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Wireless information and power transfer in two-way relaying network with non-coherent differential modulation

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Published

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Wireless information and power transfer in two-way relaying network with non-coherent differential modulation. / Xu, Weikai; Yang, Zheng; Ding, Zhiguo et al.
In: EURASIP Journal on Wireless Communications and Networking, Vol. 2015, 131, 09.05.2015.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Xu, W, Yang, Z, Ding, Z, Wang, L & Fan, P 2015, 'Wireless information and power transfer in two-way relaying network with non-coherent differential modulation', EURASIP Journal on Wireless Communications and Networking, vol. 2015, 131. https://doi.org/10.1186/s13638-015-0368-4

APA

Xu, W., Yang, Z., Ding, Z., Wang, L., & Fan, P. (2015). Wireless information and power transfer in two-way relaying network with non-coherent differential modulation. EURASIP Journal on Wireless Communications and Networking, 2015, Article 131. https://doi.org/10.1186/s13638-015-0368-4

Vancouver

Xu W, Yang Z, Ding Z, Wang L, Fan P. Wireless information and power transfer in two-way relaying network with non-coherent differential modulation. EURASIP Journal on Wireless Communications and Networking. 2015 May 9;2015:131. doi: 10.1186/s13638-015-0368-4

Author

Xu, Weikai ; Yang, Zheng ; Ding, Zhiguo et al. / Wireless information and power transfer in two-way relaying network with non-coherent differential modulation. In: EURASIP Journal on Wireless Communications and Networking. 2015 ; Vol. 2015.

Bibtex

@article{4ac2b3307c6747c087e66b2b7b566520,
title = "Wireless information and power transfer in two-way relaying network with non-coherent differential modulation",
abstract = "In this paper, we consider a denoise-and-forward (DNF) two-way relay network (TWRN) with non-coherent differential binary phase-shift keying modulation, where a battery-free relay node harvests energy from the received radio frequency (RF) signals and uses the harvested energy to help the source nodes for information exchange. Based on the power splitting (PS) and time switching (TS) receiver architectures, power splitting relaying (PSR) and time switching relaying (TSR) protocols at relay are studied. In order to investigate the effect of power allocations on two source nodes, power splitting coefficient and time switching factor at relay on performance, the two proposed protocols are analyzed and the bit error rate (BER) expressions of end-to-end system are derived. Based on these expressions, the optimal power of sources, the power splitting ratio and the time switching factor are obtained via the numerical search method. The simulation and numerical results provide practical insights into the effect of various system parameters, such as the power splitting coefficient, the time switching factor, sources to relay distances, the noise power, and the energy harvesting efficiency on the performance of this TWRN. In addition, the results show that the PSR protocol outperforms the TSR protocol in terms of throughput under various network geometries.",
keywords = "Two-way relay network, Differential modulation, Wireless information and power transfer, Denoise-and-forward, bit error rate",
author = "Weikai Xu and Zheng Yang and Zhiguo Ding and Lin Wang and Pingzhi Fan",
year = "2015",
month = may,
day = "9",
doi = "10.1186/s13638-015-0368-4",
language = "English",
volume = "2015",
journal = "EURASIP Journal on Wireless Communications and Networking",
issn = "1687-1472",
publisher = "Springer International Publishing AG",

}

RIS

TY - JOUR

T1 - Wireless information and power transfer in two-way relaying network with non-coherent differential modulation

AU - Xu, Weikai

AU - Yang, Zheng

AU - Ding, Zhiguo

AU - Wang, Lin

AU - Fan, Pingzhi

PY - 2015/5/9

Y1 - 2015/5/9

N2 - In this paper, we consider a denoise-and-forward (DNF) two-way relay network (TWRN) with non-coherent differential binary phase-shift keying modulation, where a battery-free relay node harvests energy from the received radio frequency (RF) signals and uses the harvested energy to help the source nodes for information exchange. Based on the power splitting (PS) and time switching (TS) receiver architectures, power splitting relaying (PSR) and time switching relaying (TSR) protocols at relay are studied. In order to investigate the effect of power allocations on two source nodes, power splitting coefficient and time switching factor at relay on performance, the two proposed protocols are analyzed and the bit error rate (BER) expressions of end-to-end system are derived. Based on these expressions, the optimal power of sources, the power splitting ratio and the time switching factor are obtained via the numerical search method. The simulation and numerical results provide practical insights into the effect of various system parameters, such as the power splitting coefficient, the time switching factor, sources to relay distances, the noise power, and the energy harvesting efficiency on the performance of this TWRN. In addition, the results show that the PSR protocol outperforms the TSR protocol in terms of throughput under various network geometries.

AB - In this paper, we consider a denoise-and-forward (DNF) two-way relay network (TWRN) with non-coherent differential binary phase-shift keying modulation, where a battery-free relay node harvests energy from the received radio frequency (RF) signals and uses the harvested energy to help the source nodes for information exchange. Based on the power splitting (PS) and time switching (TS) receiver architectures, power splitting relaying (PSR) and time switching relaying (TSR) protocols at relay are studied. In order to investigate the effect of power allocations on two source nodes, power splitting coefficient and time switching factor at relay on performance, the two proposed protocols are analyzed and the bit error rate (BER) expressions of end-to-end system are derived. Based on these expressions, the optimal power of sources, the power splitting ratio and the time switching factor are obtained via the numerical search method. The simulation and numerical results provide practical insights into the effect of various system parameters, such as the power splitting coefficient, the time switching factor, sources to relay distances, the noise power, and the energy harvesting efficiency on the performance of this TWRN. In addition, the results show that the PSR protocol outperforms the TSR protocol in terms of throughput under various network geometries.

KW - Two-way relay network

KW - Differential modulation

KW - Wireless information and power transfer

KW - Denoise-and-forward, bit error rate

U2 - 10.1186/s13638-015-0368-4

DO - 10.1186/s13638-015-0368-4

M3 - Journal article

VL - 2015

JO - EURASIP Journal on Wireless Communications and Networking

JF - EURASIP Journal on Wireless Communications and Networking

SN - 1687-1472

M1 - 131

ER -