DocumentCode
1979123
Title
Performance of SINR based handover among heterogeneuous networks in MIH environments
Author
Bathich, Ammar A. ; Dani Baba, Mohd ; Rahman, Ruhani Ab ; Ibrahim, Mohammad
Author_Institution
Centre for Comput. Eng. Studies, Univ. Teknol. MARA, Shah Alam, Malaysia
fYear
2013
fDate
19-20 Aug. 2013
Firstpage
136
Lastpage
141
Abstract
The great increase in user demand to roam among various wired and wireless communications networks without affecting the signal quality has attracted many researchers to investigate about the best handover decision criteria that promote seamless handover. IEEE 802.21 Media Independent Handover (MIH) standard can be considered to be the best environment for handling both horizontal and vertical handover. In this work, we propose a new decision criteria based on MIH signalling among WLAN and WiMAX networks which depend on the received Signal to Interference and Noise Ratio (SINR) instead of the traditional Received Signal Strength (RSS) criteria. In order to provide multimedia QoS inside the integrated network environment, the proposed VHD provides the knowledge of the achievable bandwidth from both networks by using the received SINR. Simulation-based outputs along with analytical results have confirmed that our proposal would offer the end user with better performance during the handover stage.
Keywords
IEEE standards; WiMax; mobility management (mobile radio); multimedia communication; quality of service; wireless LAN; IEEE 802.21 media independent handover standard; MIH environments; MIH signalling; MIH standard; RSS criteria; SINR based handover; VHD; WLAN networks; WiMAX networks; handover decision criteria; heterogeneuous networks; horizontal handover; integrated network environment; multimedia QoS; received SINR; received signal to interference and noise ratio; seamless handover; signal quality; traditional received signal strength criteria; user demand; vertical handover; wired communications networks; wireless communications networks; Delays; Handover; Interference; Signal to noise ratio; WiMAX; Wireless LAN; IEEE 802.21; MIH; QoS; SINR; heterogeneous network; vertical handover;
fLanguage
English
Publisher
ieee
Conference_Titel
System Engineering and Technology (ICSET), 2013 IEEE 3rd International Conference on
Conference_Location
Shah Alam
Print_ISBN
978-1-4799-1028-1
Type
conf
DOI
10.1109/ICSEngT.2013.6650158
Filename
6650158
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