Power allocation game between a radar network and multiple jammers

Anastasios Deligiannis, Gaia Rossetti, Anastasia Panoui, S. Lambotharan, Jonathon A. Chambers
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引用次数: 35

Abstract

We investigate a competitive power allocation problem for a MIMO radar system in the presence of multiple targets equipped with jammers. The main objective of the radar network is to minimize the total power emitted by the radars while achieving a specific detection criterion for each of the targets, while the intelligent jammers have the ability to observe the radar transmission power and consequently decide its jamming power to maximize the interference to the radars. In this context, we incorporate convex optimization methods, noncooperative game theoretic techniques and hypothesis testing to identify jammers and to determine the optimal power allocation. Furthermore, we present a proof on the existence and uniqueness of the Nash Equilibrium (NE). The simulation results confirm the effectiveness of the proposed algorithm and demonstrate the convergence of the game.
雷达网络和多个干扰机之间的功率分配博弈
研究了多目标干扰下MIMO雷达系统的竞争功率分配问题。雷达网络的主要目标是使雷达发射的总功率最小,同时对每个目标达到特定的检测准则,而智能干扰机能够观察雷达发射功率,从而确定其干扰功率,以最大限度地干扰雷达。在此背景下,我们结合凸优化方法、非合作博弈论技术和假设检验来识别干扰者并确定最佳功率分配。进一步证明了纳什均衡的存在唯一性。仿真结果验证了算法的有效性,并证明了博弈的收敛性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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