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Study of efficiencies and phase centers of broadband log-periodic feeds for large offset dual-reflector antennas using formulas for bodies of revolution (BOR/sub 1/ extraction)

机译:使用旋转体公式(BOR / sub 1 /提取)研究大偏移双反射天线的宽带对数周期馈电的效率和相位中心

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The Allen Telescope Array (ATA) is a new instrument being built by the SETI institute. It is an array of offset Gregorian reflector antennas with a very large bandwidth, covering 0.5 GHz to 11 GHz. The feed consists of four log-periodic arms, together forming a pyramid. In the center of the pyramid, a metallic pyramid is located, holding low noise amplifiers and cryogenics. We present a method for analyzing dual reflector systems based on BOR/sub 1/-extraction and use it to analyze the performance of the ATA feed in the offset Gregorian dual reflector. With a good corrugated feed in a paraboloid or Cassegrain antenna, the spillover efficiency is typically around -0.5 dB for the subtended angle giving the highest efficiency. The spillover efficiency for the ATA feed is around -1 dB, which is caused by high sidelobes. In order to increase the performance of the system, the sidelobes should be reduced. We have found that 0.5 dB gain can be accomplished by changing the shape of the ground pyramid in the center of the feed to a cone. This reduces the spillover and increases the BOR/sub 1/ efficiency. With optimized placement of the feed in the reflector, the reduction of phase efficiency due to phase center movement is better than -1 dB. Considering the bandwidth of the feed, this is very good.
机译:艾伦望远镜阵列(ATA)是由Seti Institute建造的新仪器。它是一系列偏移Gregorian反射器天线,带宽非常大,覆盖0.5 GHz到11 GHz。饲料由四个日志周期性臂组成,一起形成金字塔。在金字塔的中心,定位金属金字塔,保持低噪声放大器和低温。我们介绍了一种基于BOR / SUB 1 / -extraction的双反射器系统分析的方法,并使用它来分析偏移GREMRIAN双反射器中ATA进料的性能。对于抛物面或CasseGrain天线中的良好的波纹饲料,溢出效率通常为-0.5dB,以获得最高效率。 ATA饲料的溢出效率约为-1dB,这是由高侧瓣引起的。为了提高系统的性能,应减少侧链。我们已经发现,可以通过将饲料中心的地面金字塔的形状改变为锥体来实现0.5dB增益。这减少了溢出量并增加了BOR / SUB 1 /效率。利用反射器中的进料的优化放置,由于相位中心运动引起的相位效率的降低优于-1dB。考虑到饲料的带宽,这非常好。

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