Researched is the generation method about carrier-suppressed return-to-zero(CS-RZ) and single sideband return-to-zero(SSB-RZ) formats. The performance is simulated and analyzed when both CS-RZ and SSB-RZ formats a...Researched is the generation method about carrier-suppressed return-to-zero(CS-RZ) and single sideband return-to-zero(SSB-RZ) formats. The performance is simulated and analyzed when both CS-RZ and SSB-RZ formats are used respectively in symbol overlapping fast frequency hop optical code division multiple access(SO-FFH-OCDMA) system at the transmission rate of 10 Gb/s. The simulation demonstrates that both formats are applicable in OCDMA system. For the system using either CS-RZ or SSB-RZ, Q factor degrades with the increase of transmission distance and increases with the increase of input power. Moreover, the performance of SO-FFH-OCDMA system with CS-RZ is better than that of SSP,-RZ at the same transmission distance and input power.展开更多
基金National Natural Science Foundation of China(60577045)Programfor New Century Excellent Talents in University( NECT -07-0111)+1 种基金National "863"Program(2007AA01Z260) Teaching and Scientific Research Foundation for the Returned Overseas Chinese Scholars ,State Education Ministry and supported partly by Key Laboratory of Broadband Optical Fiber Transmission and Communication Networks(UESTC), Ministry of Education
文摘Researched is the generation method about carrier-suppressed return-to-zero(CS-RZ) and single sideband return-to-zero(SSB-RZ) formats. The performance is simulated and analyzed when both CS-RZ and SSB-RZ formats are used respectively in symbol overlapping fast frequency hop optical code division multiple access(SO-FFH-OCDMA) system at the transmission rate of 10 Gb/s. The simulation demonstrates that both formats are applicable in OCDMA system. For the system using either CS-RZ or SSB-RZ, Q factor degrades with the increase of transmission distance and increases with the increase of input power. Moreover, the performance of SO-FFH-OCDMA system with CS-RZ is better than that of SSP,-RZ at the same transmission distance and input power.