Services handover based on information context to imiprove energy efficiecy in MIMO system

Authors

  • Nguyen Thi Thanh Huong Posts and Telecommunications Institute of Technology, Viet Nam
  • Le Huu Lap Posts and Telecommunications Institute of Technology, Viet Nam

Corressponding author's email:

huong0312@gmail.com

Keywords:

Information context, 5G, MIMO, handover, energy consumption

Abstract

In the era of technology, the "green" information system is considered one of the research topics in the field of Communications and Information Technology, especially in the new generation mobile communication network. A "green" information system not only reduces power consumption at network nodes such as base stations (BSs), switches, and servers but also needs to save energy resources between services. The multi-input and multi-input information system (MIMO) is one of the promising candidate technologies for the 5th generation (5G) network in improving energy efficiency and shared resources. In this paper, we study and propose a handover scheme between services based on information context recognition such as transmit power, user device movement speed, traffic load, call admission control level, data type, etc. to optimize handover between services and increase the probability of success rate of handover between services, reduce the power consumption of BSs antennas consistent with data rates and other quality parameters services.

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References

3GPP Technical Report, “Study on elevation beamforming/Full-Dimension (FD) Multiple-Input Multiple-Output (MIMO) for LTE (Release 13),” 3GPP TR 36.897, v13.0.0, available online at http://www.3gpp.org/dynareport/36897.htm, 2015.

G. Xu, “FD-MIMO and 3D beamforming for 5G”, Samsung Research America, Dallas, 2015.

Hasan, Z.; Boostanimehr, H.; Bhargava, V.K. Green cellular networks: A survey, some research issues and challenges. IEEE Commun. Surv. Tutor. 2011, 13, 524–540.

Aleksic, S. Energy, entropy, and exergy in communication networks. Entropy 2013, 15, 4484–4503. Chiaraviglio, L.; Ciullo, D.; Meo, M.; Marsan, M.A. Energy-aware UMTS access networks. In Proceedings of the International Symposium on Wireless Personal

Multimedia Communications (WPMC), Lapland, Finland, 8–11 September 2018; p. 105.

Marsan, M.A.; Chiaraviglio, L.; Ciullo, D.; Meo, M. Optimal energy savings in cellular access networks. In Proceedings of the IEEE International Conference on Communications Workshops (ICCW), Dresden, Germany, 14–18 June 2011.

Peng, C.; Lee, S.B.; Lu, S.; Luo, H. GreenBSN: Enabling energy-proportional cellular base station network. IEEE Trans. Mob. Comput. 2014, 13, 2537–2551.

Bousia, A.; Kartsakli, E.; Alonso, L.; Verikoukis, C. Dynamic energy efficient distance-aware base station switch On/Off scheme for LTE-advanced. In Proceedings of the IEEE Global Communications Conference (GLOBECOM), Anaheim, CA, USA, 3–7 December 2012; pp. 1532–1537.

Bousia, A.; Antonopoulos, A.; Alonso, L.; Verikoukis, C. “Green” distance-aware base station sleeping algorithm in LTE-Advanced. In Proceedings of the IEEE International Conference on Communications (ICC), Ottawa, ON, Canada, 10–15 June 2012; pp. 1347–1351.

Chang, C.Y.; Liao, W.; Shiu, D. On the coverage preservation problem in green cellular networks. In Proceedings of the IEEE Global Communications Conference (GLOBECOM), Anaheim, CA, USA, 3–7 December 2012; pp. 3496–3501.

Oh, E.; Son, K.; Krishnamachari, B. Dynamic base station switching-On/Off strategies for green cellular networks. IEEE Trans. Wirel. Commun. 2013, 12, 2126–2136.

3GPP Technical Report, “Study on 3D channel model for LTE,” 3GPP TR 36.73, v12.2.0, available online at http://www.3gpp.org/dynareport/36873.htm, 2015.

Erome, David Loup, Mohamed Touzami, perk Valtchev, Ontology Matching with OLA, 2011

Huỳnh Thị Kim Ngân, Đại học Huế “Nghiên cứu phương pháp module hóa ontology trong biểu diễn tri thức”. Mã số: 60.48.01, 2012.

Artem Chebotko, Shiyong Lu, Farshad Fotouhi. Challenges for Information Systems Towards The Semantic Web, Department of Computer Science, 2011.

Dong Yeong Seo 1 and Yun Won Chung 2,* 1 Department of Information and Telecommunication Engineering, Graduate School, Soongsil University, Modeling and Performance Evaluation of a Context Information-Based Optimized Handover Scheme in 5G Networks, Received: 10 May 2017; Accepted: 22 June 2017; Published: 3 July 2017.

Published

31-12-2020

How to Cite

[1]
Nguyen Thi Thanh Huong and Le Huu Lap, “Services handover based on information context to imiprove energy efficiecy in MIMO system ”, JTE, vol. 15, no. 6, pp. 115–122, Dec. 2020.