Title :
Intelligent interference management based on on-demand service connectivity for femtocellular networks
Author :
Azam, Kazi Nawshad ; Chowdhury, Mostafa Zaman
Author_Institution :
Dept. of Electr. & Electron. Eng., Khulna Univ. of Eng. & Technol., Khulna, Bangladesh
Abstract :
The femto-access-point (FAP), a low power small cellular base station provides better signal quality for the indoor users as to provide high data-rate communications with improved coverage, access network capacity and quality of service. Highly dense femtocellular deployments-the ultimate goal of the femtocellular technology-will require significant degree of selforganization in lieu of manual configuration as to mitigate unwanted handovers and interference effects. The deployment of femtocells with our proposed on-demand scheme in the multistoried building or home environment can solve the low level signal-to-noise plus interference ratio and throughput problems. In this paper, we propose new application of the femtocell technology with a new idea of femto-idle-mode and femto-active-mode system. The signal-to-noise plus interference ratio level and throughput are analyzed. The simulation results show that the proposed on-demand scheme in femtocell deployment significantly enhances the signal-to-noise plus interference ratio level and throughput in the multistoried building or home environment.
Keywords :
femtocellular radio; home networks; mobility management (mobile radio); quality of service; radio access networks; radiofrequency interference; FAP; access network capacity improvement; coverage improvement; femto-access-point; femto-active-mode system; femto-idle-mode system; femtocellular networks; high data-rate communications; home environment; intelligent interference management; interference effect mitigation; low power small cellular base station; multistoried building; on-demand service connectivity; quality-of-service improvement; signal quality; signal-to-noise plus interference ratio level enhancement; throughput enhancement; unwanted handover mitigation; Equations; Femtocells; Handover; Interference; Throughput; Ultrafast electronics; Femto-access-point; femto-active-mode; femto-idle-mode; interference management; on-demand;
Conference_Titel :
Informatics, Electronics & Vision (ICIEV), 2013 International Conference on
Conference_Location :
Dhaka
Print_ISBN :
978-1-4799-0397-9
DOI :
10.1109/ICIEV.2013.6572598