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SINR based association algorithm for indoor device-to-device communication networks

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Abstract

The new generation telecommunications is growing at a spectacular pace and Device-to-Device (D2D) communication networks plays major role to meet the growing demands by billions of connected devices over the globe. Generally, indoor based D2D communication networks relays on distributed small cell solutions for better connectivity. This research proposes Signal-to-Interference-plus-Noise Ratio (SINR) based – Device Association Vector Algorithm (S-DAVA) for maximum network connectivity by efficiently discovering the neighbors and its D2D link based on network sum rate and SINR. The algorithm uses Rician model for Line-of-Sight (LoS) component to investigate the D2D network performance. The algorithm when evaluated with other conventional methods showed an improvement of 18.85% in throughput, and 10% of efficiency in energy with reduced network delay of 19%. This paper also checks its performance over traffic load, outage probability and network sum rate.

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References

  1. Patil SD, Nitnaware VN, Shelke S (2016) Device to Device Communication in Spontaneous Ad Hoc network. Int J Innov Res Comput Commun Eng 4(7):14114–14119. https://doi.org/10.15680/IJIRCCE.2016.0407128

    Article  Google Scholar 

  2. Zhang B, Li Y, Jin D, Hui P, Han Z (2014) Social-aware peer discovery for D2D communications underlaying cellular networks. IEEE Trans Wirel Commun 14(5):2426–2439

    Article  Google Scholar 

  3. Fodor G, Dahlman E, Mildh G, Parkvall S, Reider N, Miklós G, Turányi Z (2012) Design aspects of network assisted device-to-device communications. IEEE Commun Mag 50(3):170–177

    Article  Google Scholar 

  4. Shaikh FS, Wismüller R (2018) Routing in multi-hop cellular device-to-device (D2D) networks: a survey. IEEE Commun Surv Tutorials 20(4):2622–2657

    Article  Google Scholar 

  5. Boccardi F, Heath Jr RW, Lozano A, Marzetta TL, Popovski P (2013) Five disruptive technology directions for 5G. arXiv preprint arXiv:1312.0229

  6. Li Y, Jin D, Yuan J, Han Z (2014) Coalitional games for resource allocation in the device-to-device uplink underlaying cellular networks. IEEE Trans Wirel Commun 13(7):3965–3977

    Article  Google Scholar 

  7. Li Y, Wang Z, Jin D, Chen S (2014) Optimal mobile content downloading in device-to-device communication underlaying cellular networks. IEEE Trans Wirel Commun 13(7):3596–3608

    Article  Google Scholar 

  8. Nardini G, Stea G, Virdis A (2017) A fast and reliable broadcast service for LTE-advanced exploiting multihop device-to-device transmissions. Futur Internet 9(4):89

    Article  Google Scholar 

  9. Qin H, Mi Z, Dong C, Peng F, Sheng P (2016) An experimental study on multihop D2D communications based on smartphones. In: 2016 IEEE 83rd vehicular technology conference (VTC spring) IEEE, pp. 1-5

  10. Venugopal K, Valenti MC, Heath RW (2016) Device-to-device millimeter wave communications: interference, coverage, rate, and finite topologies. IEEE Trans Wirel Commun 15(9):6175–6188

    Article  Google Scholar 

  11. Ryu J, Joo C, Shroff NB, Choi Y (2012) DSS: distributed SINR-based scheduling algorithm for multihop wireless networks. IEEE Trans Mob Comput 12(6):1120–1132

    Article  Google Scholar 

  12. Park S-H, Ryu H, Lim C (2014) Distributed iterative scheduling for D2D communications. In: 2014 IEEE wireless communications and networking conference workshops (WCNCW) IEEE, pp. 254-259

  13. Burghal D, Tehrani AS, Molisch AF (2017) Base station assisted neighbor discovery in device to device systems. In: 2017 IEEE 28th annual international symposium on personal, indoor, and Mobile radio communications (PIMRC) IEEE, pp. 1-7

  14. Gu J, Bae SJ, Hasan SF, Chung MY (2015) Heuristic algorithm for proportional fair scheduling in D2D-cellular systems. IEEE Trans Wirel Commun 15(1):769–780

    Article  Google Scholar 

  15. Tang H, Ding Z (2015) Mixed mode transmission and resource allocation for D2D communication. IEEE Trans Wirel Commun 15(1):162–175

    Article  Google Scholar 

  16. Wang F, Li Y, Wang Z, Yang Z (2015) Social-community-aware resource allocation for D2D communications underlaying cellular networks. IEEE Trans Veh Technol 65(5):3628–3640

    Article  Google Scholar 

  17. Ahmad M, Azam M, Naeem M, Iqbal M, Anpalagan A, Haneef M (2017) Resource management in D2D communication: an optimization perspective. J Netw Comput Appl 93:51–75

    Article  Google Scholar 

  18. Saraereh OA, Mohammed SL, Khan I, Rabie K, Affess S (2019) An efficient resource allocation algorithm for device-to-device communications. Appl Sci 9(18):3816

    Article  Google Scholar 

  19. Kim S, Zajić A (2016) Statistical modeling and simulation of short-range device-to-device communication channels at sub-THz frequencies. IEEE Trans Wirel Commun 15(9):6423–6433

    Article  Google Scholar 

  20. Chandrasekhar V, Andrews J, Gatherer A (2008) Femtocell networks: a survey, IEEE communications magazine

  21. Muirhead D, Imran MA, Arshad K (2015) Insights and approaches for low-complexity 5G small-cell base-station design for indoor dense networks. IEEE Access 3:1562–1572

