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The Spectrum Analysis Solution (SAS) System: Theoretical Analysis Hardware Design and Implementation

机译:频谱分析解决方案(SAS)系统:理论分析硬件设计和实现

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摘要

This paper describes a multichannel super-heterodyne signal analyzer, called the Spectrum Analysis Solution (SAS), which performs multi-purpose spectrum sensing to support spectrally adaptive and cognitive radar applications. The SAS operates from ultrahigh frequency (UHF) to the S-band and features a wideband channel with eight narrowband channels. The wideband channel acts as a monitoring channel that can be used to tune the instantaneous band of the narrowband channels to areas of interest in the spectrum. The data collected from the SAS has been utilized to develop spectrum sensing algorithms for the budding field of spectrum sharing (SS) radar. Bandwidth (BW), average total power, percent occupancy (PO), signal-to-interference-plus-noise ratio (SINR), and power spectral entropy (PSE) have been examined as metrics for the characterization of the spectrum. These metrics are utilized to determine a contiguous optimal sub-band (OSB) for a SS radar transmission in a given spectrum for different modalities. Three OSB algorithms are presented and evaluated: the spectrum sensing multi objective (SS-MO), the spectrum sensing with brute force PSE (SS-BFE), and the spectrum sensing multi-objective with brute force PSE (SS-MO-BFE).
机译:本文介绍了一种称为频谱分析解决方案(SAS)的多通道超外差信号分析仪,该分析仪执行多用途频谱传感以支持频谱自适应和认知雷达应用。 SAS从超高频(UHF)到S频段运行,并具有一个带有八个窄带信道的宽带信道。宽带信道充当监视信道,可用于将窄带信道的瞬时频带调谐到频谱中感兴趣的区域。从SAS收集的数据已被用于开发频谱共享(SS)雷达的新兴领域的频谱感应算法。带宽(BW),平均总功率,占用率(PO),信号干扰加噪声比(SINR)和功率谱熵(PSE)已作为频谱表征的指标进行了检查。这些度量用于确定给定频谱中不同模态的SS雷达传输的连续最佳子带(OSB)。提出并评估了三种OSB算法:频谱感知多目标(SS-MO),具有蛮力PSE的频谱感知(SS-BFE)和具有蛮力PSE的频谱感知多目标(SS-MO-BFE) 。

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