Improving Energy-Efficiency for Resource Allocation by Relay-Aided In-Band D2D Communications in C-RAN-Based Systems

In device-to-device (D2D) communications underlaying cellular systems based on the cloud radio access network, including distributed remote radio heads (RRHs) and centralized BaseBand Unit (BBU) pool, due to dense deployment and spectrum reuse, there are strong intra-cell interference and inter-cell...

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Main Authors: Jinsong Gui, Zeming Li, Zhiwen Zeng
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8580521/
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spelling doaj-cc4343199f25440399ba16f9395e56f32021-03-29T22:51:30ZengIEEEIEEE Access2169-35362019-01-0178358837510.1109/ACCESS.2018.28884988580521Improving Energy-Efficiency for Resource Allocation by Relay-Aided In-Band D2D Communications in C-RAN-Based SystemsJinsong Gui0https://orcid.org/0000-0001-9399-9092Zeming Li1Zhiwen Zeng2School of Information Science and Engineering, Central South University, Changsha, ChinaSchool of Information Science and Engineering, Central South University, Changsha, ChinaSchool of Information Science and Engineering, Central South University, Changsha, ChinaIn device-to-device (D2D) communications underlaying cellular systems based on the cloud radio access network, including distributed remote radio heads (RRHs) and centralized BaseBand Unit (BBU) pool, due to dense deployment and spectrum reuse, there are strong intra-cell interference and inter-cell interference, which will severely degrade both the energy efficiency (EE) and the quality of service. To address this problem, we propose an energy-efficient resource allocation scheme to determine channel selection and power allocation by introducing the relay-aided in-band D2D communication mode and the non-cooperative game theory. We explore the above resource allocation problem in a hybrid manner and model it as a non-cooperative game, where each player optimizes its EE individually with the aid of RRHs. Then, we alleviate the inter-cell interference from the cellular UEs near the cell edge by allowing these UEs to select in-band D2D relay links to shorten the long transmission distances between them and RRHs. Moreover, the interfering signal processing load of the BBU is lowered due to the reduction of the interfering signal strength, and the EE is improved due to the reduction of transmission powers of these cellular UEs. The achievable performance of the proposed scheme is analyzed through simulations.https://ieeexplore.ieee.org/document/8580521/Cloud radio access networkrelay-aided in-band D2D communicationnon-cooperative gameresource allocationenergy efficiency
collection DOAJ
language English
format Article
sources DOAJ
author Jinsong Gui
Zeming Li
Zhiwen Zeng
spellingShingle Jinsong Gui
Zeming Li
Zhiwen Zeng
Improving Energy-Efficiency for Resource Allocation by Relay-Aided In-Band D2D Communications in C-RAN-Based Systems
IEEE Access
Cloud radio access network
relay-aided in-band D2D communication
non-cooperative game
resource allocation
energy efficiency
author_facet Jinsong Gui
Zeming Li
Zhiwen Zeng
author_sort Jinsong Gui
title Improving Energy-Efficiency for Resource Allocation by Relay-Aided In-Band D2D Communications in C-RAN-Based Systems
title_short Improving Energy-Efficiency for Resource Allocation by Relay-Aided In-Band D2D Communications in C-RAN-Based Systems
title_full Improving Energy-Efficiency for Resource Allocation by Relay-Aided In-Band D2D Communications in C-RAN-Based Systems
title_fullStr Improving Energy-Efficiency for Resource Allocation by Relay-Aided In-Band D2D Communications in C-RAN-Based Systems
title_full_unstemmed Improving Energy-Efficiency for Resource Allocation by Relay-Aided In-Band D2D Communications in C-RAN-Based Systems
title_sort improving energy-efficiency for resource allocation by relay-aided in-band d2d communications in c-ran-based systems
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description In device-to-device (D2D) communications underlaying cellular systems based on the cloud radio access network, including distributed remote radio heads (RRHs) and centralized BaseBand Unit (BBU) pool, due to dense deployment and spectrum reuse, there are strong intra-cell interference and inter-cell interference, which will severely degrade both the energy efficiency (EE) and the quality of service. To address this problem, we propose an energy-efficient resource allocation scheme to determine channel selection and power allocation by introducing the relay-aided in-band D2D communication mode and the non-cooperative game theory. We explore the above resource allocation problem in a hybrid manner and model it as a non-cooperative game, where each player optimizes its EE individually with the aid of RRHs. Then, we alleviate the inter-cell interference from the cellular UEs near the cell edge by allowing these UEs to select in-band D2D relay links to shorten the long transmission distances between them and RRHs. Moreover, the interfering signal processing load of the BBU is lowered due to the reduction of the interfering signal strength, and the EE is improved due to the reduction of transmission powers of these cellular UEs. The achievable performance of the proposed scheme is analyzed through simulations.
topic Cloud radio access network
relay-aided in-band D2D communication
non-cooperative game
resource allocation
energy efficiency
url https://ieeexplore.ieee.org/document/8580521/
work_keys_str_mv AT jinsonggui improvingenergyefficiencyforresourceallocationbyrelayaidedinbandd2dcommunicationsincranbasedsystems
AT zemingli improvingenergyefficiencyforresourceallocationbyrelayaidedinbandd2dcommunicationsincranbasedsystems
AT zhiwenzeng improvingenergyefficiencyforresourceallocationbyrelayaidedinbandd2dcommunicationsincranbasedsystems
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