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Postprocessing Phase Stabilizer for Wide Frequency Range Photonic-Microwave Signal Distribution

机译:用于宽频光子-微波信号分配的后处理相位稳定器

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摘要

In the field of leading-edge techniques, such as broadband communications and large-scale radio interferometer applications, the need for a highly stable/wide-frequency-range photonic-microwave signal (continuous sine wave) is increasing. The main purpose of this research is to provide a highly stable photonic-microwave signal over a large broadband from microwave to terahertz frequencies using the same optical signal generation/transmission system. While transmitting signals through an optical cable, the transmission delay fluctuates and it suffers from chromatic dispersion that affects the distribution signal coherence. We have developed a postprocessing scheme transmission phase stabilizer. In the scheme, the measured phase of the round-tripped signal is acquired at time intervals at the optical transmitting port (an optical input port), and then the measured phase data are sent to the destination port (an optical output port) for the transmission phase compensation. The postprocessing method has advantages for a frequency dynamic range and compensation range issue. Theoretically, there is no upper frequency limit on the proposed phase stabilizer. We also discuss a high-frequency signal generator based on an optical comb signal generator up to terahertz frequencies.
机译:在诸如宽带通信和大规模无线电干涉仪应用之类的尖端技术领域中,对高度稳定/宽范围光子-微波信号(连续正弦波)的需求正在增加。这项研究的主要目的是使用相同的光信号发生/传输系统,在从微波到太赫兹频率的宽频带上提供高度稳定的光子微波信号。通过光缆传输信号时,传输延迟会波动,并且会受到色散的影响,色散会影响分配信号的相干性。我们已经开发了一种后处理方案的传输相位稳定器。在该方案中,以一定的时间间隔在光发送端口(光输入端口)获取往返信号的测量相位,然后将测量的相位数据发送到目标端口(光输出端口),用于传输相位补偿。后处理方法对于频率动态范围和补偿范围问题具有优势。理论上,所提出的相位稳定器没有频率上限。我们还将讨论一种基于光梳信号发生器的高频信号发生器,其频率最高可达太赫兹频率。

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