    Article  Google Scholar 

  22. Khoshkholgh MG, Zhang Y, Chen K-C, Shin KG, Gjessing S (2014) Connectivity of cognitive device-to-device communications underlying cellular networks. IEEE J Sel Areas Commun 33(1):81–99

    Article  Google Scholar 

  23. Li J, Song JB, Han Z (2013) Network connectivity optimization for device-to-device wireless system with femtocells. IEEE Trans Veh Technol 62(7):3098–3109

    Article  Google Scholar 

  24. Baidas MW, Bahbahani MS, Alsusa E, Hamdi KA, Ding Z (2019) Joint D2D group association and channel assignment in uplink multi-cell NOMA networks: a matching-theoretic approach. IEEE Trans Commun 67(12):8771–8785

    Article  Google Scholar 

  25. Tang H, Ding Z, Levy BC (2014) Enabling D2D communications through neighbor discovery in LTE cellular networks. IEEE Trans Signal Process 62(19):5157–5170

    Article  MathSciNet  Google Scholar 

  26. Hayat O, Ngah R, Zahedi Y (2017) Cooperative device-to-device discovery model for multiuser and OFDMA Network Base neighbour discovery in in-band 5G cellular networks. Wirel Pers Commun 97(3):4681–4695

    Article  Google Scholar 

  27. Mishra PK, Pandey S (2016) A method for mode selection in a dynamic network for device-to-device communication for 5G. In: Proceedings of the International Conference on Informatics and Analytics, pp. 1-6

  28. Al-kahtani MS, Ferdouse L, Karim L (2020) Energy efficient power domain non-orthogonal multiple access based cellular device-to-device communication for 5G networks. Electronics 9(2):237

    Article  Google Scholar 

  29. Sreedevi A, Rao TR (2017) D2D communications performance analysis for LOS and NLOS scenarios with DAV algorithm. In: 2017 IEEE international conference on circuits and systems (ICCS) IEEE, pp. 354-358

  30. Madabhushi S, Gopal GR, Murthy CR (2017) Optimal routing and data transmission for multi-hop D2D communications under stochastic interference constraints. In: 2017 twenty-third National Conference on communications (NCC) IEEE, pp. 1-6

  31. Masiukiewicz A (2017) SINR simulation in 802.11 n networks. Int Res J Adv Eng Sci 2(3):38–43

    Google Scholar 

  32. AlAmmouri A, Andrews JG, Baccelli F (2017) SINR and throughput of dense cellular networks with stretched exponential path loss. IEEE Trans Wirel Commun 17(2):1147–1160

    Article  Google Scholar 

  33. Poornima P, Laxminarayana G, Rao DS (2017) Performance analysis of channel capacity and throughput of lte downlink system

  34. Ashraf MI, Bennis M, Saad W, Katz M, Hong C-S (2016) Dynamic clustering and user association in wireless small-cell networks with social considerations. IEEE Trans Veh Technol 66(7):6553–6568

    Article  Google Scholar 

  35. Vlachos C, Friderikos V (2017) MOCA: multiobjective cell association for device-to-device communications. IEEE Trans Veh Technol 66(10):9313–9327

    Article  Google Scholar 

  36. Xiao S, Zhou X, Feng D, Yuan-Wu Y, Li GY, Guo W (2016) Energy-efficient mobile association in heterogeneous networks with device-to-device communications. IEEE Trans Wirel Commun 15(8):5260–5271

    Article  Google Scholar 

  37. Hajiaghayi M, Immorlica N, Mirrokni VS (2003) Power optimization in fault-tolerant topology control algorithms for wireless multi-hop networks. In: proceedings of the 9th annual international conference on Mobile computing and networking. ACM, pp. 300-312

  38. Ghavami H, Moghaddam SS (2017) Outage probability of device to device communications underlaying cellular network in Suzuki fading channel. IEEE Commun Lett 21(5):1203–1206

    Article  Google Scholar 

  39. Ningombam D, Shin S (2018) Distance-constrained outage probability analysis for device-to-device communications underlaying cellular networks with frequency reuse factor of 2. Computers 7(4):50

    Article  Google Scholar 

  40. Liu J, Nishiyama H, Kato N, Guo J (2015) On the outage probability of device-to-device-communication-enabled multichannel cellular networks: an RSS-threshold-based perspective. IEEE J Sel Areas Commun 34(1):163–175

    Article  Google Scholar 

  41. Huang J, Gharavi H (2018) Performance analysis of relay-based two-way D2D communications with network coding. IEEE Trans Veh Technol 67(7):6642–6646

    Article  Google Scholar 

  42. Dahmouni H, Girard A, Sansò B (2012) An analytical model for jitter in IP networks. Ann Telecommun 67(1–2):81–90

    Article  Google Scholar 

  43. Mesbahi N, Dahmouni H (2016) Delay and jitter analysis in LTE networks. In: 2016 international conference on wireless networks and Mobile communications (WINCOM) IEEE, pp. 122-126

  44. Dawaliby S, Bradai A, Pousset Y (2016) In depth performance evaluation of LTE-M for M2M communications. In: 2016 IEEE 12th international conference on wireless and Mobile computing, networking and communications (WiMob) IEEE, pp. 1-8

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Acknowledgments

The authors are very much thankful to the DRDO, Government of India for their executional support.

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Correspondence to Sreedevi A. G..

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A. G., S., Rao, T.R. SINR based association algorithm for indoor device-to-device communication networks. Peer-to-Peer Netw. Appl. 13, 1921–1930 (2020). https://doi.org/10.1007/s12083-020-00951-0

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