基于MATLAB simulink的光通信系统QW激光器试验台

Reena Sharma, S. Raghuwanshi
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引用次数: 3

摘要

光纤是传输和分配信号的介质,具有高带宽和极低的损耗。主要光源有LED和LASER。半导体激光器的光谱宽度通常比LED小20到100倍。激光器是第一个能够放大光波的装置。发射的激光是空间相干的窄低散光束。有些激光器可以发射广谱光或同时发射不同波长的光。因此,提高激光器的效率在整个光电子领域是非常重要的,因为基于激光的通信可以支持更高的数据速率。本文利用MATLAB Simulink平台,建立了基于标准速率方程的量子阱激光模型,用于分析和提高效率。该模型可用于优化后的光学系统的仿真,以满足未来高数据速率的需要。
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MATLAB simulink based test bed of QW LASER for optical communication system
Optical fiber is the medium in which signals can be transmitted and distributed with high bandwidth and very low losses. The main optical sources are LED and LASER. A semiconductor laser typically has spectral width about 20 to 100 times less compared to LED. The laser was the first device capable of amplifying light waves themselves. The emitted laser light is a spatially coherent, narrow low-divergence beam. There are lasers that emit a broad spectrum of light or emit different wavelengths of light simultaneously. Thus improving the efficiency of lasers is of great importance through the entire optoelectronics field, as laser based communication can support much higher data rates. In this work Quantum-Well LASER model based on the standard rate equations is being developed for analyzing and improving the efficiency using the MATLAB Simulink platform. The presented model can be incorporated for the simulation of the optimized optical system for future need of high data rate.
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