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Analysis of four channel CWDM Transceiver Modules based on Extinction Ratio and with the use of EDFA

机译:基于消光比和使用EDFA的四通道CWDM收发器模块分析

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Optical communication systems are extremely complex and difficult to analyze. It is often hard to predict the effect of various characteristics of the devices used on the signal fidelity in a fiber optic link. This work involves simulation of coarse wavelength division multiplexing (CWDM) transceiver for end-to-end based on the effect of extinction ratio and with the use of EDFA. Simulation software is available commercially which can realistically model an optical link. Such simulation helps in analyzing the module under development and predicts the performance for a given link distance and the simulation output helps in eliminating any likely performance degradation before realizing the actual hardware. The objective of the fiber optic link is to transport data or communication signals reliably over a longer distance. The simulation objective is to ensure that the received pulses are of appropriate shape and of sufficient intensity, with minimized loss due to noise or attenuation, and to remove distortion present in the signal. The Q factor and BER obtained from either the eye diagram analyzer or the BER analyzer are used to analyze the degradation of the signal at the receiver components. In this paper, simulation results of CWDM transceiver modules are presented .Non-Return to Zero (NE) electrical signals from a Pseudo-Random Bit Sequence (PRBS) Generator are used as modulation input. Signals in the optical domain are detected at the PIN photo detector and are converted into electrical output signals. These electrical signals are amplified using a Trans-impedance Amplifier (TIA) and the amplified signals are filtered through a second order low pass Gaussian filter. Filtering removes distortion caused by noise or interference in the signal.
机译:光通信系统非常复杂,难以分析。通常很难预测光纤链路中信号保真的各种特性的效果。这项工作涉及基于消光比和使用EDFA的效果来模拟端到端的粗波分复用(CWDM)收发器。仿真软件可在商业上进行,可以逼真地模拟光学链路。这种模拟有助于分析正在开发的模块,并预测给定的链路距离的性能,并且模拟输出有助于消除在实现实际硬件之前消除任何可能的性能下降。光纤链路的目的是在更长的距离上可靠地传输数据或通信信号。模拟目的是确保接收的脉冲具有适当的形状和足够的强度,具有由于噪声或衰减而最小化的损失,并且去除信号中存在的失真。从眼图分析器或BER分析仪获得的Q因子和BER用于分析接收器组件处的信号的劣化。在本文中,展示了CWDM收发器模块的仿真结果。从伪随机比特序列(PRB)发生器的返回到零(NE)电信号用作调制输入。在引脚照片检测器处检测光域中的信号,并转换成电输出信号。使用跨阻气放大器(TIA)放大这些电信号,并且通过二阶低通高音滤波器过滤放大的信号。过滤除去由信号中的噪声或干扰引起的失真。

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