We investigate a reconfigurable intelligent surface (RIS)-aided multi-user massive multiple-input multi-output (MIMO) system where low-resolution digital-analog converters (DACs) are configured at the base station (BS) in order to reduce the cost and power consumption. An approximate analytical expression for the downlink achievable rate is derived based on maximum ratio transmission (MRT) and additive quantization noise model (AQNM), and the rate maximization problem is solved by particle swarm optimization (PSO) method under both continuous phase shifts (CPSs) and discrete phase shifts (DPSs) at the RIS. Simulation results show that the downlink sum achievable rate tends to a constant with the increase of the number of quantization bits o...
In this thesis, we explore the utilization of Reconfigurable Intelligent Surfaces (RIS) in wireless ...
peer reviewedThis letter proposes a novel phase shift design for cell-free massive multiple-input an...
In this paper, we propose rate-splitting (RS) multiple access to mitigate the effects of quantizatio...
This paper investigates the uplink and downlink achievable rates of full-duplex (FD) massive multi-i...
This letter investigates the performance of reconfigurable intelligent surface (RIS)-aided massive m...
We investigate the uplink and downlink achievable rates of full-duplex (FD) massive multi-input mult...
In this letter, we derive the uplink achievable rate expression of intelligent reflecting surface (I...
The emerging technology, reconfigurable intelligent surface (RIS), could support high data rate whil...
This is the arXiv pre-print [v1] submitted under a Creative Commons (CC BY) Attribution License on W...
In this review paper, we analyze the downlink of a massive multiuser multiple-input multiple-output ...
This letter focuses on the design of multiuser uplink multiple-input multiple-output (MIMO) communic...
Massive multiuser multiple-input multiple-output (MIMO) is foreseen to be a key technology in next-g...
International audienceThe uplink of a reconfigurable intelligent surfaces (RIS)-aided cell-free mass...
Massive multi-user (MU) multiple-input multiple-output (MIMO) will be a core technology in future ce...
This letter investigates the reconfigurable intelligent surface (RIS)-aided massive multiple-input m...
In this thesis, we explore the utilization of Reconfigurable Intelligent Surfaces (RIS) in wireless ...
peer reviewedThis letter proposes a novel phase shift design for cell-free massive multiple-input an...
In this paper, we propose rate-splitting (RS) multiple access to mitigate the effects of quantizatio...
This paper investigates the uplink and downlink achievable rates of full-duplex (FD) massive multi-i...
This letter investigates the performance of reconfigurable intelligent surface (RIS)-aided massive m...
We investigate the uplink and downlink achievable rates of full-duplex (FD) massive multi-input mult...
In this letter, we derive the uplink achievable rate expression of intelligent reflecting surface (I...
The emerging technology, reconfigurable intelligent surface (RIS), could support high data rate whil...
This is the arXiv pre-print [v1] submitted under a Creative Commons (CC BY) Attribution License on W...
In this review paper, we analyze the downlink of a massive multiuser multiple-input multiple-output ...
This letter focuses on the design of multiuser uplink multiple-input multiple-output (MIMO) communic...
Massive multiuser multiple-input multiple-output (MIMO) is foreseen to be a key technology in next-g...
International audienceThe uplink of a reconfigurable intelligent surfaces (RIS)-aided cell-free mass...
Massive multi-user (MU) multiple-input multiple-output (MIMO) will be a core technology in future ce...
This letter investigates the reconfigurable intelligent surface (RIS)-aided massive multiple-input m...
In this thesis, we explore the utilization of Reconfigurable Intelligent Surfaces (RIS) in wireless ...
peer reviewedThis letter proposes a novel phase shift design for cell-free massive multiple-input an...
In this paper, we propose rate-splitting (RS) multiple access to mitigate the effects of quantizatio...