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Development of Diesel Engine System With DPF for the European Market

机译:柴油发动机系统与DPF为欧洲市场的开发

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Nissan Motor has put on the European SUV market a 2.2-L, direct-injection diesel engine with a diesel particulate filter (DPF) system that complies with the EURO IV emission regulations. This paper describes the DPF system, cooperative control of a variable geometry turbo (VGT) and exhaust gas recirculation (EGR), and a high-accuracy lambda control adopted for this engine. In order to achieve a compact DPF, the high-accuracy lambda control was developed to reduce variation in engine-out particulate matter (PM) emissions. Moreover, the accuracy of the technique for predicting the quantity of PM accumulation was improved for reliable detection of the DPF regeneration. Prediction error for PM accumulation increases during transient operation. Control logic was adopted to correct the PM prediction according to lambda fluctuation detected by an observer for lambda at cylinder under transient operating conditions. The observer is corrected lambda sensor output. Corrected coefficient is learned and stored in ECU. Thus, improved the accuracy of lambda control.
机译:日产马达已经举办了欧洲SUV市场的2.2-L,带有柴油机微粒过滤器(DPF)系统的直喷式柴油发动机,符合欧洲IV排放法规。本文介绍了DPF系统,可变几何涡轮增压(VGT)和废气再循环(EGR)的协作控制,以及该发动机采用的高精度Lambda控制。为了实现紧凑的DPF,开发了高精度的Lambda控制,以减少发动机颗粒物质(PM)排放的变化。此外,用于预测PM累积量的技术的准确性得到改善,以便可靠地检测DPF再生。 PM累积的预测误差在瞬态操作期间增加。采用控制逻辑来校正根据在瞬态操作条件下的λ在滚筒上的λ检测器检测到的λ波动的PM预测。观察者是纠正Lambda传感器输出。学习并存储在ECU中的校正系数。因此,提高了Lambda控制的准确性。

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