This paper investigates scheduling and precoding techniques via hybrid analog-digital transmitters in mm-wave frequency bands. As in spectrum sharing sub-6GHz scenarios, the presence of non-intended receivers limits the overall achievable rates. In order to circumvent this problem, we propose a scheduling and precoding algorithm able to maximize the sum-rate while keeping the interference to the external users under a certain threshold. The method consists of a first scheduling algorithm followed by the optimization of the analog and digital beamforming parts. Numerical simulations validate the conceived technique and they show that data rates are increased compared to current designs
This paper aims to study an energy-efficiency (EE) maximization hybrid precoding (HP) design for mmW...
peer reviewedConstrained by the number of transmitted data streams, this paper proposes sub-carrier ...
This paper deals with the design of a hybrid precoder for millimeter-wave MIMO systems. For the sake...
This paper investigates scheduling and precoding techniques via hybrid analog-digital transmitters i...
This paper investigates scheduling and precoding techniques via hybrid analog-digital transmitters i...
This paper deals with the problem of hybrid analog-digital transmit beamforming under spectrum shari...
This paper deals with the problem of hybrid analog-digital transmit beamforming under spectrum shari...
Abstract—Millimeter wave (mmWave) systems will likely em-ploy large antenna arrays at both the trans...
International audienceTo reduce the high hardware cost in millimeter wave (mmWave) systems, hybrid a...
This paper studies hybrid precoding (HP) for mmWave multi-user OFDMA systems with sub-carrier alloca...
This paper evaluates different analog-digital beam-forming solutions for future spectrum sharing mm-...
In this paper, we study the performance of cooperative millimeter wave (mmWave) networks with hybrid...
Future ultrahigh-speed wireless communication systems face difficult challenges due to the fundament...
Abstract—Antenna arrays will be an important ingredient in millimeter wave (mmWave) cellular systems...
This paper evaluates different analog-digital beamforming solutions for future spectrum sharing mm-w...
This paper aims to study an energy-efficiency (EE) maximization hybrid precoding (HP) design for mmW...
peer reviewedConstrained by the number of transmitted data streams, this paper proposes sub-carrier ...
This paper deals with the design of a hybrid precoder for millimeter-wave MIMO systems. For the sake...
This paper investigates scheduling and precoding techniques via hybrid analog-digital transmitters i...
This paper investigates scheduling and precoding techniques via hybrid analog-digital transmitters i...
This paper deals with the problem of hybrid analog-digital transmit beamforming under spectrum shari...
This paper deals with the problem of hybrid analog-digital transmit beamforming under spectrum shari...
Abstract—Millimeter wave (mmWave) systems will likely em-ploy large antenna arrays at both the trans...
International audienceTo reduce the high hardware cost in millimeter wave (mmWave) systems, hybrid a...
This paper studies hybrid precoding (HP) for mmWave multi-user OFDMA systems with sub-carrier alloca...
This paper evaluates different analog-digital beam-forming solutions for future spectrum sharing mm-...
In this paper, we study the performance of cooperative millimeter wave (mmWave) networks with hybrid...
Future ultrahigh-speed wireless communication systems face difficult challenges due to the fundament...
Abstract—Antenna arrays will be an important ingredient in millimeter wave (mmWave) cellular systems...
This paper evaluates different analog-digital beamforming solutions for future spectrum sharing mm-w...
This paper aims to study an energy-efficiency (EE) maximization hybrid precoding (HP) design for mmW...
peer reviewedConstrained by the number of transmitted data streams, this paper proposes sub-carrier ...
This paper deals with the design of a hybrid precoder for millimeter-wave MIMO systems. For the sake...