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Control system development for a pre-transmission parallel plug-in hybrid electric vehicle powertrain with a mechanical continuously variable transmission.

机译:具有机械无级变速器的预变速箱并联插电式混合动力电动汽车动力总成的控制系统开发。

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摘要

Plug-In hybrid electric automobiles show great promise for shifting the United States transportation sector away from petroleum dependence and towards energy sustainability through renewable electricity and bio fuels. The Trinity study at UC Davis was designed to develop and demonstrate the technology required for widespread adoption of plug in hybrid electric vehicles. This thesis presents the vehicle system architecture and the controls development methodologies implemented in the Trinity system. The Trinity system was implemented into a 2005 Chevrolet Equinox. The powertrain system consists of a pre-transmission parallel hybrid architecture with a large enough battery pack and powerful electric motors to propel the vehicle through normal driving over extended distances. The large battery and electric drive system enables the driver to avoid consuming liquid fuel for daily driving by replacing it with electricity, while allowing the flexibility to have unlimited driving range whenever liquid fuel is available. The performance of the vehicle was measured to have a 29.3 mile all electric range over the UDDS driving cycle and real world charge sustaining fuel economy of 29.1 city and 34.0 highway miles per gallon. The weight of the test vehicle was 5081 pounds with occupants and data acquisition equipment. The conventional Equinox curb weight is 3660 pounds. Despite the weight increase, the modified vehicle shows significantly improved fuel economy in the charge sustaining mode. Additionally, the modified Equinox has an electric driving range of 30 miles. This feature would allow over half of US drivers to avoid using gasoline for daily commuting. In mass production, this type of vehicle has the potential to displace a large percentage of the liquid fuel used for transportation.
机译:插电式混合动力汽车显示出巨大的希望,可以使美国交通运输部门摆脱对石油的依赖,并通过可再生电力和生物燃料实现能源可持续性。加州大学戴维斯分校的Trinity研究旨在开发和证明广泛采用插电式混合动力汽车所需的技术。本文介绍了Trinity系统中实现的车辆系统架构和控件开发方法。 Trinity系统已在2005年的雪佛兰Equinox中实现。动力总成系统由具有足够大的电池组和强大电动马达的预变速箱并联混合动力架构组成,可推动车辆在远距离正常行驶。大型电池和电驱动系统使驾驶员可以通过用电代替日常使用而避免消耗液体燃料,同时只要有液体燃料就可以灵活地无限行驶。经测量,该车辆的性能在UDDS行驶周期内具有29.3英里的所有电力范围,而现实世界中的充电维持的燃油经济性为每加仑29.1城市和高速公路34.0英里。带有乘员和数据采集设备的测试车重量为5081磅。常规的Equinox整备质量为3660磅。尽管重量增加,但是改进的车辆在电荷维持模式下显示出显着改善的燃料经济性。此外,改良的Equinox的电动行驶距离为30英里。此功能将使超过一半的美国驾驶员避免在日常通勤中使用汽油。在批量生产中,这种类型的车辆具有取代大部分用于运输的液体燃料的潜力。

著录项

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Alternative Energy.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2009
  • 页码 68 p.
  • 总页数 68
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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