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Optical phase feed network and ultra-wideband phased array

机译:光相位馈电网络和超宽带相控阵

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An optically addressed phase feed network for an ultra-wideband RF phased array is proposed. The architecture leverages recent advances in the development of optical RF source generation and coherent optical system in the fiber optics. By using polarization maintaining (PM) fibers two coherent optical tones can be encoded in two orthogonal states and transmitted to a high-speed photomixer at the antenna head for RF signal transmission. The copropagation in the same fiber enables two optical signals experience same environmental impact, thereby significantly minimizing phase fluctuation. To phase the antenna array, electro-optic z-cut LiNbO3 phase modulators are used, in which phase modulation is dominated at one of the polarizations, consequently leading to electrically addressed phase shift at the mixer. In addition, dynamic polarization control is also investigated to compensate the polarization fluctuation due to bending, thermal and mechanical stresses. A 1×2 array is implemented to demonstrate the feasibility and robustness of the proposed system.
机译:提出了一种用于超宽带射频相控阵的光寻址相​​位馈电网络。该架构利用了光纤中光学RF源生成和相干光学系统的最新发展。通过使用偏振保持(PM)光纤,可以在两个正交状态下对两个相干的光学音调进行编码,然后将其传输到天线头处的高速光电混合器,以进行RF信号传输。在同一根光纤中的共同传播使两个光信号受到相同的环境影响,从而大大减少了相位波动。为了对天线阵列进行相位调整,使用了电光的Z形LiNbO3相位调制器,其中相位调制在两个极化之一中占主导地位,因此导致混频器发生电寻址的相移。此外,还研究了动态偏振控制以补偿由于弯曲,热和机械应力引起的偏振波动。实现了1×2阵列,以证明所提出系统的可行性和鲁棒性。

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