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A Nonlinear Approach with Gain Schedule Control Adaptation for a Complete-Model Diesel-Engine Diagnosis

机译:具有增益安排控制适应性的非线性方法,用于全型柴油机诊断

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This paper proposes an innovative fault-diagnosis system for a turbocharged diesel engine with variable-geometry turbocharger control. Numerous and diversified actuator and/or sensors faults are identified and analyzed such as air-leakage in the admission collector, compressor malfunctioning, intake-valves fault, intercooler fault, deterioration in the turbine-compressor coupling, defect in the variable geometry of the turbine and fault in rotational speed sensor. Furthermore, a complete non-linear engine model with four state variables is adopted. The proposed strategy consists in developing a Fault Detection and Isolation algorithm (FDI) based on the theory of Gain Schedule Control operated on a Takagi-Sugeno model of the diesel. Simulations with a nonlinear Diesel model in the presence of noise were carried out and which demonstrated the effectiveness of the proposed algorithm. Moreover, the robustness properties of the used H-infinity FDI filters exhibited significant rejection of disturbances and noise-effects attenuation which make the proposed strategy adequately close to the conditions of the real physical system.
机译:本文提出了一种具有可变几何涡轮增压器控制的涡轮增压柴油机的创新故障诊断系统。识别和分析了许多多样化的致动器和/或传感器故障,如通道收集器中的空气泄漏,压缩机故障,进气门故障,中间冷却器故障,涡轮压缩机耦合的劣化,涡轮机的可变几何形状中的缺陷转速传感器中的故障。此外,采用具有四种状态变量的完整的非线性发动机模型。该拟议的策略包括基于在柴油的Takagi-Sugeno模型上运行的增益调度控制理论的故障检测和隔离算法(FDI)。进行噪声存在下的非线性柴油模型的模拟,并展示了所提出的算法的有效性。此外,所使用的H-Infinity FDI过滤器的鲁棒性特性表现出显着的扰动和噪声效应衰减,这使得提出的策略充分接近真实物理系统的条件。

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