Key Laboratory of Ocean Observation-Imaging Testbed of Zhejiang Province, Institute of Marine Electronic and Intelligent System, Ocean College, Zhejiang University, 316021 Zhoushan, China.
Sensors (Basel). 2018 Dec 7;18(12):4315. doi: 10.3390/s18124315.
Phased array radars are able to provide highly accurate airplane surveillance and tracking performance if they are properly calibrated. However, the ambient temperature variation and device aging could greatly deteriorate their performance. Currently, performing a calibration over a large-scale phased array with thousands of antennas is time-consuming. To facilitate the process, we propose a fast calibration method for phased arrays with omnidirectional radiation patterns based on the graph coloring theory. This method transforms the calibration problem into a coloring problem that aims at minimizing the number of used colors. By reusing the calibration time slots spatially, more than one omnidirectional antenna can perform calibration simultaneously. The simulation proves this method can prominently reduce total calibration time and recover the radiation pattern from amplitude and phase errors and noise. It is worth noting that the total calibration time consumed by the proposed method remains constant and is negligible compared with other calibration methods.
相控阵雷达如果经过适当校准,能够提供非常精确的飞机监测和跟踪性能。然而,环境温度变化和器件老化会极大地降低它们的性能。目前,对具有数千个天线的大规模相控阵进行校准非常耗时。为了方便这一过程,我们基于图着色理论提出了一种用于全向辐射模式相控阵的快速校准方法。该方法将校准问题转化为一个着色问题,旨在最小化使用的颜色数量。通过在空间上重新使用校准时隙,可以同时对多个全向天线进行校准。仿真证明,该方法可以显著减少总校准时间,并从幅度和相位误差以及噪声中恢复辐射模式。值得注意的是,与其他校准方法相比,所提出方法消耗的总校准时间保持不变,且可以忽略不计。