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A Full-Duplex Multicarrier Cooperative Device-to-Device Communications System with MMSE Based RSI Cancellation

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Cognitive Radio Oriented Wireless Networks and Wireless Internet (CROWNCOM 2021, WiCON 2021)

Abstract

Integration of full-duplex (FD) technology with cooperative device-to-device (CD2D) communications system has recently emerged as a potential candidate for the fifth-generation (5G) and beyond technologies to improve the spectral efficiency of a cellular system. This paper investigates the outage performance of a multicarrier FD CD2D communications system wherein, the D2D link source node (S) serves as an FD relay for uplink cellular transmission. The self-interference (SI) occurring at S is suppressed using analog cancellation schemes, and the residual SI (RSI) is further suppressed using digital domain (DD) RSI cancellation techniques. A probabilistic mathematical model is established for the performance evaluation of the proposed system. The closed-form expressions for D2D and cellular outage probability are derived. Simulation results show that the proposed FD CD2D communications system, along with minimum mean square error-based DD RSI cancellation, gives the optimum performance compared to the least square-based RSI cancellation scheme.

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References

  1. Ansari, R.I., et al.: 5G D2D networks: techniques, challenges, and future prospects. IEEE Syst. J. 12(4), 3970–3984 (2018)

    Article  Google Scholar 

  2. Tehrani, M.N., Uysal, M., Yanikomeroglu, H.: Device-to-device communication in 5G cellular networks: challenges, solutions, and future directions. IEEE Commun. Mag. 52(5), 86–92 (2014)

    Article  Google Scholar 

  3. Gupta, N., Bohara, V.A.: Rate and outage trade-offs for OFDMA based device to device communication frameworks. IEEE Access 5, 14095–14106 (2017)

    Article  Google Scholar 

  4. Bajpai, R., Kulkarni, A., Malhotra, G., Gupta, N.: Outage analysis of OFDMA based NOMA aided full-duplex cooperative D2D system. In: 2020 27th International Conference on Telecommunications (ICT), pp. 1–5 (2020)

    Google Scholar 

  5. Zhang, Z., Chai, X., Long, K., Vasilakos, A.V., Hanzo, L.: Full duplex techniques for 5G networks: self-interference cancellation, protocol design, and relay selection. IEEE Commun. Mag. 53(5), 128–137 (2015)

    Article  Google Scholar 

  6. Masmoudi, A., Le-Ngoc, T.: Self-interference cancellation for full-duplex MIMO transceiver. In: IEEE Wireless Communications and Networking Conference (WCNC), New Orleans, LA, USA, pp. 141–146, March 2015

    Google Scholar 

  7. Duarte, M., Dick, C., Sabharwal, A.: Experiment-driven characterization of full-duplex wireless systems. IEEE Trans. Wirel. Commun. 11(12), 4296–4307 (2012)

    Article  Google Scholar 

  8. Din, F.U., Labeau, F.: In-band full-duplex discriminatory channel estimation using MMSE. IEEE Trans. Inf. Forensics Secur. 15, 3283–3292 (2020)

    Article  Google Scholar 

  9. Gupta, N., Kumar, D., Bohara, V.A.: A novel user selection and resource allocation framework for cooperative D2D communication. In: 2018 IEEE Global Communications Conference (GLOBECOM), pp. 1–7, December 2018

    Google Scholar 

  10. Liu, G., Feng, W., Han, Z., Jiang, W.: Performance analysis and optimization of cooperative full-duplex D2D communication underlaying cellular networks. IEEE Trans. Wirel. Commun. 18(11), 5113–5127 (2019)

    Article  Google Scholar 

  11. Bajpai, R., Gupta, N., Bohara, V.A.: An adaptive full-duplex/half-duplex multiuser cooperative D2D communications system with best user selection. IEEE Open J. Commun. Soc. 2, 1445–1457 (2021)

    Article  Google Scholar 

  12. Bajpai, R., Gupta, N.: Outage trade-offs between full/half-duplex relaying for NOMA aided multicarrier cooperative D2D communications system. IETE Tech. Rev. 1–13 (2021)

    Google Scholar 

  13. Soriano-Irigaray, F.J., Fernandez-Prat, J.S., Lopez-Martinez, F.J., Martos-Naya, E., Cobos-Morales, O., Entrambasaguas, J.T.: Adaptive self-interference cancellation for full duplex radio: analytical model and experimental validation. IEEE Access 6, 65018–65026 (2018)

    Article  Google Scholar 

  14. Rodríguez, L.J., Tran, N.H., Le-Ngoc, T.: Performance of full-duplex AF relaying in the presence of residual self-interference. IEEE J. Sel. Areas Commun. 32(9), 1752–1764 (2014)

    Article  Google Scholar 

  15. Rodriguez, L.J., Tran, N.H., Le-Ngoc, T.: Optimal power allocation and capacity of full-duplex AF relaying under residual self-interference. IEEE Wirel. Commun. Lett. 3(2), 233–236 (2014)

    Article  Google Scholar 

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Correspondence to Rahul Bajpai .

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Bajpai, R., Soni, R., Gupta, N., Kumar, A. (2022). A Full-Duplex Multicarrier Cooperative Device-to-Device Communications System with MMSE Based RSI Cancellation. In: Jin, H., Liu, C., Pathan, AS.K., Fadlullah, Z.M., Choudhury, S. (eds) Cognitive Radio Oriented Wireless Networks and Wireless Internet. CROWNCOM WiCON 2021 2021. Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering, vol 427. Springer, Cham. https://doi.org/10.1007/978-3-030-98002-3_9

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  • DOI: https://doi.org/10.1007/978-3-030-98002-3_9

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  • Publisher Name: Springer, Cham

  • Print ISBN: 978-3-030-98001-6

  • Online ISBN: 978-3-030-98002-3

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