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Experimental verification of maritime target parameter evaluation in forward scatter maritime radar

机译:前向散射海事雷达海上目标参数评估的实验验证

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Maritime security is related to national economic and political interests and is strategically important. One efficient way to accomplish maritime border protection is to use the netted forward scatter radar (FSR). FSR is a special type of bistatic radar that operates in a relatively narrow scattering area along the transmitter-receiver baseline, where the effect of the electromagnetic waves forward scattering on targets is dominant above other scattering mechanisms, and in this case, a forward scatter (FS) cross section may increase by orders of magnitude in comparison with the monostatic radar cross section (RCS). Considered in this study are the major problems of marine forward scattering radar detection and estimation of length of low-profile (small and slow) marine targets using a pre-processing approach. It is based on the assumption that the variation of the phase and amplitude in the Doppler signal signature is stronger inside the FS zone than in an outside region. Two variants of pre-processing algorithms are presented in the study, one for the envelope and the other for the phase. Both variants are based on the use the local variance filtering. The results obtained prove the sufficient improvement in a signal-to-clutter ratio (SCR). Estimation of the marine target length under the low SCR is designed using the assumption of known or previously estimated velocity. Presented results demonstrate high accuracy of length estimation. Considered steps of targets detection and target attributes evaluations are necessary for maritime targets classification. The designed algorithms are verified using a set of experimental records of signals from different marine targets obtained using marine FSR developed by the teams from University of Birmingham, UK and Sofia University, Bulgaria.
机译:海上安全与国家经济和政治利益有关,在战略上很重要。实现海上边界保护的一种有效方法是使用网状前向散射雷达(FSR)。 FSR是一种特殊类型的双基地雷达,其工作范围是沿发射机-接收机基线的相对狭窄的散射区域,其中电磁波对目标的正向散射效应高于其他散射机制,在这种情况下,前向散射(与单站雷达横截面(RCS)相比,FS)横截面可能会增加几个数量级。在这项研究中考虑的主要问题是海洋前向散射雷达检测和使用预处理方法估算低姿态(小型和慢速)海洋目标的长度。基于这样的假设,多普勒信号签名中的相位和幅度变化在FS区域内要比外部区域强。这项研究提出了两种预处理算法,一种用于包络,另一种用于阶段。两种变体都基于使用局部方差过滤。获得的结果证明了信杂比(SCR)的充分提高。低SCR下的海洋目标长度的估计是使用已知或先前估计的速度的假设进行设计的。提出的结果证明了长度估计的高精度。对于海上目标分类,目标检测和目标属性评估的考虑步骤是必需的。通过使用由英国伯明翰大学和保加利亚索非亚大学的团队开发的海洋FSR获得的一组来自不同海洋目标的信号的实验记录,对设计的算法进行了验证。

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