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Erschienen in: Wireless Networks 2/2024

09.10.2023 | Original Paper

Resource allocation for full-duplex MIMO relaying system with self-energy recycling

verfasst von: Syed Adil Abbas Kazmi, Muhammad Shahid Iqbal, Sinem Coleri

Erschienen in: Wireless Networks | Ausgabe 2/2024

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Abstract

Self-energy recycling cooperative communication, in which the relay nodes simultaneously harvest energy from the source and their own transmitted signal, has been demonstrated to significantly increase the total harvested energy. In this paper, we present an optimization framework for the resource allocation and relay selection with the objective of maximizing the sum-throughput in afull-duplex multi-relay multi-user multiple-input-multiple-output network by incorporating self-energy recycling at the relays, for the first time. The formulated problem is a mixed integer non-linear programming problem, which is difficult to solve for the global optimal solution in polynomial-time. As a solution strategy, we decompose the optimization problem into two sub-problems: resource allocation problem and relay selection problem. First, we solve the resource allocation problem for a predetermined relay selection by using Taylor series approximation and convex optimization techniques. For the relay selection problem, we propose a polynomial-time sub-optimal algorithm based on the idea of iteratively selecting the relay offering the maximum throughput at each time. Through simulations, we demonstrate that the proposed dynamic time FD-MIMO system increases the throughput by 30% as compared to the conventional static time protocol system, and by a factor of 2.4 over the system without self-energy recycling.

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Literatur
9.
Zurück zum Zitat Kazmi, S. A. A., Iqbal, M. S., & Coleri, S. (2021). Relay selection and throughput maximization for full duplex wireless powered cooperative communication networks. In: 2021 IEEE 32nd annual international symposium on personal, indoor and mobile radio communications (PIMRC), pp. 360–365. https://doi.org/10.1109/PIMRC50174.2021.9569288 Kazmi, S. A. A., Iqbal, M. S., & Coleri, S. (2021). Relay selection and throughput maximization for full duplex wireless powered cooperative communication networks. In: 2021 IEEE 32nd annual international symposium on personal, indoor and mobile radio communications (PIMRC), pp. 360–365. https://​doi.​org/​10.​1109/​PIMRC50174.​2021.​9569288
11.
Zurück zum Zitat Laneman, J. N., Tse, D. N. C., & Wornell, G. W. (2004). Cooperative diversity in wireless networks: Efficient protocols and outage behavior. IEEE Transactions on Information Theory, 50(12), 3062–3080.MathSciNetCrossRef Laneman, J. N., Tse, D. N. C., & Wornell, G. W. (2004). Cooperative diversity in wireless networks: Efficient protocols and outage behavior. IEEE Transactions on Information Theory, 50(12), 3062–3080.MathSciNetCrossRef
12.
Zurück zum Zitat Ibrahim, A. S., Sadek, A. K., Su, W., & Liu, K. J. R. (2008). Cooperative communications with relay-selection: When to cooperate and whom to cooperate with? IEEE Transactions on Wireless Communications, 7(7), 2814–2827.CrossRef Ibrahim, A. S., Sadek, A. K., Su, W., & Liu, K. J. R. (2008). Cooperative communications with relay-selection: When to cooperate and whom to cooperate with? IEEE Transactions on Wireless Communications, 7(7), 2814–2827.CrossRef
13.
Zurück zum Zitat Nosratinia, A., Hunter, T. E., & Hedayat, A. (2004). Cooperative communication in wireless networks. IEEE Communications Magazine, 42(10), 74–80.CrossRef Nosratinia, A., Hunter, T. E., & Hedayat, A. (2004). Cooperative communication in wireless networks. IEEE Communications Magazine, 42(10), 74–80.CrossRef
14.
Zurück zum Zitat Pabst, R., Walke, B. H., Schultz, D. C., Herhold, P., Yanikomeroglu, H., Mukherjee, S., Viswanathan, H., Lott, M., Zirwas, W., Dohler, M., Aghvami, H., Falconer, D. D., & Fettweis, G. P. Relay-based deployment concepts for wireless and mobile broadband radio. IEEE Communications Magazine, 42(9), 80–89. https://doi.org/10.1109/MCOM.2004.1336724CrossRef Pabst, R., Walke, B. H., Schultz, D. C., Herhold, P., Yanikomeroglu, H., Mukherjee, S., Viswanathan, H., Lott, M., Zirwas, W., Dohler, M., Aghvami, H., Falconer, D. D., & Fettweis, G. P. Relay-based deployment concepts for wireless and mobile broadband radio. IEEE Communications Magazine, 42(9), 80–89. https://​doi.​org/​10.​1109/​MCOM.​2004.​1336724CrossRef
18.
44.
Zurück zum Zitat Hwang, D., Hwang, K. C., Kim, D. I., & Lee, T. (2017). Self-energy recycling for RF powered multi-antenna relay channels. IEEE Transactions on Wireless Communications, 16(2), 812–824.CrossRef Hwang, D., Hwang, K. C., Kim, D. I., & Lee, T. (2017). Self-energy recycling for RF powered multi-antenna relay channels. IEEE Transactions on Wireless Communications, 16(2), 812–824.CrossRef
45.
Zurück zum Zitat Zeng, Y., & Zhang, R. (2015). Full-duplex wireless-powered relay with self-energy recycling. IEEE Wireless Communications Letters, 4(2), 201–204.CrossRef Zeng, Y., & Zhang, R. (2015). Full-duplex wireless-powered relay with self-energy recycling. IEEE Wireless Communications Letters, 4(2), 201–204.CrossRef
47.
Zurück zum Zitat Nasir, A. A., Tuan, H. D., Duong, T. Q., & Poor, H. V. (2020). MIMO-OFDM-based wireless-powered relaying communication with an energy recycling interface. IEEE Transactions on Communications, 68(2), 811–824.CrossRef Nasir, A. A., Tuan, H. D., Duong, T. Q., & Poor, H. V. (2020). MIMO-OFDM-based wireless-powered relaying communication with an energy recycling interface. IEEE Transactions on Communications, 68(2), 811–824.CrossRef
48.
Zurück zum Zitat Wei, Z., Sun, S., Zhu, X., In Kim, D., & Ng, D. W. K. (2019). Resource allocation for wireless-powered full-duplex relaying systems with nonlinear energy harvesting efficiency. IEEE Transactions on Vehicular Technology, 68(12), 12079–12093.CrossRef Wei, Z., Sun, S., Zhu, X., In Kim, D., & Ng, D. W. K. (2019). Resource allocation for wireless-powered full-duplex relaying systems with nonlinear energy harvesting efficiency. IEEE Transactions on Vehicular Technology, 68(12), 12079–12093.CrossRef
53.
Zurück zum Zitat Floudas, C. A. (1995). Nonlinear and mixed-integer optimization: Fundamentals and applications. London, U.K.: Oxford Univ. Press.CrossRef Floudas, C. A. (1995). Nonlinear and mixed-integer optimization: Fundamentals and applications. London, U.K.: Oxford Univ. Press.CrossRef
Metadaten
Titel
Resource allocation for full-duplex MIMO relaying system with self-energy recycling
verfasst von
Syed Adil Abbas Kazmi
Muhammad Shahid Iqbal
Sinem Coleri
Publikationsdatum
09.10.2023
Verlag
Springer US
Erschienen in
Wireless Networks / Ausgabe 2/2024
Print ISSN: 1022-0038
Elektronische ISSN: 1572-8196
DOI
https://doi.org/10.1007/s11276-023-03527-x

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