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Erschienen in: Wireless Networks 2/2018

05.08.2016

Simultaneous wireless information and power transfer for relay assisted energy harvesting network

verfasst von: Sai Huang, Yuanyuan Yao, Zhiyong Feng

Erschienen in: Wireless Networks | Ausgabe 2/2018

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Abstract

The simultaneous wireless information and power transfer in an energy harvesting system is investigated, where a relay is self-sustained by harvesting radio-frequency (RF) energy from the transmitter and multiple user devices are distributed according to a homogeneous Poisson point process. A joint time switching and power splitting protocol for relay-assisted transmission is proposed, in which each time slot is split into two stages. In the first stage, the relay utilizes a portion of received RF signal power for energy harvesting and the remaining power for information processing. In the second stage, information is delivered from the relay to its closest destination node with the harvested energy. The outage probability, network throughput and energy efficiency are derived and analyzed in closed form. On this basis, the optimal power splitting and time switching ratio which maximizes network throughput is obtained. Simulation results are also provided to validate our theoretical analysis.

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Literatur
1.
Zurück zum Zitat Sudevalayam, S., & Kulkarni, P. (2011). Energy harvesting sensor nodes: Survey and implications. IEEE Communications Surveys & Tutorials, 13(3), 443–461.CrossRef Sudevalayam, S., & Kulkarni, P. (2011). Energy harvesting sensor nodes: Survey and implications. IEEE Communications Surveys & Tutorials, 13(3), 443–461.CrossRef
2.
Zurück zum Zitat Bouchouicha, D., Dupont, F., et al. (2010). Ambient RF energy harvesting. International conference on renewable energy and power quality (ICREPQ) (pp. 1–5), Granada, Spain. Bouchouicha, D., Dupont, F., et al. (2010). Ambient RF energy harvesting. International conference on renewable energy and power quality (ICREPQ) (pp. 1–5), Granada, Spain.
3.
Zurück zum Zitat Zungeru, A. M., Ang, L. M., et al. (2012). Radio frequency energy harvesting and management for wireless sensor networks. Green mobile devices and networks: Energy optimization and scavenging techniques (pp. 341–368). Zungeru, A. M., Ang, L. M., et al. (2012). Radio frequency energy harvesting and management for wireless sensor networks. Green mobile devices and networks: Energy optimization and scavenging techniques (pp. 341–368).
4.
Zurück zum Zitat Lu, X., Wang, P., et al. (2014). Wireless networks with RF energy harvesting: A contemporary survey. IEEE Communications Surveys & Tutorials, 17(2), 757–789.MathSciNetCrossRef Lu, X., Wang, P., et al. (2014). Wireless networks with RF energy harvesting: A contemporary survey. IEEE Communications Surveys & Tutorials, 17(2), 757–789.MathSciNetCrossRef
5.
Zurück zum Zitat Daley, D., & Jones, D. V. (1988). An introduction to the theory of point processes. Berlin: Springer.MATH Daley, D., & Jones, D. V. (1988). An introduction to the theory of point processes. Berlin: Springer.MATH
6.
Zurück zum Zitat Kingman, J. F. C. (1993). Poisson Processes. Oxford: Oxford University Press.MATH Kingman, J. F. C. (1993). Poisson Processes. Oxford: Oxford University Press.MATH
7.
Zurück zum Zitat Varshney, L. R. (2008). Transporting information and energy simultaneously. In Proceedings IEEE international symposium on information theory (ISIT), Toronto, Canada (pp. 1612–1616). Varshney, L. R. (2008). Transporting information and energy simultaneously. In Proceedings IEEE international symposium on information theory (ISIT), Toronto, Canada (pp. 1612–1616).
