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Photonic Microwave Up-Conversion Link With Compensation of Chromatic Dispersion-Induced Power Fading

机译:光子微波上转换连杆,补偿色散诱导的功率衰落

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摘要

An effective scheme of frequency doubling up-conversion is proposed and demonstrated, which achieves the generation of high-frequency microwave signal and the compensation of chromatic dispersion-induced power fading (CDIPF). The system structure is based on a cascading of a Sagnac loop and a Mach-Zehnder modulator (MZM), where a phase modulator is used in the Sagnac loop. In the loop, only the clockwise propagating light wave is modulated by a small local oscillator signal, leaving the counter-clockwise propagating light wave unmodulated because of the velocity mismatch. The output signal is divided into two parts, one traveling into an MZM and the other entering an optical phase shifter. The intermediate frequency signal is supplied to the MZM, which is biased at its minimum point and then the carrier-suppressed double sideband is achieved. With the adjustment of the optical phase shift, the CDIPF can be compensated at any frequency. In the simulation, by comparing the frequency responses of the proposed link with and without dispersion compensation, we successfully demonstrate the performance of power fading compensation for 60- and 80-km link. Consequently, the spurious-free dynamic range is effectively improved by 13.54 dB at 22.6 GHz for 60-km link.
机译:提出和证明了频率加倍转换的有效方案,实现了高频微波信号的产生和色散诱导的功率衰落(CDIPF)的补偿。系统结构基于SAGNAC环路和Mach-Zehnder调制器(MZM)的级联,其中相位调制器用于SAGNAC环中。在循环中,仅由小本地振荡器信号调制顺时针传播光波,使逆时针传播光波未经调配,因为速度不匹配。输出信号被分成两个部分,一个行进到MZM,另一个进入光学移相器。中频信号被提供给MZM,其在其最小点处偏置,然后实现载波抑制的双边带。随着光学相移的调整,CDIPF可以在任何频率下补偿。在模拟中,通过比较所提出的链接的频率响应与和没有色散补偿,我们成功地证明了60 km和80 km链路的功率衰减补偿的性能。因此,杂散的动态范围在22.6GHz的60.6GGz上有效地提高了60.6GGz的60 km链路。

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