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UCL · Electronic & Electrical Engineering

Engineering sensing systems from signal to evidence.

Electronic and Electrical Engineering student building RF, embedded and resilient sensing systems. I design and document projects across radio-frequency sensing, software-defined radio, positioning and signal processing, with a particular interest in defence and aerospace technology.

Requirements-ledEvidence-focusedHardware + software
01 / Featured project

Direction finding, treated as a measurement system.

The centrepiece project connects RF sensing to position, heading, integrity monitoring, weighted localisation and a transparent validation plan.

02 / Engineering focus

Complete systems, not isolated demos.

Areas I am developing through ambitious personal engineering projects and disciplined documentation.

RF & wireless systems

Receivers, antennas, propagation and defensible measurement.

Embedded electronics

Hardware–software integration, sensing and robust interfaces.

GNSS & resilient PNT

Positioning quality, integrity checks and multi-sensor context.

FPGA & digital systems

Deterministic logic and real-time data paths.

PCB design

Schematic capture, layout and hardware integration.

Signal processing

Filtering, detection, estimation and uncertainty.

Modelling & simulation

Models that inform design choices and expected behaviour.

Engineering validation

Requirements, test evidence, failure analysis and iteration.

03 / Selected work

A portfolio designed to grow.

Planned entries are clearly labelled in the data layer and will only become case studies when evidence exists.

In Development
21 July 2026 — Present

GNSS-Aided Passive RF Emitter Localisation System

Georeferenced radio direction finding with integrity-aware localisation

A portable, receive-only engineering demonstrator combining GNSS positioning, antenna-heading measurement and software-defined radio direction finding to estimate an authorised transmitter location from multiple bearings.

Completed
Oct 2025 — Dec 2025

Connected Bioreactor Monitoring & Control System

Arduino Nano ESP32 telemetry, control & Python anomaly detection

Owned the technical development and hardware-software integration of an Arduino Nano ESP32 embedded control system for bioreactor temperature, pH, and stirring. Integrated UART, MQTT, and Node-RED for real-time monitoring and remote setpoints, achieving a 94% demonstration score.

Completed
Jan 2026 — Feb 2026

Electromagnetic Lifting System & FEA Model

Non-linear FEMM magnetic flux modelling and experimental parameter sweeps

Led MATLAB modeling and parameter sweeps using experimental battery measurements to optimize wire gauge (SWG 18), coil geometry, and C-cell battery configurations. Developed a non-linear FEMM finite-element model of flux distribution, core saturation, and lifting force.

Completed
Sep 2025 — Apr 2026

Analogue & Semiconductor Circuit Design Portfolio

Op-amps, active filters, BJTs, MOSFETs, CMOS & three-phase power systems

Designed, constructed, and validated analogue, power, and semiconductor circuits across two academic terms at UCL. Analyzed active filters, instrumentation amplifiers, BJTs, MOSFETs, CMOS logic, and three-phase systems, scoring 97% and 85% across module evaluations.

Completed
Sep 2023 — Mar 2024

Disaster-Relief Vehicle & Technical Report

Mott MacDonald Inspiring Engineers Programme — Best Presentation Award

Co-developed a functional disaster-relief vehicle prototype during the Mott MacDonald Inspiring Engineers programme. Authored research-paper-style documentation in LaTeX and won the programme Best Presentation Award.

04 / Engineering process

From intent to validated evidence.

The portfolio prioritises measured evidence, explicit design rationale, uncertainty, failure and iteration.

Define
Model
Design
Build
Test
Analyse
Iterate
Document
05 / About

Learning by building difficult, testable systems.

I study Electronic and Electrical Engineering at UCL and am interested in defence, aerospace and the application of electronics, RF and embedded systems to difficult real-world problems.

My current focus is improving practical engineering ability through projects that connect requirements, implementation, calibration, testing and honest technical communication.

More about my approach
Contact / opportunities

Interested in my work or an engineering opportunity?

I am interested in internships and collaborative projects involving RF, electronics, embedded systems, aerospace and resilient sensing.

Contact details