Design And Implementation Of 900mhz Mobile Electromagnetic Wave Interference System For Examination Hall Protection

Authors

  • E. N Ifeagwu Author

Keywords:

Mobile jammer, Signal, electromagnetic wave, GSM, Signal-to Noise Ratio, Spoofing

Abstract

This work aimed at design and implementation of 900MHz mobile electromagnetic wave interference system for examination hall protection. The work focused on design and building of a system that can block the use of mobile phone by transmitting radio waves of the same frequencies as that of the mobile phone causing interference between mobile phone and the Base Transceiver Station. The objectives of the work include the design and building of a power supply that would distribute power to other parts of the system for operation; designing and constructing the intermediate frequency section which helps to generate the tuning frequency (noise) signal; designing and constructing the radio frequency section which helps to generate radio frequency signal that would create interference with signal from base transceiver station so as to block transmission between mobile phone and base transceiver station and integrating different sub-systems to form one single system. The system was tested for functionality and the test results showed that a stable noise signal of 7.09MHz from the intermediate frequency-section was generated. Result showed that a final output frequency of 900MHz from the antenna was obtained.

Author Biography

  • E. N Ifeagwu

    Department of Electrical and Electronic Engineering,

    Federal University Otuoke, Bayelsa State

References

Ali Mahmoudy Sami Azzam, Ahmad Hijazi (2011). Smart jammer for mobile phone systems. Technical report, American University of Beirut, Lebanon. PP.1-27.

Campbell, S., and Park,Y.(2008). Social implications of mobile telephony: the rise of personal communication society. Sociology Compass, 2(2), Pp 371-387.

Shah, S.W., Babar, M.I., Arbab, M.N., Yahya, K.M., Ahmad, G., Adnam,T., Masood., (2008). “Cell phone jammer” Multitopic Conference, IEEE International , Pp 579-580.

Gunnar Heine, (2013). GSM Network. Artech House Boston. London, Library of Congress.

International journal of professional engineering studies, IJPRES, 1(2), PP 36-48.

Madara, D.S., Ataro,E., and Sitati,S. (2016). Design and Testing of a Mobile-phone Jammer. Innovative Systems. Design and Engineering, 7(7), 7-18.

Mahato, S. and Vimala,C.(2015). Cellular Signals Jamming Systems in 2G and 3G. International Journal of Advanced Research in Electrical, Electronics and Instrumentation Engineering,3(2),242-247.

Muhamed, R., Milhajlo, M., & Zekirja, A. (2017). Terrorist Acts with Improvised Explosive Devices, The Threat to The Modern-World, The Example of The Islamic Republic of Afghanistan. International Scientific Conference: Security Concept and Policies-new Generation of Risks and Threats, 25 – 41.

Olayiwola Joy Oluwabukola and Aliu Olaniyi Habib (2022). Cellular Network Jammer Circuit Using NE555 Timer. International journal of Women in Technical Education and Employment, 1(1), Pp 164-177.

Sitati,S., Madara, D. S., and Ataro, E.(2016). Design of a Simple Cell-Phone Radio- Frequency Detector. J.Inf. Eng .Appl., 6(7), 13-20.

Umratkar, P.Y., Chalfe,H.B. and Totade, S.K.(2019). Design and Performance of Mobile Phone Jammer. International Journal of Engineering Technologies and Management Research, 6(12),1-5.

Zorn ,S., Maser., M., Goetz, A., Rose,R., and Weigel, L.(2011). A power saving jamming system for e- GSM900 and DCS 1800 Cellular phone networks for search and rescue applications. Wireless Sensors and Sensor Networks (WiSNet), IEEE Topical Conference,16-19 Jan.2011: 33-36.

Downloads

Published

2025-06-10

Issue

Section

CJET Volume 4 Issue 2

Most read articles by the same author(s)

Similar Articles

1-10 of 19

You may also start an advanced similarity search for this article.