Various RZ percentage duty cycle coding with NRZ modulation technique signature on the fiber system performance

Author:

Zaki Rashed Ahmed Nabih12ORCID,Reddy Mittamidi Madhusudhan3,Snehith Namgiri4,Kak Anwer Twana Mohammed5,Ahammad Shaik Hasane6,Inthiyaz Syed6,Amzad Hossain 78,Shaker Fatma1

Affiliation:

1. Electronics and Electrical Communications Engineering Department , Faculty of Electronic Engineering, Menoufia University , Menouf , Egypt

2. Department of VLSI Microelectronics , Institute of Electronics and Communication Engineering, Saveetha School of Engineering, SIMATS , Chennai , Tamilnadu , India

3. Department of Civil Engineering , Institute of Aeronautical Engineering , Dundigal , Hyderabad , India

4. Department of Electronics and Communication Engineering , Koneru Lakshmaiah Education Foundation , Guntur , Andhra Pradesh , India

5. Department of Physics, College of Education , Salahaddin University-Erbil , Erbil , Kurdistan Region , Iraq

6. Department of ECE , Koneru Lakshmaiah Education Foundation , Vaddeswaram , Andhra Pradesh , India

7. Faculty of Electrical Engineering and Information Technology , Institute of Theoretical Electrical Engineering, Ruhr University Bochum , Bochum , Germany

8. Department of Electrical and Electronic Engineering , Jashore University of Science and Technology , Jashore , Bangladesh

Abstract

Abstract This study has clarified various RZ Percentage Duty Cycle Coding with NRZ modulation Technique Signature on The Fiber System Performance. The total form lighted/electrical power after linear measured multimode fiber/FSO channel measured based different RZ percentage duty cycle coding with the assistance of NRZ modulation techniques is performed. The electrical/lighted form measured power after APD receiver with linear multimode fiber/FSO channel measured based different RZ percentage base band form duty cycle coding with the assistance of NRZ modulation techniques is demonstrated. The lighted based band form can be used for the modulation of the based band electrical signal form based on the RZ percentage duty cycle coding with the assistance of NRZ for both linear measured multimode fiber and FSO measured channel.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Atomic and Molecular Physics, and Optics

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