Load Balancing in Hybrid VLC and RF Networks Based on Blind Interference Alignment

Visible light communications (VLC) are proposed for increasing the spectral efficiency and the number of devices served in indoor environments, while providing illumination through light emitting diodes (LED). For VLC, each optical access point (AP) provides a small and confined area of coverage. Si...

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Main Authors: Ahmad Adnan-Qidan, Maximo Morales-Cespedes, Ana Garcia Armada
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9064520/
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spelling doaj-fd08eb6709204cf6850848b4a4b81e612021-03-30T01:44:05ZengIEEEIEEE Access2169-35362020-01-018725127252710.1109/ACCESS.2020.29875459064520Load Balancing in Hybrid VLC and RF Networks Based on Blind Interference AlignmentAhmad Adnan-Qidan0Maximo Morales-Cespedes1https://orcid.org/0000-0001-5829-998XAna Garcia Armada2Department of Signal Theory and Communications, Universidad Carlos III de Madrid, Leganès, SpainDepartment of Signal Theory and Communications, Universidad Carlos III de Madrid, Leganès, SpainDepartment of Signal Theory and Communications, Universidad Carlos III de Madrid, Leganès, SpainVisible light communications (VLC) are proposed for increasing the spectral efficiency and the number of devices served in indoor environments, while providing illumination through light emitting diodes (LED). For VLC, each optical access point (AP) provides a small and confined area of coverage. Since several sources of light are usually deployed in overlapping fashion in order to provide satisfactory illumination, VLC are limited by inter-cell interference. Moreover, transmission from a specific optical AP can be blocked by the elements of the scenario. On the other hand, radio-frequency (RF) systems such as WiFi are usually available in most of the indoor scenarios. In this work, we first propose a dynamic cell formation method for grouping the optical APs in multiple optical cells that cover a footprint each minimizing the inter-cell interference. After that, we use transmission based on blind interference alignment (BIA) in each optical cell. Considering the coexistence with RF systems based on orthogonal frequency division multiplexing (OFDM), a load balancing algorithm is proposed for managing the resources of the resulting hybrid VLC/RF network and determining the user association to each system. However, the complexity of this optimization problem is excessively high for practical VLC/RF networks. In order to obtain a suboptimal but tractable solution, we propose a decentralized optimization method based on Lagrangian multipliers. Simulation results show that the proposed scheme outperforms other approaches for user grouping and managing the resources of hybrid VLC/RF networks.https://ieeexplore.ieee.org/document/9064520/Visible light communicationsblind interference alignmentuser-centrichybrid networkload balancing
collection DOAJ
language English
format Article
sources DOAJ
author Ahmad Adnan-Qidan
Maximo Morales-Cespedes
Ana Garcia Armada
spellingShingle Ahmad Adnan-Qidan
Maximo Morales-Cespedes
Ana Garcia Armada
Load Balancing in Hybrid VLC and RF Networks Based on Blind Interference Alignment
IEEE Access
Visible light communications
blind interference alignment
user-centric
hybrid network
load balancing
author_facet Ahmad Adnan-Qidan
Maximo Morales-Cespedes
Ana Garcia Armada
author_sort Ahmad Adnan-Qidan
title Load Balancing in Hybrid VLC and RF Networks Based on Blind Interference Alignment
title_short Load Balancing in Hybrid VLC and RF Networks Based on Blind Interference Alignment
title_full Load Balancing in Hybrid VLC and RF Networks Based on Blind Interference Alignment
title_fullStr Load Balancing in Hybrid VLC and RF Networks Based on Blind Interference Alignment
title_full_unstemmed Load Balancing in Hybrid VLC and RF Networks Based on Blind Interference Alignment
title_sort load balancing in hybrid vlc and rf networks based on blind interference alignment
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description Visible light communications (VLC) are proposed for increasing the spectral efficiency and the number of devices served in indoor environments, while providing illumination through light emitting diodes (LED). For VLC, each optical access point (AP) provides a small and confined area of coverage. Since several sources of light are usually deployed in overlapping fashion in order to provide satisfactory illumination, VLC are limited by inter-cell interference. Moreover, transmission from a specific optical AP can be blocked by the elements of the scenario. On the other hand, radio-frequency (RF) systems such as WiFi are usually available in most of the indoor scenarios. In this work, we first propose a dynamic cell formation method for grouping the optical APs in multiple optical cells that cover a footprint each minimizing the inter-cell interference. After that, we use transmission based on blind interference alignment (BIA) in each optical cell. Considering the coexistence with RF systems based on orthogonal frequency division multiplexing (OFDM), a load balancing algorithm is proposed for managing the resources of the resulting hybrid VLC/RF network and determining the user association to each system. However, the complexity of this optimization problem is excessively high for practical VLC/RF networks. In order to obtain a suboptimal but tractable solution, we propose a decentralized optimization method based on Lagrangian multipliers. Simulation results show that the proposed scheme outperforms other approaches for user grouping and managing the resources of hybrid VLC/RF networks.
topic Visible light communications
blind interference alignment
user-centric
hybrid network
load balancing
url https://ieeexplore.ieee.org/document/9064520/
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