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Optimal power allocation strategy in a joint bistatic radar and communication system based on low probability of intercept.

机译:基于低拦截概率的双基地联合雷达与通信系统的最优功率分配策略。

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摘要

In this paper, we investigate a low probability of intercept (LPI)-based optimal power allocation strategy for a joint bistatic radar and communication system, which is composed of a dedicated transmitter, a radar receiver, and a communication receiver. The joint system is capable of fulfilling the requirements of both radar and communications simultaneously. First, assuming that the signal-to-noise ratio (SNR) corresponding to the target surveillance path is much weaker than that corresponding to the line of sight path at radar receiver, the analytically closed-form expression for the probability of false alarm is calculated, whereas the closed-form expression for the probability of detection is not analytically tractable and is approximated due to the fact that the received signals are not zero-mean Gaussian under target presence hypothesis. Then, an LPI-based optimal power allocation strategy is presented to minimize the total transmission power for information signal and radar waveform, which is constrained by a specified information rate for the communication receiver and the desired probabilities of detection and false alarm for the radar receiver. The well-known bisection search method is employed to solve the resulting constrained optimization problem. Finally, numerical simulations are provided to reveal the effects of several system parameters on the power allocation results. It is also demonstrated that the LPI performance of the joint bistatic radar and communication system can be markedly improved by utilizing the proposed scheme.
机译:在本文中,我们研究了一种由联合发射器,雷达接收器和通信接收器组成的联合双基地雷达和通信系统基于低截获率(LPI)的最优功率分配策略。联合系统能够同时满足雷达和通信的要求。首先,假设对应于目标监视路径的信噪比(SNR)比对应于雷达接收器视线路径的信噪比弱得多,则计算出虚警概率的解析式闭式表达式,而用于检测概率的闭式表达式在分析上就难以解析,并且由于在目标存在假设下接收信号不是零均值高斯的事实而被近似。然后,提出了一种基于LPI的最佳功率分配策略,以使信息信号和雷达波形的总发射功率最小化,这受到通信接收机指定的信息速率以及雷达接收机所需的检测和虚警概率的限制。 。采用众所周知的二等分搜索方法来解决由此产生的约束优化问题。最后,提供数值模拟以揭示几个系统参数对功率分配结果的影响。还证明了通过利用所提出的方案,联合双基地雷达和通信系统的LPI性能可以得到显着改善。

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