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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Transient air-fuel ratio control of a multi-point injection engine with an integration-type ultrasonic flowmeter
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Transient air-fuel ratio control of a multi-point injection engine with an integration-type ultrasonic flowmeter

机译:集成型超声波流量计对多点喷射发动机的瞬时空燃比控制

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摘要

An integration-type flowmeter, composed of an ultrasonic flowmeter and an integration circuit, is used to measure the air mass for transient air-fuel ratio (AFR) control of a port fuel injection (PFI) spark ignition engine. Also, the air mass and required fuel mass in the cylinder are accurately calculated for precise AFR control. The proposed method can significantly improve the accuracy of measuring air mass inducted through a throttle valve. Air mass passing into a cylinder is estimated using the measured air mass at the throttle valve and intake manifold pressure. A simple two-constant fuel model is used for a dynamic fuel model. Control parameters from the air and fuel dynamics are applied to minimize AFR excursions, and a four-cylinder, 1.5 1 PFI engine was used to demonstrate this AFR control strategy. Results show that the AFR followed a command value with a peak error of 4 per cent during throttle transients at various operating points.
机译:由超声流量计和积分电路组成的积分型流量计用于测量空气质量,以控制进气道燃油喷射(PFI)火花点火发动机的瞬时空燃比(AFR)。同样,气缸中的空气质量和所需燃料质量也可以精确计算出来,以实现精确的AFR控制。所提出的方法可以显着提高测量通过节气门引入的空气质量的准确性。使用在节气门处测得的空气质量和进气歧管压力估算进入气缸的空气质量。简单的两常数燃料模型用于动态燃料模型。应用来自空气和燃料动力学的控制参数来最大程度地减少AFR偏移,并使用四缸1.5 1 PFI发动机来演示这种AFR控制策略。结果表明,在各种操作点的节气门瞬变期间,AFR遵循一个具有4%峰值误差的指令值。

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