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Performances of multitones for ultra-wideband software-defined radar

机译:多波段用于超宽带软件定义雷达的性能

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摘要

From the literature review, it is apparent that there is a gap in quantifying the performances of multitone waveforms specifically for radar applications and experimental results are not commonly found.udThis paper focuses on the radar performance analysis of multitones with P3 phase-codes in simulation and experimentally to determine the effect of hardware on radar performances. For this purpose, a software-defined radar (SDR) approach has been used including a digital core with hardware in-the-loop controlled by Matlab and an analog front-end that uses bandpass sampling and a reference channel. The proposed radar setup with processing algorithm has been evaluated in terms of processing time, showing that a real-time implementation on the latest field programmable gate array chipsets is feasible. This approach is flexible and entirely arbitrary waveforms can be generated with an instantaneous bandwidth up to 800MHz. All the experimental results presented in the last section are beyond the state-of-the-art and bring novel insight into the impairment of SDR.
机译:从文献综述中可以明显看出,在量化特定于雷达应用的多音波形的性能方面存在差距,并且通常无法找到实验结果。 ud本文着重于仿真中使用P3相码的多音的雷达性能分析。并通过实验确定硬件对雷达性能的影响。为此,已经使用了软件定义的雷达(SDR)方法,包括一个由Matlab控制的硬件在环数字内核以及一个使用带通采样和参考通道的模拟前端。所提出的带有处理算法的雷达设置已经在处理时间方面进行了评估,表明在最新的现场可编程门阵列芯片组上进行实时实现是可行的。这种方法非常灵活,可以在高达800MHz的瞬时带宽下生成完全任意的波形。最后一部分中介绍的所有实验结果均超出了现有技术水平,为SDR的损伤带来了新颖的见解。

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