Study of the splicing/coupling influence of cabling to fibers test links measurements

Author:

Rashed Ahmed Nabih Zaki12ORCID,Babu Gade Harish3,Nagendram Sanam4,Anwer Twana Mohammed Kak5,Ahammad Shaik Hasane6,Hossain Md. Amzad78,Ibrahim Anas1

Affiliation:

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

2. Department of VLSI Microelectronics , Institute of Electronics and Communication Engineering, Saveetha School of Engineering, SIMATS , Chennai 602105 , Tamilnadu , India

3. Department of ECE , CVR College of Engineering , Hyderabad , India

4. Department of Artificial Intelligence , KKR & KSR Institute of Technology and Sciences , Guntur , India

5. Department of Physics, College of Education , Salahaddin University-Erbil , 44002 Erbil , Kurdistan Region , Iraq

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

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

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

Abstract

Abstract This article has analyzed the splicing and coupling influence of cabling to fibers test links measurements. The simulative study for different free/forced vibration mechanics in MEMS is performed. Relative amplitude frequency plot for a cantilever beam, a double clamped beam (DCB), a cantilever beam with end mass, normal vibration of a clamped beam mass, a double clamped beam with axial force, normal vibration of a clamped beam mass are demonstrated by using MEMSolver simulation version 3.3. The frequency shift for DCB with axial force is clarified. The lowest modal frequencies of a square and round diaphragm are also reported. The lowest modal frequency of a bent beam suspension is simulated also. The dependence of mid-section of the folded beam on the resonance frequency and on the short leg of the serpentine beam are clarified. The displacement plot for a structure under free vibration with damping, the displacement plot for vibration under a step force with damping, amplitude frequency plot for vibration under harmonic force with damping and amplitude frequency plot for the vibration driven by the base excitation are also outlined in this work.

Publisher

Walter de Gruyter GmbH

Subject

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

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