论文标题
在相互耦合的情况下,Ska1-low站的天空校准
On-sky calibration of a SKA1-low station in the presence of mutual coupling
论文作者
论文摘要
本文使用嵌入式元件模式(阵列中的每个天线之一)处理了平方公里阵列(SKA)逐步射击阵列站的模拟链的校准,从而解决了相互耦合的全部影响)或平均元素模式的全部效果,以产生模型可见性。该阵列由256个对数周期偶极阵列天线组成。实现了能够生成这种每条模型可见性相关矩阵的模拟器,从而可以直接比较使用Stefcal(统计上有效且快速校准)与两种模式类型对校准结果进行比较。使用模拟器生成的模型可见性用Stefcal校准阵列是成功的,因此构成了校准SKA相光圈阵列站的可能例程。此外,结果表明,用嵌入式元素模式进行校准没有显着优势,而Stefcal成功地检索了使用任何一种模式类型产生的模型可见性的相似每个元素系数。这对于减轻校准的计算成本可能至关重要,尤其是考虑实时校准策略。来自AAVS-1的数据(Aperture阵列验证系统1)用于演示目的。
This paper deals with the calibration of the analogue chains of a Square Kilometre Array (SKA) phased aperture array station, using embedded element patterns (one per antenna in the array, thus accounting for the full effects of mutual coupling) or average element patterns to generate model visibilities. The array is composed of 256 log-periodic dipole array antennas. A simulator capable of generating such per-baseline model visibility correlation matrices was implemented, which allowed for a direct comparison of calibration results using StEFCal (Statistically Efficient and Fast Calibration) with both pattern types. Calibrating the array with StEFCal using simulator-generated model visibilities was successful and thus constitutes a possible routine for calibration of an SKA phase aperture array station. In addition, results indicate that there was no significant advantage in calibrating with embedded element patterns, with StEFCal successfully retrieving similar per-element coefficients with model visibilities generated with either pattern type. This can be of significant importance for mitigating computational costs for calibration, particularly for the consideration of real-time calibration strategies. Data from the AAVS-1 (Aperture Array Verification System 1) prototype station in Western Australia was used for demonstration purposes.