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首页> 外文期刊>IEEE Transactions on Signal Processing >Compressive Sampling for Detection of Frequency-Hopping Spread Spectrum Signals
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Compressive Sampling for Detection of Frequency-Hopping Spread Spectrum Signals

机译:压缩采样用于检测跳频扩频信号

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摘要

In this paper, methods for detection of frequency-hopping spread spectrum (FHSS) signals from compressive measurements are proposed. Rapid switching of the carrier frequency in a pseudorandom manner makes detection of FHSS signals challenging. Conventionally, FHSS detection is performed by scanning small segments of the spectrum in a sequential manner using a sweeping spectrum analyzer (SSA). However, SSAs have the inherent risk of missing the transmitted signal depending on factors such as the rate of hopping and scanning. In this paper, we propose compressive detection strategies that sample the full FHSS spectrum in a compressive manner. We discuss the use of random measurement kernels as well as designed measurement kernels in the proposed architecture. The measurement kernels are designed to maximize the mutual information between the FHSS signal and the compressive measurements. Using a mixture-of-Gaussian model to represent the FHSS signal, we derive a closed-form gradient of the mutual information with respect to the measurement kernel. Theoretical analysis and simulation results are provided to compare different systems. These results demonstrate that the proposed compressive system with random measurement kernels is not subject to the performance limitations suffered by SSAs when their scanning rates are low and designed adaptive measurement kernels provide enhanced detection performance compared to random ones.
机译:本文提出了一种从压缩测量中检测跳频扩频(FHSS)信号的方法。以伪随机方式快速切换载波频率使FHSS信号的检测具有挑战性。通常,通过使用扫频频谱分析仪(SSA)以顺序方式扫描频谱的小段来执行FHSS检测。但是,SSA具有固有的丢失信号的风险,具体取决于跳频和扫描速率等因素。在本文中,我们提出了一种压缩检测策略,以压缩方式对整个FHSS频谱进行采样。我们讨论了在建议的体系结构中使用随机测量内核以及设计的测量内核。测量内核旨在最大化FHSS信号和压缩测量之间的相互信息。使用高斯混合模型来表示FHSS信号,我们得出互相关信息相对于测量内核的闭合形式的梯度。提供理论分析和仿真结果以比较不同的系统。这些结果表明,所提出的带有随机测量核的压缩系统不受SSA扫描速度低的性能限制,并且设计的自适应测量核与随机检测核相比具有增强的检测性能。

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