Energy-Efficient Multicast Transmission for Underlay Device-to-Device Communications: A Social-Aware Perspective

In this paper, by utilizing the social relationships among mobile users, we present a framework of energy-efficient cluster formation and resource allocation for multicast D2D transmission. In particular, we first deal with D2D multicast cluster/group formation strategy from both physical distance a...

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Main Authors: Fan Jiang, Yao Liu, Chenbi Li, Changyin Sun
Format: Article
Language:English
Published: Hindawi Limited 2017-01-01
Series:Mobile Information Systems
Online Access:http://dx.doi.org/10.1155/2017/7148564
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spelling doaj-65164a06d739472e901e6be72e1dc49a2021-07-02T06:30:48ZengHindawi LimitedMobile Information Systems1574-017X1875-905X2017-01-01201710.1155/2017/71485647148564Energy-Efficient Multicast Transmission for Underlay Device-to-Device Communications: A Social-Aware PerspectiveFan Jiang0Yao Liu1Chenbi Li2Changyin Sun3School of Communication and Information Engineering, Xi’an University of Posts and Telecommunications, Xi’an, ChinaDepartment of Computer Science and Engineering, University of South Florida, Tampa, FL, USASchool of Communication and Information Engineering, Xi’an University of Posts and Telecommunications, Xi’an, ChinaSchool of Communication and Information Engineering, Xi’an University of Posts and Telecommunications, Xi’an, ChinaIn this paper, by utilizing the social relationships among mobile users, we present a framework of energy-efficient cluster formation and resource allocation for multicast D2D transmission. In particular, we first deal with D2D multicast cluster/group formation strategy from both physical distance and social trust level. Then we aim to maximize the overall energy-efficiency of D2D multicast groups through resource allocation and power control scheme, which considers the quality-of-service (QoS) requirements of both cellular user equipment and D2D groups. A heuristic algorithm is proposed to solve above energy-efficiency problem with less complexity. After that, considering the limited battery capacity of mobile users, we propose an energy and social aware cluster head update algorithm, which incorporates both the energy constraint and social centrality measurement. Numerical results indicate that the proposed social-tie based D2D multicast group formation and update algorithm form a multicast group in an energy efficient way. Moreover, the proposed resource and power allocation scheme achieves better energy efficiency in terms of throughput per energy consumption. These results show that, by exploiting social domain information, underlay D2D multicast transmission has high practical potential in saving the source on wireless links and in the backhaul.http://dx.doi.org/10.1155/2017/7148564
collection DOAJ
language English
format Article
sources DOAJ
author Fan Jiang
Yao Liu
Chenbi Li
Changyin Sun
spellingShingle Fan Jiang
Yao Liu
Chenbi Li
Changyin Sun
Energy-Efficient Multicast Transmission for Underlay Device-to-Device Communications: A Social-Aware Perspective
Mobile Information Systems
author_facet Fan Jiang
Yao Liu
Chenbi Li
Changyin Sun
author_sort Fan Jiang
title Energy-Efficient Multicast Transmission for Underlay Device-to-Device Communications: A Social-Aware Perspective
title_short Energy-Efficient Multicast Transmission for Underlay Device-to-Device Communications: A Social-Aware Perspective
title_full Energy-Efficient Multicast Transmission for Underlay Device-to-Device Communications: A Social-Aware Perspective
title_fullStr Energy-Efficient Multicast Transmission for Underlay Device-to-Device Communications: A Social-Aware Perspective
title_full_unstemmed Energy-Efficient Multicast Transmission for Underlay Device-to-Device Communications: A Social-Aware Perspective
title_sort energy-efficient multicast transmission for underlay device-to-device communications: a social-aware perspective
publisher Hindawi Limited
series Mobile Information Systems
issn 1574-017X
1875-905X
publishDate 2017-01-01
description In this paper, by utilizing the social relationships among mobile users, we present a framework of energy-efficient cluster formation and resource allocation for multicast D2D transmission. In particular, we first deal with D2D multicast cluster/group formation strategy from both physical distance and social trust level. Then we aim to maximize the overall energy-efficiency of D2D multicast groups through resource allocation and power control scheme, which considers the quality-of-service (QoS) requirements of both cellular user equipment and D2D groups. A heuristic algorithm is proposed to solve above energy-efficiency problem with less complexity. After that, considering the limited battery capacity of mobile users, we propose an energy and social aware cluster head update algorithm, which incorporates both the energy constraint and social centrality measurement. Numerical results indicate that the proposed social-tie based D2D multicast group formation and update algorithm form a multicast group in an energy efficient way. Moreover, the proposed resource and power allocation scheme achieves better energy efficiency in terms of throughput per energy consumption. These results show that, by exploiting social domain information, underlay D2D multicast transmission has high practical potential in saving the source on wireless links and in the backhaul.
url http://dx.doi.org/10.1155/2017/7148564
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AT yaoliu energyefficientmulticasttransmissionforunderlaydevicetodevicecommunicationsasocialawareperspective
AT chenbili energyefficientmulticasttransmissionforunderlaydevicetodevicecommunicationsasocialawareperspective
AT changyinsun energyefficientmulticasttransmissionforunderlaydevicetodevicecommunicationsasocialawareperspective
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