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Published in: Wireless Personal Communications 1/2021

26-06-2021

In-relay Power Allocation for Multi-pair Full-duplex Massive-MIMO AF Relay Network

Authors: Nasrin Hosseinzadeh, Yasser Attarizi

Published in: Wireless Personal Communications | Issue 1/2021

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Abstract

In this paper, a multi-pair two-way full-duplex relay network is investigated, in which multiple pairs of full-duplex single antenna users are served via a full-duplex amplify-forward multi-antenna relay. The relay uses zero-forcing beam-forming in both reception and transmission. Therefore, the inter-stream interference of users in reception and transmission is canceled out completely. An inter-stream power allocation algorithm is proposed for the relay node. The in-relay power allocation algorithm is obtained by solving an optimization problem using an iterative algorithm with Mean Square Error criterion under relay output power constraint. Then, assuming the number of user pairs larger than a computed threshold, a suboptimal closed-form solution for this problem is obtained. The performance of the proposed in-relay power allocation schemes is investigated using Monte–Carlo simulation and compared with the so-called the in-user and the jointly in-relay and users power allocation. The simulation results show a very small difference between the suboptimal and optimal algorithms and the superiority of in-relay algorithms over the in-user and jointly in-relay and users algorithms.

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Literature
1.
go back to reference Rankov, B., & Wittneben, A. (2007). Spectral efficient protocols for half-duplex fading relay channels. IEEE Journal on Selected Areas in Communications, 25, 379–389.CrossRef Rankov, B., & Wittneben, A. (2007). Spectral efficient protocols for half-duplex fading relay channels. IEEE Journal on Selected Areas in Communications, 25, 379–389.CrossRef
2.
go back to reference Bliss, D. W., Parker, P. A., & Margetts, A. R. (2007). Simultaneous transmission and reception for improved wireless network performances. In IEEE/SP 14th Workshop on Statistical Signal Processing (pp 472–478). IEEE. Bliss, D. W., Parker, P. A., & Margetts, A. R. (2007). Simultaneous transmission and reception for improved wireless network performances. In IEEE/SP 14th Workshop on Statistical Signal Processing (pp 472–478). IEEE.
3.
go back to reference Riihonen, T., Werner, S., & Wichman, R. (2011). Mitigation of loop-back self-interference in full-duplex MIMO relays. IEEE Transactions on Signal Processing, 59, 5983–5993.MathSciNetCrossRef Riihonen, T., Werner, S., & Wichman, R. (2011). Mitigation of loop-back self-interference in full-duplex MIMO relays. IEEE Transactions on Signal Processing, 59, 5983–5993.MathSciNetCrossRef
4.
go back to reference El-Mahdy, A., & Seraj-Eldin, M. (2019). Design of multi-antenna relaying for OFDM in impulsive noise environment. Digital Communications and Networks, 5(3), 189–195.CrossRef El-Mahdy, A., & Seraj-Eldin, M. (2019). Design of multi-antenna relaying for OFDM in impulsive noise environment. Digital Communications and Networks, 5(3), 189–195.CrossRef
5.
go back to reference Everett, E., Sahai, A., & Sabharwal, A. (2014). Passive self- interference suppression for full-duplex infrastructure nodes. IEEE Transactions on Wireless Communications, 13(2), 680694.CrossRef Everett, E., Sahai, A., & Sabharwal, A. (2014). Passive self- interference suppression for full-duplex infrastructure nodes. IEEE Transactions on Wireless Communications, 13(2), 680694.CrossRef
6.
go back to reference Heino, M., Korpi, D., Huusari, T., et al. (2015). Recent advances in antenna design and interference cancellation algorithms for in-band full duplex relays. IEEE Communications Magazine, 53(5), 91101.CrossRef Heino, M., Korpi, D., Huusari, T., et al. (2015). Recent advances in antenna design and interference cancellation algorithms for in-band full duplex relays. IEEE Communications Magazine, 53(5), 91101.CrossRef
7.
