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首页> 外文期刊>Journal of Lightwave Technology >Photonic True-Time Delay Beamforming Using a Switch-Controlled Wavelength-Dependent Recirculating Loop
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Photonic True-Time Delay Beamforming Using a Switch-Controlled Wavelength-Dependent Recirculating Loop

机译:使用开关控制的与波长相关的循环回路进行光子实时延迟波束形成

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摘要

A photonic true-time delay beamforming network to provide tunable progressive time delays for phased array beamforming is proposed and demonstrated. In the proposed system, a microwave signal is modulated on multiwavelength optical carriers and sent to an optical dispersive recirculating loop that contains a linearly chirped fiber Bragg grating (LCFBG) to provide a wavelength-dependent round trip time. As the microwave-modulated optical signals recirculate in the loop, the microwave signals carried by different wavelengths will experience different time delays at the output of the loop. By controlling the number of round trips, tunable progressive true-time delays are achieved, which are required for true-time delay phased array beamforming. The proposed true time delay beamforming network is experimentally evaluated. Two dispersive loops that can introduce a single-round-trip true-time delay difference of 2.5 ns and 160 ps are designed, which are implemented by using two LCFBGs with two different dispersion coefficients of 2500 and 200 psm. The progressive time delays for beam steering achieved by the two dispersive loops can cover a beam scanning range from –60° to 60°.
机译:提出并证明了一种为相控阵波束形成提供可调的渐进时间延迟的光子实时延迟波束形成网络。在所提出的系统中,微波信号在多波长光学载波上进行调制,然后发送至包含线性chi光纤布拉格光栅(LCFBG)的光色散循环回路,以提供与波长相关的往返时间。随着微波调制的光信号在环路中循环,由不同波长携带的微波信号将在环路的输出端经历不同的时间延迟。通过控制往返次数,可以实现可调的渐进式实时延迟,这是实时延迟相控阵波束成形所必需的。所提出的真实时间延迟波束形成网络是通过实验评估的。设计了两个色散环路,它们可以引入2.5 ns和160 ps的单次往返实时延迟差,这是通过使用两个色散系数分别为2500和200 ps / nm的LCFBG实现的。通过两个色散环路实现的光束转向渐进式延时可以覆盖–60°至60°的光束扫描范围。

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