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A Novel Dwelling Time Design Method For Low Probability Of Intercept In A Complex Radar Network.

Zhang, Z.; Zhu, J.; Salous, S.

Authors

Z. Zhang

J. Zhu



Abstract

To achieve the important tactical requirement of low probability of intercept (LPI) in the complex radar network, dynamically controlling the emission of the radars is very necessary. A novel radar dwelling time control strategy based on an interacting multiple model algorithm is presented in this paper, which controls the dwelling time of radar according to predicted covariance matrix during tracking, taking advantage of the relation model between the dwelling time and the tracking performance. First, the complex radar network is built for target tracking. Secondly, the influence of the dwelling time is considered in the tracking performance of the complex radar network. Finally, a decision will be made after the dwelling time for every radar is obtained by particle swarm optimization, the radar with the smallest dwelling time will be selected to track target. The tracking accuracy and LPI performance are demonstrated in the Monte Carlo simulations. The results are validated through the comparison with other methods.

Citation

Zhang, Z., Zhu, J., & Salous, S. (2015). A Novel Dwelling Time Design Method For Low Probability Of Intercept In A Complex Radar Network. International Journal of Design and Nature and Ecodynamics, 10(4), 310-319. https://doi.org/10.2495/dne-v10-n4-310-319

Journal Article Type Article
Publication Date 2015-12
Deposit Date Feb 11, 2016
Journal International Journal of Design and Nature and Ecodynamics
Print ISSN 1755-7437
Electronic ISSN 1755-7445
Publisher International Information and Engineering Technology Association
Peer Reviewed Peer Reviewed
Volume 10
Issue 4
Pages 310-319
DOI https://doi.org/10.2495/dne-v10-n4-310-319
Keywords Dwelling time, Interacting multiple model, Low probability of intercept, Target tracking.
Public URL https://durham-repository.worktribe.com/output/1412236
Publisher URL http://www.witpress.com/elibrary/dne-volumes/10/4/1011