go back to reference Cirik, A., Rong, Y., & Hua, Y. (2014). Achievable rates of full- duplex MIMO radios in fast fading channels with imperfect channel estimation. IEEE Transactions on Signal Processing, 62(15), 38743886.MathSciNetCrossRef Cirik, A., Rong, Y., & Hua, Y. (2014). Achievable rates of full- duplex MIMO radios in fast fading channels with imperfect channel estimation. IEEE Transactions on Signal Processing, 62(15), 38743886.MathSciNetCrossRef
8.
go back to reference Duarte, M., Dick, C., & Sabharwal, A. (2012). Experiment-driven characterization of full-duplex wireless systems. IEEE Transactions on Wireless Communications, 11(12), 42964307.CrossRef Duarte, M., Dick, C., & Sabharwal, A. (2012). Experiment-driven characterization of full-duplex wireless systems. IEEE Transactions on Wireless Communications, 11(12), 42964307.CrossRef
9.
go back to reference Kamruzzaman, M. M., He, W., & Peng, X. (2014). Performance of Multiuser MIMO uplink wireless communication using Space Time Block Coding for rayleigh fading channel. In 2014 17th International Conference on Computer and Information Technology (ICCIT) (pp. 462–466). IEEE. Kamruzzaman, M. M., He, W., & Peng, X. (2014). Performance of Multiuser MIMO uplink wireless communication using Space Time Block Coding for rayleigh fading channel. In 2014 17th International Conference on Computer and Information Technology (ICCIT) (pp. 462–466). IEEE.
10.
go back to reference Qi, T., Wang, Y., & Feng, X. (2017) Performance analysis of downlink user selection in multiuser MIMO system. In 2017 IEEE 2nd Information Technology, Networking, Electronic and Automation control conference (ITNEC) (pp 122–126). IEEE. Qi, T., Wang, Y., & Feng, X. (2017) Performance analysis of downlink user selection in multiuser MIMO system. In 2017 IEEE 2nd Information Technology, Networking, Electronic and Automation control conference (ITNEC) (pp 122–126). IEEE.
11.
go back to reference Neupane, K., & Haddad, R. (2019). Secrecy sum-rate analysis of massive MIMO systems under dual-threat attacks using normalization methods. Digital Communications and Networks, 5(4), 237–244.CrossRef Neupane, K., & Haddad, R. (2019). Secrecy sum-rate analysis of massive MIMO systems under dual-threat attacks using normalization methods. Digital Communications and Networks, 5(4), 237–244.CrossRef
12.
go back to reference Sheikh, T. A., Bora, J., & Hussain, M. A. (2019) Capacity maximizing in massive MIMO with linear precoding for SSF and LSF channel with perfect CSI. Digital Communications and Networks. Sheikh, T. A., Bora, J., & Hussain, M. A. (2019) Capacity maximizing in massive MIMO with linear precoding for SSF and LSF channel with perfect CSI. Digital Communications and Networks.
13.
go back to reference Lu, L., Li, G. Y., Swindlehurst, A. L., Ashikhmin, A., & Zhang, R. (2014). An overview of massive MIMO: Benefits and challenges. IEEE Journal of Selected Topics in Signal Processing, 8(5), 742–758.CrossRef Lu, L., Li, G. Y., Swindlehurst, A. L., Ashikhmin, A., & Zhang, R. (2014). An overview of massive MIMO: Benefits and challenges. IEEE Journal of Selected Topics in Signal Processing, 8(5), 742–758.CrossRef
14.
go back to reference Ngo, H. Q., Suraweera, H. A., Matthaiou, M., & Larsson, E. G. (2014). Multipair full-duplex relaying with massive arrays and linear processing. IEEE Journal on Selected Areas in Communications, 32(9), 1721–1737.CrossRef Ngo, H. Q., Suraweera, H. A., Matthaiou, M., & Larsson, E. G. (2014). Multipair full-duplex relaying with massive arrays and linear processing. IEEE Journal on Selected Areas in Communications, 32(9), 1721–1737.CrossRef
15.
go back to reference Dai, Y., & Dong, X. (2016). Power allocation for multi-pair massive MIMO two-way AF relaying with linear processing. IIEEE Transactions on Wireless Communications, 15(9), 5932–5946.CrossRef Dai, Y., & Dong, X. (2016). Power allocation for multi-pair massive MIMO two-way AF relaying with linear processing. IIEEE Transactions on Wireless Communications, 15(9), 5932–5946.CrossRef
16.
go back to reference Cui, H., Song, L., & Jiao, B. (2014). Multi-pair two-way amplify- and-forward relaying with very large number of relay antenna. IEEE Transactions on Wireless Communications, 13(5), 2636–2645.CrossRef Cui, H., Song, L., & Jiao, B. (2014). Multi-pair two-way amplify- and-forward relaying with very large number of relay antenna. IEEE Transactions on Wireless Communications, 13(5), 2636–2645.CrossRef
17.
