STUDY AND DEVELOPMENT OF THE TRANSMISSION METHOD FOR LARGE MULTIMEDIA FILE SIZE USING MULTIMEDIA MESSAGING SERVICE TECHNOLOGY

Authors

  • ANDIK SETYONO Multimedia University, Malaysia Dian Nuswantoro University, Indonesia
  • MD. JAHANGIR ALAM Multimedia University, Malaysia
  • C. ESWARAN Multimedia University, Malaysia

Keywords:

MMS technology, Multimedia file, Compression, Splitting, Transmission method

Abstract

Mobile technology has grown rapidly in recent years due to the availability of sophisticated mobile phones in the market. Many features offered in the mobile phones encourage people to develop mobile-phone-based systems. Internet applications also have been developed to transmit data by mobile phone in a mobile environment. In this paper, we study and develop transmission methods for large multimedia files using MMS technology. We implement file compression, splitting, masking and cropping techniques to improve the ability of MMS technology in multimedia message delivery so that it can transmit large size data files which are not possible with the existing technologies. We hope that this research can provide a valuable contribution to the development of MMS technology. The experimental results demonstrate that the proposed techniques perform better than the conventional MMS technologies in preserving the quality of data. The modified MMS technology can be used to develop practical client-server applications.

 

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References

Daniel R. P. G., MMS Technology, Usage and Business Models, Jhon Wiley & Sons Ltd, the Atrium, Southern Gate, Chichester, West Sussex PO19 8SQ, England, 2004.

Miraj E. M., MMS-The Modern Wireless Solution for Multimedia Messaging, Nokia Corporation, Visiokatu 3, 33720 Tampere, Finland, pp. 2466 – 2472, Feb 2002.

Open Mobile Alliance, Multimedia Messaging Service Requirement Candidate Version, OMA-MMS-ENC-V1_3-20080128-C, Approved Version 1.3, 2008

Open Mobile Alliance, Multimedia Messaging Service Encapsulation Protocol, OMA-MMS-ENC-V1_2-20050301-A, Approved Version 1.2, 2005.

Stephane C. and Guido G., Multimedia Adaptation for the Multimedia Messaging Service, IEEE Communication Magazine, July 2004.

Majid G. and Srinivasan K., Multimedia Messaging Service: System Description and Performance Analysis, School of Computer Science University of Waterloo, Waterloo, ON N2L 3G1, Canada, 2004.

Gwenae¨l L. B., Mobile Messaging Technologies and Services SMS, EMS, MMS, Second Edition, Jhon Wiley & Sons, Chichester, England, 2005.

Gwenae¨l L. B., Multimedia Messaging Service: An Engineering Approach to MMS, Jhon Wiley & Sons, Chichester, England, 2003.

Miraj E. M., Improved Implementation Solution and General Mobile Network Architecture for Interworking between MMS and Streaming, International Journal of Communication Systems, 2005.

Tinku A. and Ping-Sing T., JPEG2000 Standard for Image Compression: Concepts, Algorithms and VLSI Architectures, A Jhon Wiley & Sons, Canada, 2005.

Linawati and Henry P. P., Perbandingan Kinerja Algoritma Kompresi Huffman, LZW dan DMC pada Berbagai Tipe File [Comparative Performance of compression algorithm of Huffman, LZW and DMC on Different Types of Files], Vol. 9 No. 1, pp. 7-16 (2004).

Jhon C. R., Image Processing Handbook Fifth Edition, CRC Taylor and Francis, USA, 2007.

IM2023 Multimedia, Kompresi Citra [Image Compression], Fakultas Teknik Informatika, Universitas Kristen Duta Wacana, Yogyakarta.

Syed A. K., the Discrete Cosine Transform (DCT): Theory and Application, Department of Electrical and Computer Engineering, Michigan State University, 2003.

David S., Data Compression, the Complete Reference, Third Edition, Springer, USA, 2004.

Nelson M. and Gailly J. L., The Data Compression Book, Second Edition, M&T Books (1996).

Asadullah S., Muhammad M., Muniba S. M., A System Design for a Telemedicine Health Care System. International Multi Topic Conference, 2008.

Tahat A. A., Mobile Personal Electrocardiogram Monitoring System and Transmission Using MMS, Proceedings of the 7th International Caribbean Conference on Devices, Circuits and Systems, April 28-30, 2008.

Alireza G., Tomoya E., and Makoto T., A Multi-Source Streaming Model for Mobile Peer-to-Peer (P2P) Overlay Networks, Spriger-Verlag, pp. 122-131, 2008.

Govind S. T., Ganish S., and Vishal G., Multimedia Streaming Technology 4G Mobile Communication Systems, International Journal on Computer Science and Engineering Vol. 02, No. 03. pp. 695-699, 2010.

Andik S., Jahangir M. A., Raed A. A., Evaluation and Analysis of Multimedia Messaging Service (MMS) in Message Delivery, CITA’09 University Malaysia Serawak, pp. 241-245, July 2009.

Athi N. S., Picture Quality Measures Calculation. http://www.ksrce.ac.in/

Zhou W., A Universal Image Quality Index, IEEE Signal Processing Letters, Vol 9, No. 3, 2002.

Cheng W., Ming-Feng Y., Kuang-Chiung C., and Ren-Guey L., Real-Time ECG Telemonitoring System design with Mobile Phone Platform, Elsevier, pp. 463-470, 2007.

Ching S. W., Hunang J. L., and Tong Y. C., Mobile Telemedicine Application and Technologies on GSM, IEEE, 2007.

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Published

2012-02-26

How to Cite

SETYONO, A. ., ALAM, M. J. ., & ESWARAN, C. . (2012). STUDY AND DEVELOPMENT OF THE TRANSMISSION METHOD FOR LARGE MULTIMEDIA FILE SIZE USING MULTIMEDIA MESSAGING SERVICE TECHNOLOGY. Journal of Mobile Multimedia, 8(1), 001–024. Retrieved from https://journals.riverpublishers.com/index.php/JMM/article/view/4679

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