首页> 外文会议>SAE World Congress and Exhibition >Experimental Demonstration of a Model-Based Control Design and Calibration Method for Cost Optimal Euro-VI Engine-Aftertreatment Operation
【24h】

Experimental Demonstration of a Model-Based Control Design and Calibration Method for Cost Optimal Euro-VI Engine-Aftertreatment Operation

机译:基于模型的控制设计和校准方法的实验证明,可靠的欧式欧VI发动机后处理运行

获取原文

摘要

This paper presents a model-based control and calibration design method for online cost-based optimization of engine-aftertreatment operation under all operating conditions. The so-called Integrated Emission Management (IEM) strategy online minimizes the fuel and AbBlue consumption. Based on the actual state of engine and aftertreatment systems, optimal air management settings are determined for EGR-SCR balancing. Following a model-based approach, the strategy allows for a systematic control design and calibration procedure for engine and aftertreatment systems. The potential of this time efficient method is demonstrated by experiments for a heavy-duty Euro-VI engine. The Integrated Emission Management strategy is developed and calibrated offline over a cold and hot World Harmonized Transient Cycle (WHTC) for the set emission targets. The total IEM development and calibration process takes approximately 20 weeks from model identification to the acceptance tests. Moreover, by only changing the software settings, the existing hardware performance increases: the WHTC results show a 1.1% operational cost reduction and corresponding 1.4% fuel consumption reduction (and by that CO_2) compared to the baseline Euro-VI strategy. Further potential benefits include reduced heat rejection in the EGR system and reduced DPF regeneration frequency. The presented approach offers also a generic framework for future extension with Waste Heat Recovery and hybrid electric drivetrain functions: Integrated Emission and Energy Management.
机译:本文提出了一种基于模型的控制和校准设计方法,用于在所有操作条件下的在线成本优化的发动机后处理操作。所谓的集成排放管理(IEM)策略在线最大限度地减少了燃料和缩写消耗。基于发动机和后处理系统的实际状态,确定EGR-SCR平衡的最佳空气管理设置。在基于模型的方法之后,该策略允许发动机和后处理系统的系统控制设计和校准程序。通过重型欧洲VI发动机的实验证明了这种时间有效方法的潜力。综合排放管理策略是在寒冷和热门世界统一瞬态循环(WHTC)的离线开发和校准,用于设定排放目标。 IEM的总开发和校准过程从模型识别到验收测试需要大约20周。此外,通过仅改变软件设置,现有的硬件性能增加:与基线Euro-VI战略相比,WHTC结果显示了1.1%的运营成本降低和相应的1.4%的燃料消耗(以及该CO_2)。进一步的潜在益处包括减少EGR系统中的热排斥并降低了DPF再生频率。本方法还提供了具有废热回收和混合动力动力传动功能的未来延伸的通用框架:集成发射和能源管理。

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