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Effects of semiconductor-optical-amplifier nonlinearity on the performance of high-speed intensity-modulation lightwave systems

机译:半导体光放大器的非线性对高速强度调制光波系统性能的影响

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It is shown that when the amplifier is driven near saturation, its inherent nonlinearity causes significant bit-pattern-dependent pulse distortion, particularly in the bit-rate range between about 2 and 32 GB/s. Without proper countermeasures, this distortion can degrade system performance appreciably due to two basic mechanisms. The first, which can result in a system power penalty of as much as 10 dB, occurs in a standard decision circuit that automatically sets the threshold voltage to the average signal level, rather than in the middle of the eye opening. The second mechanism, which occurs even with the threshold set properly, is due to the nonlinear enhancement of the simple linear intersymbol interference (ISI) within the receiver filter. For example, computations of system performance at 8 Gb/s using an RC filter that gives a quite acceptable 10% of eye closure under linear conditions show that when the amplifier is driven to its saturation output power level, this mechanism causes a system power penalty of about 1 dB, which increases to about 4.5 dB when the power is doubled. Interestingly, with the proper threshold setting, an ideal integrate-and-dump receiver, which introduces no ISI, is shown to suffer no power penalty due to amplifier nonlinearity.
机译:结果表明,当放大器接近饱和驱动时,其固有的非线性会引起明显的位图相关脉冲失真,特别是在大约2到32 GB / s的位速率范围内。如果没有适当的对策,由于两种基本机制,这种失真会明显降低系统性能。第一种可导致系统功率损失高达10 dB,发生在标准决策电路中,该电路自动将阈值电压设置为平均信号电平,而不是在睁眼的中间。即使在正确设置阈值的情况下,发生第二种机制也是由于接收器滤波器内的简单线性符号间干扰(ISI)的非线性增强。例如,使用RC滤波器在线性条件下闭眼10%时,可以以8 Gb / s的速度对系统性能进行计算,结果表明,当放大器被驱动至饱和输出功率水平时,这种机制会导致系统功耗下降大约1 dB,当功率加倍时增加到大约4.5 dB。有趣的是,通过适当的阈值设置,没有引入ISI的理想积分和转储接收器不会因放大器的非线性而遭受功率损失。

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