8.
Zurück zum Zitat Grover, P., & Sahai, A. (2010). Shannon meets Tesla: Wireless information and power transfer. In Proceedings of IEEE international symposium on information theory, Austin, USA (pp. 2363–2367). Grover, P., & Sahai, A. (2010). Shannon meets Tesla: Wireless information and power transfer. In Proceedings of IEEE international symposium on information theory, Austin, USA (pp. 2363–2367).
9.
Zurück zum Zitat Popovski, P., Fouladgar, A. M., & Simeone, O. (2013). Interactive joint transfer of energy and information. IEEE Transactions on Communications, 61(5), 2086–2097.CrossRef Popovski, P., Fouladgar, A. M., & Simeone, O. (2013). Interactive joint transfer of energy and information. IEEE Transactions on Communications, 61(5), 2086–2097.CrossRef
10.
Zurück zum Zitat Ng, D. W. K., & Schober, R. (2013). Spectral efficient optimization in OFDM systems with wireless information and power transfer. In Proceedings of IEE European signal processing conference (EUSIPCO), Marrakech, Morocco (pp. 1–5). Ng, D. W. K., & Schober, R. (2013). Spectral efficient optimization in OFDM systems with wireless information and power transfer. In Proceedings of IEE European signal processing conference (EUSIPCO), Marrakech, Morocco (pp. 1–5).
11.
Zurück zum Zitat Luo, S., Zhang, R., & Lim, T. J. (2013). Optimal save-then-transmit protocol for energy harvesting wireless transmitters. IEEE Transactions on Wireless Communications, 12(3), 1196–1207.CrossRef Luo, S., Zhang, R., & Lim, T. J. (2013). Optimal save-then-transmit protocol for energy harvesting wireless transmitters. IEEE Transactions on Wireless Communications, 12(3), 1196–1207.CrossRef
12.
Zurück zum Zitat Zhou, X., Zhang, R., & Ho, C. (2013). Wireless information and power transfer: Architecture design and rate-energy tradeoff. IEEE Transactions on Communications, 61(11), 4754–4767.CrossRef Zhou, X., Zhang, R., & Ho, C. (2013). Wireless information and power transfer: Architecture design and rate-energy tradeoff. IEEE Transactions on Communications, 61(11), 4754–4767.CrossRef
13.
Zurück zum Zitat Zhao, N., Yu, F. R., & Leung, V. C. M. (2015). Wireless energy harvesting in interference alignment networks. IEEE Communications Magazine, 53(6), 72–78.CrossRef Zhao, N., Yu, F. R., & Leung, V. C. M. (2015). Wireless energy harvesting in interference alignment networks. IEEE Communications Magazine, 53(6), 72–78.CrossRef
14.
Zurück zum Zitat Zhao, N., Yu, F. R., & Leung, V. C. M. (2015). Opportunistic communications in interference alignment networks with wireless power transfer. IEEE Communications Magazine, 22(1), 88–95.CrossRef Zhao, N., Yu, F. R., & Leung, V. C. M. (2015). Opportunistic communications in interference alignment networks with wireless power transfer. IEEE Communications Magazine, 22(1), 88–95.CrossRef
15.
Zurück zum Zitat Jiang, D., Xu, Z., Li, W., & Chen, Z. (2015). Network coding-based energy-efficient multicast routing algorithm for multi-hop wireless networks. IEEE Wireless Communications, 104, 152–165. Jiang, D., Xu, Z., Li, W., & Chen, Z. (2015). Network coding-based energy-efficient multicast routing algorithm for multi-hop wireless networks. IEEE Wireless Communications, 104, 152–165.
16.
Zurück zum Zitat Jiang, D., Xu, Z., & Lv, Z. (2016). A multicast delivery approach with minimum energy consumption for wireless multi-hop networks. IEEE Communications Magazine, 62(4), 771–782. Jiang, D., Xu, Z., & Lv, Z. (2016). A multicast delivery approach with minimum energy consumption for wireless multi-hop networks. IEEE Communications Magazine, 62(4), 771–782.
17.
