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Decentralized User Scheduling for Rate-Constrained Sum-Utility Maximization in the MIMO IBC

Antonioli, Roberto Pinto (författare)
Univ Fed Ceara, Wireless Telecom Res Grp, BR-60440900 Fortaleza, Ceara, Brazil.
Fodor, Gabor, 1964- (författare)
KTH,Reglerteknik,Ericsson Res, Radio Dept, S-16480 Stockholm, Sweden.
Soldati, Pablo (författare)
Ericsson Res, Stand & Technol, S-16480 Stockholm, Sweden.
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Maciel, Tarcisio Ferreira (författare)
Univ Fed Ceara, Wireless Telecom Res Grp, BR-60440900 Fortaleza, Ceara, Brazil.
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Univ Fed Ceara, Wireless Telecom Res Grp, BR-60440900 Fortaleza, Ceara, Brazil Reglerteknik (creator_code:org_t)
Institute of Electrical and Electronics Engineers (IEEE), 2020
2020
Engelska.
Ingår i: IEEE Transactions on Communications. - : Institute of Electrical and Electronics Engineers (IEEE). - 0090-6778 .- 1558-0857. ; 68:10, s. 6215-6229
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • While the problems of sum-rate maximization and sum-power minimization subject to quality of service (QoS) constraints in the multiple input multiple output interference broadcast channel (MIMO IBC) have been widely studied, most of the proposed solutions have neglected the user scheduling aspect assuming that a feasible set of users has been previously selected. However, ensuring QoS for each user in the MIMO IBC involves the joint optimization of transmit/receive beamforming vectors, transmit powers, and user scheduling variables. To address the full problem, we propose a novel formulation of a rate-constrained sum-utility maximization problem which allows to either deactivate users or minimize the QoS degradation for some scheduled users in infeasible scenarios. Remarkably, this is achieved avoiding the complexity of traditional combinatorial formulations, but rather by introducing a novel expression of the QoS constraints that allows to solve the problem in a continuous domain. We propose centralized and decentralized solutions, where the decentralized solutions focus on practical design and low signaling overhead. The proposed solutions are then compared with benchmarking algorithms, where we show the effectiveness of the joint scheduling and transceiver design as well as the flexibility of the proposed solution performing advantageously in several MIMO IBC scenarios.

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Elektroteknik och elektronik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Electrical Engineering, Electronic Engineering, Information Engineering (hsv//eng)

Nyckelord

Quality of service
MIMO communication
Interference
Scheduling
Transceivers
Signal to noise ratio
Degradation
User scheduling
transceiver design
decentralized algorithm
MIMO IBC
sum-rate maximization

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