A Godunov type scheme for a class of LWR traffic flow models with non-local flux

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Abstract

We present a Godunov type numerical scheme for a class of scalar conservation laws with non-local flux arising for example in traffic flow models. The proposed scheme delivers more accurate solutions than the widely used Lax-Friedrichs type scheme. In contrast to other approaches, we consider a non-local mean velocity instead of a mean density and provide L∞ and bounded variation estimates for the sequence of approximate solutions. Together with a discrete entropy inequality, we also show the well-posedness of the considered class of scalar conservation laws. The better accuracy of the Godunov type scheme in comparison to Lax-Friedrichs is proved by a variety of numerical examples.

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Friedrich, J., Kolb, O., & Göttlich, S. (2018). A Godunov type scheme for a class of LWR traffic flow models with non-local flux. Networks and Heterogeneous Media, 13(4), 531–547. https://doi.org/10.3934/nhm.2018024

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