A Effect of Frequency Response Effect of Butter-Worth Filter on Optical Receive System

Sun-Yeob Kim
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Abstract

In an optical system that serves as the backbone of an information transmission system, it is essential to evaluate the statistical characteristics of the signal and noise for a performance evaluation and optimization of the system. The optical receiver system improves the reception sensitivity by adopting an optical amplifier in front of the optical detector to improve the reception sensitivity, but some problems change the bandwidth of the electronic signal to the optical signal in the optical receiver due to the ASE noise added to the output of the optical detector. The problem of changing the ratio of the bandwidth of these signals varies according to the passband characteristics of the filter present at the output stage. The frequency response effect can be solved by constructing an infinite order filter, but it is almost impossible to implement it. In this paper, the Butterworth filter was implemented to evaluate the frequency response characteristics of an optical receiver system according to the filter order. The simulation results showed that the receiver sensitivity increases as the order of Butter-Worth filters increases. In addition, as a result of simulation of the change of various values, it was confirmed that the reception sensitivity increased with increasing. That is, the average photocurrent increases, and the dispersion decreases with increasing .
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巴特-沃斯滤波器频率响应效应对光接收系统的影响
在作为信息传输系统骨干的光学系统中,评估信号和噪声的统计特性对于系统的性能评估和优化至关重要。光接收系统通过在光探测器前增加光放大器来提高接收灵敏度,但由于光探测器输出中加入了ASE噪声,导致电子信号在光接收器中变为光信号的带宽发生了变化。改变这些信号带宽比率的问题根据输出级存在的滤波器的通带特性而变化。频率响应效应可以通过构造无限阶滤波器来解决,但几乎不可能实现。本文实现了巴特沃斯滤波器,根据滤波器的阶数来评估光接收系统的频响特性。仿真结果表明,接收机灵敏度随巴特-沃斯滤波器阶数的增加而增加。另外,通过对各值变化的仿真,证实了接收灵敏度随增大而增大。即平均光电流增大,色散随增大而减小。
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