Zurück zum Zitat Ng, D. W. K., Lo, E. S., & Schober, R. (2013). Energy-efficient power allocation in OFDM systems with wireless information and power transfer. In Proceedings IEEE international conference on communications (ICC), Budapest, Hungary (pp. 4125–4130). Ng, D. W. K., Lo, E. S., & Schober, R. (2013). Energy-efficient power allocation in OFDM systems with wireless information and power transfer. In Proceedings IEEE international conference on communications (ICC), Budapest, Hungary (pp. 4125–4130).
18.
Zurück zum Zitat Ng, D. W. K., Lo, E. S., & Schober, R. (2013). Wireless information and power transfer: Energy efficiency optimization in OFDMA systems. IEEE Transactions on Wireless Communications, 12(12), 6352–6370.CrossRef Ng, D. W. K., Lo, E. S., & Schober, R. (2013). Wireless information and power transfer: Energy efficiency optimization in OFDMA systems. IEEE Transactions on Wireless Communications, 12(12), 6352–6370.CrossRef
19.
Zurück zum Zitat Nasir, A., Zhou, X., Durrani, S., & Kennedy, R. (2013). Relaying protocols for wireless energy harvesting and information processing. IEEE Transactions on Wireless Communications, 12(7), 3622–3636.CrossRef Nasir, A., Zhou, X., Durrani, S., & Kennedy, R. (2013). Relaying protocols for wireless energy harvesting and information processing. IEEE Transactions on Wireless Communications, 12(7), 3622–3636.CrossRef
20.
Zurück zum Zitat Nasir, A., Zhou, X., Durrani, S., & Kennedy, R. (2015). Wireless-powered relays in cooperative communications: Time-switching relaying protocols and throughput analysis. IEEE Transactions on Communications, 63(5), 1607–1622.CrossRef Nasir, A., Zhou, X., Durrani, S., & Kennedy, R. (2015). Wireless-powered relays in cooperative communications: Time-switching relaying protocols and throughput analysis. IEEE Transactions on Communications, 63(5), 1607–1622.CrossRef
21.
Zurück zum Zitat Liu, Y., & Wang, X. (2015). Information and energy cooperation in OFDM relaying. In Proceedings of IEEE international conference on communications (ICC), London, UK (pp. 2506–2511). Liu, Y., & Wang, X. (2015). Information and energy cooperation in OFDM relaying. In Proceedings of IEEE international conference on communications (ICC), London, UK (pp. 2506–2511).
22.
Zurück zum Zitat Andrews, J., Baccelli, F., & Ganti, R. (2011). A tractable approach to coverage and rate in cellular networks. IEEE Transactions on Wireless Communications, 59(11), 3122–3134.CrossRef Andrews, J., Baccelli, F., & Ganti, R. (2011). A tractable approach to coverage and rate in cellular networks. IEEE Transactions on Wireless Communications, 59(11), 3122–3134.CrossRef
23.
Zurück zum Zitat Ikki, S., & Ahmed, M. (2007). Performance analysis of cooperative diversity wireless networks over Nakagami-m fading channel. IEEE Communications Letters, 11(4), 334–336.CrossRef Ikki, S., & Ahmed, M. (2007). Performance analysis of cooperative diversity wireless networks over Nakagami-m fading channel. IEEE Communications Letters, 11(4), 334–336.CrossRef
24.
Zurück zum Zitat Meyr, H., Mseneclaey, M., & Fechtel, S. A. (1998). Digital communication receivers, synchronization, channel estimation, and signal processing. London: Wiley-Interscience. Meyr, H., Mseneclaey, M., & Fechtel, S. A. (1998). Digital communication receivers, synchronization, channel estimation, and signal processing. London: Wiley-Interscience.
Metadaten
Titel
Simultaneous wireless information and power transfer for relay assisted energy harvesting network
verfasst von
Sai Huang
Yuanyuan Yao
Zhiyong Feng
Publikationsdatum
05.08.2016
Verlag
Springer US
Erschienen in
Wireless Networks / Ausgabe 2/2018
Print ISSN: 1022-0038
Elektronische ISSN: 1572-8196
DOI
https://doi.org/10.1007/s11276-016-1346-4

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