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A Second-Order Sliding Mode Observer for Fault Detection and Isolation of Turbocharged SI Engines

机译:用于涡轮增压SI发动机故障检测和隔离的二阶滑模观测器

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摘要

This paper proposes a novel method for detection and isolation of wastegate (WG) faults in a turbocharged (TC) gasoline engine. This paper starts with a fault effect analysis on the WG faults, including WG stuck open and stuck closed, which is an early step in a detection strategy design. Then, a second-order sliding-mode observer (SOSMO) is proposed to capture the exhaust manifold dynamics. The observer uses experimentally validated engine models to estimate the WG position and a virtual force. The virtual force represents the external disturbances that disrupt the WG operation and enables the proposed SOSMO to estimate the WG position robust to the faults. Using this force, a detection and isolation algorithm is presented and experimentally verified on a modern TC gasoline engine. Test bench results show that the proposed strategy can successfully detect and isolate the two different WG faults.
机译:本文提出了一种检测和隔离涡轮增压(TC)汽油发动机废气门(WG)故障的新方法。本文首先对WG故障进行了故障影响分析,包括WG卡在打开状态和卡在闭合状态,这是检测策略设计的第一步。然后,提出了一个二阶滑模观测器(SOSMO)来捕获排气歧管动力学。观察者使用经过实验验证的发动机模型来估计白平衡位置和虚拟力。虚拟力代表了干扰工作组的外部干扰,使拟议的SOSMO能够估计对故障具有鲁棒性的工作组位置。利用此力,提出了一种检测和隔离算法,并在现代TC汽油发动机上进行了实验验证。测试台结果表明,该策略可以成功检测并隔离两个不同的WG故障。

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