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Performance limitations due to combined influence of ASE and Raman amplifier induced crosstalk in a WDM system with direct detection receiver

机译:在具有直接检测接收器的WDM系统中,由于ASE和拉曼放大器引起的串扰的综合影响,性能受到限制

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An analytical approach is presented to evaluate the bit error rate performance of a wavelength division multiplexing (WDM) fiber-optic transmission link with distributed Raman amplifier taking into account the combined effect of Amplified Spontaneous Emission (ASE) and Raman scattering induced crosstalk for direct detection receiver. The analysis is developed to find the photodetector output due to Raman scattering and ASE noise. The signal to noise plus crosstalk ratio at the receiver output is derived. The bit error rate (BER) performance results are numerically evaluated for 10 Gbps and different fiber length and WDM channels. It is found that at a BER of 10-9, the allowable transmission distance is limited by ASE and crosstalk due to Raman scattering. The maximum allowable pump power is 1 mW, 3 mW, 4 mW, 6 mW for channel bandwidth 100 GHz, 50 GHz, 25 GHz and 12.5 GHz respectively for fiber length of 50 Km at BER 10-9. The effect of ASE is more prominent at higher pump power
机译:提出了一种分析方法来评估具有分布式拉曼放大器的波分复用(WDM)光纤传输链路的误码率性能,同时考虑了放大自发辐射(ASE)和拉曼散射引起的串扰的直接影响接收者。进行分析是为了找到由于拉曼散射和ASE噪声引起的光电检测器输出。得出接收机输出端的信噪比和串扰比。针对10 Gbps以及不同的光纤长度和WDM信道,通过数字评估了误码率(BER)性能结果。发现在BER为10-9时,允许的传输距离受ASE和拉曼散射引起的串扰的限制。在BER 10-9上,对于50 Km的光纤长度,对于100 GHz,50 GHz,25 GHz和12.5 GHz的信道带宽,最大允许泵浦功率分别为1 mW,3 mW,4 mW,6 mW。在更高的泵浦功率下,ASE的效果更加突出

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