Non-cooperative game-theoretic distributed power control technique for radar network based on low probability of intercept
Here, the problem of non-cooperative game-theoretic distributed power control is studied in a radar network system based on low probability of intercept (LPI) subject to the signal-to-interference-plus-noise ratio (SINR) constraint and the transmit power constraint of each radar, where all the radar...
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| Published in | IET signal processing Vol. 12; no. 8; pp. 983 - 991 |
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| Main Authors | , , , |
| Format | Journal Article |
| Language | English |
| Published |
The Institution of Engineering and Technology
01.10.2018
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| Subjects | |
| Online Access | Get full text |
| ISSN | 1751-9675 1751-9683 1751-9683 |
| DOI | 10.1049/iet-spr.2017.0355 |
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| Abstract | Here, the problem of non-cooperative game-theoretic distributed power control is studied in a radar network system based on low probability of intercept (LPI) subject to the signal-to-interference-plus-noise ratio (SINR) constraint and the transmit power constraint of each radar, where all the radars in the network share the same frequency band. The objective is to improve the LPI performance by reducing the transmit power caused by some radars' SINRs over the specified threshold. First, a novel LPI performance-oriented utility function is defined as a metric to evaluate power control. Then, consider that radars in the network are self-interested to maximise their own utilities, the distributed power control problem is formulated as a non-cooperative game, and an iterative power control algorithm is proposed that converges quickly to the Nash equilibrium (NE) of the non-cooperative game. Finally, the existence and uniqueness of NE are proved analytically. Numerical simulation results are provided to demonstrate that, compared with other methods, the presented algorithm not only guarantees the minimum SINR requirements of all radars but also improves the LPI performance for radar network. |
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| AbstractList | Here, the problem of non‐cooperative game‐theoretic distributed power control is studied in a radar network system based on low probability of intercept (LPI) subject to the signal‐to‐interference‐plus‐noise ratio (SINR) constraint and the transmit power constraint of each radar, where all the radars in the network share the same frequency band. The objective is to improve the LPI performance by reducing the transmit power caused by some radars' SINRs over the specified threshold. First, a novel LPI performance‐oriented utility function is defined as a metric to evaluate power control. Then, consider that radars in the network are self‐interested to maximise their own utilities, the distributed power control problem is formulated as a non‐cooperative game, and an iterative power control algorithm is proposed that converges quickly to the Nash equilibrium (NE) of the non‐cooperative game. Finally, the existence and uniqueness of NE are proved analytically. Numerical simulation results are provided to demonstrate that, compared with other methods, the presented algorithm not only guarantees the minimum SINR requirements of all radars but also improves the LPI performance for radar network. |
| Author | Sellathurai, Mathini Zhou, Jianjiang Shi, Chenguang Wang, Fei |
| Author_xml | – sequence: 1 givenname: Chenguang surname: Shi fullname: Shi, Chenguang organization: 2School of Engineering and Computing Sciences, Durham University, Durham, UK – sequence: 2 givenname: Fei surname: Wang fullname: Wang, Fei email: wangxiaoxian@nuaa.edu.cn organization: 1Key Laboratory of Radar Imaging and Microwave Photonics, Ministry of Education, Nanjing University of Aeronautics and Astronautics, Nanjing, People's Republic of China – sequence: 3 givenname: Mathini surname: Sellathurai fullname: Sellathurai, Mathini organization: 3School of Engineering and Physics Sciences, Heriot Watt University, Edinburgh, UK – sequence: 4 givenname: Jianjiang surname: Zhou fullname: Zhou, Jianjiang organization: 1Key Laboratory of Radar Imaging and Microwave Photonics, Ministry of Education, Nanjing University of Aeronautics and Astronautics, Nanjing, People's Republic of China |
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| Keywords | radar network system iterative methods distributed control telecommunication control probability game theory Nash equilibrium noncooperative game-theoretic distributed power control technique low probability of intercept LPI performance-oriented utility function radar interference transmit power constraint SINR constraint LPI performance iterative power control algorithm power control signal-to-interference-plus-noise ratio numerical simulation |
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| Snippet | Here, the problem of non-cooperative game-theoretic distributed power control is studied in a radar network system based on low probability of intercept (LPI)... Here, the problem of non‐cooperative game‐theoretic distributed power control is studied in a radar network system based on low probability of intercept (LPI)... |
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| StartPage | 983 |
| SubjectTerms | distributed control game theory iterative methods iterative power control algorithm low probability of intercept LPI performance LPI performance‐oriented utility function Nash equilibrium noncooperative game‐theoretic distributed power control technique numerical simulation power control probability radar interference radar network system Research Article signal‐to‐interference‐plus‐noise ratio SINR constraint telecommunication control transmit power constraint |
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| Title | Non-cooperative game-theoretic distributed power control technique for radar network based on low probability of intercept |
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