Design of a Simulation System for Emergency Networking Based on Microwave Communication

Article Preview

Abstract:

Aimed at the backwardness of generation and assessment methods in communication guarantee, the paper designed a simulation system for emergency network of microwave communication. The system designed the architecture in the form of modular, constructed the modeling framework for communication equipment using hierarchy analysis, described the simulation process and proposed the simulation embodiments/realization methods through flow chart, realized the database management, and provided the evaluation basis of communication effect and the embodiments/realization methods. Finally, the feasibility and reliability of the system was verified through the daily network training simulation in this paper. The system provides more accurate analysis data and results to users through virtual evaluation methods, and can play an assistant decision role in communication guarantee scheme generation and effectively improve the efficiency of emergency communication guarantee.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1626-1630

Citation:

Online since:

July 2013

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] PENG Xing, YU De-you, YE Shu-xiang. Thinking about Emergency Communication Security in Variety Military Tasks[J]. Sichuan Ordnance Journal, 2009, 30(2): 122-124.

Google Scholar

[2] CHOI J W, LEE K H. Design and implementation of a network simulation system[C]/ IASTED International Conference on Parallel and Distributed Computing and Networks. Anaheim, USA: INSPEC, 2004: 245-250.

Google Scholar

[3] GAO Ying, ZHANG Pu-zhao, WANG Xiu-liang, et al. Research on Visualization to Electromagnetic Signal in Virtual Battlefield Environment[J]. Journal of System Simulation, 2009, 21(16): 5092-5096.

Google Scholar

[4] BELUE J M. Network Visualization Design Using Prefuse Visualization Toolkit[D]. OHIO: AIR UNIVERSITY, 2008: 42-43.

Google Scholar

[5] WANG Hong-min, XU Dan, YANG Lu-gang. Design of Communication Countermeasure Simulation Platform Based on HLA[J]. Ship Electronic Engineering, 2010, 31(11): 116-118.

Google Scholar

[6] DAVID RHODES, BENJAMIN EPSTEIN, BARRY PERLMAN. Scalable Urban Network Simulation[R]. New Jersey: U.S. Army CERDEC, 2007: 3-6.

Google Scholar

[7] ZHOU Qiao, XU Qing, LI Jian-sheng. Design and Development of Visualization System for Electromagnetic Environment[J]. Control and Automation, 2008, 24(23): 249-251.

Google Scholar