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Target Detection in Frequency Hopping MIMO Dual-Function Radar-Communication Systems

机译:跳频MIMO双功能雷达通信系统的目标检测

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We consider a multiple-input multiple-output (MIMO) dual function radar communication (DFRC) system employing frequency hopping (FH) radar waveforms. The DFRC system embeds communication symbols using code-shift keying (CSK) strategy. Each symbol is represented by a phase modulated pulse code sequence which multiplies the radar hops in fast-time before transmitted from the MIMO radar platform. This strategy allows for reduced clutter modulation caused by changed radar waveforms within coherent processing interval (CPI). We analyze the effect of this communication symbol embedding scheme on range sildelobe levels (RSLs) and derive the DFRC probability of target detection. We show that the DFRC waveforms enhances target visibility leading to improved target detection compared with the FH radar without signal embedding.
机译:我们考虑采用跳频(FH)雷达波形的多输入多输出(MIMO)双功能雷达通信(DFRC)系统。 DFRC系统使用代码移位键控(CSK)策略嵌入通信符号。 每个符号由相位调制脉冲码序列表示,该脉冲码序列将雷达跳跃在从MIMO雷达平台发送之前乘以快速时间。 该策略允许通过改变的雷达波形在相干处理间隔(CPI)内的变化引起的杂波调制减少。 我们分析了该通信符号嵌入方案对范围西兰多级别(RSL)的影响,并导出目标检测的DFRC概率。 我们表明,与FH雷达相比,DFRC波形可以增强导致目标检测的目标检测,而无需信号嵌入。

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