[Abstract] A method for channel estimation in wideband massive Multiple-Input Multiple-Output systems using hybrid digital analog architectures is developed. The proposed method is useful for Frequency-Division Duplex at either sub-6 GHz or millimeter wave frequency bands and takes into account the beam squint effect caused by the large bandwidth of the signals. To circumvent the estimation of large channel vectors, the posed algorithm relies on the slow time variation of the channel spatial covariance matrix, thus allowing for the utilization of very short training sequences. This is possibledue to the exploitation of the channel structure. After identifying the channel covariance matrix, the channel is estimated on the basis of the recove...
International audienceThis paper proposes a model-driven deep learning (MDDL)-based channel estimati...
We propose a novel method for massive multiple-input multiple-output (massive MIMO) in frequency div...
Massive MIMO is a promising technique for future 5G communications due to its high spectrum and ener...
[Abstract] A method for channel estimation in wideband massive Multiple-Input Multiple-Output system...
© 2020 IEEE.In this paper, an efficient construction method for channel covariance matrices (CCMs) t...
Mm-wave MIMO communication makes a hybrid combination of analog RF and digital baseband processing m...
There are three parts to this thesis. In the first part, we study the channel estimation problem in ...
In this paper, a channel estimator for wideband millimeter wave (mmWave) massive multiple-input mult...
In this paper, an efficient hybrid beamforming architecture together with a novel spatio-temporal re...
Acquiring channel state information (CSI) for link configuration in wideband millimeter wave (mmWave...
In this thesis, an efficient beam and instantaneous channel acquisition scheme together with joint a...
This paper proposes a closed-loop sparse channel estimation (CE) scheme for wideband millimeter-wave...
This paper develops efficient channel estimation techniques for millimeter-wave (mmWave) massive mul...
Massive multiple-input multiple-output (MIMO) is the concept of deploying a very large number of ant...
In this paper, we propose a multipath extraction based uplink/downlink channel estimation scheme for...
International audienceThis paper proposes a model-driven deep learning (MDDL)-based channel estimati...
We propose a novel method for massive multiple-input multiple-output (massive MIMO) in frequency div...
Massive MIMO is a promising technique for future 5G communications due to its high spectrum and ener...
[Abstract] A method for channel estimation in wideband massive Multiple-Input Multiple-Output system...
© 2020 IEEE.In this paper, an efficient construction method for channel covariance matrices (CCMs) t...
Mm-wave MIMO communication makes a hybrid combination of analog RF and digital baseband processing m...
There are three parts to this thesis. In the first part, we study the channel estimation problem in ...
In this paper, a channel estimator for wideband millimeter wave (mmWave) massive multiple-input mult...
In this paper, an efficient hybrid beamforming architecture together with a novel spatio-temporal re...
Acquiring channel state information (CSI) for link configuration in wideband millimeter wave (mmWave...
In this thesis, an efficient beam and instantaneous channel acquisition scheme together with joint a...
This paper proposes a closed-loop sparse channel estimation (CE) scheme for wideband millimeter-wave...
This paper develops efficient channel estimation techniques for millimeter-wave (mmWave) massive mul...
Massive multiple-input multiple-output (MIMO) is the concept of deploying a very large number of ant...
In this paper, we propose a multipath extraction based uplink/downlink channel estimation scheme for...
International audienceThis paper proposes a model-driven deep learning (MDDL)-based channel estimati...
We propose a novel method for massive multiple-input multiple-output (massive MIMO) in frequency div...
Massive MIMO is a promising technique for future 5G communications due to its high spectrum and ener...