Handover Decision Algorithm in Femtocell Long Term Evolution Networks
Maroua Ben Gharbia, Ridha Bouallègue
Abstract
Maroua Ben Gharbia, Ridha Bouallègue
Abstract
Nowadays the deployment of Femtocell as the emerging wireless technology becomes a promising solution to improve indoor coverage and system capacity and lower transmit power. However, Femtocells deployment may cause the unnecessary Handover due to the movement of the UE. As Femtocells coverage area is very small, there are many targets Femtocells. In this paper, we propose a new Handover decision algorithm between Femtocell and Macrocell for LTE (Long Term Evolution) network based on multiple parameters instead of some parameters as in the vertical Handover algorithm. The proposed algorithm can avoid unnecessary Handover and reduce number of Handover. Simulation results show that the system performance has been improved for medium and high UE's speed.
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Nowadays the deployment of Femtocell as the emerging wireless technology becomes a promising solution to improve indoor coverage and system capacity and lower transmit power. However, Femtocells deployment may cause the unnecessary Handover due to the movement of the UE. As Femtocells coverage area is very small, there are many targets Femtocells. In this paper, we propose a new Handover decision algorithm between Femtocell and Macrocell for LTE (Long Term Evolution) network based on multiple parameters instead of some parameters as in the vertical Handover algorithm. The proposed algorithm can avoid unnecessary Handover and reduce number of Handover. Simulation results show that the system performance has been improved for medium and high UE's speed.
Key concepts: Femtocell, Macrocell, Handover, Computer science, Computer network, User equipment, Term (time), Software deployment