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Low probability of intercept based multicarrier radar jamming power allocation for joint radar and wireless communications systems

机译:联合雷达和无线通信系统基于拦截的多载波雷达干扰功率分配的可能性低

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摘要

Due to the high demand for new wireless services and shortage of available radio frequency (RF) spectrum, joint radar and communication system is considered as a coexistence solution to the RF spectrum congestion problem. Therefore, joint radar and communication system has become an attractive platform for target parameter estimation. In this study, the problem of low probability of intercept (LPI) performance based orthogonal frequency division multiplexing (OFDM) radar jamming power allocation is addressed for a joint radar and communication system. Given the knowledge of the radar transmitted signal, the communication signal, the channel impulse responses, and the propagation losses of the corresponding channels provided by the jammer, three different LPI-based criteria for radar noise jamming power allocation are proposed, whose purposes are to minimise the total noise jamming power by optimising the multicarrier jamming power allocation while the achieved mutual information between the received echoes and the target impulse response is enforced to be less than a predefined threshold. The presented optimisation problems are solved analytically and their solutions represent the optimum power allocation for each subcarrier in the OFDM jamming waveform. Numerical simulations show that the LPI performance of the jammer is considerably improved by the proposed strategies.
机译:由于对新无线服务的高需求以及可用射频(RF)频谱的不足,联合雷达和通信系统被视为解决RF频谱拥塞问题的共存解决方案。因此,联合雷达与通信系统已成为目标参数估计的有吸引力的平台。在这项研究中,针对联合雷达和通信系统解决了基于正交频分复用(OFDM)雷达干扰功率分配的低拦截(LPI)性能问题。考虑到雷达发射信号,通信信号,信道冲激响应以及干扰器提供的相应信道的传播损耗的知识,提出了三种基于LPI的雷达噪声干扰功率分配标准,其目的是:通过优化多载波干扰功率分配来最大程度地降低总噪声干扰功率,同时将接收到的回波和目标冲激响应之间获得的互信息强制小于预定阈值。通过解析解决了所提出的优化问题,其解决方案代表了OFDM干扰波形中每个子载波的最佳功率分配。数值模拟表明,所提出的策略大大提高了干扰机的LPI性能。

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