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Optimum Power Allocation for Average Power Constrained Jammers in the Presence of Non-Gaussian Noise

机译:存在非高斯噪声时平均功率受限干扰器的最佳功率分配

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摘要

We study the problem of determining the optimum power allocation policy for an average power constrained jammer operating over an arbitrary additive noise channel, where the aim is to minimize the detection probability of an instantaneously and fully adaptive receiver employing the Neyman-Pearson (NP) criterion. We show that the optimum jamming performance can be achieved via power randomization between at most two different power levels. We also provide sufficient conditions for the improvability and nonimprovability of the jamming performance via power randomization in comparison to a fixed power jamming scheme. Numerical examples are presented to illustrate theoretical results.
机译:我们研究确定为在任意加性噪声信道上工作的平均功率受限干扰器确定最佳功率分配策略的问题,其目的是使采用Neyman-Pearson(NP)准则的即时且完全自适应的接收机的检测概率最小化。我们表明,可以通过最多两个不同功率电平之间的功率随机化来实现最佳的干扰性能。与固定功率干扰方案相比,我们还通过功率随机化为干扰性能的可改进性和不可改进性提供了充分的条件。数值例子说明了理论结果。

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