
Master in Aeronautical and Astronautical Science and Technology (Space Technology Applications) || Electronic Engineer.
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airBearing_simulation
June 12, 2025 – June 12, 2025
airBearing_simulation — GitHub repository
View ProjectHelmholtzSim
January 6, 2025 – August 17, 2025
HelmholtzSim is an open-source Python package for simulating and optimizing Helmholtz coils testbeds.
View ProjectADCSim
October 18, 2024 – Present
ADCSim is an open-source MATLAB software package for the design, simulation, and validation of satellite Attitude Determination and Control Systems (ADCS). The software integrates detailed models of satellite dynamics, high-fidelity sensors (gyroscopes, accelerometers, magnetometers, star trackers), and actuators (reaction wheels).
View ProjectINCAS2024
September 9, 2024 – October 28, 2024
This project explores an adaptive approach for estimating the satellite inertia tensor, specifically tailored for air-bearing testbeds. Developed by the Instituto de Investigación Astronómica y Aeroespacial Pedro Paulet (IAAPP), the methodology employs three reaction wheels as actuators.
View ProjectAdaptive_PID_2DOF_telescope
July 20, 2024 – October 17, 2024
This project focuses on simulating and controlling a 2-DOF (degrees of freedom) telescope mount for astronomical observations and Low Earth Orbit (LEO) satellite tracking. The project utilizes a dynamic model of the telescope, applying adaptive PID control optimized by genetic algorithms to achieve precise positioning for tracking purposes.
View ProjectSatellite-ADCS-Basics
February 26, 2024 – February 26, 2024
Satellite-ADCS-Basics — GitHub repository
View ProjectMagnetic-Testbed
February 26, 2024 – January 17, 2025
The IS501NMTB magnetic testbed is a platform designed to simulate and analyze magnetic environments for small satellite applications.
View ProjectSatellite_Attitude_Control
April 21, 2020 – October 18, 2024
This repository contains the MATLAB simulation and related resources for the paper titled "Non-Linear Control Strategies for Attitude Maneuvers in a CubeSat with Three Reaction Wheels"
View ProjectCultural Fit Analysis
The candidate's projects are heavily concentrated in aerospace engineering, specifically satellite ADCS and related simulations. While this demonstrates deep expertise in a niche area, the direct alignment with a 'Data Scientist' role is limited. The projects involve data generation and analysis within a simulation context, but lack explicit mention of broader data science methodologies such as machine learning, statistical modeling, big data processing, or data visualization for business insights. This narrow focus suggests a potential mismatch with the typical breadth required for a general Data Scientist role, impacting cultural fit for a diverse data science team.
Soft Skills & Operational Fit
Insufficient data to assess soft skills and operational fit. The candidate's projects demonstrate a strong technical focus on aerospace engineering and control systems, suggesting a detail-oriented and analytical approach. However, there is no information regarding collaboration, communication, or problem-solving in a team context.