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  • An auxiliary optimization method for complex public transit route network based on link prediction

    Author(s)
    Zhang, Lin
    Lu, Jian
    Yue, Xianfei
    Zhou, Jialin
    Li, Yunxuan
    Wan, Qian
    Griffith University Author(s)
    Zhou, Jialin
    Year published
    2018
    Metadata
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    Abstract
    Inspired by the missing (new) link prediction and the spurious existing link identification in link prediction theory, this paper establishes an auxiliary optimization method for public transit route network (PTRN) based on link prediction. First, link prediction applied to PTRN is described, and based on reviewing the previous studies, the summary indices set and its algorithms set are collected for the link prediction experiment. Second, through analyzing the topological properties of Jinan’s PTRN established by the Space R method, we found that this is a typical small-world network with a relatively large average clustering ...
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    Inspired by the missing (new) link prediction and the spurious existing link identification in link prediction theory, this paper establishes an auxiliary optimization method for public transit route network (PTRN) based on link prediction. First, link prediction applied to PTRN is described, and based on reviewing the previous studies, the summary indices set and its algorithms set are collected for the link prediction experiment. Second, through analyzing the topological properties of Jinan’s PTRN established by the Space R method, we found that this is a typical small-world network with a relatively large average clustering coefficient. This phenomenon indicates that the structural similarity-based link prediction will show a good performance in this network. Then, based on the link prediction experiment of the summary indices set, three indices with maximum accuracy are selected for auxiliary optimization of Jinan’s PTRN. Furthermore, these link prediction results show that the overall layout of Jinan’s PTRN is stable and orderly, except for a partial area that requires optimization and reconstruction. The above pattern conforms to the general pattern of the optimal development stage of PTRN in China. Finally, based on the missing (new) link prediction and the spurious existing link identification, we propose optimization schemes that can be used not only to optimize current PTRN but also to evaluate PTRN planning.
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    Journal Title
    Modern Physics Letters B
    Volume
    32
    Issue
    5
    DOI
    https://doi.org/10.1142/S0217984918500665
    Subject
    Mathematical sciences
    Algebraic structures in mathematical physics
    Physical sciences
    Publication URI
    http://hdl.handle.net/10072/380780
    Collection
    • Journal articles

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