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A NEW MULTIPLEXER, DEMULTIPLEXER AND DATA RECOVERY RULES FOR DUTY CYCLE DIVIDION MULTIPLEXING TECHNIQUE FOR OPTICAL COMMUNICATION SYSTEM

机译:光学通信系统占空比除法复用技术的新型复用器,解复用器和数据恢复规则

摘要

A NEW MULTIPLEXER DESIGN, DEMULTIPLEXER DESIGN, AND A SET OF DATA RECOVERY RULES ARE PRESENTED HERE. IN THE PROPOSED MULTIPLEXER ARCHITECTURE, THE MULTIPLEXING PROCESS PERFORMS IN ELECTRICAL DOMAIN USING A SIMPLE ELECTRICAL ADDER FOR MULTIPLEXING ANY NUMBER OF USERS. THIS ARCHITECTURE REQUIRED ONLY ONE OPTICAL MODULATOR TO MODULATE THE MULTIPLEXED SIGNALS WITH THE OPTICAL CARRIER. THE PROPOSED DEMULTIPLEXER REQUIRED ONE SAMPLING CIRCUIT LESS THAN THE CV-DCDM. BY PROPOSING THE NEW SET OF THE DATA RECOVERY RULES, PERFORMANCE OF THE CV-DCDM IS IMPROVED SIGNIFICANTLY IN TERMS OF CD TOLERANCE, OSNR, AND SPM EFFECT. ALSO, THE PROPOSED DATA RECOVERY RULES SUPPORT THE AUTOMATIC ERROR CORRECTIONS. USING THE DCDM, CHANNEL UTILIZATION OF WDM SYSTEM CAN BE INCREASED TREMENDOUSLY BASED ON THE NUMBER OF AVAILABLE RZ DUTY CYCLE. FIGURE 1
机译:此处提供了一种新的多路复用器设计,解多路复用器设计以及一组数据恢复规则。在提议的多路复用器体系结构中,使用简单的电气添加程序使任意数量的用户多路复用,从而在电气域中执行多路复用过程。该架构仅需一个光学调制器即可用光学载波调制多路信号。提议的多路复用器需要一个比CV-DCDM少的采样电路。通过提出一套新的数据恢复规则,CV-DCDM的性能在CD容差,OSNR和SPM效果方面得到了显着改善。此外,建议的数据恢复规则支持自动更正错误。使用DCDM,可以根据可用RZ占空比的数量来显着增加WDM系统的信道利用率。图1

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