Mobility Trigger Management: Implementation and Evaluation
- 1 VTT Technical Research Centre of Finland, Oulu, Finland
- 2 VTT Technical Research Centre of Finland, Oulu, Finland
- 3 VTT Technical Research Centre of Finland, Oulu, Finland
Abstract
Modern mobile devices have several network interfaces and can run various network applications. In order to remain always best connected, events need to be communicated through the entire protocol stack in an efficient manner. Current implementations can handle only a handful of low level events that may trigger actions for mobility management, such as signal strength indicators and cell load. In this paper, we present a framework for managing mobility triggers that can deal with a greater variety of triggering events, which may originate from any component of the node’s protocol stack as well as mobility management entities within the network. We explain the main concepts that govern our trigger management framework and discuss its architecture which aims at operating in a richer mobility management framework, enabling the deployment of new applications and services. We address several implementation issues, such as, event collection and processing, storage, and trigger dissemination, and introduce a real implementation for commodity mobile devices. We review our testbed environment and provide experimental results showcasing a lossless streaming video session handover between a laptop and a PDA using mobility and sensor-driven orientation triggers. Moreover, we empirically evaluate and analyze the performance of our prototype. We position our work and implementation within the Ambient Networks architecture and common prototype, centring in particular on the use of policies to steer operation. Finally, we outline current and future work items.
- D. Johnson, C. Perkins, and J. Arkko, “Mobility support in IPv6,” Series Request for Comments, No. 3775. IETF, June 2004.
- A. Gurtov, “Host Identity Protocol (HIP): Towards the se-cure mobile Internet,” Wiley and Sons, pp. 328, June 2008.
- J. Makela, K. Pentikousis, M. Majanen, and J. Huusko, “Trigger management and mobile node cooperation,” in M. Katz and F. H. P Fitzek (Editors), Cognitive wireless networks: Concepts, methodologies and visions inspiring the age of enlightenment of wireless communications, Springer-Verlag, pp. 199-211, 2007.
- J. Makela and K. Pentikousis, “Trigger management mechanisms,” Proceedings of the Second International Symposium on Wireless Pervasive Computing, San Juan, Puerto Rico, pp. 378-383, February 2007.
- P. Prasad, W. Mohr, and W. Konhuser, “Third generation mobile communication systems,” Boston, MA, Artech House Publishers, 2005.
- J. Eisl (Editor), “Ambient networks D4.2: Mobility ar-chitecture & framework,” EU-project IST-2002-507134- AN/WP4/D4.2, 2005.
- P. Vidales, J. Baliosian, J. Serrat, G. Mapp, F. Stajano, and A. Hopper, “Autonomic system for mobility support in 4G networks,” IEEE JSAC, Vol. 423, No. 12, pp. 2288-2304.
- S. Ishihara, K. Koyama, G. Miyamoto, and M. Kuroda, “Predictive rate control for realtime video streaming with network triggered handover,” IEEE WCNC, Vol. 3 No. 13-17, Las Vegas, Nevada, USA, pp. 1335-1340, 2005.
- H. Chaouchi and P. Antunes, “Pre-handover signalling for QoS aware mobility management,” International Journal of Network Management, Vol. 14, No. 6, pp. 367-374, 2005.
- E. Casalicchio, V. Cardellini, and S. Tucci, “A layer-2 trig-ger to improve QoS in content and session-oriented mobile services,” Proceedings of 8th ACM international Sympo-sium on Modeling, Analysis and Simulation of Wireless and Mobile Systems, Montral, Quebec, Canada, pp. 95–102, 2005.
- C. Kappler, P. Mendes, C. Prehofer, P. P?yh?nen, and D. Zhou, “A framework for self-organized network compo-sition,” Lecture Notes in Computer Science, No. 3457, Springer, pp. 139-151, 2005.
- IEEE Std 802.21?-2008, IEEE standard for local and metropolitan area networks-Part 21: Media independent handover services, IEEE, January 2009.
- R. Giaffreda, K. Pentikousis, E. Hepworth, R. Agüero, and A. Galis, “An information service infrastructure for Ambient Networks”, Proc. 25th International Conference on Parallel and Distributed Computing and Networks (PDCN), Innsbruck, Austria, February 2007, pp. 21-27.