This paper presents a rigorous finite-blocklength framework for the characterization and the numerical evaluation of the packet error probability achievable in the uplink and downlink of Massive MIMO for ultra-reliable low-latency communications (URLLC). The framework encompasses imperfect channel-state information, pilot contamination, spatially correlated channels, and arbitrary linear signal processing. For a practical URLLC network setup involving base stations with M = 100 antennas, we show by means of numerical results that a target error probability of 10-5 can be achieved with MMSE channel estimation and multicell MMSE signal processing, uniformly over each cell, only if orthogonal pilot sequences are assigned to all the users in th...
Under ultra-reliable and low-latency communications (URLLC) for modern and future wireless networks,...
We consider the uplink of a Massive MIMO network with L cells, each comprising a BS with M antennas ...
A present challenge in wireless communications is the assurance of ultra-reliable and low-latency co...
This paper presents a rigorous finite-blocklength framework for the characterization and the numeric...
The fast adoption of Massive MIMO for high-throughput communications was enabled by many research co...
Proceedings of: IEEE International Conference on Communications (ICC 2021), 14-23 June 2021, Montrea...
In this paper, we adapt to cell-free Massive MIMO (multiple-input multiple-output) the finite-blockl...
Ultra-reliable low latency communications (uRLLC) is adopted in the fifth generation (5G) mobile net...
We propose a numerically efficient method for evaluating the random-coding union bound with paramete...
Massive MIMO is seen as a main enabler for low-latency communications, thanks to its high spatial de...
This paper considers cell-free massive MIMO (cfm-MIMO) for downlink ultra reliable and low-latency c...
We consider the transmission of short packets over a bidirectional communication link where multiple...
The Fourth Industrial Revolution (Industrial 4.0) is coming, and this revolution will fundamentally ...
We investigate the uplink throughput achievable by a multiple-user (MU) massive multiple-input multi...
Abstract-Massive multi-input multi-output (MIMO) systems require channel state information (CSI) at ...
Under ultra-reliable and low-latency communications (URLLC) for modern and future wireless networks,...
We consider the uplink of a Massive MIMO network with L cells, each comprising a BS with M antennas ...
A present challenge in wireless communications is the assurance of ultra-reliable and low-latency co...
This paper presents a rigorous finite-blocklength framework for the characterization and the numeric...
The fast adoption of Massive MIMO for high-throughput communications was enabled by many research co...
Proceedings of: IEEE International Conference on Communications (ICC 2021), 14-23 June 2021, Montrea...
In this paper, we adapt to cell-free Massive MIMO (multiple-input multiple-output) the finite-blockl...
Ultra-reliable low latency communications (uRLLC) is adopted in the fifth generation (5G) mobile net...
We propose a numerically efficient method for evaluating the random-coding union bound with paramete...
Massive MIMO is seen as a main enabler for low-latency communications, thanks to its high spatial de...
This paper considers cell-free massive MIMO (cfm-MIMO) for downlink ultra reliable and low-latency c...
We consider the transmission of short packets over a bidirectional communication link where multiple...
The Fourth Industrial Revolution (Industrial 4.0) is coming, and this revolution will fundamentally ...
We investigate the uplink throughput achievable by a multiple-user (MU) massive multiple-input multi...
Abstract-Massive multi-input multi-output (MIMO) systems require channel state information (CSI) at ...
Under ultra-reliable and low-latency communications (URLLC) for modern and future wireless networks,...
We consider the uplink of a Massive MIMO network with L cells, each comprising a BS with M antennas ...
A present challenge in wireless communications is the assurance of ultra-reliable and low-latency co...