go back to reference Zhang, Z., Chen, Z., Shen, M., & Xia, B. (2016). Spectral and energy efficiency of multi-pair two-way full-duplex relay systems with massive MIMO. IEEE Journal on Selected Areas in Communications, 34(4), 848–863.CrossRef Zhang, Z., Chen, Z., Shen, M., & Xia, B. (2016). Spectral and energy efficiency of multi-pair two-way full-duplex relay systems with massive MIMO. IEEE Journal on Selected Areas in Communications, 34(4), 848–863.CrossRef
18.
go back to reference Zhang, Z., Chen, Z., Shen, M., Xia, B., & Zhao, Y. (2016). Performance analysis for training-based multipair two-way full-duplex relaying with massive antennas. IEEE Transactions on Vehicular Technology, 66(7), 6130–6145.CrossRef Zhang, Z., Chen, Z., Shen, M., Xia, B., & Zhao, Y. (2016). Performance analysis for training-based multipair two-way full-duplex relaying with massive antennas. IEEE Transactions on Vehicular Technology, 66(7), 6130–6145.CrossRef
19.
go back to reference Xing, P., Liu, J., Zhai, C., Wang, X., & Zhang, X. (2017). Multipair two-way full-duplex relaying with massive array and power allocation. IEEE Transactions on Vehicular Technology, 66(10), 8926–8939.CrossRef Xing, P., Liu, J., Zhai, C., Wang, X., & Zhang, X. (2017). Multipair two-way full-duplex relaying with massive array and power allocation. IEEE Transactions on Vehicular Technology, 66(10), 8926–8939.CrossRef
20.
go back to reference Cui, H., Song, L., & Jiao, B. (2014). Multi-pair two-way amplify-and-forward relaying with very large number of relay antennas. IEEE Transactions on Wireless Communications, 13(5), 2636–2645.CrossRef Cui, H., Song, L., & Jiao, B. (2014). Multi-pair two-way amplify-and-forward relaying with very large number of relay antennas. IEEE Transactions on Wireless Communications, 13(5), 2636–2645.CrossRef
21.
go back to reference Wang, R., & Tao, M. (2011). Joint source and relay precoding designs for MIMO two-way relaying based on MSE criterion. IEEE Transactions on Signal Processing, 60(3), 1352–1365.MathSciNetCrossRef Wang, R., & Tao, M. (2011). Joint source and relay precoding designs for MIMO two-way relaying based on MSE criterion. IEEE Transactions on Signal Processing, 60(3), 1352–1365.MathSciNetCrossRef
22.
go back to reference Rong, Y. (2012). Joint source and relay optimization for two-way linear non-regenerative MIMO relay communications. IEEE Transactions on Signal Processing, 60(12), 6533–6546.MathSciNetCrossRef Rong, Y. (2012). Joint source and relay optimization for two-way linear non-regenerative MIMO relay communications. IEEE Transactions on Signal Processing, 60(12), 6533–6546.MathSciNetCrossRef
23.
go back to reference Shim, Y., Choi, W., & Park, H. (2016). Beamforming design for full- duplex two-way amplify-and-forward MIMO relay. IEEE Transactions on Wireless Communications, 15(10), 6705–6715.CrossRef Shim, Y., Choi, W., & Park, H. (2016). Beamforming design for full- duplex two-way amplify-and-forward MIMO relay. IEEE Transactions on Wireless Communications, 15(10), 6705–6715.CrossRef
24.
go back to reference Wang, C. L., Cho, T. N., & Song, H. H. (2013) Joint relay weighting and power allocation for a two-way amplify-and-forward relay system. In 2013 IEEE International Conference on Communications (ICC) (pp. 4608–4613). IEEE. Wang, C. L., Cho, T. N., & Song, H. H. (2013) Joint relay weighting and power allocation for a two-way amplify-and-forward relay system. In 2013 IEEE International Conference on Communications (ICC) (pp. 4608–4613). IEEE.
25.
go back to reference Hu, C. C., Liu, G. F., & Chen, B. H. (2015). Joint relay/antenna selection and precoding design for two-way MIMO amplify-and-forward relaying systems. IEEE Transactions on Vehicular Technology, 65(7), 4854–4864.CrossRef Hu, C. C., Liu, G. F., & Chen, B. H. (2015). Joint relay/antenna selection and precoding design for two-way MIMO amplify-and-forward relaying systems. IEEE Transactions on Vehicular Technology, 65(7), 4854–4864.CrossRef
Metadata
Title
In-relay Power Allocation for Multi-pair Full-duplex Massive-MIMO AF Relay Network
Authors
Nasrin Hosseinzadeh
Yasser Attarizi
Publication date
26-06-2021
Publisher
Springer US
Published in
Wireless Personal Communications / Issue 1/2021
Print ISSN: 0929-6212
Electronic ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-021-08674-y

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