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HIGH-RF-FREQUENCY ANALOG FIBER-OPTIC LINKS USING OPTICAL SIGNAL PROCESSING

机译:使用光信号处理的高频模拟光纤链路

摘要

Wide band phase modulators used with high power laser carriers convert high-frequency RF signals to phase-modulated optical signals. Higher laser optical power to the modulator produces larger RF signal sidebands. A carrier attenuation filter passes the attenuated carrier and non- attenuated RF modulation sidebands. Carrier attenuation leaves the larger RF signal sidebands. A demodulation filter used with a photodetector or a balanced photodetector pair converts the phase-modulated optical signal back to an electrical signal. Carrier-only attenuation allows high power laser use, avoids photodetector damage or saturation, and provides increased RF link gain, low noise figure (NF) and high spurious-free dynamic range (SFDR). Filtered-out carrier power fed back to the laser source increases to overall system efficiency. An additional optical delay filter with dual outputs used with a polarization multiplexer or a coherent combiner coupler combines signal power to a single photodetector to further increase electro-optic signal conversion efficiency.
机译:与高功率激光载波一起使用的宽带相位调制器将高频RF信号转换为相位调制的光信号。调制器的较高激光光功率会产生较大的RF信号边带。载波衰减滤波器使衰减的载波和非衰减的RF调制边带通过。载波衰减会留下较大的RF信号边带。与光电探测器或平衡光电探测器对一起使用的解调滤波器将相位调制的光信号转换回电信号。仅载波衰减允许使用高功率激光器,避免光检测器损坏或饱和,并提供增加的RF链路增益,低噪声系数(NF)和高无杂散动态范围(SFDR)。反馈回激光源的滤除载波功率提高了整体系统效率。与偏振复用器或相干组合器耦合器一起使用的具有双输出的附加光学延迟滤波器将信号功率组合到单个光电检测器,以进一步提高电光信号转换效率。

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