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Adaptive PI control of NOx̳ emissions in a Urea Selective Catalytic Reduction System using system identification models

机译:利用系统辨识模型对尿素选择性催化还原系统中NOx的排放进行自适应pI控制

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摘要

The Urea SCR System has shown great potential for implementation on diesel vehicles wanting to meet the upcoming emission regulations by the EPA. The objective of this thesis is to develop an adaptive controller that is capable of uniformly maintaining a high efficiency and a low ammonia slip in the presence of various uncertainties in the underlying mechanisms as well as the environment that significantly affect the SCR dynamics. Towards this end, the dynamics of the Urea SCR System was modeled using input-output data as a first order transfer function model.Using Stored NH3 as the output, and Excess NH3,in as input, a systems identification approach was adopted to estimate the values of k and T, the parameters for the transfer function. A family of -these parameter values was determined as the operating conditions of NH3,in and NOx,in were varied. Using a full chemistry model developed in the literature, the model was tested and verified to ensure that an acceptable level of accuracy was being achieved. A closed-loop PI controller was first designed and tested using the Stored NH3 as the system output. The closed-loop performance of the resulting system was evaluated using the full chemistry model, and was shown to result in an efficiency of 95% or higher, with a maximum NH3 slip of less than 20 ppm. An adaptive PI controller was then designed and tested, and was shown to lead to comparable performance even as the operating conditions varied. Since Stored NH3 is not measurable in an actual physical system, the next step was to use the combined state of NH3 Slip and NOx Slip as a system output.
机译:尿素SCR系统在希望满足EPA即将颁布的排放法规的柴油车辆上显示出巨大的实施潜力。本文的目的是开发一种自适应控制器,该控制器能够在潜在影响SCR动态的潜在机理和环境中存在各种不确定性的情况下,均匀地保持高效率和低氨泄漏。为此,使用输入-输出数据作为一阶传递函数模型对尿素SCR系统的动力学进行了建模,使用存储的NH3作为输出,过量的NH3作为输入,采用系统识别方法来估算k和T的值,传递函数的参数。随着NH3,in和NOx,in的运行条件的变化,确定了这些参数值的族。使用文献中开发的完整化学模型,对模型进行了测试和验证,以确保达到可接受的准确性水平。首先使用存储的NH3作为系统输出来设计和测试闭环PI控制器。使用完整的化学模型评估了所得系统的闭环性能,结果表明效率为95%或更高,最大NH3漏失小于20 ppm。然后,对自适应PI控制器进行了设计和测试,结果表明,即使操作条件发生变化,该PI控制器也具有可比的性能。由于在实际的物理系统中无法测量存储的NH3,因此下一步是将NH3泄漏和NOx泄漏的组合状态用作系统输出。

著录项

  • 作者

    Ong Chun Yang;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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