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Cycle-to-Cycle Transient Model of 4-stroke Combustion Engines

机译:4行程燃烧发动机的循环到循环瞬态模型

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In 4-stroke combustion engines, managing the cycle-to-cycle transient characteristics of the mass of the air, the fuel and the burnt gas is an important issue due to the cycle-to-cycle coupling caused by the imbalance of cyclic combustion. This paper presents a discrete-time model that represents the cycle-to-cycle transient behavior of in-cylinder state variables under the assumption of measurability of the total gas mass and the residual gas fraction. It is shown that if the state variables are chosen as total fuel mass, residual unburnt air and the burnt gas mass, then the system is modeled as a time-varying linear system. Validation results is demonstrated which conducted on a full-scaled gasoline engine test bench.
机译:在4行程燃烧发动机中,管理空气质量的循环到循环特性,燃料和燃烧气体是由于循环燃烧的不平衡引起的循环到循环耦合,这是一个重要问题。 本文提出了一种离散时间模型,其表示在总气体质量和残余气体级分的可测量性下的圆柱状态变量的周期到循环瞬态行为。 结果表明,如果所选择的状态变量作为总燃料质量,残留的未燃烧空气和燃烧的气体质量,则系统被建模为时变线性系统。 验证结果显示在全缩放的汽油发动机测试台上进行。

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