Non-Coherent Detection for SFH/BFSK Interfered by An Uncoordinated FH System

Yi-Chen Chen, Kwang-Cheng Chen, Jenq-Neng Hwang
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Abstract

We propose a novel two-stage non-coherent SFH/BFSK detection scheme when the environment is interfered by an uncoordinated FH system. The first stage detects user number and power level of uncoordinated FH signals. Based on knowledge of detected side information from the first stage, the second stage performs SFH/BFSK maximum likelihood detection. When user number and power level of uncoordinated FH signals are unknown, the proposed two-stage detection scheme outperforms existing multilevel FSK conventional detectors and two-user multiuser detectors. In this scenario, simulation results demonstrate a critical role of the first-stage detector in the overall scheme when it provides the above side information. On the other hand, when knowledge of uncoordinated user number and power level is available to the desired user's receiver, simulation results also show superiority of the proposed second- stage detector over equal-gain receivers and self-normalized receivers.
非协调跳频系统干扰下的SFH/BFSK非相干检测
提出了一种新的两阶段非相干跳频/BFSK检测方案。第一阶段检测非协调跳频信号的用户数量和功率电平。基于第一阶段检测到的侧信息,第二阶段进行SFH/BFSK最大似然检测。当非协调跳频信号的用户数量和功率水平未知时,所提出的两级检测方案优于现有的多电平FSK常规检波器和两用户多用户检波器。在这种情况下,仿真结果表明,当第一级检测器提供上述侧信息时,它在整个方案中发挥了关键作用。另一方面,当期望用户的接收机可以获得非协调用户数量和功率电平的信息时,仿真结果也表明所提出的二级检测器比等增益接收机和自归一化接收机具有优越性。
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