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Sea surface micromotion target detection based on Radon-fractional ambiguity function

机译:基于Rad分数歧义函数的海面微动目标检测

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The micro-Doppler (m-D) signature of a sea surface target is employed for detection and modeled as a quadratic frequency modulated (QFM) signal. Furthermore, a novel long-time coherent integration method, i.e., Radon-fractional ambiguity function (RFRAF), is proposed to detect the m-D signal, which can compensate the range and Doppler migrations simultaneously. The m-D signal can be well matched and accumulated in the RFRAF domain by the long-time instantaneous autocorrelation function (LIACF) and the transform angle. Experiments with real radar dataset indicate that the RFRAF can achieve better integration and detection performance of a sea surface target with micromotion in case of high sea state.
机译:海面目标的微多普勒(m-D)签名用于检测,并建模为二次调频(QFM)信号。此外,提出了一种新颖的长期相干积分方法,即Radon-分数歧义函数(RFRAF)来检测m-D信号,该方法可以同时补偿距离和多普勒偏移。 m-D信号可以通过长时间瞬时自相关函数(LIACF)和变换角度很好地匹配并在RFRAF域中累积。在真实雷达数据集上进行的实验表明,在高海况下,RFRAF可以通过微动实现更好的海面目标整合和检测性能。

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