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Modeling and simulation of dispersion-limited fiber communication systems employing directly modulated laser diodes

机译:使用直接调制激光二极管的色散受限光纤通信系统的建模和仿真

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This paper quantifies the role played by fiber dispersion in limiting the transmission distance in directly modulated gigabit optical fiber communication systems (OFCSs). The study is based on modeling and simulation of an OFCS deploying a directly modulated 1.55-μm distributed feedback InGaAsP laser diode, a single-mode fiber and a PIN photodetector. The repeater distance of the system is decided to correspond to a bit error rate of 10−9. The receiver sensitivity corresponding to the back-to-back configuration is calculated. Fiber attenuation was found to limit the maximum transmission distance to 162–202 km under bit rates ranging between 1 and 10 Gbps. This distance was found to be less affected by counting the chromatic dispersion of the fiber up to bit rate of 2 Gbps. A dramatic decrease in the transmission distance is predicted when the bit rate increases further and the system becomes dispersion limited. Influence of dispersion on the transmission distance is quantified in terms of the power penalty of the OFCS system associated with taking account of fiber dispersion. This power penalty is predicted to be within 7 dB for bit rates below 5 Gbps but jumps to values as high as 22 dB at higher bit rates.
机译:本文量化了光纤色散在限制直接调制吉比特光纤通信系统(OFCS)中的传输距离方面所起的作用。该研究基于OFCS的建模和仿真,该OFCS部署了直接调制的1.55μm分布式反馈InGaAsP激光二极管,单模光纤和PIN光电探测器。系统的转发器距离被确定为对应于10-9的误码率。计算与背对背配置相对应的接收机灵敏度。发现光纤衰减在1到10 Gbps的比特率下将最大传输距离限制为162-202 km。发现该距离受计数高达2 Gbps比特率的光纤色散的影响较小。当比特率进一步增加并且系统变得色散受限时,预计传输距离会急剧下降。色散对传输距离的影响可以通过考虑光纤色散的OFCS系统的功率损失来量化。对于低于5 Gbps的比特率,该功率损失预计在7 dB以内,但在更高的比特率下,该功率损失将跳升至高达22 dB的值。

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