首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Assessment of Charge-Air Cooler Health in Diesel Engines Using Nonlinear Time Series Analysis of Intake Manifold Temperature
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Assessment of Charge-Air Cooler Health in Diesel Engines Using Nonlinear Time Series Analysis of Intake Manifold Temperature

机译:进气歧管温度的非线性时间序列分析评估柴油机增压空气冷却器的健康状况

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Degradation in the cooling effectiveness of a charge-air cooler (CAC) in a medium-duty turbocharged diesel engine has significant impact on engine performance. This degradation lowers the boost pressure and raises the intake manifold temperature. As a result, the engine provides lower horsepower and higher hydrocarbon levels than the rated values. The objective of this research is to monitor the health of the charge-air cooler by analyzing the intake manifold temperature signal. Experiments were performed on a Cummins ISB series turbocharged diesel engine, a 6-cylinder inline configuration with a 5.9 l displacement volume. Air flowing over the cooler was blocked by varying amounts, while various engine temperatures and pressures were monitored at different torque-speed conditions. Similarly, data were acquired without the introduction of any fault in the engine. For the construction of the manifold temperature trajectory vector, average mutual information estimates and a global false nearest neighbor analysis were used to find the optimal time parameter and embedding dimensions, respectively. The prediction of the healthy temperature vector was done by local linear regression using torque, speed, and their interaction as exogenous variables. Analysis of residuals generated by comparing the predicted healthy temperature vector and the observed temperature vector was successful in detecting the degradation of the charge-air cooler. This degradation was quantified by using box plots and probability density functions of residuals generated by comparing intake manifold temperature of healthy and faulty charge-air coolers. The general applicability of the model was demonstrated by successfully diagnosing a fault in the exhaust gas recirculation cooler of a different engine.
机译:中型涡轮增压柴油发动机中的增压空气冷却器(CAC)的冷却效率下降会对发动机性能产生重大影响。这种降级会降低增压压力并提高进气歧管温度。结果,发动机提供的马力和碳氢化合物含量均高于额定值。这项研究的目的是通过分析进气歧管温度信号来监测增压空气冷却器的运行状况。实验是在康明斯ISB系列涡轮增压柴油发动机上进行的,该发动机为容积为5.9 l的6缸直列配置。流经冷却器的空气被不同数量的空气阻塞,同时在不同的转矩转速条件下监测各种发动机温度和压力。同样,在采集数据时不会在引擎中引入任何故障。为了构建歧管温度轨迹向量,分别使用平均互信息估计和全局假最近邻分析来找到最佳时间参数和嵌入维数。健康温度矢量的预测是通过使用扭矩,速度及其相互作用作为外生变量的局部线性回归完成的。通过比较预测的健康温度矢量和观察到的温度矢量生成的残差分析成功地检测了增压空气冷却器的退化。通过使用箱形图和通过比较正常和故障增压空气冷却器的进气歧管温度产生的残差概率密度函数,可以对这种退化进行量化。通过成功诊断另一台发动机的排气再循环冷却器中的故障,证明了该模型的一般适用性。

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