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Detection and extraction of marine target with micromotion via short-time fractional Fourier transform in sparse domain

机译:稀疏域中短时分数阶傅里叶变换的微运动检测和提取海洋目标

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摘要

The micro-Doppler (m-D) signatures can describe the refined motion characteristics of a marine target, which are helpful for target detection and recognition. Due to the complex sea clutter and m-D of marine target, traditional detection methods using time-frequency analysis have great limitations on accuracy and computational cost. In this paper, the micromotion signal model of sea surface target is firstly established according to the length of observation time. Then a novel detection and m-D extraction method is established via sparse time-frequency analysis, i.e., short-time fractional Fourier transform in sparse domain (SSTFRFT). The definition and calculation are described in detail. Finally, experimental results using real radar data, i.e., S-band searching radar (SSR) data, indicate that the proposed method can achieve excellent detection performance and lower computational cost with higher accuracy compared with the traditional methods.
机译:微多普勒(M-D)签名可以描述海洋目标的精细运动特性,这有助于目标检测和识别。由于海洋杂乱和MARINE靶的M-D,使用时频分析的传统检测方法对准确性和计算成本具有很大的局限性。本文首先根据观察时间的长度建立了海面目标的微调信号模型。然后通过稀疏时频分析,即稀疏域(SSTFRFT)的短时分数傅里叶变换建立了一种新的检测和M-D提取方法。详细描述了定义和计算。最后,使用真实雷达数据的实验结果,即S波段搜索雷达(SSR)数据,表明该方法可以通过传统方法比较高精度来实现优异的检测性能和更低的计算成本。

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