Network-Assisted Distributed Fairness-Aware Interference Coordination for Device-to-Device Communication Underlaid Cellular Networks
Device-to-device (D2D) communication underlaid cellular network is considered a key integration feature in future cellular network. However, without properly designed interference management, the interference from D2D transmission tends to degrade the performance of cellular users and D2D pairs. In...
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doaj-cf1103acd61b41cb9fab062165bdfb072021-07-02T06:54:11ZengHindawi LimitedMobile Information Systems1574-017X1875-905X2017-01-01201710.1155/2017/18210841821084Network-Assisted Distributed Fairness-Aware Interference Coordination for Device-to-Device Communication Underlaid Cellular NetworksFrancis Boabang0Hoang-Hiep Nguyen1Quoc-Viet Pham2Won-Joo Hwang3Department of Information and Communication System, Inje University, 197 Inje-ro, Gimhae, Gyeongnam, Republic of KoreaDepartment of Information and Communication System, Inje University, 197 Inje-ro, Gimhae, Gyeongnam, Republic of KoreaDepartment of Information and Communication System, Inje University, 197 Inje-ro, Gimhae, Gyeongnam, Republic of KoreaDepartment of Electronic, Telecommunications, Mechanical and Automotive Engineering, HSV-TRC, Inje University, 197 Inje-ro, Gimhae, Gyeongnam 621-749, Republic of KoreaDevice-to-device (D2D) communication underlaid cellular network is considered a key integration feature in future cellular network. However, without properly designed interference management, the interference from D2D transmission tends to degrade the performance of cellular users and D2D pairs. In this work, we proposed a network-assisted distributed interference mitigation scheme to address this issue. Specifically, the base station (BS) acts as a control agent that coordinates the cross-tier interference from D2D transmission through a taxation scheme. The cotier interference is controlled by noncooperative game amongst D2D pairs. In general, the outcome of noncooperative game is inefficient due to the selfishness of each player. In our game formulation, reference user who is the victim of cotier interference is factored into the payoff function of each player to obtain fair and efficient outcome. The existence, uniqueness of the Nash Equilibrium (NE), and the convergence of the proposed algorithm are characterized using Variational Inequality theory. Finally, we provide simulation results to evaluate the efficiency of the proposed algorithm.http://dx.doi.org/10.1155/2017/1821084 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Francis Boabang Hoang-Hiep Nguyen Quoc-Viet Pham Won-Joo Hwang |
spellingShingle |
Francis Boabang Hoang-Hiep Nguyen Quoc-Viet Pham Won-Joo Hwang Network-Assisted Distributed Fairness-Aware Interference Coordination for Device-to-Device Communication Underlaid Cellular Networks Mobile Information Systems |
author_facet |
Francis Boabang Hoang-Hiep Nguyen Quoc-Viet Pham Won-Joo Hwang |
author_sort |
Francis Boabang |
title |
Network-Assisted Distributed Fairness-Aware Interference Coordination for Device-to-Device Communication Underlaid Cellular Networks |
title_short |
Network-Assisted Distributed Fairness-Aware Interference Coordination for Device-to-Device Communication Underlaid Cellular Networks |
title_full |
Network-Assisted Distributed Fairness-Aware Interference Coordination for Device-to-Device Communication Underlaid Cellular Networks |
title_fullStr |
Network-Assisted Distributed Fairness-Aware Interference Coordination for Device-to-Device Communication Underlaid Cellular Networks |
title_full_unstemmed |
Network-Assisted Distributed Fairness-Aware Interference Coordination for Device-to-Device Communication Underlaid Cellular Networks |
title_sort |
network-assisted distributed fairness-aware interference coordination for device-to-device communication underlaid cellular networks |
publisher |
Hindawi Limited |
series |
Mobile Information Systems |
issn |
1574-017X 1875-905X |
publishDate |
2017-01-01 |
description |
Device-to-device (D2D) communication underlaid cellular network is considered a key integration feature in future cellular network. However, without properly designed interference management, the interference from D2D transmission tends to degrade the performance of cellular users and D2D pairs. In this work, we proposed a network-assisted distributed interference mitigation scheme to address this issue. Specifically, the base station (BS) acts as a control agent that coordinates the cross-tier interference from D2D transmission through a taxation scheme. The cotier interference is controlled by noncooperative game amongst D2D pairs. In general, the outcome of noncooperative game is inefficient due to the selfishness of each player. In our game formulation, reference user who is the victim of cotier interference is factored into the payoff function of each player to obtain fair and efficient outcome. The existence, uniqueness of the Nash Equilibrium (NE), and the convergence of the proposed algorithm are characterized using Variational Inequality theory. Finally, we provide simulation results to evaluate the efficiency of the proposed algorithm. |
url |
http://dx.doi.org/10.1155/2017/1821084 |
work_keys_str_mv |
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