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Displaced Phase Center Antenna Processing For Airborne Phased Array Radar

机译:空降阵列雷达的位移阶段中心天线处理

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Clutter suppression is paramount to detect slow-moving ground targets by an airborne radar. Ground clutter in the case of airborne radars is not centered on zero Doppler frequency due to the mobile radar platform, making the detection of slow-moving targets difficult. These targets appear very close to the main lobe clutter in the Doppler dimension. Thus, the main lobe ground clutter competes with the slow-moving targets raising the minimum velocity at which targets can be detected. Conventional radar signal processing methods can be used to filter out the clutter but at the cost of eliminating the signals of interest. In this paper, Displaced Phase Center Antenna (DPCA) concept has been utilized to suppress clutter for an airborne phased array radar. DPCA is a nonadaptive technique that eliminates clutter by electronically shifting the phase center of antenna array and subsequent subtraction of successive pulses. The benefit of DPCA lies in its simplicity and computational efficiency. DPCA algorithm extenuated clutter and increased the probability of detection of slow-moving targets. With DPCA processing, we were able to detect targets with velocities as low as 5 m/s.
机译:杂波抑制是通过机载雷达检测慢速地面目标的最重要的。由于移动雷达平台,在机载雷达的情况下,空气雷达的情况下的地面杂波没有以零多普勒频率为中心,使得检测困难的慢速目标。这些目标非常靠近多普勒尺寸中的主瓣杂波。因此,主叶地杂波与慢动移动目标竞争,提高可以检测目标目标的最小速度。传统的雷达信号处理方法可用于滤除杂波,而是以消除感兴趣的信号的成本。在本文中,已经利用位移的相位中心天线(DPCA)概念来抑制空气传播阵列雷达的杂波。 DPCA是一种不适应的技术,它通过电子方式消除杂波,通过电子方式移位天线阵列的相位中心和随后的连续脉冲减法。 DPCA的好处是其简单性和计算效率。 DPCA算法致杂波,增加了检测慢速目标的概率。通过DPCA处理,我们能够检测到速度低至5米/米的速度。

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