Proposed System Model for Android Augmented Reality System in Malaysia Military Operations – Unit Positions

Article Preview

Abstract:

We propose System Model whereby augmented reality-based approach on Android devices for Malaysia military operations that in this area for unit positioning. An Android system or application will be as information devices to soldier unit in gathering or distributing their information between the allied units. Augmented reality interfaces other than provides a user-friendly and intuitive, it will create awareness and better understanding when on certain military operations risk is at the high level.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1493-1497

Citation:

Online since:

April 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] M. A. Livingston, L. J. Rosenblum, S. J. Julier, D. Brown, Y. Baillot, J. E. Swan II, J. L. Gabbard, D. Hix, An Augmented Reality System for Military Operations in Urban Terrain, Proceedings of Interservice / Industry Training, Simulation & Education Conference (I/ITSEC) 2002, Orlando, Florida, 2002, p.89.

DOI: 10.1109/ismar.2003.1240688

Google Scholar

[2] P. J. Metzger, Adding reality to the virtual, Proceedings of the IEEE 1993 Virtual Reality Annual International Symposium, 1993, pp.7-13.

DOI: 10.1109/vrais.1993.380805

Google Scholar

[3] D. Sauter, Android Smartphone Relevance to Military Weather Applications, Army Research Laboratory, (2011).

Google Scholar

[4] Milgram, P., & Kishino, F., A taxonomy of mixed reality visual displays. IEEE Transactions on Information Systems, 77(12), (1994).

Google Scholar

[5] Milgram, P., Takemura, H., Utsumi, A., & Kishino, F., Augmented reality: A class of displays on the reality-virtuality continuum, Telemanipulator and Telepresence Technologies, 2351, 1994, pp.282-292.

DOI: 10.1117/12.197321

Google Scholar

[6] Vallino, J. R., Introduction to augmented reality, http: /www. se. rit. edu/~jrv/research/ar/introduction. html, accessed October 19, (2012).

Google Scholar

[7] Henrysson, A., & Ollila, M., UMAR – Ubiquitous Mobile Augmented Reality, Mobile And Ubiquitous Multimedia, (2004).

DOI: 10.1145/1052380.1052387

Google Scholar

[8] Azuma, R. T., A survey of augmented reality, In Presence: Teleoperators and Virtual Environment, 6(4), 1997, pp.355-385.

DOI: 10.1162/pres.1997.6.4.355

Google Scholar

[9] Kaufmann, H., Collaborative augmented reality in education. Proceedings of Imagina 2003 conference, 2003, pp.1-4.

Google Scholar

[10] Zhou, F., Duh, H-L., & Billinghurst, M., Trends in augmented reality tracking, interaction and display: A review of ten years in ISMAR, Mixed and Augmented Reality, ISMAR 7th IEE/ACM International Symposium, 2008, pp.193-202. Cambridge: IEEE.

DOI: 10.1109/ismar.2008.4637362

Google Scholar

[11] Hollerer, T. H., & Feiner, S. K., Mobile Augmented Reality, H. A. Karimi, & A. Hammad (Eds. ), Telegeoinformatics: Location-Based Computing and Services, 2004, pp.392-421, CRC Press.

Google Scholar

[12] Ludwig, C., & Reimann, C., Augmented reality: Information at focus, Cooperative Computing & Communication laboratory, Vol. 4, No. 1, 2005, p.4.

Google Scholar

[13] L. Gong & C. Zhou, Development and Research of Mobile Termination Application Based on Android, Computer and Modernization, pp.85-89, August (2008).

Google Scholar

[14] IDC Worldwide Mobile Phone Tracker [Online], Available: http: /www. idc. com/getdoc. jsp?containerId=prUS23946013#. UUcFIxf-GSo, accessed on 11th March (2013).

Google Scholar

[15] Abdulrahman M. S. Salman & Amir Pourabdollah, UCML: Ubiquitous Control Modeling Language for Android Platform, 2010 Fourth International Conference on Next Generation Mobile Applications, Services and Technologies, (2010).

DOI: 10.1109/ngmast.2010.32

Google Scholar

[16] Wikipedia [Online], Available: http: /en. wikipedia. org/wiki/Geographic_information_system, accessed on 11th March (2013).

Google Scholar

[17] Shukran, M.A.M., Chung, Y.Y., Chen, X., Implementation of a new H. 264 video watermarking algorithm with usability test (2007).

Google Scholar

[18] Android Developer Guide [Online], Available: http: /developer. android. com/, accessed on 11th March (2013).

Google Scholar

[19] QGIS [Online], Available: http: /www. qgis. org/, accessed on 11th March (2013).

Google Scholar

[20] Shukran, M.A.M., Chung, Y.Y., Yeh, W. -C., Wahid, N., Zaidi, A.M.A., Artificial bee colony based data mining algorithms for classification tasks (2011) Modern Applied Science, 5 (4), pp.217-231.

DOI: 10.5539/mas.v5n4p217

Google Scholar

[21] Shukran, M.A.M., Chung, Y.Y., Yeh, W. -C., Wahid, N., Zaidi, A.M.A. Image classification technique using modified particle swarm optimization (2011) Modern Applied Science, 5 (5), pp.150-164.

DOI: 10.5539/mas.v5n5p150

Google Scholar

[22] Shukran, M.A.M., Chung, Y.Y., Chen, X., Implementation of a new H. 264 video watermarking algorithm with usability test (2007).

Google Scholar