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Analysis of Dispersion Compensation Methods in WDM Systems

机译:WDM系统中色散补偿方法的分析

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Objectives: WDM systems are high-performance systems. Light signals can be transmitted to longer distances by using WDM systems. The efficiency of light signals is reduced by optical effects such as dispersion and attenuation. Attenuation can be reduced by using powerful optical amplifiers. Dispersion causes errors in optical communication systems. So dispersion has to be minimized to obtain better performance of WDM systems. This paper analyzes the different types of dispersion compensation techniques that can be used in WDM Systems to minimize dispersion. Methods/Statistical analysis: In dispersion compensation technique, dispersion compensation fiber (DCF) is placed at different positions of optical fiber to reduce dispersion. The negative dispersion in DCF removes the dispersion in SMF. The three dispersion compensation techniques pre-compensation, post-compensation, and symmetric compensation techniques are analyzed with Optisystem. The structure of FBG also helps to compensate dispersion in optical systems. Dispersion compensation by FBG is also analyzed with Optisystem. Findings: Pre-compensation technique shows good performance for very shorter distances. Performance of pre-compensation is reduced for long distances. Post-compensation also do not show good quality factor for longer distances. Symmetric compensation shows the best performance and quality factor for longer distances and is the best method out of the three compensation techniques. FBG also compensates the dispersion very effectively in long-distance communication. Application/Improvements: Symmetric compensation is the best technique to reduce dispersion in all three dispersion compensation techniques. By using FBG, dispersion can be reduced effectively. These methods can be used in WDM systems to minimize errors and to improve performance.
机译:目标:WDM系统是高性能系统。使用WDM系统可以将光信号传输到更长的距离。光信号的效率由于诸如色散和衰减之类的光学效应而降低。使用功能强大的光放大器可以降低衰减。色散会导致光通信系统出错。因此必须最小化色散以获得WDM系统的更好性能。本文分析了可用于WDM系统中以最小化色散的不同类型的色散补偿技术。方法/统计分析:在色散补偿技术中,将色散补偿光纤(DCF)放置在光纤的不同位置以减少色散。 DCF中的负色散可消除SMF中的色散。使用Optisystem分析了三种色散补偿技术的预补偿,后补偿和对称补偿技术。 FBG的结构还有助于补偿光学系统中的色散。还使用Optisystem分析了FBG的色散补偿。结果:预补偿技术在非常短的距离下表现出良好的性能。对于长距离而言,预补偿的性能会降低。对于更长的距离,后补偿也没有表现出良好的品质因数。对称补偿显示出更长距离的最佳性能和品质因数,并且是三种补偿技术中的最佳方法。 FBG在远程通信中也非常有效地补偿了色散。应用/改进:在所有三种色散补偿技术中,对称补偿是减少色散的最佳技术。通过使用FBG,可以有效地减少分散。这些方法可以在WDM系统中使用,以最大程度地减少错误并提高性能。

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