30Gb/s absolute polar duty cycle division multiplexing in dispersion uncompensated optical systems

In this study the author has modeled and characterizes the performance of 3times10 Gbp/s absolute polar duty cycle division (APDCDM) multiplexing in dispersive environments at 1550 nm. APDCDM technique is examined, with comparison to non-return-to-zero (NRZ) and return-to-zero (RZ) time division mul...

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Bibliographic Details
Main Authors: Malekmohammadi, Amin, Abdullah, Mohamad Khazani, Mahdiraji, Ghafour Amouzad, Abas, Ahmad Fauzi, Mokhtar, Makhfudzah
Format: Conference or Workshop Item
Language:English
Published: IEEE 2008
Online Access:http://psasir.upm.edu.my/id/eprint/68242/1/30Gbs%20absolute%20polar%20duty%20cycle%20division%20multiplexing%20in%20dispersion%20uncompensated%20optical%20systems.pdf
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Summary:In this study the author has modeled and characterizes the performance of 3times10 Gbp/s absolute polar duty cycle division (APDCDM) multiplexing in dispersive environments at 1550 nm. APDCDM technique is examined, with comparison to non-return-to-zero (NRZ) and return-to-zero (RZ) time division multiplexing. In this paper three channel operating at the same speed of 10 Gbps are multiplexed in electrical domain. The experimental simulation results show that the receiver sensitivity of all users in APDCDM system is similar to that of RZ-TDM and 3 dB better than NRZ-TDM. The proposed system offer reduced dispersion sensitivity; this suggests advantages for APDCDM in optical multiplexing systems. It was also showed that APDCDM can support higher bit rate than TDM and also, it is less sensitive to the chromatic dispersion effect.