Caching deployment based on energy efficiency in device-to-device cooperative networks

The rapid growth of mobile data traffic demand will cause congestion to the future communication network. The cache-enabled device-to-device communication has been proven to effectively enhance the performance of wireless communication networks. This article investigates the caching deployment probl...

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Main Authors: Weiguang Wang, Hui Li, Yang Liu, Wei Cheng, Haoyang Qin
Format: Article
Language:English
Published: Wiley 2020-12-01
Series:International Journal of Distributed Sensor Networks
Online Access:https://doi.org/10.1177/1550147720984659
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author Weiguang Wang
Hui Li
Yang Liu
Wei Cheng
Haoyang Qin
author_facet Weiguang Wang
Hui Li
Yang Liu
Wei Cheng
Haoyang Qin
author_sort Weiguang Wang
collection DOAJ
description The rapid growth of mobile data traffic demand will cause congestion to the future communication network. The cache-enabled device-to-device communication has been proven to effectively enhance the performance of wireless communication networks. This article investigates the caching deployment problem from the energy efficiency in the cache-enabled device-to-device networks. According to the random geometry theory modeling, the closed form expression of energy efficiency is derived, which measures the average number of successful transmitted file bits per unit time and per unit power consumption. And then we establish an optimization problem to maximize energy efficiency. As the formulated optimization problem is a multiple-ratio fractional programming problem that cannot be solved conveniently, we propose a quadratic transformation method to nest in the energy efficiency maximization problem. To tackle this problem, an iterative optimization algorithm is proposed to optimize the caching policy and network energy efficiency. The simulation results demonstrate that the proposed policy can achieve higher energy efficiency and hit probability in the cache-enabled device-to-device network.
format Article
id doaj-art-cb09dd5c731943e080c132b699fad948
institution OA Journals
issn 1550-1477
language English
publishDate 2020-12-01
publisher Wiley
record_format Article
series International Journal of Distributed Sensor Networks
spelling doaj-art-cb09dd5c731943e080c132b699fad9482025-08-20T02:19:48ZengWileyInternational Journal of Distributed Sensor Networks1550-14772020-12-011610.1177/1550147720984659Caching deployment based on energy efficiency in device-to-device cooperative networksWeiguang WangHui LiYang LiuWei ChengHaoyang QinThe rapid growth of mobile data traffic demand will cause congestion to the future communication network. The cache-enabled device-to-device communication has been proven to effectively enhance the performance of wireless communication networks. This article investigates the caching deployment problem from the energy efficiency in the cache-enabled device-to-device networks. According to the random geometry theory modeling, the closed form expression of energy efficiency is derived, which measures the average number of successful transmitted file bits per unit time and per unit power consumption. And then we establish an optimization problem to maximize energy efficiency. As the formulated optimization problem is a multiple-ratio fractional programming problem that cannot be solved conveniently, we propose a quadratic transformation method to nest in the energy efficiency maximization problem. To tackle this problem, an iterative optimization algorithm is proposed to optimize the caching policy and network energy efficiency. The simulation results demonstrate that the proposed policy can achieve higher energy efficiency and hit probability in the cache-enabled device-to-device network.https://doi.org/10.1177/1550147720984659
spellingShingle Weiguang Wang
Hui Li
Yang Liu
Wei Cheng
Haoyang Qin
Caching deployment based on energy efficiency in device-to-device cooperative networks
International Journal of Distributed Sensor Networks
title Caching deployment based on energy efficiency in device-to-device cooperative networks
title_full Caching deployment based on energy efficiency in device-to-device cooperative networks
title_fullStr Caching deployment based on energy efficiency in device-to-device cooperative networks
title_full_unstemmed Caching deployment based on energy efficiency in device-to-device cooperative networks
title_short Caching deployment based on energy efficiency in device-to-device cooperative networks
title_sort caching deployment based on energy efficiency in device to device cooperative networks
url https://doi.org/10.1177/1550147720984659
work_keys_str_mv AT weiguangwang cachingdeploymentbasedonenergyefficiencyindevicetodevicecooperativenetworks
AT huili cachingdeploymentbasedonenergyefficiencyindevicetodevicecooperativenetworks
AT yangliu cachingdeploymentbasedonenergyefficiencyindevicetodevicecooperativenetworks
AT weicheng cachingdeploymentbasedonenergyefficiencyindevicetodevicecooperativenetworks
AT haoyangqin cachingdeploymentbasedonenergyefficiencyindevicetodevicecooperativenetworks