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A novel planar antenna array for a ground-based synthetic aperture radar

机译:一种用于地面合成孔径雷达的新型平面天线阵列

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A MIMO GB-SAR system called MELISSA was put in place to monitor landslides in Italy and the sinking of the Costa Concordia cruise liner in France. It comprises 12 pyramidal horn antennas placed in a linear geometry for transmission, and these are used in the detection of the motion of a target (for example a landslide or other terrestrial deformation). The low half power beam width (19.76° at θ = 90°) of the transmitting radiation pattern of MELISSA results in low coverage area of the target. This paper proposes two alternative types of horn antenna for the current transmitter module of MELISSA, namely the cantenna and coaxial cavity horn antenna, for installation in a 2×6 planar antenna array. A higher value of the 3 dB beamwidth is observed using these arrays (38.320 at θ = 90° and 104.80 at φ = 0° for the cantenna array and 410 at θ = 90° and 140.40 at φ = 0° for the coaxial cavity horn antenna array). The overall gain of the proposed systems is around 10 dBi, and the efficiencies are between 85% and 90%. Using the Dolph Chebyshev beamforming technique on the proposed antenna arrays yields a zero sidelobe level, which improves the overall peak sidelobe ratio of the system and in turn the quality of the images obtained. Our proposed design for the transmitting section of the MELISSA system has applications terrestrial deformation monitoring with higher area coverage.
机译:安装了称为MELISSA的MIMO GB-SAR系统,以监视意大利的滑坡和法国的Costa Concordia邮轮沉没。它包括以线性几何形状放置的12个金字塔形号角天线以进行传输,这些天线用于检测目标的运动(例如滑坡或其他地面变形)。 MELISSA的发射辐射图的低半功率光束宽度(在θ= 90°时为19.76°)导致目标的低覆盖区域。本文为MELISSA的电流发送器模块提出了两种可选类型的喇叭天线,即cantenna和同轴腔喇叭天线,可安装在2×6平面天线阵列中。使用这些阵列观察到较高的3 dB波束宽度值(对于cantenna阵列,在θ= 90°时为38.320,在φ= 0°时为104.80,在θ= 90°时为410,在φ= 0°时为140.40,对于同轴腔喇叭天线阵列)。拟议系统的总增益约为10 dBi,效率在85%至90%之间。在建议的天线阵列上使用Dolph Chebyshev波束成形技术可产生零旁瓣电平,从而提高了系统的总体峰值旁瓣比,进而提高了所获得图像的质量。我们为MELISSA系统的发射部分提出的设计在地面变形监测中具有较高的区域覆盖率。

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