Coexistence of D2D Communications and Cell-Free Massive MIMO Systems With Low Resolution ADC for Improved Throughput in Beyond-5G Networks
Hamed Masoumi, Mohammad Javad Emadi, and Stefano Buzzi

TL;DR
This paper investigates uplink coexistence of D2D and cell-free massive MIMO systems with low-resolution ADCs, proposing pilot and power control strategies that significantly enhance network throughput and spectral efficiency.
Contribution
It introduces novel pilot allocation and power control algorithms tailored for D2D and CF-mMIMO coexistence with low-resolution ADCs, improving system performance.
Findings
Proposed pilot and power control algorithms improve spectral efficiency.
D2D links positively impact overall network throughput.
Activation of D2D links can offset interference with increased throughput.
Abstract
In this paper, uplink transmission of a cell-free massive multiple-input multiple-output (CF-mMIMO) system coexisting with device-to-device (D2D) communication links is investigated, under the assumption that access points (APs) are equipped with low-resolution analog-to-digital converters (ADCs). Lower bounds of achievable rates for both D2D users (DUEs) and CF-mMIMO users (CFUEs) are derived in closed-form, with perfect and imperfect channel state information. Next, in order to reduce pilot contamination, greedy and graph coloring-based pilot allocation algorithms are proposed and analyzed for the considered scenario. Furthermore, to control interference and improve the performance, two power control strategies are designed and their complexity and convergence are also discussed. The first power control strategy aims at maximizing CFUEs' sum spectral efficiency (SE) subject to quality…
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Taxonomy
TopicsAdvanced MIMO Systems Optimization · Energy Harvesting in Wireless Networks · Wireless Body Area Networks
