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Sea-Spike Detection in High Grazing Angle X-Band Sea-Clutter

机译:高放牧角X波段海杂波中的海峰检测

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摘要

Knowledge of sea-clutter phenomenology allows accurate models to be developed for assessing target detection performance. The majority of work in this area has been at low grazing angles from clifftops or wave tanks and does not consider scattering in the high grazing angle region beyond 10$^{circ}$ . To improve our understanding at high grazing angles of 15$^{circ}$ –45$^{circ}$, the Defence Science and Technology Organisation's Ingara airborne X-band fully polarimetric radar has been used to collect 12 days' worth of sea-clutter data. This paper focuses on understanding the characteristics of sea-spikes as they are often the cause of false detections in a radar processor. Using the Ingara data, a threshold is used to isolate these scatterers in the range/time domain with results verified against the KK probability distribution function. Detections due to discrete and persistent scattering are then isolated to provide more information regarding the underlying cause of sea-spikes and answer the question of whether Walker's three-component mean Doppler spectrum model is suitable at high grazing angles.
机译:对海杂波现象学的了解可以开发出准确的模型来评估目标检测性能。该区域的大部分工作是在悬崖顶或波浪水箱的低掠射角处进行的,并且不考虑在高掠射角区域中超过10 $ ^ { circ} $ 。为了提高我们在15度的高掠射角度下的理解<公式> = 45 <公式> = 45 <公式> =“ inline”> $ ^ {circ} $ 国防科学技术组织的Ingara机载X波段全极化雷达 $ ^ {circ} $ 已用于收集12天的海杂波数据。本文重点了解海峰的特征,因为它们通常是雷达处理器中错误检测的原因。使用Ingara数据,可使用阈值来隔离范围/时域中的这些散射体,并针对KK概率分布函数验证结果。然后隔离由于离散和持续散射引起的检测,以提供有关海钉的潜在原因的更多信息,并回答沃克的三分量平均多普勒频谱模型在高掠射角是否合适的问题。

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