Main Article Content

Abstract

Due to growth of indoor mobile traffic, there is a growing focus on In-building solutions. This paper explains the requirement for quick development in IBS (In-Building Solutions) with a major focus on demand capacity planning and traffic planning which is carried out independently for general and business applications to differentiate common and intensive applications. It equally concentrates on accomplishing a more cost effective low grade of service (GoS) while having high quality of service (QoS). This paper additionally highlights the utilization of Distributed Antenna Systems (DAS) which is a novel solution for coverage improvement. The incorporated DAS implementation reduces the expenses that are required for enabling cellular coverage to the customers of wireless service providers in vast open locations. The paper additionally elucidates Radio Base Station (RBS) skeleton that aides in establishing connections for these DAS frameworks.

Keywords

IBS DAS Demand Planning RBS Antenna planning Traffic planning Donor cell.

Article Details

How to Cite
Jain, A., Shenoy, A., Mittal, P., & Nawani, P. (2015). DEMAND CAPACITY AND ANTENNA SYSTEM PLANNING FOR IN-BUILDING GSM NETWORKS. International Journal of Students’ Research in Technology & Management, 2(6), 199–202. Retrieved from https://mgesjournals.com/ijsrtm/article/view/139

References

  1. International Telecommunication Union, “Trends and developments in the telecommunication environment,†2004. Online. Available: https://www.itu.int/aboutitu/strategic_plans /99-03/trends.html.
  2. Nokia Siemens Network, “In Building Solutions - Executive Summary,†2011.
  3. Nokia Networks Oy, “Radio Network Planning Introduction - Training Document,†2014.
  4. Alcatel Lucent, “In-Building Solutions,†2014. Online. Available: http://www.alcatel-lucent.com/solutions/in-building.
  5. Metro Telworks, “In-Building Solutions,†2012. Online. Available: http://www.metrotelworks.com/in-building-solutions. html.
  6. BICSI, "The Fundamentals of In-Building Wireless Solutions," Online. Available: https://www.bicsi.org/pdf/presentations/ northcentral10/The%20Fundamentals%20of%20In-Building% 20Wireless%20Solutions%20-%20ADC.pdf.
  7. Cisco, "Traffic Analysis," Online. Available: http://www.cisco.com/c/en/us/td/docs/ios/solutions_docs/voip_solutions/TA_ISD.html.
  8. M. A. F. Ali, M. S. A. Hmadi and V. K. Gupta, "Grade of Service in End-To-End Service Quality of Service," IJARCSSE, vol. 2, no. 12, 2012.
  9. Dr. Y. Q. Bian, D. Rao, "Small Cells Big Opportunities," Huawei, 2014.
  10. A. J. Rustako, R. S. Roman and A. M. Saleh, "Distributed Antennas for Indoor Radio Communications," IEEE Transactions on Commun., vol. 35, no. Dec. 1987, pp. 1245-1251.
  11. Connected Planet, "InFocus: Passive, active and hybrid solutions for in-building wireless," Online. Available: http://connectedplanetonline.com/wireless/technology/inbuilding_wireless_solutions_032806/.
  12. RFI, "Coaxial Cable Attenuation Chart," Online. Available: http://www.hawaiirepeaters.net/CoaxLossChart.pdf.
  13. K. Hasan, "Study on Indoor Building Solution For Gsm Networks," Dhaka, 2011.
  14. M. Tolstrup, Indoor Radio Planning - A Practical Guide for GSM, DCS, UMTS and HSPA, John Wiley & Sons Ltd, 2008.