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首页> 外文期刊>SAE International Journal of Passenger Cars - Electronic and Electrical Systems >Air Leak Detection for a Turbocharged SI Engine using Robust Estimation of the Turbocharger Dynamics
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Air Leak Detection for a Turbocharged SI Engine using Robust Estimation of the Turbocharger Dynamics

机译:基于涡轮增压器动力学的鲁棒估计的涡轮增压SI发动机漏气检测

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摘要

Proper operation of an internal combustion engine is required by demands of a vehicle driver and governmental legislations. Therefore it is necessary to monitor, within an online technique, the engine and detect any fault which disrupts its normal operation. In this paper, the air-charge path, as a key element in a turbocharged engine, is monitored for an air leakage fault. At first, a robust algorithm to estimate unmeasured turbocharger rotational speed is presented. The sliding mode methodology is used to design the estimator which is shown to be robust to the compressor modeling uncertainties. The estimation error from the sliding mode observer (SMO) is then used to detect abnormal behavior of the turbocharger along with the engine due to a leakage fault in the air-charge path. Experimental results from a modern turbocharged SI engine indicate the designed monitoring technique is able to detect a leakage fault, of 7 mm or higher sizes, in the air-charge path.
机译:车辆驾驶员和政府法规的要求要求内燃机的正确运行。因此,有必要在一种在线技术中监控发动机并检测出任何会破坏其正常运行的故障。在本文中,对作为涡轮增压发动机关键要素的进气路径进行了空气泄漏故障监测。首先,提出了一种鲁棒的算法来估算未测涡轮增压器的转速。滑模方法用于设计估计器,该估计器对压缩机建模不确定性具有鲁棒性。然后,来自滑模观察器(SMO)的估计误差将用于检测由于进气路径中的泄漏故障而导致的涡轮增压器以及发动机的异常行为。现代涡轮增压SI发动机的实验结果表明,设计的监控技术能够检测到进气路径中7 mm或更大尺寸的泄漏故障。

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