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Enhanced Resource Blocks Management in D2D based Communication for 5G Networks

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Abstract

D2D based communication holds a promising future for 5G networks as they are efficient and can yield high data rates, good signal to noise interference ratio, improved resource-block uploading time, minimized delay from one end to the other and conserved power for transmission. The traditional system of cellular type contains cell edge clients who need a larger resource blocks count as well as time to upload data. Hence the quality of service will be reduced. The relay scheme in the proposal for cooperative type D2D networks is pivoted on the value of channel gain as well as transmission link distance. For bringing down the resource blocks’ count as well as uploading time, the paper is proposing a capable scheme of selection of relays that employs communication of D2D in the situations of uplinking. To begin with, in a cell modeling is done. It contains D2D pairs of multiple types as well as cellular clients. Next, the analysis related to issues of allocating resources as well as control of power is done. In order to lessen the resource blocks as well as their uploading time, the paper in proposal suggests a better blocks management mechanism that uses D2D based communication. Simulated output infers that the method in the proposal is superior to the present methods as far as time to upload contents; resource blocks, SINR, throughput as well as rates of data and Energy Consumption are concerned. Added to that, the stated method conserves 43% of the Energy Consumption of the network clients and while doing that the time to upload the contents is not affected.

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References

  1. Berezdivin, R., Breinig, R., & Topp, R. (2002). Next-generation wireless communications concepts and technologies. IEEE Communications Magazine, 40(3), 108–116.

    Article  Google Scholar 

  2. Ikhlef, A., Michalopoulos, D. S., & Schober, R. (2012). Max-max relay selection for relays with buffers. IEEE Transactions on Wireless Communications., 11(3), 1124–1135.

    Article  Google Scholar 

  3. Chen, G., Tian, Z., Gong, Y., Chen, Z., & Chambers, J. A. (2014). ‘Max-ratio relay selection in secure buffer-aided cooperative wireless networks. IEEE Transactions Information Forensics Security, 9(4), 719–729.

    Article  Google Scholar 

  4. Zhong, X., Guo, Y., Li, N., & Li, S. (2020). Joint relay assignment and channel allocation for opportunistic UAVs-aided dynamic networks: A mood-driven approach. IEEE Transactions on Vehicular Technology, 69(12), 15019–15034.

    Article  Google Scholar 

  5. Wang, Ru., Liu, J., Zhang, G., Huang, S., & Yuan, M. (2017). Energy efficient power allocation for relay-aided D2D communications in 5G networks. China Communications, 14(7), 54–64.

    Article  Google Scholar 

  6. Shah, S. T., Gu, J., Hasan, S. F., & Chung, M. Y. (2015). SC-FDMA-based resource allocation and power control scheme for D2D communication using LTE-A uplink resource. EURASIP Journal on Wireless Communications and Networking, 2015, 115.

    Article  Google Scholar 

  7. Salim, M. M., Wang, D., El AttyElsayed, H. A., Liu, Y., & Elaziz, M. A. (2020). Joint optimization of energy-harvesting-powered two-way relaying D2D communication for IoT: A rate–energy efficiency tradeoff. IEEE Internet of Things Journal, 7(12), 11735–11752.

    Article  Google Scholar 

  8. Kang, J.-M., Park, C.-K., Seo, S.-S., Choi, M.-J., & Hong, J. W.-K. (2008). User-centric prediction for battery lifetime of mobile devices. In Challenges for Next Generation Network Operations and Service Management. Springer, Beijing, China, pp. 531–534

  9. Li, Y., Xu, G., Yang, K., Ge, J., Liu, P., & Jin, Z. (2020). Energy efficient relay selection and resource allocation in D2D-enabled mobile edge computing. IEEE Transactions on Vehicular Technology, 69(12), 15800–15814.

    Article  Google Scholar 

  10. 3GPP, TS 36.300, Evolved Universal Terrestrial Radio Access (E- UTRA) and Evolved Universal Terrestrial Radio Access Network (E- UTRAN), Rel. 11, Tech. Rep., Sept. 2012.

