首页> 外文会议>SAE World Congress >A Preliminary Investigation Into the Mitigation of Plug-In Hybrid Electric Vehicle Tailpipe Emissions Through Supervisory Control Methods
【24h】

A Preliminary Investigation Into the Mitigation of Plug-In Hybrid Electric Vehicle Tailpipe Emissions Through Supervisory Control Methods

机译:监督控制方法对插电式混合电动汽车尾管排放的初步调查

获取原文

摘要

Plug-in hybrid electric vehicle (PHEV) technologies have the potential for considerable petroleum consumption reductions, possibly at the expense of increased tailpipe emissions due to multiple "cold" start events and improper use of the engine for PHEV specific operation. PHEVs operate predominantly as electric vehicles (EVs) with intermittent assist from the engine during high power demands. As a consequence, the engine can be subjected to multiple cold start events. These cold start events may have a significant impact on the tailpipe emissions due to degraded catalyst performance and starting the engine under less than ideal conditions. On current hybrid electric vehicles (HEVs), the first cold start of the engine dictates whether or not the vehicle will pass federal emissions tests. PHEV operation compounds this problem due to infrequent, multiple engine cold starts. This research experimentally verifies a vehicle supervisory control system for a pre-transmission parallel PHEV powertrain architecture. Energy management strategies are evaluated and implemented in a virtual environment for preliminary assessment of petroleum displacement benefits and rudimentary driveability issues. This baseline vehicle supervisory control strategy, developed as a result of this assessment, is implemented and tested on actual hardware in a controlled laboratory environment over a baseline test cycle. Engine cold start events are aggressively addressed in the development of this control system, which leads to enhanced pre-warming and energy-based engine warming algorithms that provide substantial reductions in tailpipe emissions over the baseline supervisory control strategy. The flexibility of the PHEV powertrain allows for decreased emissions during any engine starting event through powertrain "torque shaping" algorithms. The results of the research show that PHEVs do have the potential for substantial reductions in fuel consumption. Tailpipe emissions from a PHEV test platform have been reduced to acceptable levels through the development and refinement of vehicle supervisory control methods only. Impacts on fuel consumption were minimal for the emissions reduction techniques implemented.
机译:插入式混合动力电动车(PHEV)技术具有相当大的石油消耗减少的可能性,可能是由于多种“冷”启动事件和发动机的不当使用,以牺牲尾管排放量增加,以便PHEV特定操作。 PHEVS主要在高功率需求中作为电动车辆(EVS)作为电动车辆(EVS)运行。结果,可以对发动机进行多个冷启动事件。这些冷启动事件可能对尾管排放产生重大影响,由于催化剂性能降低,并在小于理想条件下启动发动机。在当前的混合动力电动车(HEV)上,发动机的第一冷启动决定了车辆是否将通过联邦排放测试。 PHEV操作化合物由于不频繁,多发动机冷启动而进行了此问题。本研究实验验证了用于预传输平行PHEV动力总成架构的车辆监控系统。在虚拟环境中评估和实施能源管理策略,以促进石油排水效益和基本驱动性问题的初步评估。由于本评估的结果,这种基线车辆监控策略是在基线测试周期的受控实验室环境中的实际硬件上实施和测试。发动机冷启动事件在该控制系统的开发中积极解决,这导致增强预热和基于能源的发动机变暖算法,这些算法在基线监督控制策略中提供了尾管排放的大幅减少。 PHEV动力总成的灵活性允许通过动力总成“扭矩整形”算法在任何发动机启动事件期间减少排放。研究结果表明,PHEV确实有可能在燃料消耗中进行大幅减少。 PHEV测试平台的尾气排放量仅通过开发和改进车辆监控方法的开发和改进来减少到可接受的水平。实施的减排技术对燃料消耗的影响最小。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号