Rank Constrained Precoding for the Downlink of mmWave Massive MIMO Hybrid Systems

The hybrid design of precoding schemes for millimeter-wave communications allows exploiting the gains by using large antenna array with an affordable hardware cost and power consumption. In this work, we present a novel design strategy based on limiting the rank of the fully digital solutions before...

Full description

Bibliographic Details
Main Authors: Jose P. Gonzalez-Coma, Oscar Fresnedo, Luis Castedo
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9352728/
id doaj-f96943fde3b24171b7b70285d0824379
record_format Article
spelling doaj-f96943fde3b24171b7b70285d08243792021-03-30T15:27:45ZengIEEEIEEE Access2169-35362021-01-019284592847010.1109/ACCESS.2021.30588449352728Rank Constrained Precoding for the Downlink of mmWave Massive MIMO Hybrid SystemsJose P. Gonzalez-Coma0https://orcid.org/0000-0001-7554-1758Oscar Fresnedo1https://orcid.org/0000-0002-2905-9052Luis Castedo2https://orcid.org/0000-0002-3801-012XDefense University Center, Spanish Naval Academy, Marín, SpainDepartment of Computer Engineering & CITIC Research Center, University of A Coruña, A Coruña, SpainDepartment of Computer Engineering & CITIC Research Center, University of A Coruña, A Coruña, SpainThe hybrid design of precoding schemes for millimeter-wave communications allows exploiting the gains by using large antenna array with an affordable hardware cost and power consumption. In this work, we present a novel design strategy based on limiting the rank of the fully digital solutions before their decomposition into the analog and digital baseband components. This rank constraint on the digital formulation leads to a joint precoding and scheduling scheme where the number of allocated streams is limited according to the hardware constraints. In this way, the proposed approach can significantly reduce the performance losses caused by the direct decomposition of the unconstrained digital precoders. The resulting rank-constrained problems for the considered scenario are not convex and difficult to sort out. However, we propose several algorithms to compute the rank-constrained digital solutions with the help of the uplink-downlink duality for the achievable sum-rate. The obtained results show that this strategy achieves considerably higher sum-rates regardless of the channel conditions or available hardware resources.https://ieeexplore.ieee.org/document/9352728/Hybrid transceiverMassive MIMOmmWave communicationsrank-constrained optimization
collection DOAJ
language English
format Article
sources DOAJ
author Jose P. Gonzalez-Coma
Oscar Fresnedo
Luis Castedo
spellingShingle Jose P. Gonzalez-Coma
Oscar Fresnedo
Luis Castedo
Rank Constrained Precoding for the Downlink of mmWave Massive MIMO Hybrid Systems
IEEE Access
Hybrid transceiver
Massive MIMO
mmWave communications
rank-constrained optimization
author_facet Jose P. Gonzalez-Coma
Oscar Fresnedo
Luis Castedo
author_sort Jose P. Gonzalez-Coma
title Rank Constrained Precoding for the Downlink of mmWave Massive MIMO Hybrid Systems
title_short Rank Constrained Precoding for the Downlink of mmWave Massive MIMO Hybrid Systems
title_full Rank Constrained Precoding for the Downlink of mmWave Massive MIMO Hybrid Systems
title_fullStr Rank Constrained Precoding for the Downlink of mmWave Massive MIMO Hybrid Systems
title_full_unstemmed Rank Constrained Precoding for the Downlink of mmWave Massive MIMO Hybrid Systems
title_sort rank constrained precoding for the downlink of mmwave massive mimo hybrid systems
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2021-01-01
description The hybrid design of precoding schemes for millimeter-wave communications allows exploiting the gains by using large antenna array with an affordable hardware cost and power consumption. In this work, we present a novel design strategy based on limiting the rank of the fully digital solutions before their decomposition into the analog and digital baseband components. This rank constraint on the digital formulation leads to a joint precoding and scheduling scheme where the number of allocated streams is limited according to the hardware constraints. In this way, the proposed approach can significantly reduce the performance losses caused by the direct decomposition of the unconstrained digital precoders. The resulting rank-constrained problems for the considered scenario are not convex and difficult to sort out. However, we propose several algorithms to compute the rank-constrained digital solutions with the help of the uplink-downlink duality for the achievable sum-rate. The obtained results show that this strategy achieves considerably higher sum-rates regardless of the channel conditions or available hardware resources.
topic Hybrid transceiver
Massive MIMO
mmWave communications
rank-constrained optimization
url https://ieeexplore.ieee.org/document/9352728/
work_keys_str_mv AT josepgonzalezcoma rankconstrainedprecodingforthedownlinkofmmwavemassivemimohybridsystems
AT oscarfresnedo rankconstrainedprecodingforthedownlinkofmmwavemassivemimohybridsystems
AT luiscastedo rankconstrainedprecodingforthedownlinkofmmwavemassivemimohybridsystems
_version_ 1724179479438295040