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Signal Processing for Phased Array Feeds in Radio Astronomical Telescopes

机译:射电天文望远镜相控阵馈源的信号处理

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ara> Relative to traditional waveguide feeds, phased array feeds (PAFs) for radio telescopes can increase the instrument field of view and sky survey speed. Unique challenges associated with PAF observations, including extremely low signal levels, long-term system gain stability requirements, spatially correlated noise due to mutual coupling, and tight beamshape tolerances, require the development of new array signal processing techniques for this application. We propose a calibration and beamforming strategy for PAFs including interference mitigation with power spectral density (PSD) estimation bias correction. Key efficiency metrics for single-feed instruments are extended to the array case and used to verify performance of the algorithms. These techniques are validated using numerical simulations and experimental data from a 19-element PAF on the Green Bank 20-m telescope.
机译:ara>相对于传统的波导馈电,射电望远镜的相控阵馈电(PAF)可以提高仪器的视场和天空探测速度。与PAF观测相关的独特挑战,包括极低的信号电平,长期的系统增益稳定性要求,由于相互耦合而引起的空间相关噪声以及严格的波束形状容差,需要为此应用开发新的阵列信号处理技术。我们提出了一种针对PAF的校准和波束成形策略,包括采用功率谱密度(PSD)估计偏差校正的干扰缓解措施。单进料仪器的关键效率指标已扩展到阵列情况,并用于验证算法的性能。这些技术已使用数值模拟和格林银行20米望远镜上19个元素的PAF的实验数据进行了验证。

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