The big issue in today’s telecommunications is the crowded information communication pushed to this study that has analyzed a thorough comparison of non-return to zero and return to zero modulation strategies installing and testing each along with optical amplifier alone once and optical amplifier with polarization mode dispersion emulator in hybrid. It recorded maximum quality factor, minimum bit error rate, and optical received power analyzing the range of working wavelengths (1310–1550 nm) between the E and S bands. When it comes to improving optical transmission, the Non-Return to Zero NRZ modulation technique outperforms the Return to Zero RZ modulation approach in that it has received an optical power of 12.76 mW, a quality factor of 11.81, and bit error rate nearly zero, the quality factor and bit error rate chosen considering the strength of optical received power enhancement.
Hamadamen,N Ibrahim. (2024). A Power Loss Reduction Development for a Distributed Fiber Optic Communication Network. Passer Journal of Basic and Applied Sciences, 6(2), 433-445. doi: 10.24271/psr.2024.412011.1379
MLA
Hamadamen,N Ibrahim. "A Power Loss Reduction Development for a Distributed Fiber Optic Communication Network", Passer Journal of Basic and Applied Sciences, 6, 2, 2024, 433-445. doi: 10.24271/psr.2024.412011.1379
HARVARD
Hamadamen N Ibrahim. (2024). 'A Power Loss Reduction Development for a Distributed Fiber Optic Communication Network', Passer Journal of Basic and Applied Sciences, 6(2), pp. 433-445. doi: 10.24271/psr.2024.412011.1379
CHICAGO
N Ibrahim Hamadamen, "A Power Loss Reduction Development for a Distributed Fiber Optic Communication Network," Passer Journal of Basic and Applied Sciences, 6 2 (2024): 433-445, doi: 10.24271/psr.2024.412011.1379
VANCOUVER
Hamadamen N Ibrahim. A Power Loss Reduction Development for a Distributed Fiber Optic Communication Network. PJBAS. 2024;6(2):433-445. doi: 10.24271/psr.2024.412011.1379