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http://dx.doi.org/10.5515/KJKIEES.2018.29.5.353

Study on Effective 5G Network Deployment Method for 5G Mobile Communication Services  

CHUNG, Woo-Ghee (School of Mobile Communications, Chungkang College of Cutural Industries)
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Abstract
We herein analyze the service traffic characteristics and spectrum of the 5G mobile communication and suggest the effective 5G network deployment method for 5G mobile communication services. The data rates of the 5G mobile communication are from several kbps (voice and IoT) up to 1 Gbps (hologram, among others). The 5G mobile communication services show the diverse cell coverage environments owing to the use of diverse service data rates and multiple spectrum bands. To effectively support the 5G mobile communication services, the network deployment requires the optimization of the service coverages for new service environments and multiple spectrum bands. Considering the 5G spectrum bandwidth debated at present, if the 5G services of 100 Mbps can be supported in the 200 m cell edge using the 3.5 GHz spectrum bands, the 5G services of the 1 Gbps hologram and 500-Mbps 4k UHD can be supported in the cell edges of 50 m and 100 m using the 28 GHz spectrum bands. Therefore, the 5G services can be supported effectively by the 5G network deployment using spectrum portfolio configurations to match the diverse 5G services and multiple bands.
Keywords
5G Mobile Communications Service Traffic; 5G Cell Environments; 5G Network Deployment; Spectrum Portfolio;
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  • Reference
1 Naming for International Mobile Telecommunications, Recommendation ITU-R 56-2, 2015.
2 IMT Vision - Framework and Overall Objectives of the Future Development of IMT for 2020 and beyond, Recommendation ITU-R M.2083, pp. 12-14, Sep. 2015.
3 IMT Traffic Estimates for the Years 2020 to 2030, Recommendation ITU-R M.2370, pp. 21-49, Jul. 2015.
4 Future Spectrum Requirements Estimates for Terrestrial IMT, Recommendation ITU-R M.2290, p. 14, Dec. 2013.
5 Spectrum Needs for the Terrestrial Component of IMT in the Frequency Range between 24.25 GHz and 86 GHz, Recommendation ITU-R WP5D/TEMP/249r1, pp. 8-12, Feb. 2017.
6 Further Elaboration on Suitable Frequency Ranges and Their Suitability, Recommendation ITU-R WP5D/TEMP/ 124r2, pp. 5-6, Feb. 2013.
7 W. G. Chung, E. Lim, J. G. Yook, and H. K. Park, "Calculation of spectral efficiency for estimating spectrum requirements of IMT-advanced in Korean mobile communication environments," ETRI Journal, vol. 29, no. 2, pp. 153-161, Apr. 2007.   DOI
8 R. K. J. Zander, "Hierarchical cell structures for FRAMES wideband wireless access," pp. 785-791, in Conference Proceedings ACTS Mobile Telecommunications Summit 96, 1996.
9 Operational Guidelines for the Deployment of Broadband Wireless Access Systems for Local Coverage Operating Below 6 GHz, Recommendation ITU-R M.2378, pp. 12-20, Jul. 2015.
10 Minimum Requirements Related to Technical Performance for IMT-2020 radio interface(s), Recommendation ITU-R M.2410, pp. 2-3, Nov. 2017.
11 Guidelines for Evaluation of Radio Interface Technologies for IMT-advanced, Recommendation ITU-R M.2135, p. 31, Dec. 2009.
12 Guidelines for Evaluation of Radio Interface Technologies for IMT-2020, Recommendation ITU-R M.2412, p. 46, Oct. 2017.