Previously,we had identified the various dynamic mechanisms of a wide range air to fuel ratio sensor operated in the engine exhaust by using the transfer function approach.In this study,we utilized these results to mo...Previously,we had identified the various dynamic mechanisms of a wide range air to fuel ratio sensor operated in the engine exhaust by using the transfer function approach.In this study,we utilized these results to model the real time sensor response to an engine exhaust excursion.In the fitting,we identified a new dynamic mechanism,which was not detected in the previous transfer function study.This new dynamic occurred at the stoichiometric point when the engine changed from rich to lean.This new mechanism involved the depletion of the adsorbed fuel species on the electrode surface by an oxidation process. The dynamics of this effect depends on the ratio of the diffusion flux of the sensor-coating layer to the total adsorbed gas species on the electrode surface.The smaller the ratio is,the slower the dynamic mechanism will be.展开更多
A turbocharged diesel engine model was built with the GT-Power software,and experimentally verified.Then two different control variables for the control of the variable geometry turbocharger(VGT)were described,and t...A turbocharged diesel engine model was built with the GT-Power software,and experimentally verified.Then two different control variables for the control of the variable geometry turbocharger(VGT)were described,and their distinct effects on engine performance,i.e.NOxand soot emissions and fuel consumption,were simulated and compared on the basis of this model.The results showed that NOxemissions decreased obviously with the increase of exhaust gas recirculation(EGR)rate at constant boost pressure condition,but soot emissions and fuel consumption considerably increased.It was a good way to reduce NOxemissions without increasing fuel consumption and soot emissions when VGT was controlled to maintain the excess oxygen ratio unchanged as EGR rate increases.展开更多
宽域废气氧(universal exhaust gas oxygen,UEGO)传感器是发动机闭环空燃比控制系统中最重要的传感器之一,其结构特殊,必须由控制器控制其温度和泵电压才能正常工作。针对温控对象的非线性特性,研究了分段加热控制算法。针对泵电压控制...宽域废气氧(universal exhaust gas oxygen,UEGO)传感器是发动机闭环空燃比控制系统中最重要的传感器之一,其结构特殊,必须由控制器控制其温度和泵电压才能正常工作。针对温控对象的非线性特性,研究了分段加热控制算法。针对泵电压控制模块被控对象的不确定性,研究了鲁棒PID控制算法。基于dSPACE实时仿真系统实现UEGO传感器控制器,并在化油器发动机台架上进行实验。实验结果表明,控制器具有良好的鲁棒性和运行性能。λ值稳态时,控制器精度良好;λ值变化时,控制器能够快速响应。展开更多
文摘Previously,we had identified the various dynamic mechanisms of a wide range air to fuel ratio sensor operated in the engine exhaust by using the transfer function approach.In this study,we utilized these results to model the real time sensor response to an engine exhaust excursion.In the fitting,we identified a new dynamic mechanism,which was not detected in the previous transfer function study.This new dynamic occurred at the stoichiometric point when the engine changed from rich to lean.This new mechanism involved the depletion of the adsorbed fuel species on the electrode surface by an oxidation process. The dynamics of this effect depends on the ratio of the diffusion flux of the sensor-coating layer to the total adsorbed gas species on the electrode surface.The smaller the ratio is,the slower the dynamic mechanism will be.
基金Supported by Diesel Engine Development Program of MIIT(DEDP-1004)Natural Science Foundation of BIT(3030012211428)
文摘A turbocharged diesel engine model was built with the GT-Power software,and experimentally verified.Then two different control variables for the control of the variable geometry turbocharger(VGT)were described,and their distinct effects on engine performance,i.e.NOxand soot emissions and fuel consumption,were simulated and compared on the basis of this model.The results showed that NOxemissions decreased obviously with the increase of exhaust gas recirculation(EGR)rate at constant boost pressure condition,but soot emissions and fuel consumption considerably increased.It was a good way to reduce NOxemissions without increasing fuel consumption and soot emissions when VGT was controlled to maintain the excess oxygen ratio unchanged as EGR rate increases.
文摘宽域废气氧(universal exhaust gas oxygen,UEGO)传感器是发动机闭环空燃比控制系统中最重要的传感器之一,其结构特殊,必须由控制器控制其温度和泵电压才能正常工作。针对温控对象的非线性特性,研究了分段加热控制算法。针对泵电压控制模块被控对象的不确定性,研究了鲁棒PID控制算法。基于dSPACE实时仿真系统实现UEGO传感器控制器,并在化油器发动机台架上进行实验。实验结果表明,控制器具有良好的鲁棒性和运行性能。λ值稳态时,控制器精度良好;λ值变化时,控制器能够快速响应。