Downlink Spectral Efficiency of Cell-Free Massive MIMO with Full-Pilot Zero-Forcing

September 29, 2018 Β· Declared Dead Β· πŸ› IEEE Global Conference on Signal and Information Processing

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Authors Giovanni Interdonato, Marcus Karlsson, Emil BjΓΆrnson, Erik G. Larsson arXiv ID 1810.00237 Category cs.IT: Information Theory Cross-listed eess.SP Citations 47 Venue IEEE Global Conference on Signal and Information Processing Last Checked 6 months ago
Abstract
Cell-free Massive multiple-input multiple-output (MIMO) ensures ubiquitous communication at high spectral efficiency (SE) thanks to increased macro-diversity as compared cellular communications. However, system scalability and performance are limited by fronthauling traffic and interference. Unlike conventional precoding schemes that only suppress intra-cell interference, full-pilot zero-forcing (fpZF), introduced in [1], actively suppresses also inter-cell interference, without sharing channel state information (CSI) among the access points (APs). In this study, we derive a new closed-form expression for the downlink (DL) SE of a cell-free Massive MIMO system with multi-antenna APs and fpZF precoding, under imperfect CSI and pilot contamination. The analysis also includes max-min fairness DL power optimization. Numerical results show that fpZF significantly outperforms maximum ratio transmission scheme, without increasing the fronthauling overhead, as long as the system is sufficiently distributed.
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