首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Optimization and Realization of Quadruple-Ridge Flared Horn With New Spline-Defined Profiles as a High-Efficiency Feed From 4.6 GHz to 24 GHz
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Optimization and Realization of Quadruple-Ridge Flared Horn With New Spline-Defined Profiles as a High-Efficiency Feed From 4.6 GHz to 24 GHz

机译:具有4.6到24 GHz高效馈源的具有新样条定义轮廓的四肋喇叭喇叭的优化和实现

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In this communication, we present a new optimization and realization of a quadruple-ridge flared horn (QRFH) as a feed for reflector antennas of the square kilometer array (SKA) project. The QRFH has been numerically optimized by spline-defined profiles for both the ridges and the horn sidewall, with a conical cavity in the back short for maximum aperture efficiency. The final aperture efficiency better than (for horizontal polarization) or around (for vertical polarization) 78% over 4.6-8 GHz, 70% over 8-15 GHz, 65% over 15-20 GHz, and 60% over 20-24 GHz in the SKA offset-Gregorian dual-reflector antenna has been achieved. The realization of the horn has been carried out carefully by applying several new mechanical design solutions in order to guarantee accurate positioning of the ridges, the feed pins, and a good electrical contact. The measured reflection coefficients are mostly better than -10 dB and the predicted aperture efficiency based on the measured far-field patterns agrees well with the simulated result. System performance, such as the sensitivity and system noise temperature, is also estimated and presented.
机译:在此通信中,我们提出了四脊喇叭形喇叭(QRFH)的新的优化和实现,它是平方公里阵列(SKA)项目的反射天线的馈电。 QRFH已通过花键定义的轮廓在脊和喇叭侧壁上进行了数值优化,背面的圆锥形腔体具有最大的孔径效率。最终孔径效率优于(对于水平极化)或大约(对于垂直极化)在4.6-8 GHz时为78%,在8-15 GHz时为70%,在15-20 GHz时为65%,在20-24 GHz时为60%在SKA中,已经实现了偏置式格雷戈里双反射天线。牛角的实现是通过应用几种新的机械设计解决方案仔细进行的,以确保凸脊,进给销和准确的电接触的准确定位。测得的反射系数大多优于-10 dB,基于测得的远场图案的预测孔径效率与模拟结果非常吻合。系统性能(例如灵敏度和系统噪声温度)也会被估算并给出。

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