RRH based Massive MIMO with "on the Fly" Pilot Contamination Control
January 08, 2016 Β· Declared Dead Β· π 2016 IEEE International Conference on Communications (ICC)
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Authors
Ozgun Y. Bursalioglu, Chenwei Wang, Haralabos Papadopoulos, Giuseppe Caire
arXiv ID
1601.01983
Category
cs.IT: Information Theory
Citations
45
Venue
2016 IEEE International Conference on Communications (ICC)
Last Checked
6 months ago
Abstract
Dense large-scale antenna deployments are one of the most promising technologies for delivering very large throughputs per unit area in the downlink (DL) of cellular networks. We consider such a dense deployment involving a distributed system formed by multi-antenna remote radio head (RRH) units connected to the same fronthaul serving a geographical area. Knowledge of the DL channel between each active user and its nearby RRH antennas is most efficiently obtained at the RRHs via reciprocity based training, that is, by estimating a user's channel using uplink (UL) pilots transmitted by the user, and exploiting the UL/DL channel reciprocity. We consider aggressive pilot reuse across an RRH system, whereby a single pilot dimension is simultaneously assigned to multiple active users. We introduce a novel coded pilot approach, which allows each RRH unit to detect pilot collisions, i.e., when more than a single user in its proximity uses the same pilot dimensions. Thanks to the proposed coded pilot approach, pilot contamination can be substantially avoided. As shown, such strategy can yield densification benefits in the form of increased multiplexing gain per UL pilot dimension with respect to conventional reuse schemes and some recent approaches assigning pseudorandom pilot vectors to the active users.
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