Initial surface current measurements on the West Florida shelf using WERA HF ocean radar with multiple input multiple output (MIMO) synthetic aperture

A. Dzvonkovskaya, C. Merz, Yonggang Liu, R. Weisberg, T. Helzel, L. Petersen
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引用次数: 7

Abstract

High-frequency (HF) radar systems located at the coast are well-known as a measurement tool for synoptic online mapping of ocean surface current fields. These radars use surface electromagnetic wave propagation coupled to the salty ocean surface and are capable of monitoring thousands of square kilometers of the ocean surface. For oceanographic applications, low transmit power HF radar beamforming systems have been developed for operation in the 3-30 MHz frequency band. These systems require the use of a linear array of receive antenna elements whose inter-element spacing is dependent upon the operational frequency chosen. This paper presents a new approach of applying the Multiple Input Multiple Output (MIMO) technique with a synthesized antenna aperture to a compact HF ocean radar. The initial results show that the MIMO HF radar configuration with collocated receive antennas can be used for both oceanographic measurements and ship tracking applications. Initial MIMO results also reveal that positive results can be achieved from a reduced length receive array without reducing overall system performance. The comparison between standard and MIMO configurations has been focused on the estimation of surface current velocities and comparison with in-situ acoustic Doppler current profiler (ADCP) measurements.
采用多输入多输出(MIMO)合成孔径的WERA高频海洋雷达对西佛罗里达大陆架进行了初始表面电流测量
位于海岸的高频(HF)雷达系统是一种众所周知的测量工具,用于海洋表面流场的天气在线测绘。这些雷达利用表面电磁波传播耦合到含盐的海洋表面,能够监测数千平方公里的海洋表面。对于海洋学应用,低发射功率高频雷达波束形成系统已经开发用于在3-30 MHz频段工作。这些系统需要使用接收天线元件的线性阵列,其元件间间距取决于所选择的工作频率。提出了一种将天线合成孔径多输入多输出(MIMO)技术应用于小型高频海洋雷达的新方法。初步结果表明,采用多天线接收的MIMO高频雷达配置既可用于海洋测量,也可用于船舶跟踪。初始MIMO结果还表明,在不降低整体系统性能的情况下,减少长度的接收阵列可以获得积极的结果。标准配置和MIMO配置之间的比较主要集中在表面流速的估计以及与原位声学多普勒电流剖面仪(ADCP)测量结果的比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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