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RETRACTED ARTICLE: Performance of single hop and multi hop relaying protocols in cognitive radio networks over Weibull fading channel

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This article was retracted on 06 June 2022

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Abstract

With the rapid growth of wireless communication, there is an extensive growth in the demand of Radio frequency through electromagnetic spectrum allocation. Cognitive radio is considered to be a potential technology which helps to overcome the demand in radio frequency. Relaying protocol is applied in this paper in order to assist the transmission, improve the efficacy and to minimize the bit error rate. The performance of single hop (Amplify and Forward—AF) and multi-hop (Decode and Forward—DAF and Compress and Forward—CF) relaying protocols over a Weibull fading channels in cognitive radio are analyzed. The numerical outcomes are evidence that the bit error rate and Signal to Noise ratio proves that multi-hop is more promising as compared to single-hop relaying protocol.

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References

  • Anghel PA, Kaveh M (2004) Exact symbol error probability of a cooperative network in a Rayleigh-fading environment. IEEE Trans Wirel Commun 3(5):1416–1421

    Article  Google Scholar 

  • Berger S, Kuhn M, Wittneben A, Unger T, Klein A (2009) Recent advances in amplify-and-forward two-hop relaying. IEEE Commun Mag 47(7):50–56

    Article  Google Scholar 

  • Duy TT, Kong HY (2012) Performance analysis of hybrid decode-amplify-forward incremental relaying cooperative diversity protocol using SNR-based relay selection. J Commun Netw 14(6):703–709

    Article  Google Scholar 

  • Elghamrawy SM, Hassanien AE (2018) GWOA: a hybrid genetic whale optimization algorithm for combating attacks in cognitive radio network. J Ambient Intell Human Comput 10(11):4345–4360

    Article  Google Scholar 

  • Han Y, Ting SH, Ho CK Chin WH (2008) High rate two-way amplify-and-forward half-duplex relaying with OSTBC. In: IEEE vehicular technology conference, pp 2426–2430

  • Hu R, Hu C, Jiang J, Xie X, Song L (2014) Full-duplex mode in amplify-and-forward relay channels: outage probability and ergodic capacity. Int J Antennas Propag 2014:1–8

    Google Scholar 

  • Ikki SS, Ahmed, MH (2009) Performance analysis of generalized selection combining for amplify-and-forward cooperative-diversity networks. In: IEEE international conference on communications, pp 1–6

  • Jia J, Zhang J, Zhang Q (2009) Cooperative relay for cognitive radio networks. In: IEEE INFOCOM, pp 2304–2312

  • Jing Y, Jafarkhani H (2009) Single and multiple relay selection schemes and their achievable diversity orders. IEEE Trans Wirel Commun 8(3):1414–1423

    Article  Google Scholar 

  • Kamal M, Ibrahim M, Mir S, Aman MN (2016) Comparison of multihop relaying protocols in cognitive radio networks. In: IEEE international conference on innovative computing technology (INTECH), pp 611–616

  • Kumar N, Bhatia V (2016) Outage probability and average channel capacity of amplify-and-forward in conventional cooperative communication networks over rayleigh fading channels. Wirel Pers Commun 88(4):943–951

    Article  Google Scholar 

  • Laneman JN, Tse DN, Wornell GW (2004) Cooperative diversity in wireless networks: efficient protocols and outage behavior. IEEE Trans Inf Theory 50(12):3062–3080

    Article  MathSciNet  Google Scholar 

  • Naeem A, Rehmani MH (2015) Cognitive relay networks: a comprehensive survey. EAI Endorsed Trans Wirel Spectrum 1(3):1–8

    Article  Google Scholar 

  • Peng L, Fenggang S, Guowei Z, Jialin H (2014) Adaptive power allocation for three transmission phases cognitive relay networks with data rate fairness. In: IEEE international conference on communications and networking in China, pp 550–553

  • Raja A, Viswanath P (2014) Compress-and-forward scheme for relay networks: back word decoding and connection to bisubmodular flows. IEEE Trans Inf Theory 60(9):5627–5638

    Article  Google Scholar 

  • Rankov B, Wittneben A (2007) Spectral efficient protocols for half-duplex fading relay channels. IEEE J Sel Areas Commun 25(2):379–389

    Article  Google Scholar 

  • Sagias NC, Karagiannidis GK, Bithas PS, Mathiopoulos PT (2005) On the correlated Weibull fading model and its applications. IEEE Veh Technol Conf 4:2149–2153

    Google Scholar 

  • Uchida N, Takahata K, Shibata Y (2010) Transmission control methods with multihopped environments in cognitive wireless networks. J Ambient Intell Humaniz Comput 1(4):249–257

    Article  Google Scholar 

  • Van Nguyen B, Kim K (2016) Performance analysis of amplify-and-forward systems with single relay selection in correlated environments. Sensors 16(9):1–15

    Article  MathSciNet  Google Scholar 

  • Wang X, Zhang H, Gulliver TA, Shi W, Zhang H (2013) Performance analysis of two-way AF cooperative relay networks over Weibull fading channels. J Commun 8(6):372–377

    Article  Google Scholar 

  • Xu W, Wang Y, Lin J, Chai J (2017) Outage performance of cognitive radio networks with multiple decode and forward relays. Int J Commun Syst 30(8):1–18

    Article  Google Scholar 

Download references

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Correspondence to G. Pandeeswari.

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This article has been retracted. Please see the retraction notice for more detail:https://doi.org/10.1007/s12652-022-04040-3

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Pandeeswari, G., Suganthi, M. & Asokan, R. RETRACTED ARTICLE: Performance of single hop and multi hop relaying protocols in cognitive radio networks over Weibull fading channel. J Ambient Intell Human Comput 12, 3921–3927 (2021). https://doi.org/10.1007/s12652-020-01739-z

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  • DOI: https://doi.org/10.1007/s12652-020-01739-z

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