Title :
Mobility-Aware Call Admission Control Algorithm With Handoff Queue in Mobile Hotspots
Author :
Younghyun Kim ; Haneul Ko ; Sangheon Pack ; Wonjun Lee ; Xuemin Shen
Author_Institution :
Sch. of Electr. Eng., Korea Univ., Seoul, South Korea
Abstract :
In this paper, we propose a mobility-aware call admission control (MA-CAC) algorithm with a handoff queue (HQ) in mobile hotspots, where different admission control policies are employed, depending on the vehicle mobility. Specifically, when a vehicle is static, a handoff priority scheme with guard channels is studied to protect vehicular handoff users because handoff users may get on the vehicle. In addition, an HQ is examined during stopping to further accept handoff users. On the other hand, for a moving vehicle, no guard channels for handoff users are allocated to maximize channel utilization. By means of Markov chains, we evaluate MA-CAC with an HQ in terms of new-call blocking probability (NCBP), handoff-call dropping probability (HCDP), handoff-call waiting time in the HQ, and channel utilization. Analytical and simulation results demonstrate that MA-CAC with an HQ can lower both the HCDP and the NCBP while maintaining high channel utilization.
Keywords :
Markov processes; mobility management (mobile radio); probability; queueing theory; telecommunication congestion control; HCDP; HQ; MA-CAC algorithm; Markov chains; NCBP; channel utilization maximization; guard channel; handoff priority scheme; handoff queue; handoff-call dropping probability; handoff-call waiting time; mobile hotspot; mobility-aware call admission control algorithm; new-call blocking probability; vehicle mobility; vehicular handoff users; Analytical models; Call admission control; Handover; Mobile communication; Quality of service; Vehicles; Wireless LAN; Channel utilization; Markov chain; handoff queue (HQ); handoff-call dropping probability (HCDP); mobile hotspot; mobility-aware call admission control (MA-CAC); new-call blocking probability (NCBP);
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2013.2245928