Scinovex
articleTop 1% cited

Wireless Information and Power Transfer: Architecture Design and Rate-Energy Tradeoff

IEEE Transactions on Communications · 2013 · Vol. 61(11) · pp. 4754–4767
Xun ZhouRui ZhangChin Keong Ho

Abstract

Simultaneous information and power transfer over the wireless channels potentially offers great convenience to mobile users. Yet practical receiver designs impose technical constraints on its hardware realization, as practical circuits for harvesting energy from radio signals are not yet able to decode the carried information directly. To make theoretical progress, we propose a general receiver operation, namely, dynamic power splitting (DPS), which splits the received signal with adjustable power ratio for energy harvesting and information decoding, separately. Three special cases of DPS, namely, time switching (TS), static power splitting (SPS) and on-off power splitting (OPS) are investigated. The TS and SPS schemes can be treated as special cases of OPS. Moreover, we propose two types of practical receiver architectures, namely, separated versus integrated information and energy receivers. The integrated receiver integrates the front-end components of the separated receiver, thus achieving a smaller form factor. The rate-energy tradeoff for the two architectures are characterized by a so-called rate-energy (R-E) region. The optimal transmission strategy is derived to achieve different rate-energy tradeoffs. With receiver circuit power consumption taken into account, it is shown that the OPS scheme is optimal for both receivers. For the ideal case when the receiver circuit does not consume power, the SPS scheme is optimal for both receivers. In addition, we study the performance for the two types of receivers under a realistic system setup that employs practical modulation. Our results provide useful insights to the optimal practical receiver design for simultaneous wireless information and power transfer (SWIPT).

Energy Harvesting in Wireless NetworksAdvanced MIMO Systems OptimizationFull-Duplex Wireless CommunicationsComputer scienceElectronic engineeringEnergy (signal processing)WirelessMaximum power transfer theoremEnergy harvestingPower (physics)Transmission (telecommunications)Realization (probability)Information transfer
Citations
1,885
FWCI
129.12
field-weighted impact
References
25
Percentile
100%
vs. same field & year
Citations per year
Cited by
A Survey on Non-Orthogonal Multiple Access for 5G Networks: Research Challenges and Future Trends
IEEE Journal on Selected Areas in Communications · 2017 · 2,372 citations
Throughput Maximization in Wireless Powered Communication Networks
IEEE Transactions on Wireless Communications · 2014 · 1,547 citations
Wireless Information and Power Transfer: Architecture Design and Rate-Energy Tradeoff
IEEE Transactions on Communications · 2013 · 1,885 citations
Enabling Wireless Power Transfer in Cellular Networks: Architecture, Modeling and Deployment
IEEE Transactions on Wireless Communications · 2014 · 770 citations
Wireless powered communication: opportunities and challenges
IEEE Communications Magazine · 2015 · 1,139 citations
Energy Harvesting Wireless Communications: A Review of Recent Advances
IEEE Journal on Selected Areas in Communications · 2015 · 786 citations
References
MIMO Broadcasting for Simultaneous Wireless Information and Power Transfer
IEEE Transactions on Wireless Communications · 2013 · 2,830 citations
Enabling Wireless Power Transfer in Cellular Networks: Architecture, Modeling and Deployment
IEEE Transactions on Wireless Communications · 2014 · 770 citations
Wireless Information and Power Transfer: Architecture Design and Rate-Energy Tradeoff
IEEE Transactions on Communications · 2013 · 1,885 citations
Wireless Information Transfer with Opportunistic Energy Harvesting
IEEE Transactions on Wireless Communications · 2012 · 697 citations
Energy detection of unknown deterministic signals
Proceedings of the IEEE · 1967 · 3,185 citations
Related articles
Convergence of iterative decoding
Electronics Letters · 1999 · 577 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Wireless Information and Power Transfer: Architecture Design and Rate-Energy Tradeoff · Scinovex