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Optimum Code Design Using Genetic Algorithm in Frequency Hopping Dual Function MIMO Radar Communication Systems

机译:跳频双函数MIMO雷达通信系统遗传算法的最佳码设计

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We consider a code-shift keying (CSK) dual-function radar-communication (DFRC) system where the radar implements frequency hopping wideband signal that is modulated by the communication symbols. Each symbol is represented by a phase coded waveform with derivative phase shift keying (DPSK) modulation. The information sequences are multiplied with the FH waveforms in fast-time and are transmitted through the multiple-input multiple-output (MIMO) radar platforms. We use the genetic algorithm (GA) to design the optimum CSK sequences to reduce the radar range sidelobes modulation (RSM) which is imperative for clutter mitigation. It is shown that the optimal CSK sequences yield a substantial reduction in the range sidelobe level (RSL) fluctuations by simultaneously reducing the DFRC system's RSLs. Additionally, the proposed DFRC system with the optimized waveform design provides good spectrum containment and achieves high communication data rates by enabling the repeated use of hopping code values in the FH code design.
机译:我们考虑一种代码移位键控(CSK)双功能雷达 - 通信(DFRC)系统,其中雷达实现由通信符号调制的跳频宽带信号。每个符号由具有导数相移键控(DPSK)调制的相位编码波形表示。信息序列在快速时乘以FH波形,并通过多输入多输出(MIMO)雷达平台传输。我们使用遗传算法(GA)来设计最佳CSK序列,以减少对杂波缓解的势在必行的雷达范围侧瓣调制(RSM)。结果表明,最佳CSK序列通过同时减少DFRC系统的RSL,产生范围旁出级别(RSL)波动的大幅度降低。此外,具有优化波形设计的提议的DFRC系统提供了良好的频谱容纳,通过在FH码设计中重复使用跳跃代码值来实现高通信数据速率。

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