain systems were proposed and implemented based on different types of conventional transmission. Power-split system, including Toyota Hybrid System and Ford Hybrid System, are well-known examples. However, their relatively low torque capacity, and the drive of alternative and more advanced designs encouraged other innovative hybrid system designs. In this work, a new type of hybrid powertrain system based hybridized automated manual transmission (HAMT) is proposed. By using the concept of torque gap filler (TGF), this new hybrid powertrain type has the potential to overcome issue of torque gap during gearshift. The HAMT design (patent pending) is described in details, from gear layout and design of gear ratios (EV mode and HEV mode) to torque paths at different gears. As an analytical tool, mutli-body model of vehicle equipped with this HAMT was built to analyze powertrain dynamics at various steady and transient modes. A gearshift was decomposed and analyzed based basic modes. Furthermore, a Simulink-SimDriveline hybrid vehicle model was built for the new transmission, driveline and vehicle modular. Control strategy has also been built to harmonically coordinate different powertrain components to realize TGF function. A vehicle launch simulation test has been completed under 30% of accelerator pedal position to reveal details during gearshift. Simulation results showed that this HAMT can eliminate most torque gap that has been persistent issue of traditional AMT, improving both drivabil-ity and performance. This work demonstrated a new type of transmission that features high torque capacity, high efficiency and improved drivability.
机译:混合动力电动汽车由于其显着提高的效率和较低的排放量(具有竞争力的成本)而被广泛接受为有前途的中短期技术解决方案。近年来,基于不同类型的常规变速器提出并实施了各种混合动力系统。包括丰田混合动力系统和福特混合动力系统在内的动力分配系统就是众所周知的例子。然而,它们相对较低的扭矩容量以及替代性和更高级设计的驱动鼓励了其他创新的混合动力系统设计。在这项工作中,提出了一种新型的基于混合动力总成系统的混合自动变速箱(HAMT)。通过使用扭矩间隙填充器(TGF)的概念,这种新型混合动力总成具有克服变速过程中扭矩间隙问题的潜力。从齿轮布局和齿轮比设计(EV模式和HEV模式)到不同齿轮的扭矩路径,详细描述了HAMT设计(正在申请专利)。作为分析工具,建立了配备此HAMT的车辆的多体模型,以分析各种稳态和瞬态模式下的动力总成动力学。基于基本模式分解并分析了换档。此外,Simulink-SimDriveline混合动力汽车模型针对新的变速箱,传动系统和车辆模块而构建。还建立了控制策略以协调不同的动力总成组件,以实现TGF功能。在加速器踏板位置的30%下完成了车辆发射模拟测试,以揭示换档过程中的细节。仿真结果表明,该HAMT可以消除传统AMT一直存在的大多数扭矩间隙,从而提高了悬垂性和性能。这项工作展示了一种新型的变速器,该变速器具有高扭矩容量,高效率和改进的驾驶性能。

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