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Control adaptation approach for fault detection and isolation in SIDI high pressure fuel pump

机译:SIDI高压燃油泵故障检测与隔离的控制适应方法

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Spark Ignition Direct Injection (SIDI) technology enables better fuel economy and tail pipe emissions in vehicles equipped with gasoline engines. The SIDI technology relies on the system's ability to deliver fuel at high pressures and reliable performance of the high pressure fuel pump is vital as it directly relates to the operability of the vehicle. It, therefore, becomes very important to devise a scheme that can effectively diagnose and prognose faults of such a component. In this article, algorithm development for incipient fault detection, and isolation of high pressure fuel pump faults is presented. In particular, the control adaptation of the high pressure fuel pump is employed to generate schemes for fault detection, and fault isolation. Results from simulations as well as real vehicle test data are presented to depict various fault behaviors and their manifestations. The learnings thus obtained enabled the design of fault detection, and isolation scheme for high pressure fuel pump and allows monitoring of health as the faults grow.
机译:Spark点火直喷(SIDI)技术使得能够在配备汽油发动机的车辆中更好的燃油经济性和尾管排放。 SIDI技术依赖于系统在高压下提供燃料的能力,并且高压燃料泵的可靠性性能至关重要,因为它直接涉及车辆的可操作性。因此,它变得非常重要,可以设计一种可以有效地诊断和预测这种组分的故障的方案。在本文中,介绍了初始故障检测的算法开发,以及高压燃料泵故障的隔离。特别地,采用高压燃料泵的控制适应来产生故障检测的方案和故障隔离。仿真以及真正的车辆测试数据的结果被提出以描绘各种故障行为及其表现形式。由此获得的学习使得能够设计故障检测,以及高压燃料泵的隔离方案,并允许在故障生长时监测健康。

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