Abstract
In this paper, we propose a QoE-based handover method to consider mobile terminal power consumption and maintain experienced quality for a video streaming service like mobile IPTV. As a mobile terminal has dual mode interfaces with different power consumption and quality, a user can select an access network providing the satisfied quality and power efficiency. So, a mobile terminal needs the dynamic handover scheme between WLAN and alternative access network(3G) for better conditions. Through our simple experiment, existing RSSI-based handover schemes are not suitable to maintain the experienced quality of streaming multimedia service. Therefore we propose the QoE-based handover method through analysis of the relation between video experienced quality (MSSIM; Mean Structural Similarity Index).
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References
Yang, S.-J., Chen, S.-U.: QoS-Based Fast Handover Scheme for Improving Service Continuity in MIPv6. In: Wireless Communications, Networking and Information Security (WCNIS) 2010, pp. 403–408 (June 2010)
Vijay Anand, S.: QoS based Handover layer for a Multi-RAT Mobile Terminal in UMTS and Wi-MAX Networks. In: COMSWARE 2008, pp. 472–479 (January 2008)
Garmonov, A.V., Cheon, S.H., Yim, D.H., Han, K.T., Park, Y.S., Savinkov, A.Y., Filiin, S.A., Moiseev, S.N., Kondakov, M.S.: QoS-Oriented Intersystem Handover Between IEEE 802.11b and Overlay Networks. IEEE Trans. on Vehicular Technology 57(2), 1142–1154 (2008)
Lee, W., Kim, E., Kim, J., Lee, I., Lee, C.: Movement-Aware Vertical Handoff of WLAN and Mobile WiMAX for Seamless Ubiquitous Access. IEEE Trans. on Consumer Electronics 53(4), 1268–1275 (2007)
Qi, Q., Cao, Y., Li, T., Zhu, X., Wang, J.: Soft Handover Mechanism Based on RTP Parallel Transmission for Mobile IPTV Services. IEEE Trans. on Consumer Electronics 56(4), 2276–2281 (2010)
ITU-T: Objective perceptual video quality measurement techniques for digital cable. ITU-T Recommendation J. 144, Geneva, Switzerland (March 2003)
Pinson, M., Wolf, S.: A New Standardized Method for Objectively Measuring Video Quality. IEEE Trans. on Broadcasting 50(3), 312–322 (2004)
Wang, Z., Lu, L., Bovic, A.C.: Video quality assessment using structural distortion measurement. Signal Processing: Image Communication, Special Issue on “Objective Video Quality Metrics” 19(2), 121–132 (2004)
Vatolin, D., Parshin, A., Petrov, O., Titarenko, A.: MSU Subjective Comparison of Modern Video Codecs. CS MSU Graphics & Media Lab Video Group (January 2006)
CS MSU Graphics & Media Lab Video Group, MSU Video Quality Measurement Tool Documentation (PRO version 2.7.1) (May 2010)
Fallon, H., Lattre, A.D., Bilien, J., Daoud, A., Gautier, M., Stenac, C.: VLC user guide. VideoLAN Project (2003)
Balasubramania, N., Balasubramania, A., Venkataramani, A.: Energy Consumption in Mobile Phones: A Measurement Study and Implications for Network Applications. In: Proceedings of IMC 2009, pp. 280–293 (November 2009)
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Kim, H.J., Choi, S.G. (2011). Handover Method Considering Power Consumption and Video Quality Satisfaction at the Mobile Node. In: Kim, Th., et al. Communication and Networking. FGCN 2011. Communications in Computer and Information Science, vol 265. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-27192-2_15
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DOI: https://doi.org/10.1007/978-3-642-27192-2_15
Publisher Name: Springer, Berlin, Heidelberg
Print ISBN: 978-3-642-27191-5
Online ISBN: 978-3-642-27192-2
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