A comparison of the performance of reflector and phased-array antennas under error conditions

H.S.C. Wang
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引用次数: 1

Abstract

The successful deployment and operation of space-based radars (SBR) for the surveillance of near-earth military targets depends on the sound choice, design, and manufacture of large, space-deployable antennas. The performance in terms of axial gain and sidelobe level of two types of antennas under mechanical error conditions is examined and compared: a symmetric paraboloidal reflector with a large f/D ratio, and a rectangular phased-array antenna of the same directivity. The mechanical errors considered in the analysis for the reflector are its surface errors and, for the phased array, its element position errors. The analysis indicates the relative robustness and tolerance limit required for the two types of antennas. A comparison from the point of view of the highest sidelobe (i.e. the first minor lobe) under error conditions indicates that the reflector is far less favorable than the phased array.<>
误差条件下反射面与相控阵天线性能的比较
用于监视近地军事目标的天基雷达(SBR)的成功部署和运行取决于大型空间可部署天线的合理选择、设计和制造。对两种机械误差条件下的轴向增益和旁瓣电平性能进行了研究和比较:具有较大f/D比的对称抛物面反射器和具有相同指向性的矩形相控阵天线。在分析中考虑的机械误差是反射器的表面误差和相控阵的元件位置误差。分析表明了两种天线的相对鲁棒性和容差极限要求。从误差条件下最高副瓣(即第一副瓣)的角度进行比较表明,反射器远不如相控阵有利
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