Title :
Performance Analysis for New Call Bounding Scheme with SFR in LTE-Advanced Networks
Author :
Safwat, Mahammad A. ; El Badawy, Hesham M. ; Yehya, Ahmad ; El Motaafy, H.
Author_Institution :
Network Planning Dept., Nat. Telecommun. Inst., Cairo, Egypt
Abstract :
The call admission control (CAC) optimizes the use of allocated channels against offered traffic maintaining the required quality of service (QoS). Provisioning QoS to user at cell-edge is a challenge where there is limitation in cell resources due to inter-cell interference (ICI). New Call bounding scheme is a Call Admission control that depends on restricting the number of new calls accepted into the cell by a threshold. In this paper, traffic analysis in cell-edge is developed based on NCB policy using three dimension Markov model. The model is based on actual resources allocated to cell-edge users according to Soft Frequency Reuse (SFR) scheme in LTE-Advanced system. In the proposed model, the performance metrics in terms of blocking and dropping probability for cell-edge and cell-core users is deduced separately, in addition, the optimal parameter settings for system performance metrics is developed.
Keywords :
Long Term Evolution; Markov processes; channel allocation; frequency allocation; probability; quality of service; radiofrequency interference; telecommunication congestion control; telecommunication network reliability; telecommunication traffic; CAC; LTE-Advanced network; Long Term Evolution; NCB policy; QoS; SFR; blocking probability; call admission control; cell-core user; cell-edge traffic analysis; channel allocation; dropping probability; intercell interference; new call bounding scheme; quality of service; resource allocation; soft frequency re-use; three dimension Markov model; traffic maintaining; Equations; Handover; Markov processes; Mathematical model; Measurement; Quality of service; New Call Bounding; Queuing; Soft Frequency Reuse;
Conference_Titel :
High Performance Computing and Communications, 2014 IEEE 6th Intl Symp on Cyberspace Safety and Security, 2014 IEEE 11th Intl Conf on Embedded Software and Syst (HPCC,CSS,ICESS), 2014 IEEE Intl Conf on
Print_ISBN :
978-1-4799-6122-1
DOI :
10.1109/HPCC.2014.75