A Regulative Arithmetic on the Contingency Communication in the Damaged Military Communication Network

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Abstract:

Military communication network plays a very important role in modern warfare, so it is inevitably damaged by the adversary. In this paper, basing on the condition of the military communication network having been damaged, the demand of regulating the capabilities of some lines in the damaged network was first discussed. Then, according to this demand, the thought of regulating the capabilities of some key lines in the damaged network was explained. Finally, the main steps of a regulative arithmetic was presented. A calculated example indicates that the regulative arithmetic is with simplicity and practicality.

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364-367

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June 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Jing-yue Zhong, Li-xiang Yan, Yu Shen. Study on the traffic modeling and simulation method of the military communication network. Systems Engineering and Electronic[J]. 2008, 30(9): 1700~1703.

Google Scholar

[2] Li Yu, Zi-bo Shi, Yan-tai Shu etc. Combining scheduling and congestion control for fair resource allocation in WLAN[J]. Journal of Computer Applications. 2009, 29(2): 487~490.

DOI: 10.3724/sp.j.1087.2009.00487

Google Scholar

[3] Lin-dong Liu, Hong-bin Chen. An Algorithm of Dynamic Resource Allocation in Grid Environment [J]. Journal of Sun Yat-sen University. 2013, 52(2) : 47~51.

Google Scholar

[4] Zhi-en Guo , Yi-qi Dai. On cross-domain communication resource scheduling method for grid- enabled networks[J]. Journal of PLA University of Science and Technology (Natural Science Edition). 2013, 14(2) : 124~128.

Google Scholar

[5] Yue Zhao, Xu-ming Fang, Bo Huang etc. Resource Allocation Scheme Based on Load Balancing for OFDM A Two-Hop Relay Networks[J]. Journal of Southwest Jiao Tong Unversity. 2013, 48(1) : 94~101.

Google Scholar

[6] Qiang Guo, Hao Sun. Operations Research Theory and Algorithm[M]. Beijing: Science Press, (2012).

Google Scholar