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Phase Compensation Method for Active Phased Array Antennas in Operating Environment based on Electromechanical Coupling Model

机译:基于机电耦合模型的有源相控阵天线在工作环境中的相位补偿方法

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摘要

Complex operating environmental loads lead to structure deformation of active phased array antennas (APAA), which could finally seriously degrade the electromagnetic performance of antennas. Based on the electromechanical coupling model of APAA, the phase compensation method is applied to recover the electromagnetic performance of the deformed antenna to the ideal performance as much as possible, where the excitation phase adjustment quantity of element is derived, and the application range of the method is discussed. Finally, the effectiveness of the method is verified by experiments on an APAA with $24imes 32$ elements to compensate the effect of typical deformation in the operating environment. The work can provide theoretical basis to guarantee the electromagnetic performance of APAAs in real time.
机译:复杂的工作环境负荷会导致有源相控阵天线(APAA)发生结构变形,最终可能严重降低天线的电磁性能。在APAA机电耦合模型的基础上,采用相位补偿方法,将变形天线的电磁性能尽可能地恢复到理想性能,推导出元件的励磁相位调整量,并确定了其应用范围。方法进行了讨论。最后,通过在具有$ 24×32元素的APAA上进行实验来验证该方法的有效性,以补偿操作环境中典型变形的影响。这项工作可以为实时保证APAA的电磁性能提供理论依据。

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