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Adaptive time delay compensation for air-fuel ratio control of a port injection SI engine

机译:用于进气道喷射SI发动机空燃比控制的自适应延时补偿

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摘要

Because of increasingly stringent requirements on engine efficiency and emission control, the air-fuel ratio (AFR) control strategies for port injection spark ignition (SI) engines are still continuously improved. The effects of time delay limit the AFR controller gains and degrade the system performance. The Smith predictor can be applied to overcome this problem. However, the implementation of this predictor requires accurate information of the system parameters and time delay. Hence, this paper proposes an adaptive algorithm for feedback time delay compensation in the AFR control system of a port injection SI engine. This adaptive algorithm with Smith predictor is applied to estimate and compensate the feedback time delay. The simulation results show that the proposed compensator with conventional Smith predictor can be used to improve the AFR control system efficiency and reduce the effects of time delay.
机译:由于对发动机效率和排放控制的要求越来越严格,用于进气道喷射火花点火(SI)发动机的空燃比(AFR)控制策略仍在不断改进。时间延迟的影响限制了AFR控制器的增益并降低了系统性能。 Smith预测器可用于克服此问题。但是,此预测器的实现需要系统参数和时间延迟的准确信息。因此,本文提出了一种自适应算法,用于进气道喷射发动机的AFR控制系统中的反馈时延补偿。该具有史密斯预测器的自适应算法被应用于估计和补偿反馈时间延迟。仿真结果表明,所提出的具有传统史密斯预测器的补偿器可用于提高AFR控制系统的效率,减少时延的影响。

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