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Radar Imaging Using Electrically Large Arrays With High Range Resolution at 160 GHz

机译:雷达成像使用电电大阵列,160 GHz具有高范围分辨率

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摘要

In order to improve the resolution of imaging radars, electrically large arrays and high absolute bandwidths are required. At a large off-boresight angle of the incident wave, the difference in path length at the antennas becomes a multiple of the range resolution of the radar. Consequently, the radar responses of the targets at the different receiving channels are distributed over a large number of range bins, depending on the direction-of-arrival (DoA) of the target echo. Applying conventional signal processing, the resolution of the radar is considerably reduced. In this paper, the key aspects of DOA estimation are discussed when radars with both a large aperture size and a high absolute bandwidth are employed. A signal processing method is proposed avoiding errors that occur in conventional DOA estimation techniques. As shown by measurements, an angular resolution of 0.4°can be achieved with an array size of 200 An and a bandwidth of 10 GHz.
机译:为了改善成像雷达的分辨率,需要电大阵列和高绝对带宽。在入射波的大偏离角度处,天线处的路径长度的差异成为雷达的范围分辨率的倍数。因此,根据目标回波的到达方向(DOA),在大量范围内箱上分布在不同接收通道处的目标的雷达响应。施加传统信号处理,雷达的分辨率显着降低。在本文中,当采用具有大孔径尺寸和高绝对带宽的雷达时,讨论了DOA估计的关键方面。提出了一种信号处理方法,避免了传统DOA估计技术中发生的错误。如测量结果所示,可以通过阵列大小为200A和10GHz的带宽来实现0.4°的角度分辨率。

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