Optimal Power Control in Green Wireless Sensor Networks With Wireless Energy Harvesting, Wake-Up Radio and Transmission Control
Wireless sensor networks (WSNs) are autonomous networks of spatially distributed sensor nodes that are capable of wirelessly communicating with each other in a multihop fashion. Among different metrics, network lifetime and utility, and energy consumption in terms of carbon footprint are key paramet...
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doaj-510a4094c7ca42c1860d13e504d122a12021-03-29T20:00:49ZengIEEEIEEE Access2169-35362017-01-01550151810.1109/ACCESS.2016.26446077801070Optimal Power Control in Green Wireless Sensor Networks With Wireless Energy Harvesting, Wake-Up Radio and Transmission ControlChinmaya Mahapatra0https://orcid.org/0000-0002-9198-0467Zhengguo Sheng1Pouya Kamalinejad2Victor C.M. Leung3Shahriar Mirabbasi4Department of Electrical and Computer Engineering, University of British Columbia, Vancouver, BC, CanadaDepartment of Engineering and Design, University of Sussex, Brighton, U.K.Department of Electrical and Computer Engineering, University of British Columbia, Vancouver, BC, CanadaDepartment of Electrical and Computer Engineering, University of British Columbia, Vancouver, BC, CanadaDepartment of Electrical and Computer Engineering, University of British Columbia, Vancouver, BC, CanadaWireless sensor networks (WSNs) are autonomous networks of spatially distributed sensor nodes that are capable of wirelessly communicating with each other in a multihop fashion. Among different metrics, network lifetime and utility, and energy consumption in terms of carbon footprint are key parameters that determine the performance of such a network and entail a sophisticated design at different abstraction levels. In this paper, wireless energy harvesting (WEH), wake-up radio (WUR) scheme, and error control coding (ECC) are investigated as enabling solutions to enhance the performance of WSNs while reducing its carbon footprint. Specifically, a utility-lifetime maximization problem incorporating WEH, WUR, and ECC, is formulated and solved using distributed dual subgradient algorithm based on the Lagrange multiplier method. Discussion and verification through simulation results show how the proposed solutions improve network utility, prolong the lifetime, and pave the way for a greener WSN by reducing its carbon footprint.https://ieeexplore.ieee.org/document/7801070/Green wireless sensor network (GWSN)wireless energy harvesting (WEH)wake-up radio (WUR)error control coding (ECC)subgradient algorithm |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Chinmaya Mahapatra Zhengguo Sheng Pouya Kamalinejad Victor C.M. Leung Shahriar Mirabbasi |
spellingShingle |
Chinmaya Mahapatra Zhengguo Sheng Pouya Kamalinejad Victor C.M. Leung Shahriar Mirabbasi Optimal Power Control in Green Wireless Sensor Networks With Wireless Energy Harvesting, Wake-Up Radio and Transmission Control IEEE Access Green wireless sensor network (GWSN) wireless energy harvesting (WEH) wake-up radio (WUR) error control coding (ECC) subgradient algorithm |
author_facet |
Chinmaya Mahapatra Zhengguo Sheng Pouya Kamalinejad Victor C.M. Leung Shahriar Mirabbasi |
author_sort |
Chinmaya Mahapatra |
title |
Optimal Power Control in Green Wireless Sensor Networks With Wireless Energy Harvesting, Wake-Up Radio and Transmission Control |
title_short |
Optimal Power Control in Green Wireless Sensor Networks With Wireless Energy Harvesting, Wake-Up Radio and Transmission Control |
title_full |
Optimal Power Control in Green Wireless Sensor Networks With Wireless Energy Harvesting, Wake-Up Radio and Transmission Control |
title_fullStr |
Optimal Power Control in Green Wireless Sensor Networks With Wireless Energy Harvesting, Wake-Up Radio and Transmission Control |
title_full_unstemmed |
Optimal Power Control in Green Wireless Sensor Networks With Wireless Energy Harvesting, Wake-Up Radio and Transmission Control |
title_sort |
optimal power control in green wireless sensor networks with wireless energy harvesting, wake-up radio and transmission control |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2017-01-01 |
description |
Wireless sensor networks (WSNs) are autonomous networks of spatially distributed sensor nodes that are capable of wirelessly communicating with each other in a multihop fashion. Among different metrics, network lifetime and utility, and energy consumption in terms of carbon footprint are key parameters that determine the performance of such a network and entail a sophisticated design at different abstraction levels. In this paper, wireless energy harvesting (WEH), wake-up radio (WUR) scheme, and error control coding (ECC) are investigated as enabling solutions to enhance the performance of WSNs while reducing its carbon footprint. Specifically, a utility-lifetime maximization problem incorporating WEH, WUR, and ECC, is formulated and solved using distributed dual subgradient algorithm based on the Lagrange multiplier method. Discussion and verification through simulation results show how the proposed solutions improve network utility, prolong the lifetime, and pave the way for a greener WSN by reducing its carbon footprint. |
topic |
Green wireless sensor network (GWSN) wireless energy harvesting (WEH) wake-up radio (WUR) error control coding (ECC) subgradient algorithm |
url |
https://ieeexplore.ieee.org/document/7801070/ |
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