...
首页> 外文期刊>International journal of engine research >Development of a Kalman filter estimator for simulation and control of particulate matter distribution of a diesel catalyzed particulate filter
【24h】

Development of a Kalman filter estimator for simulation and control of particulate matter distribution of a diesel catalyzed particulate filter

机译:用于仿真和控制柴油催化颗粒过滤器颗粒物质分布的仿真和控制的卡尔曼滤波器估计

获取原文
获取原文并翻译 | 示例
           

摘要

The knowledge of the temperature and particulate matter mass distribution is essential for monitoring the performance and durability of a catalyzed particulate filter. A catalyzed particulate filter model was developed, and it showed capability to accurately predict temperature and particulate matter mass distribution and pressure drop across the catalyzed particulate filter. However, the high-fidelity model is computationally demanding. Therefore, a reduced order multi-zone particulate filter model was developed to reduce computational complexity with an acceptable level of accuracy. In order to develop a reduced order model, a parametric study was carried out to determine the number of zones necessary for aftertreatment control applications. The catalyzed particulate filter model was further reduced by carrying out a sensitivity study of the selected model assumptions. The reduced order multi-zone particulate filter model with 5 x 5 zones was selected to develop a catalyzed particulate filter state estimator considering its computational time and accuracy. Next, a Kalman filter-based catalyzed particulate filter estimator was developed to estimate unknown states of the catalyzed particulate filter such as temperature and particulate matter mass distribution and pressure drop (Delta P) using the sensor inputs to the engine electronic control unit and the reduced order multi-zone particulate filter model. A diesel oxidation catalyst estimator was also integrated with the catalyzed particulate filter estimator in order to provide estimates of diesel oxidation catalyst outlet concentrations of NO2 and hydrocarbons and inlet temperature for the catalyzed particulate filter estimator. The combined diesel oxidation catalyst-catalyzed particulate filter estimator was validated for an active regeneration experiment. The validation results for catalyzed particulate filter temperature distribution showed that the root mean square temperature error by using the diesel oxidation catalyst-catalyzed particulate filter estimator is within 3.2 degrees C compared to the experimental data. Similarly, the Delta P estimator closely simulated the measured total Delta P and the estimated cake pressure drop error is within 0.2 kPa compared to the high-fidelity catalyzed particulate filter model.
机译:温度和颗粒物质分布的知识对于监测催化颗粒过滤器的性能和耐久性至关重要。开发了催化的颗粒过滤器模型,并显示出精确地预测催化颗粒过滤器的温度和颗粒物质分布和压降的能力。然而,高保真模型是计算要求的。因此,开发了一种减少的多区微粒滤波器模型以通过可接受的准确度降低计算复杂性。为了开发阶数模型,进行了参数研究以确定后处理控制应用所需的区域数。通过进行所选择的模型假设的灵敏度研究,进一步降低了催化的颗粒过滤器模型。选择具有5×5区的减少的多区微粒滤波器模型,以考虑其计算时间和准确性的催化颗粒过滤器状态估计器。接下来,开发了一种基于卡尔曼滤光器的催化颗粒过滤器估计,以估计催化的颗粒过滤器的未知状态,例如温度和颗粒物质分布和使用传感器输入到发动机电子控制单元的压降(Delta P)和减少订购多区微粒过滤器模型。柴油氧化催化剂估计器也与催化的颗粒过滤器估算器一体化,以提供催化颗粒过滤器估计器的柴油氧化催化剂出口浓度的柴油氧化催化剂出口浓度和入口温度。合并的柴油氧化催化剂催化的颗粒过滤器估计器用于有源再生实验。催化颗粒滤波温度分布的验证结果表明,与实验数据相比,通过使用柴油氧化催化剂催化颗粒滤光器估计器的根均方温度误差在3.2摄氏度范围内。类似地,与高保真催化的颗粒过滤器模型相比,Delta P估计器紧密地模拟测量的总ΔP,估计的滤饼压降误差在0.2kPa内。

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