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Simultaneous wireless information and power transfer in modern communication systems

IEEE Communications Magazine · 2014 · Vol. 52(11) · pp. 104–110
Ioannis KrikidisStelios TimotheouSymeon NikolaouGan ZhengDerrick Wing Kwan NgRobert Schober

Abstract

Energy harvesting for wireless communication networks is a new paradigm that allows terminals to recharge their batteries from external energy sources in the surrounding environment. A promising energy harvesting technology is wireless power transfer where terminals harvest energy from electromagnetic radiation. Thereby, the energy may be harvested opportunistically from ambient electromagnetic sources or from sources that intentionally transmit electromagnetic energy for energy harvesting purposes. A particularly interesting and challenging scenario arises when sources perform simultaneous wireless information and power transfer (SWIPT), as strong signals not only increase power transfer but also interference. This article provides an overview of SWIPT systems with a particular focus on the hardware realization of rectenna circuits and practical techniques that achieve SWIPT in the domains of time, power, antennas, and space. The article also discusses the benefits of a potential integration of SWIPT technologies in modern communication networks in the context of resource allocation and cooperative cognitive radio networks.

Energy Harvesting in Wireless NetworksAdvanced MIMO Systems OptimizationFull-Duplex Wireless CommunicationsRectennaEnergy harvestingComputer scienceMaximum power transfer theoremWirelessContext (archaeology)Cognitive radioWireless power transferTelecommunicationsElectrical engineering
Citations
939
FWCI
60.22
field-weighted impact
References
18
Percentile
100%
vs. same field & year
Citations per year
References
MIMO Broadcasting for Simultaneous Wireless Information and Power Transfer
IEEE Transactions on Wireless Communications · 2013 · 2,830 citations
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