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      MIMO capacity for deterministic channel models: sublinear growth

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          Abstract

          This is the second paper of the authors in a series concerned with the development of a deterministic model for the transfer matrix of a MIMO system. Starting from the Maxwell equations, we have described in \cite{BCFM} the generic structure of such a deterministic transfer matrix. In the current paper we apply the results of \cite{BCFM} in order to study the (Shannon-Foschini) capacity behavior of a MIMO system as a function of the deterministic spread function of the environment, and the number of transmitting and receiving antennas. The antennas are assumed to fill in a given, fixed volume. Under some generic assumptions, we prove that the capacity grows much more slowly than linearly with the number of antennas. These results reinforce previous heuristic results obtained from statistical models of the transfer matrix, which also predict a sublinear behavior.

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          Author and article information

          Journal
          2012-02-21
          Article
          10.1002/mma.2565
          1202.4553
          65c086d8-daed-4bc3-81e3-484b7f558934

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          12 pages, to appear in Math. Meth. Appl. Sci
          cs.IT math-ph math.IT math.MP

          Mathematical physics,Numerical methods,Mathematical & Computational physics,Information systems & theory

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