Low loss flexibility and high efficiency of radio per fiber system for modern wireless communication system

Author:

Smirani Lassaad K.12,Abd El-Aziz Ismail A.3,Ahammad SK Hasane4,Hossain Md. Amzad56,Daher Malek G.78,Rashed Ahmed Nabih Zaki9ORCID

Affiliation:

1. Elearning Deanship and Distance Education , Umm Al-Qura University , Mecca 24381 , Saudi Arabia

2. InnoV’COM Lab , University of Carthage , Carthage , Tunisia

3. Benha Faculty of Engineering , Benha University , Shebin El-Kom , Egypt

4. Department of ECE , Koneru Lakshmaiah Education Foundation , Vaddeswaram , Andhra Pradesh , 522302 , India

5. Institute of Theoretical Electrical Engineering, Faculty of Electrical Engineering and Information Technology, Ruhr University Bochum , 44801 Bochum , Germany

6. Department of Electrical and Electronic Engineering , Jashore University of Science and Technology , Jashore , 7408 , Bangladesh

7. Physics Department , Islamic University of Gaza , P.O. Box 108 , Gaza , Palestine

8. School of physics, Universiti Sains Malaysia , George Town , 11800 Penang , Malaysia

9. Electronics and Electrical Communications Engineering Department Faculty of Electronic Engineering , Menoufia University , Menouf 32951 , Egypt

Abstract

Abstract This article outlined intermediate/radio frequencies over fiber system performance efficiency measurement for the designed circuit frequencies. Output power, max. Q factor, and optical and electrical signal per noise ratio are also reported against radio and intermediate frequencies for the suggested system with the previous system. The suggested system has reported better efficiency and low loss flexibility than the previous system in the mentioned performance parameters. This study has clarified the low loss flexibility and high efficiency of radio per fiber system for modern wireless optical systems. We have clarified intermediate/radio frequencies over fiber system performance efficiency measurement in the presence of s and z parameters for the designed circuit frequencies. The comparison of the performance simulation parameters based on the previous/proposed models is clarified in the range of radio frequency and intermediate frequency range.

Publisher

Walter de Gruyter GmbH

Subject

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

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