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Model based calibration for improving fuel economy of a turbocharged diesel engine

机译:基于模型的校准,可提高涡轮增压柴油机的燃油经济性

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摘要

Fuel economy is the key performance for the vehicle besides emission, which has been compulsory controlled by the legislation. For the electronic controlled Diesel engines, the mentioned properties could be satisfied not only by engine design but also by engine performance tuning. Fuel economy may be influenced by many coupled factors, such as injection timing, speed, load and under the limitation of cylinder peak pressure and exhaust temperature. To achieve a high efficient calibration, a model based calibration was performed on a four cylinder electronic unit pump Diesel engine with exhaust gas recirculation. The objective of the study is to solve the complexity of the interactions among the engine running parameters and the best fuel economy performance in order to meet under the restriction of NOx emission performance. The study was carried out in four stages. First, the experiment design has been proposed to identify designed experiment operating points and weighting factors. Second, two-stage statistical engine responses and boundary models have been established. Third, the global optimization and European steady-state cycle operating point optimization have been carried out. Finally, the bench test has been conducted on the Diesel engine. The global operating points results show that the fuel consumption rate has decreased at most test operating points by model based calibration. The fuel consumption rate has decreased by 3.5%, and 13 mode cycle test results indicate that the proposed model based calibration method is effective and can improve the fuel efficiency by 2.72% compared with the traditional calibration.
机译:燃油经济性是除排放外车辆的关键性能,而排放已受到法规的强制控制。对于电控柴油机,不仅可以通过发动机设计而且可以通过发动机性能调整来满足上述特性。燃油经济性可能受许多耦合因素的影响,例如喷射正时,速度,负载以及在气缸峰值压力和排气温度的限制下。为了实现高效校准,在具有排气再循环的四缸电子单元泵柴油机上执行了基于模型的校准。该研究的目的是解决发动机运行参数和最佳燃油经济性之间相互作用的复杂性,以便在NOx排放性能的限制下满足要求。该研究分四个阶段进行。首先,提出了实验设计以识别设计的实验工作点和加权因子。第二,建立了两阶段统计引擎响应和边界模型。第三,已经进行了全局优化和欧洲稳态循环工作点优化。最后,在柴油机上进行了台架试验。总体工作点结果表明,通过基于模型的校准,在大多数测试工作点上,燃油消耗率都降低了。燃油消耗率降低了3.5%,13个模式循环测试结果表明,所提出的基于模型的校准方法是有效的,与传统校准相比,可以将燃油效率提高2.72%。

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