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Physics-based lumped-parameter modeling of automotive canister fuel purge

机译:基于物理的汽车罐燃料清除的集合参数建模

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A physics-based canister fuel purge flowrate model based on fluid mechanics and thermodynamics principles is presented in this paper to improve the tailpipe emission control in automotive applications. The aim of the paper is to derive a lumped-parameter model for the canister that estimates the flowrate out of the canister purged into the intake manifold. The lumped parameters of the model, including canister capacitance and flow resistance are employed to obtain a first-order multi-input and single-output (MISO) dynamic model. The vacuum pressure in the intake manifold and the fuel tank pressure serve as inputs and the mass flowrate is considered as the model output. Gradient descent system identification method is used to estimate the model parameters based on experimental data collected at Ford Motor Company. The advantage of the model is that it does not require cumbersome integral or differential computational methods and is easy to implement for fueling control purposes. Hence, it allows direct implementation in the fueling control to compensate for the extra fuel benefiting the stoichiometric air/fuel regulation in the engine catalyst.
机译:本文提出了一种基于流体力学和热力学原理的物理罐燃料净化流量模型,以改善汽车应用中的尾管排放控制。本文的目的是为罐推导出集成参数模型,该参数模型估计流量的流量从罐中吹扫到进气歧管中。采用模型的集成参数,包括罐电容和流动阻力来获得一阶多输入和单输出(MISO)动态模型。进气歧管和燃料箱压力的真空压力用作输入,并且质量流量被认为是模型输出。梯度下降系统识别方法用于估算基于在福特电机公司收集的实验数据的模型参数。该模型的优点在于它不需要繁琐的积分或差分计算方法,并且易于用于加油控制目的。因此,它允许在加油控制中进行直接实现以补偿额外的燃料,这些燃料受益于发动机催化剂中的化学计量空气/燃料调节。

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