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Air-Fuel Ratio Control of Lean-Burn SI Engines Using Fuzzy Sliding-Mode Technique

机译:采用模糊滑模技术的稀燃SI发动机的空燃比控制

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Abstract-Minimization of the carbon dioxide and harmful pollutants emissions and maximization of fuel economy for the lean-burn spark ignition (SI) engines significantly rely on precise air-fuel ratio (AFR) control. However, the main challenge of AFR control is the large time-varying delay which exists in lean-burn engines. Since the system is usually subject to external disturbances and uncertainties, a high level of robustness in the AFR control design has to be considered. Herein, a fuzzy sliding-mode control (FSMC) technique is proposed to track the desired AFR in the presence of periodic disturbances. The proposed method is model free and does not need any system characteristics. Based on the fuzzy system input-output data, two scaling factors are first employed to normalize the sliding surface and its derivative. According to the concept of the if-then rule, an appropriate rule table for the logic system is designed. Finally, the feasibility and effectiveness of the proposed control scheme are evaluated under various operating conditions. Index Terms-Air-Fuel Ratio (AFR), Spark Ignition (SI), Fuzzy Sliding-Mode Control (FSMC) Technique.
机译:摘要 - 最小化二氧化碳和有害污染物排放和贫燃火花点火(Si)发动机的燃料经济性最大化明显依赖于精确的空燃比(AFR)控制。然而,AFR控制的主要挑战是瘦燃烧发动机中存在的巨大时变延迟。由于该系统通常受到外部干扰和不确定性,因此必须考虑AFR控制设计中的高水平的鲁棒性。这里,提出了一种模糊滑模控制(FSMC)技术以在周期性干扰存在下跟踪所需的AFR。所提出的方法是免费的,不需要任何系统特征。基于模糊系统输入输出数据,首先采用两个缩放因子来标准化滑动表面及其衍生物。根据if-weat规则的概念,设计了逻辑系统的适当规则表。最后,在各种操作条件下评估所提出的控制方案的可行性和有效性。指数术语 - 空燃比(AFR),火花点火(SI),模糊滑模控制(FSMC)技术。

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