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Published in: Wireless Personal Communications 1/2017

27-10-2016

Dynamic Self-Optimization of the Antenna Tilt for Best Trade-off Between Coverage and Capacity in Mobile Networks

Authors: Nikolay Dandanov, Hussein Al-Shatri, Anja Klein, Vladimir Poulkov

Published in: Wireless Personal Communications | Issue 1/2017

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Abstract

One major factor influencing the coverage and capacity in mobile networks is related to the configuration of the antennas and especially the antenna tilt angle. By utilizing antenna tilt, signal reception within a cell can be improved and interference radiation towards other cells can be effectively reduced, which leads to a higher signal-to-interference-plus-noise ratio received by the users and increased sum data rate in the network. In this work, a method for capacity and coverage optimization using base station antenna electrical tilt in mobile networks is proposed. It has the potential to improve network performance while reducing operational costs and complexity, and to offer better quality of experience for the mobile users. Our solution is based on the application of reinforcement learning and the simulation results show that the algorithm improves significantly the overall data rate of the network, as compared to no antenna tilt optimization. The analysis in this paper focuses on the downlink of the cellular system. For the simulation experiments a multicellular and sectorized mobile network in an urban environment and randomly distributed user terminals are considered. The main contribution in this work is related to the development of a learning algorithm for automated antenna tilting.

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Literature
1.
go back to reference Hamalainen, S., Sanneck, H., & Sartori, C. (2011). LTE self-organising networks (SON): Network management automation for operational efficiency. Wiley. Hamalainen, S., Sanneck, H., & Sartori, C. (2011). LTE self-organising networks (SON): Network management automation for operational efficiency. Wiley.
3.
go back to reference Yilmaz, O., Hamalainen, S., & Hamalainen, J. (2009). Comparison of remote electrical and mechanical antenna downtilt performance for 3GPP LTE. Vehicular Technology Conference Fall (VTC 2009-Fall), 2009 IEEE 70th. pp. 1–5. Yilmaz, O., Hamalainen, S., & Hamalainen, J. (2009). Comparison of remote electrical and mechanical antenna downtilt performance for 3GPP LTE. Vehicular Technology Conference Fall (VTC 2009-Fall), 2009 IEEE 70th. pp. 1–5.
4.
go back to reference Yilmaz, O., Hamalainen, J., & Hamalainen, S. (2010). Self-optimization of remote electrical tilt. Personal Indoor and Mobile Radio Communications (PIMRC), 2010 IEEE 21st International Symposium on. pp. 1128–1132. Yilmaz, O., Hamalainen, J., & Hamalainen, S. (2010). Self-optimization of remote electrical tilt. Personal Indoor and Mobile Radio Communications (PIMRC), 2010 IEEE 21st International Symposium on. pp. 1128–1132.
5.
go back to reference Partov, B., Leith, D. J., & Razavi, R. (2015). Utility fair optimization of antenna tilt angles in LTE networks. IEEE/ACM Transactions on Networking, 23(1), 175–185.CrossRef Partov, B., Leith, D. J., & Razavi, R. (2015). Utility fair optimization of antenna tilt angles in LTE networks. IEEE/ACM Transactions on Networking, 23(1), 175–185.CrossRef
6.
go back to reference Thampi, A., Kaleshi, D., Randall, P., Featherstone, W., & Armour, S. (2012). A sparse sampling algorithm for self-optimisation of coverage in LTE networks. Wireless Communication Systems (ISWCS), 2012 International Symposium on, pp. 909–913. Thampi, A., Kaleshi, D., Randall, P., Featherstone, W., & Armour, S. (2012). A sparse sampling algorithm for self-optimisation of coverage in LTE networks. Wireless Communication Systems (ISWCS), 2012 International Symposium on, pp. 909–913.
7.
go back to reference Razavi, R., Klein, S., & Claussen, H. (2010). Self-optimization of capacity and coverage in LTE networks using a fuzzy reinforcement learning approach. Personal Indoor and Mobile Radio Communications (PIMRC), 2010 IEEE 21st International Symposium on, pp. 1865, 1870. Razavi, R., Klein, S., & Claussen, H. (2010). Self-optimization of capacity and coverage in LTE networks using a fuzzy reinforcement learning approach. Personal Indoor and Mobile Radio Communications (PIMRC), 2010 IEEE 21st International Symposium on, pp. 1865, 1870.
8.
go back to reference Goldsmith, A. (2005). Wireless communications. Cambridge: Cambridge University Press.CrossRef Goldsmith, A. (2005). Wireless communications. Cambridge: Cambridge University Press.CrossRef
9.
go back to reference Balanis, C. A. (2005). Antenna theory: Analysis and design, 3rd Edn. Wiley. Balanis, C. A. (2005). Antenna theory: Analysis and design, 3rd Edn. Wiley.
12.
go back to reference Gunnarsson, F., Johansson, M. N., Furuskar, A., Lundevall, M., Simonsson, A., Tidestav, C., & Blomgren, M. (2008). Downtilted base station antennas—a simulation model proposal and impact on HSPA and LTE performance. Vehicular Technology Conference, 2008. VTC 2008-Fall. IEEE 68th, pp. 1–5. Gunnarsson, F., Johansson, M. N., Furuskar, A., Lundevall, M., Simonsson, A., Tidestav, C., & Blomgren, M. (2008). Downtilted base station antennas—a simulation model proposal and impact on HSPA and LTE performance. Vehicular Technology Conference, 2008. VTC 2008-Fall. IEEE 68th, pp. 1–5.
13.
go back to reference Mohri, M., Rostamizadeh, A., & Talwalkar, A. (2012). Foundations of machine learning. The MIT Press. Mohri, M., Rostamizadeh, A., & Talwalkar, A. (2012). Foundations of machine learning. The MIT Press.
14.
go back to reference Sutton, R., & Barto, A. (1998). Introduction to reinforcement learning, 1st edn. MIT Press. Sutton, R., & Barto, A. (1998). Introduction to reinforcement learning, 1st edn. MIT Press.
Metadata
Title
Dynamic Self-Optimization of the Antenna Tilt for Best Trade-off Between Coverage and Capacity in Mobile Networks
Authors
Nikolay Dandanov
Hussein Al-Shatri
Anja Klein
Vladimir Poulkov
Publication date
27-10-2016
Publisher
Springer US
Published in
Wireless Personal Communications / Issue 1/2017
Print ISSN: 0929-6212
Electronic ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-016-3849-9

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