Noise Immunity of Multilevel Pulse-Modulated Signals Propagating along a Dispersive Optical Path

V. Vardanyan, A. Sychuk, N. Vardanyan
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引用次数: 1

Abstract

A fiber-optic transmission system for multi-level pulse amplitude modulated signals with direct photodetection on the receiving side is considered. A mathematical model for the transmission of M-level PAM signals through the dispersion optical path based on the Gaussian approximation of the transmitted pulses has been developed. The criterion of the noise immunity evaluation is the narrowing of the eye closure in the receiver. Formulas that allow estimating the power penalty due to fiber dispersion, depending on the levels, duration and duty cycle of optical pulses, as well as the parameters of the optical fiber are derived. Comparative estimates of the noise immunity of transmission PAM −4 and PAM-2 signals with bit rates of 12.5 Gbps, 25 Gbps, 50 Gbps, 100 Gbps, 200 Gbps, 400 Gbps over a standard optical fiber at a wavelength of 1550 nm are given. In comparison with the transmission of PAM-2 signals, the use of PAM-4 signals is preferable at a signal transmission rate of more than 25 Gbit/s and power penalties of more than 2.5 dB, provided that the bit error correction technology is used in the transceiver equipment, which halves the bandwidth requirements for optoelectronic components.
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沿色散光路传播的多电平脉冲调制信号的抗扰性
研究了一种接收端直接光探测的多级脉冲调幅信号光纤传输系统。基于传输脉冲的高斯近似,建立了m级PAM信号通过色散光路传输的数学模型。噪声抗扰性评价的标准是接收机的闭眼变窄。根据光脉冲的电平、持续时间和占空比以及光纤的参数,推导了光纤色散造成的功率损失的估算公式。给出了在1550 nm波长下,在标准光纤上传输比特率为12.5 Gbps、25 Gbps、50 Gbps、100 Gbps、200 Gbps、400 Gbps的PAM−4和PAM-2信号的抗噪性的比较估计。与PAM-2信号的传输相比,在信号传输速率大于25 Gbit/s、功率损失大于2.5 dB的情况下,如果收发设备中采用了误码校正技术,则可以将光电元件的带宽要求减半,那么使用PAM-4信号的传输效果更好。
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