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首页> 外文期刊>Photonic network communications >Performance optimization of radio-on-fiber systems employing erbium doped fiber amplifier for optical single sideband signals considering intermodulation distortion
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Performance optimization of radio-on-fiber systems employing erbium doped fiber amplifier for optical single sideband signals considering intermodulation distortion

机译:考虑到互调失真,采用掺do光纤放大器处理单边带光信号的光纤无线电系统的性能优化

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摘要

The performances of radio on fiber (RoF) systems with a dual-electrode Mach-Zehnder modulator and an erbium-doped fiber amplifier (EDFA) are optimized by numerical equations including the third order intermodulation (IM3) as well as amplified spontaneous emission (ASE) noise. We investigate a signal-to-noise-and-distortion ratio (SNDR) considering fiber dispersion with respect to an input signal power and an EDFA gain in both noise-dominant and third order intermodulation (IM3)-dominant cases. We also verify that the numerical analysis results are well matched with those of a commercial simulator, VPI-transmissionMaker. In the analysis results, the optimum input signal power for the maximum SNDR of a RoF system with EDFA was reduced over 8dB compared with that without EDFA. The dramatic reduction of IM3 power at a receiver was resulted from this decrement of input signal power. Thus, the maximum SNDR of the system with EDFA was obtained over 17dB at 40 km fiber compared with that of the system without EDFA. In addition, the results showed that the SNDR was efficiently improved by EDFA in the noise-dominant case, while the SNDR improvement was negligible by EDFA in the IM3 dominant case.
机译:通过包括三阶互调(IM3)以及放大的自发发射(ASE)的数值方程,优化了具有双电极Mach-Zehnder调制器和掺b光纤放大器(EDFA)的光纤无线电(RoF)系统的性能。 )噪音。我们研究在噪声为主和三阶互调(IM3)为主的情况下,考虑光纤色散相对于输入信号功率和EDFA增益的信噪比(SNDR)。我们还验证了数值分析结果与商业模拟器VPI-transmissionMaker的数值分析结果完全匹配。在分析结果中,与没有EDFA相比,具有EDFA的RoF系统的最大SNDR的最佳输入信号功率降低了8dB以上。输入信号功率的这种降低导致了接收器IM3功率的大幅降低。因此,与没有EDFA的系统相比,在40 km光纤上具有EDFA的系统的最大SNDR超过17dB。另外,结果表明,在噪声为主的情况下,EDFA有效地改善了SNDR,而在IM3为主的情况下,EDFA对SNDR的改善可忽略不计。

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