Spatial CSIT Allocation Policies for Network MIMO Channels
Paul de Kerret, David Gesbert

TL;DR
This paper investigates optimal CSI sharing among distributed transmitters in network MIMO, proposing a finite neighborhood CSI allocation policy that achieves maximal degrees-of-freedom without unbounded CSI requirements.
Contribution
It introduces a network geometry-aware CSI allocation policy that limits cooperation to finite neighborhoods, overcoming limitations of traditional uniform CSI dissemination.
Findings
CSI requirements are finite and depend on network geometry.
Finite neighborhood cooperation achieves maximal degrees-of-freedom.
Proposed policy overcomes edge interference and unbounded CSI growth.
Abstract
In this work, we study the problem of the optimal dissemination of channel state information (CSI) among K spatially distributed transmitters (TXs) jointly cooperating to serve K receivers (RXs). One of the particularities of this work lies in the fact that the CSI is distributed in the sense that each TX obtains its own estimate of the global multi-user MIMO channel with no further exchange of information being allowed between the TXs. Although this is well suited to model the cooperation between non-colocated TXs, e.g., in cellular Coordinated Multipoint (CoMP) schemes, this type of setting has received little attention so far in the information theoretic society. We study in this work what are the CSI requirements at every TX, as a function of the network geometry, to ensure that the maximal number of degrees-of-freedom (DoF) is achieved, i.e., the same DoF as obtained under perfect…
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Taxonomy
TopicsAdvanced MIMO Systems Optimization · Cooperative Communication and Network Coding · Wireless Communication Security Techniques
