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A User-Centric Wireless Networks’ Optimization Method for Data Service

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Complex, Intelligent, and Software Intensive Systems (CISIS 2018)

Part of the book series: Advances in Intelligent Systems and Computing ((AISC,volume 772))

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Abstract

The optimization method based on traditional KPI statistics can’t effectively meet the goal of improving user experience of quality (QoE). Based on QoE, this paper presents a kind of user-centric wireless networks optimization method that includes a users’ QoE evaluation model and a locating the network problems method for data service. We propose a novel way of data analysis to build users’ QoE evaluation model to allow operators to monitor users experience quality. Based on the technology of data fusion, we exploit a data mining algorithm for diging out the problems leading poor users’ QoE and the corresponding probability from multisource data. Consequently, the operators can not only real-time monitor the entire network users’ QoE and actively identify the wireless network problems, but also obtain reference guidance for the network optimization staff by utilizing the method. Obviously, this method ensures users’ QoE and helps saving a large amount of manpower in networks optimization.

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References

  1. Yang, Y.Z.: Analysis on DT test download rate improvement for FDD-LTE network. In: Mobile Communications, pp. 14–18 (2015). (in Chinese)

    Google Scholar 

  2. Kreher, R., Gaenger, K.: Key Performance Indicators and Measurements for LTE Radio Network Optimization: LTE Signaling, Troubleshooting, and Optimization. Wiley, New York (2010)

    Book  Google Scholar 

  3. Tsolkas, D., Liotou, E., Passas, N., Merakos, L.: A survey on parametric QoE estimation for popular services. J. Netw. Comput. Appl. 17, 1–17 (2017)

    Article  Google Scholar 

  4. Yang, J.H., Zheng, G., Liang, C.: Mapping method for service KQI and QOE. CN, CN 103607309 A (2014)

    Google Scholar 

  5. Youssef, Y.B., Afif, M., Tabbane, S.: Novel AHP-based QoE factors’ selection approach. In: Computer Systems and Applications, pp. 1–6. IEEE (2017)

    Google Scholar 

  6. Tsiaras, C., Stiller, B.: A deterministic QoE formalization of user satisfaction demands (DQX). In: Local Computer Networks, pp. 227–235. IEEE (2014)

    Google Scholar 

  7. Farid, F., Shahrestani, S., Ruan, C.: A fuzzy logic approach for Quality of Service quantification in wireless and mobile networks. In: Local Computer Networks Workshops, pp. 629–636. IEEE (2014)

    Google Scholar 

  8. Plakia, M., Katsarakis, M., Charonyktakis, P., Papadopouli, M., Markopoulos, I.: On user-centric analysis and prediction of QoE for video streaming using empirical measurements. In: Eighth International Conference on Quality of Multimedia Experience, pp. 1–6. IEEE (2016)

    Google Scholar 

  9. Yusuf-Asaju, A.W., Dahalin, Z.B., Ta’a, A.: Mobile network quality of experience using big data analytics approach. In: International Conference on Information Technology, pp. 658–664 (2017)

    Google Scholar 

  10. Munaretto, D., Zucchetto, D., Zanella, A., Zorzi, M.: Data-driven QoE optimization techniques for multi-user wireless networks. In: International Conference on Computing, Networking and Communications, pp. 653–657. IEEE (2015)

    Google Scholar 

  11. Thakolsri, S., Cokbulan, S., Dan, J., Despotovic, Z., Kellerer, W.: QoE-driven cross-layer optimization in wireless networks addressing system efficiency and utility fairness. In: GLOBECOM Workshops, vol. 10, pp. 12–17. IEEE (2012)

    Google Scholar 

  12. Zhou, S., Ran, M., Lu, Z.: Adaptive energy-efficient and QoE-aware optimization method for mobile video services. In: International Symposium on Communications and Information Technologies, pp. 388–392. IEEE (2016)

    Google Scholar 

  13. Hegazy, R.D., Nasr, O.A.: A user behavior based handover optimization algorithm for LTE networks. In: Wireless Communications and Networking Conference, pp. 1255–1260. IEEE (2015)

    Google Scholar 

  14. Long, Q., Zhang, L.: Research on the key issues of LTE network optimization based on the user-perceptive quality. In: Designing Techniques of Posts and Telecommunications (2014)

    Google Scholar 

  15. Huang, Q.F., Li, B., Hu, H.B.: Research on end to end network optimization method based on user perception. In: Telecommunications Technology, pp. 9–12 (2016). (in Chinese)

    Google Scholar 

  16. Khorsandroo, S., Noor, R.M., Khorsandroo, S.: A mobility framework to enhance quality of experience through quality of service. In: International Conference on Innovation Management and Technology Research, pp. 630–634. IEEE (2012)

    Google Scholar 

  17. End-to-end Quality of Service (QoS) Concept and Architecture. 3GPP Technical Specification TS 23.207 V10.0.0 (2011)

    Google Scholar 

  18. Vaser, M., Forconi, S.: QoS KPI and QoE KQI Relationship for LTE VIdeo Streaming and VoLTE Services. In: International Conference on Next Generation Mobile Applications, Services and Technologies, pp. 318–323. IEEE (2016)

    Google Scholar 

  19. Definition of Quality of Experience (QoE), Rec. TD 109rev2 (PLEN/12) ITU-T, Geneva, Switzerland (2007)

    Google Scholar 

  20. Zhang, C., Zhang, X., Jiang, Z.L., Liao, Q., Yao, L., Wang, X.: Mining inter-transaction association rules from multiple time-series data. In: International Conference on Security, Pattern Analysis, and Cybernetics, pp. 158–163 (2017)

    Google Scholar 

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Acknowledgements

Supported by the Research on Radio Resource Management Technology of Heterogeneous Cognitive Network Based on Customer Perception, the National Natural Science Foundation of China (Grant No. 61372088).

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Correspondence to Jun Luo .

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Luo, J., Zhou, W., Zhang, W., Zhou, Q., Du, Y. (2019). A User-Centric Wireless Networks’ Optimization Method for Data Service. In: Barolli, L., Javaid, N., Ikeda, M., Takizawa, M. (eds) Complex, Intelligent, and Software Intensive Systems. CISIS 2018. Advances in Intelligent Systems and Computing, vol 772. Springer, Cham. https://doi.org/10.1007/978-3-319-93659-8_19

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