Title :
Mitigating signaling overhead from multi-mode mobile terminals
Author :
Widjaja, Indra ; Nuzman, Carl
Author_Institution :
Bell Labs., Alcatel-Lucent, Murray Hill, NJ, USA
Abstract :
Modern cellular networks may be deployed using multiple radio-access-network technologies with multi-mode mobile terminals capable of selecting among different technologies. Such a network typically forms an overlay-underlay architecture where the underlay uses an older technology (e.g., 3G) while the overlay uses a newer technology (e.g., 4G). It has been observed that excessive signaling message updates can arise due to registration ping-pongs, and Idle-mode Signaling Reduction (ISR) has been introduced as a mechanism to reduce this update load. In this paper, we show that while ISR reduces update load, it also has the effect of increasing paging load. We investigate tradeoff between update and paging loads. Our analysis quantifies a threshold that is used to activate or deactivate ISR for each mobile terminal and results in significant signaling load reduction. We also develop a practical threshold-based algorithm that does not rely on knowledge of the structure of an overlay or terminal mobility.
Keywords :
3G mobile communication; 4G mobile communication; cellular radio; mobility management (mobile radio); radio access networks; telecommunication signalling; 3G technology; 4G technology; idle-mode signaling reduction; mitigating signaling overhead; modern cellular networks; multimode mobile terminals; multiple radio-access-network; overlay-underlay architecture; signaling load reduction; terminal mobility; Base stations; Mobile communication; Radio access networks; Registers; Simulation; Trajectory; Upper bound;
Conference_Titel :
Teletraffic Congress (ITC), 2011 23rd International
Conference_Location :
San Francisco, CA
Print_ISBN :
978-1-4577-1187-9
Electronic_ISBN :
978-0-9836283-0-9