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Effects of Electrical and Optical Equalizations in 28-Gb/s RSOA-Based WDM PON

机译:基于28Gb / s RSOA的WDM PON中电和光均衡的影响

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We experimentally investigate the roles of electrical and optical equalizers in the 28-Gb/s wavelength-divisionmultiplexed passive optical network implemented by using reflective semiconductor optical amplifiers (RSOAs) and directdetection receivers. For the generation of 28-Gb/s signal, we directly modulate an RSOA in the polar return-to-zero (RZ) N-ary pulse-amplitude-modulation (PAM) format. The results show that the optical equalization is capable of compensating the waveform distortions caused by both the bandwidth-limitation of RSOA and fiber's chromatic dispersion without deteriorating the signal-to-noise ratio (SNR). On the other hand, the electrical equalization is effective for the compensation of the bandwidthlimitation of RSOA only at the cost of SNR. The results also show that the electrical equalization is helpful to compensate for the remaining waveform distortions after the optical equalization. By using both equalizers, we demonstrate the transmission of the 28-Gb/s signals in polar RZ-PAM-N formats (N = 2, 3, and 4) over 20 km of standard single-mode fiber.
机译:我们实验研究电和光均衡器在28 Gb / s波分复用无源光网络中的作用,该网络通过使用反射型半导体光放大器(RSOA)和直接检测接收器实现。对于28 Gb / s信号的生成,我们以极性归零(RZ)N元脉冲幅度调制(PAM)格式直接调制RSOA。结果表明,光学均衡能够补偿由RSOA的带宽限制和光纤的色散所引起的波形失真,而不会降低信噪比(SNR)。另一方面,电均衡仅在以SNR为代价时才对补偿RSOA的带宽限制有效。结果还表明,电均衡有助于补偿光学均衡后剩余的波形失真。通过使用两个均衡器,我们演示了在20 km的标准单模光纤上以极性RZ-PAM-N格式(N = 2、3和4)传输28 Gb / s信号。

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