Profile

Siam Sadik Nayem

Siam Sadik Nayem

Lecturer

Email: sadik.siam@bu.edu.bd

Experience

Siam Sadik Nayem is a Lecturer in the Department of Computer Science and Engineering (CSE) at Bangladesh University (BU). He holds a B.Sc. in Electrical and Electronic Engineering from Khulna University of Engineering and Technology (KUET). He has academic experience in university-level teaching within the field of engineering and computer science education.

Academic Experience

Siam Sadik Nayem has been serving as a Lecturer in the Department of Computer Science and Engineering at Bangladesh University since January 2025. In this role, he contributes to academic activities, classroom instruction, student support, and the delivery of departmental teaching responsibilities.

Professional Practice

His professional practice is focused on university-level teaching and academic support. With a background in Electrical and Electronic Engineering, he brings an engineering-oriented perspective to his teaching and contributes to the academic environment of the Department of Computer Science and Engineering at Bangladesh University.

Research

Area of Interest

1. Languages: Python, C++, HTML
2. Robotics: Arduino, Raspberry Pi
3. Design and Simulation: AutoCAD, MATLAB, Quartus(VLSI), Proteus
4. Graphics and Editing Software: Origin Pro, Adobe Photoshop, Illustrator

Research Work

Projects:
1. Unarmed Aerial Vehicle(UAV) payload drop mechanism.
a. Developed an innovative UAV-based solution for controlling mosquito-borne diseases.
b. Integrated a Customized Rotational Dropping Mechanism (HARDM) for precise deployment.
c. Implemented advanced image processing algorithms to autonomously identify mosquito breeding sites.
d. Technology Used : KK2.1.5 flight control, OpenCV, Arduino,

2. Development of IR Modulated Circuit System for Data Transmission |
a. Integrated a 38 kHz carrier frequency modulation for secure and efficient data transfer.
b. Designed and implemented both transmitter and receiver circuits using Arduino and IR components.
c. Designed 3D PCB models for both IR transmitter and IR receiver.
d. Technology Used:Arduino Uno, Proteus, EasyEDA.

3. Project on Mars Rover Control System Design |
a. Enabled long-range connectivity with CPE, providing wireless communication for outdoor operations.
b. Employed 5.8GHz video transmitter and receiver for reliable video communication and FPV applications.
c. Technology used: Raspberry Pi, Arduino Mega.

Publications

1. An IoT Enabled UAV Platform for Real Time Patient Health Monitoring and Medical Response – IEEE Explore (2026) Indexed: Scopus.
2. Development of a Non-Invasive Multispectral Glucose Measurement System: Integrating Optical Sensor and VisNIR Spectroscopy – IEEE Explore (2025) Indexed: Scopus
3. Non-Invasive Blood Glucose Monitoring with Machine Learning Enhanced Transmittance Spectroscopy – ACS Omega (under review)
4. Development of a Non-Invasive Glucose Monitoring System: Integrating VIS-NIR Spectroscopy and Optimized Machine Learning – Undergraduate Thesis

5/B, Beribandh Main Road, Adabar, Mohammadpur, Dhaka 1207

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