Electrical and Electronic Engineering graduate from the Islamic University of Technology (IUT) with interests in embedded systems, signal processing, machine learning, communication networks, electrical system design, and CMOS/VLSI.
My academic work spans software simulation, microcontroller-based systems, electrical design, digital and computer architecture, machine learning, and research on handover optimization for Low Earth Orbit Non-Terrestrial Networks (LEO NTN).
Multi-Criteria Handover Optimization in LEO NTN
- Developed and evaluated a multi-criteria handover framework for dense LEO satellite networks.
- Used real Starlink TLE data with Python and Skyfield for orbital propagation.
- Compared the proposed method with HEA, LVT, and Highest-SINR handover policies.
- Investigated satellite visibility, Doppler constraints, handover behavior, and weighting sensitivity.
- Examined the trade-off between connection stability and link quality in LEO NTN handover decisions.
- Embedded Systems & Microcontrollers
- MATLAB & Signal Processing
- Python & Machine Learning
- Wireless & Satellite Communications
- Electrical System Design
- Proteus Simulation
- 8051 & Arduino
- AutoCAD Electrical Design
- CMOS & VLSI Fundamentals
- Computer Architecture & Assembly Language
- Numerical Simulation & Computational Analysis
MATLAB Convolution & Correlation Visualizer
Interactive MATLAB application for visualizing discrete and continuous convolution and correlation with step-by-step signal animation.
Nanomagnetization Relaxation using LLGS
MATLAB-based simulation and analysis of nanomagnetization relaxation dynamics using the Landau-Lifshitz-Gilbert-Slonczewski equation.
DC Motor Speed Control using 8051 & Proteus
8051-based motor control system featuring PWM speed control, direction control, keypad input, LCD monitoring, and safety logic.
SAP-1 Architecture Computer Design
Design and simulation of a Simple-As-Possible computer architecture demonstrating CPU components, memory interfacing, instruction execution, and control logic.
Tic Tac Toe using Microcontroller & Proteus
Assembly-based microcontroller implementation of Tic Tac Toe supporting Player-vs-Player and Player-vs-AI gameplay.
Student Database using 8086 Assembly
8086 Assembly-based student database developed using Emu8086 with configurable data entry, display, and column-based sorting.
Electrical Building Design using AutoCAD
Electrical building design covering lighting, power distribution, conduit routing, switchboard connections, and distribution-board layouts.
Power CMOS AI Smart Food Packaging
CMOS NAND-based smart food-packaging circuit designed in MicroWind and verified through extracted SPICE/PSpice simulation.
Induction Motor Wye-Delta Starter
Hardware implementation of a three-phase induction-motor wye-delta starter using contactors, timer control, overload protection, and laboratory testing.
Student Productivity Prediction
Machine learning project involving data preprocessing, exploratory analysis, model training, and evaluation for student productivity prediction.
The following projects were completed collaboratively. My forked repositories preserve the original project lineage and document my individual contributions.
Enhanced Battery-Powered Rickshaw
Arduino-based prototype integrating motor control, obstacle detection, LCD monitoring, and renewable-energy concepts. My contributions included component research and sourcing, hardware implementation, wiring and soldering, hardware debugging, and presentation development.
Adaptive Fan Control using Arduino
Arduino-based adaptive fan-control project. My contributions included component sourcing, hardware implementation, debugging and troubleshooting, and project documentation.
Home Automation & Monitoring System
Arduino and Proteus-based home automation and monitoring project. My contributions included component sourcing, Proteus simulation, testing and debugging, and project documentation.
- LinkedIn: linkedin.com/in/ishrak-anan-001616283