  11. Masood, A., et al. (2021). ProSe direct discovery: experimental characterization and context-aware heuristic approach to extend public safety networks lifetime. IEEE Access, 9, 130055–130071.

    Article  Google Scholar 

  12. Hoang, T. D., Hoang, T. D., & Le-Ngoc, T. (2016). Resource allocation for D2D communication underlaid cellular networks using graph-based approach. IEEE Transactions on Wireless Communications archive, 15(10), 7099–7113.

    Article  Google Scholar 

  13. Yang, F., Han, J., Ding, X., Wei, Z., & Bi, X. (2020). Spectral efficiency optimization and interference management for multi-hop D2D communications in VANETs. IEEE Transactions on Vehicular Technology, 69(6), 6422–6436.

    Article  Google Scholar 

  14. Cai, Y., Ni, Y., Zhang, J., Zhao, S., & Zhu, H. (2019). Energy efficiency and spectrum efficiency in underlay device-to-device communications enabled cellular networks. China Communications, 16(4), 16–34.

    Google Scholar 

  15. Liu, T., Lui, J. C. S., Ma, X., & Jiang, H. (2018). Enabling relay-assisted D2D communication for cellular networks: Algorithm and protocols. IEEE Internet of Things Journal, 5(4), 3136–3150.

    Article  Google Scholar 

  16. Raziah, Y. A., & Nasaruddin, N. (2019). An adaptive best relay selection for energy efficient cooperative D2D communications. In 2019 International Conference on Radar, Antenna, Microwave, Electronics, and Telecommunications (ICRAMET), Tangerang, Indonesia, pp. 69–73.

  17. Jiang, F., Wang, B., Sun, C., Liu, Y., & Wang, R. (2018). Mode selection and resource allocation for device-to-device communications in 5G cellular networks. China Communications, 13(6), 32–47.

    Article  Google Scholar 

  18. Shah, S. T., Gu, J., Hasan, S. F., & Chung, M. Y. (2015). SC-FDMA-based resource allocation and power control scheme for D2D communication using LTE-A uplink resource. EURASIP Journal on Wireless Communications and Networking, 2015(1), 15.

    Article  Google Scholar 

  19. Chen, Y., Ai, B., Niu, Y., He, R., Zhong, Z., & Han, Z. (2019). Resource allocation for device-to-device communications in multi-cell multi-band heterogeneous cellular networks. IEEE Transactions on Vehicular Technology, 68(5), 4760–4773.

    Article  Google Scholar 

  20. Tian, Z., Chen, G., Gong, Y., Chen, Z., & Chambers, J. A. (2015). Buffer-aided max-link relay selection in amplify-and-forward cooperative networks. IEEE Transactions on Vehicular Technology, 64(2), 553–565.

    Article  Google Scholar 

  21. Chen, X., Zhou, Y., Yang, L., & Lv, L. (2020). User satisfaction oriented resource allocation for fog computing: A mixed-task paradigm. IEEE Transactions on Communications, 68(10), 6470–6482.

    Article  Google Scholar 

  22. Militano, L., Orsino, A., Araniti, G., Molinaro, A., Iera, A., & Wang, L. (2015). Efficient spectrum management exploiting D2D communication in 5G systems. In Proceedings of IEEE International Symposium on Broadband Multimedia Systems and Broadcasting (BMSB), pp. 1–5.

  23. Zhang, P., Kang, X., Li, X., Liu, Y., Dapeng, Wu., & Wang, R. ( 2019). Overlapping community deep exploring based relay selection method towards multi-hop D2D communication. IEEE Wireless Commun Letters., 8(5), 1357–1360.

    Article  Google Scholar 

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We wish to confirm that there are no known conflicts of interest associated with this publication and there has been no significant financial support for this work that could have influenced its outcome.

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Correspondence to S. Nandakumar.

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Reddy, M.K.K., Kanishka, R., Nandakumar, S. et al. Enhanced Resource Blocks Management in D2D based Communication for 5G Networks. Wireless Pers Commun 126, 367–383 (2022). https://doi.org/10.1007/s11277-022-09749-0

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  • DOI: https://doi.org/10.1007/s11277-022-09749-0

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