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The Effect of Noise on the Performance Of Optical 3R Regeneration

机译:噪声对光学3R再生性能的影响

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The regeneration of optical data signals is an important requirement of WDM and OTDM networking schemes. All-optical regenerators based on cross phase modulation schemes currently require complicated systems of several optical components and modules together with complex control. Here we demonstrate an optical 3R regeneration in a single DFB laser. The key to this regeneration process is to gain switch the DFB laser with a clock signal extracted from the data signal in order to retime the converted signal. A data signal at 10Gbits/s sent to 80Km in a SMF with poor Q is reamplified, retimed and reshaped by this laser. However the uncorrelated jitter (amplitude and phase noise) primarily present due to the spontaneous emission in the directly modulated transmitting laser as well as in the gain switched DFB laser (Regenerator) can very easily distort the whole regeneration process. In this paper we propose a systematic approach to tackle this problem to effectively enhance the performance of optical regeneration. An improvement of order of magnitude in BER measurement can be achieved. The proposed approach results in a regenerated signal whose optical power, Q factor and extinction ratio are considerably improved by the regeneration process.
机译:光学数据信号的再生是WDM和OTDM网络方案的重要要求。基于交叉相位调制方案的全光再生器当前需要多个光学元件和模块的复杂系统以及复杂的控制。在这里,我们展示了单个DFB激光器中的光学3R再生。该再生过程的关键是利用从数据信号提取的时钟信号来获得切换DFB激光,以便重新转换信号。 10Gbits / s的数据信号在具有差的Q的SMF中发送到80km的数据信号是由该激光进行的较差的,重新定影和重新竖起。然而,由于直接调制的发射激光器以及增益切换的DFB激光器(再生器)中的自发发射而引起的不相关的抖动(幅度和相位噪声)可以很容易地扭曲整个再生过程。在本文中,我们提出了一种系统的方法来解决这个问题,以有效提高光再生的性能。可以实现在BER测量中提高数量级。所提出的方法导致再生信号,其光学功率,Q因子和消光比的再生过程得到了显着改善。

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