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Measuring phased-array antenna beampatterns with high dynamic range for the Murchison Widefield Array using 137 MHz ORBCOMM satellites

机译:使用137 mHz ORBCOmm卫星测量具有高动态范围的相控阵天线beampatterns,用于murchison宽场阵列

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摘要

Detection of the fluctuations in a 21 cm line emission from neutral hydrogen during the Epoch of Reionization in thousand hour integrations poses stringent requirements on calibration and image quality, both of which necessitate accurate primary beam models. The Murchison Widefield Array (MWA) uses phased-array antenna elements which maximize collecting area at the cost of complexity. To quantify their performance, we have developed a novel beam measurement system using the 137 MHz ORBCOMM satellite constellation and a reference dipole antenna. Using power ratio measurements, we measure the in situ beampattern of the MWA antenna tile relative to that of the reference antenna, canceling the variation of satellite flux or polarization with time. We employ angular averaging to mitigate multipath effects (ground scattering) and assess environmental systematics with a null experiment in which the MWA tile is replaced with a second-reference dipole. We achieve beam measurements over 30 dB dynamic range in beam sensitivity over a large field of view (65% of the visible sky), far wider and deeper than drift scans through astronomical sources allow. We verify an analytic model of the MWA tile at this frequency within a few percent statistical scatter within the full width at half maximum. Toward the edges of the main lobe and in the sidelobes, we measure tens of percent systematic deviations. We compare these errors with those expected from known beamforming errors.
机译:在数千小时积分的电离时代中,检测到中性氢21 acm线发射中的波动,对校准和图像质量提出了严格的要求,这两者都需要精确的主光束模型。默奇森宽场阵列(MWA)使用相控阵天线元件,以复杂性为代价最大程度地增加了采集面积。为了量化其性能,我们使用137 MHz ORBCOMM卫星星座和参考偶极天线开发了一种新颖的波束测量系统。使用功率比测量,我们测量了MWA天线片相对于参考天线的原位波束图,消除了卫星通量或极化随时间的变化。我们采用角度平均来减轻多径效应(地面散射),并使用零实验对环境系统进行评估,其中将MWA磁片替换为第二参考偶极子。在大视野(可见天空的65%)中,我们可以在超过30 dB的动态范围内进行光束测量,其范围比通过天文数据源进行的漂移扫描还要宽和深。我们验证了在此频率下MWA磁贴的分析模型,该模型在半高全宽内的百分之几统计散布范围内。在主瓣的边缘和旁瓣中,我们测量了百分之十的系统偏差。我们将这些误差与已知波束成形误差的预期误差进行比较。

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