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    block this user Matthew Cook Trusted member

    Assistant Professor

    Institute of Neuroinformatics, University of Zurich and ETH Zurich
    Visiting Associate, Caltech
    University of Zurich and ETH Zurich, Institute of Neuroinformatics

    A Geometric Theorem for Wireless Network Design Optimization�, http://www.paradise.caltech.edu/ ?massimo/homepage/papers/covering.ps

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    AbstractConsider an infinite square grid . How many discs of given radius , centered at the vertices of , are required, in the worst case, to completely cover an arbitrary disc of radius placed on the plane? We show that this number is an integer in the set ??????? ? whose value depends on the ratio of to the grid spacing. This result can be applied at the very early design stage of a wireless cellular network to determine, under the recent International Telecommunication Union (ITU) proposal for a traffic load model, and under the assumption that each client is able to communicate if it is within a certain range from a base station, conditions for which a grid network design is cost effective, for any expected traffic demand. A. The disc game I.

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    Title : A Geometric Theorem for Wireless Network Design Optimization�, http://www.paradise.caltech.edu/ ?massimo/homepage/papers/covering.ps
    Abstract : AbstractConsider an infinite square grid . How many discs of given radius , centered at the vertices of , are required, in the worst case, to completely cover an arbitrary disc of radius placed on the plane? We show that this number is an integer in the set ??????? ? whose value depends on the ratio of to the grid spacing. This result can be applied at the very early design stage of a wireless cellular network to determine, under the recent International Telecommunication Union (ITU) proposal for a traffic load model, and under the assumption that each client is able to communicate if it is within a certain range from a base station, conditions for which a grid network design is cost effective, for any expected traffic demand. A. The disc game I.
    Subject : unspecified
    Area : Computer Science
    Language : English
    Affiliations
    Url : http://www.paradise.caltech.edu/papers/etr044.pdf
    Doi : 10.1.1.68.4416

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