We investigate the role of cooperation in wireless networks subject to a spatial degrees of freedom limitation. To address the worst case scenario, we consider a free-space line-of-sight type environment with no scattering and no fading. We identify three qualitatively different operating regimes that are determined by how the area of the network , normalized with respect to the wavelength , compares to the number of users . In networks with , the limitation in spatial degrees of freedom does not allow to achieve a capacity scaling better than and this performance can be readily achieved by multi-hopping. This result has been recently shown in \cite{FMM09}. However, for networks with , the number of available degrees of freedom is , larger that what can be achieved by multi-hopping. We show that the optimal capacity scaling in this regime is achieved by hierarchical cooperation. In particular, in networks with , hierarchical cooperation can achieve linear scaling.
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Andreas Peter Burg, Adrian Schumacher, Ruben Merz