Joint Deployment and Mobility Management of Energy Harvesting Small Cells in Heterogeneous Networks

Small heterogeneous cells have been introduced to improve the system capacity and provide the ubiquitous service requirements. In order to make flexible deployment and management of massive small cells, the utilization of self-powered small cell base stations with energy harvesting (EH-SCBSs) is bec...

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Main Authors: Guanhua Qiao, Supeng Leng, Ke Zhang, Kun Yang
Format: Article
Language:English
Published: IEEE 2017-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/7778219/
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spelling doaj-f324821e8a894f39a2798401942660512021-03-29T20:00:45ZengIEEEIEEE Access2169-35362017-01-01518319610.1109/ACCESS.2016.26358787778219Joint Deployment and Mobility Management of Energy Harvesting Small Cells in Heterogeneous NetworksGuanhua Qiao0Supeng Leng1https://orcid.org/0000-0003-0049-5982Ke Zhang2Kun Yang3School of Communication and Information Engineering University of Electronic Science and Technology of China, Chengdu, ChinaSchool of Communication and Information Engineering University of Electronic Science and Technology of China, Chengdu, ChinaSchool of Communication and Information Engineering University of Electronic Science and Technology of China, Chengdu, ChinaSchool of Communication and Information Engineering University of Electronic Science and Technology of China, Chengdu, ChinaSmall heterogeneous cells have been introduced to improve the system capacity and provide the ubiquitous service requirements. In order to make flexible deployment and management of massive small cells, the utilization of self-powered small cell base stations with energy harvesting (EH-SCBSs) is becoming a promising solution due to low-cost expenditure. However, the deployment of static EH-SCBSs entails several intractable challenges in terms of the randomness of renewable energy arrival and dynamics of traffic load with spatio-temporal fluctuation. To tackle these challenges, we develop a tractable framework of the location deployment and mobility management of EH-SCBSs with various traffic load distributions an environmental energy models. In this paper, the joint optimization problem for location deployment and mobile management is investigated for maximizing the total system utility of both users and network operators. Since the formulated problem is a NP-hard problem, we propose a low-complex algorithm that decouples the joint optimization into the location updating approach and the association matching approach. A suboptimal solution for the optimization problem can be guaranteed using the iteration of two stage approaches. Performance evaluation shows that the proposed schemes can efficiently solve the target problems while striking a better overall system utility, compared with other traditional deployment and management strategies.https://ieeexplore.ieee.org/document/7778219/Small heterogeneous networksenergy harvestingsmall cell deploymentmobility managementmatching theory
collection DOAJ
language English
format Article
sources DOAJ
author Guanhua Qiao
Supeng Leng
Ke Zhang
Kun Yang
spellingShingle Guanhua Qiao
Supeng Leng
Ke Zhang
Kun Yang
Joint Deployment and Mobility Management of Energy Harvesting Small Cells in Heterogeneous Networks
IEEE Access
Small heterogeneous networks
energy harvesting
small cell deployment
mobility management
matching theory
author_facet Guanhua Qiao
Supeng Leng
Ke Zhang
Kun Yang
author_sort Guanhua Qiao
title Joint Deployment and Mobility Management of Energy Harvesting Small Cells in Heterogeneous Networks
title_short Joint Deployment and Mobility Management of Energy Harvesting Small Cells in Heterogeneous Networks
title_full Joint Deployment and Mobility Management of Energy Harvesting Small Cells in Heterogeneous Networks
title_fullStr Joint Deployment and Mobility Management of Energy Harvesting Small Cells in Heterogeneous Networks
title_full_unstemmed Joint Deployment and Mobility Management of Energy Harvesting Small Cells in Heterogeneous Networks
title_sort joint deployment and mobility management of energy harvesting small cells in heterogeneous networks
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2017-01-01
description Small heterogeneous cells have been introduced to improve the system capacity and provide the ubiquitous service requirements. In order to make flexible deployment and management of massive small cells, the utilization of self-powered small cell base stations with energy harvesting (EH-SCBSs) is becoming a promising solution due to low-cost expenditure. However, the deployment of static EH-SCBSs entails several intractable challenges in terms of the randomness of renewable energy arrival and dynamics of traffic load with spatio-temporal fluctuation. To tackle these challenges, we develop a tractable framework of the location deployment and mobility management of EH-SCBSs with various traffic load distributions an environmental energy models. In this paper, the joint optimization problem for location deployment and mobile management is investigated for maximizing the total system utility of both users and network operators. Since the formulated problem is a NP-hard problem, we propose a low-complex algorithm that decouples the joint optimization into the location updating approach and the association matching approach. A suboptimal solution for the optimization problem can be guaranteed using the iteration of two stage approaches. Performance evaluation shows that the proposed schemes can efficiently solve the target problems while striking a better overall system utility, compared with other traditional deployment and management strategies.
topic Small heterogeneous networks
energy harvesting
small cell deployment
mobility management
matching theory
url https://ieeexplore.ieee.org/document/7778219/
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AT supengleng jointdeploymentandmobilitymanagementofenergyharvestingsmallcellsinheterogeneousnetworks
AT kezhang jointdeploymentandmobilitymanagementofenergyharvestingsmallcellsinheterogeneousnetworks
AT kunyang jointdeploymentandmobilitymanagementofenergyharvestingsmallcellsinheterogeneousnetworks
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