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Characterization of wavelength tunable lasers for use in wavelength packet switched networks

机译:用于波长分组交换网络的波长可调激光器的表征

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摘要

The telecom industry's greatest challenge, and the optical systems and components vendors' biggest opportunity is enabling providers to expand their data services. The solution lies in making optical networks more responsive to customer needs, i.e., making them more rapidly adaptable. One possible technique to achieve this is to employ wavelength tunable optical transmitters. The importance of tunability grows greater every year, as the average number of channels deployed on DWDM platforms increases. By deploying tunable lasers it is much easier to facilitate forecasting, planning and last minute changes in the network. This technology provides with solution for inventory reduction. It also offers solution for fast switching at packet level.ududThe conducted research activities of the project was divided in two work packages:ud1. Full static characterization-the laser used in the experiment was a butterfly-packaged Sampled Grating DBR laser with four electrically tunable sections. LabView programme was developed for distant control of the equipment and the laser itself. The parameters required for creating a look-up table with the exact currents for the four sections of the laser, namely wavelength, side mode suppression ratio and output power, were transferred to tables. Based on those tables the currents were defined for each of the 96 different accessible channels. The channel allocation is based on the 50 GHz spacing grid. A detailed analysis of the tuning mechanisms is provided.udud2. Dynamic characterization and BER performance in wavelength packet switched WDM systems-a commercially available module was used supplied with the software package for controlling the wavelength channels and setting the laser to switch between any accessible channel. The laser is DBR laser without SOA integration so the dynamic tunability can be investigated. As the switching in the nanosecond regime is executed in the electrical domain, analysis of the switching parameters concerning the electrical circuit as well as laser structure is provided. The actual switching time was defined. The degradation in system performance due to spurious wavelength signals emitted from the tunable module during the switching event and their interference with other active channels was demonstrated by examining the presence of an error floor in the BER rate against received power measurements.
机译:电信行业面临的最大挑战以及光学系统和组件供应商的最大机遇就是使提供商能够扩展其数据服务。解决方案在于使光网络对客户需求更敏感,即使它们更迅速地适应。实现此目的的一种可能技术是采用波长可调光发射机。随着在DWDM平台上部署的平均信道数量的增加,可调性的重要性每年都在增长。通过部署可调谐激光器,可以更轻松地进行网络中的预测,规划和最新更改。该技术提供了减少库存的解决方案。它还提供了用于数据包级别的快速交换的解决方案。 ud ud项目的研究活动分为两个工作包: ud1。全静态表征-实验中使用的激光器是蝴蝶封装的采样光栅DBR激光器,具有四个电可调部分。 LabView程序是为远程控制设备和激光器本身而开发的。将创建具有激光四个部分的确切电流的查找表所需的参数(即波长,边模抑制比和输出功率)转移到表中。根据这些表,为96个不同的可访问通道中的每一个定义了电流。信道分配基于50 GHz间隔网格。提供了对调优机制的详细分析。 ud ud2。波长分组交换WDM系统中的动态表征和BER性能-随软件包一起使用的可商购模块,用于控制波长通道并设置激光器在任何可访问通道之间切换。该激光器是没有SOA集成的DBR激光器,因此可以研究其动态可调性。由于在电域中执行纳秒级切换,因此可以分析与电路以及激光结构有关的切换参数。定义了实际的切换时间。通过根据接收功率测量检查BER速率中是否存在错误底限,证明了在切换事件期间从可调模块发出的杂散波长信号以及它们对其他活动通道的干扰导致的系统性能下降。

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    Dantcha Antonia;

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  • 年度 2005
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  • 原文格式 PDF
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