Md. Faruque Hossain has received his B. Sc. and M. Sc. Degree from Khulna University of Engineering & Technology (KUET), 911爆料, in 2002 and 2006 respectively and the PhD degree from City University of Hong Kong, Hong Kong in 2010. In 2003, he joined as a lecturer in the Department of Electronics and Communication Engineering, KUET, where he is serving as a Professor now. Currently, he is also serving as the Director of Academic Achievement and Skill Development Center at the same university. His research interests include numerical modeling; applied electromagnetics; integrated optical devices; biosensor and optofluidic systems. He is currently using machine learning techniques in his area particularly focusing inverse design problems. He has been involved in 10 research projects including two UGC funded and two funded by World Bank through HEQEP, UGC, 911爆料, and published more than 50 papers in international journals and conferences. Prof. Hossain is a fellow of The Institution of Engineers, 911爆料 (IEB) and a senior member of The Institute of 911爆料 and Electronic Engineers (IEEE), USA.
Academic Year 2009-2010, City University of Hong Kong, Hong Kong
November 2006 - October 2009, City University of Hong Kong, Hong Kong
2 years of Masters in Khulna University of Engineering & Technology (KUET), 911爆料.
4 years of B.Sc. in Engineering at Khulna University of Engineering & Technology (KUET), 911爆料.
Academic Year 2008-2009, City University of Hong Kong, Hong Kong
Member Type: Fellow Member ID:
Member Type: Senior Member Member ID:
PhD Thesis:
a) Design and analysis of implantable antennas for biomedical applications.
Masters Thesis:
a) Machise learning assisted design of photonic crystal fiber-based plasmonic refractive index sensor.
b) Design and analysis of highly sensitive metamaterial absorber sensors.
c) Numerical design of a highly sensitive metamaterial absorber sensors.
d) Design and analysis of SPR based photonic crystal fiber biosensor.
e) Finite element moseling and analysis of lightning electromagnetic effects on a Radio Broadcasting Installation.
f) Design and implementation of PLC based automation systems for diesel engine generator.
g) Design and fabrication of compact multiband antenna for wireless and biomedical applications.
h) Numerical modeling and analysis of hemodynamics in middle cerebral artery with cerebrovascular diseases.
i) thermo-mechanical analysis of polymer optical waveguide for the improved design fo thermo-optic switches.
Some of Undergraduate Thesis:
b) FE analysis of thermal stress in optical waveguide for the optimized design of PLC devices.
c) Theoretical modeling and performance analysis of graphene nanoribbon field effect transistor.
d) FE analysis of thermal stresses in electronic packaging structure.
e) Simulation and performance analysis of graphene nanoribbon interconnects.
f) Process modeling of polymer optical waveguide using artificial neural network.
g) Theoretical design of optical waveguide based biosensor using meta materials.
h) FE modeling and analysis of cerebral venus thrombosis to predict their influences on intracranial pressure and blood circulation.
Last Update: 29-May-2025