I am a highly motivated aerospace and control systems engineer with hands-on experience in CFD, CAD, and automation. I enjoy turning complex physics into reliable, real-world solutions and thrive in collaborative, cross-disciplinary teams. Currently pursuing an MSc in Advanced Control & Systems Engineering at the University of Sheffield, I am passionate about energy harvesting, aircraft stability, and robust subsystem integration. I aim to apply my skills to cutting-edge aerospace projects and drive practical improvements in performance and reliability.

RITABRATA BHAJAN

I am a highly motivated aerospace and control systems engineer with hands-on experience in CFD, CAD, and automation. I enjoy turning complex physics into reliable, real-world solutions and thrive in collaborative, cross-disciplinary teams. Currently pursuing an MSc in Advanced Control & Systems Engineering at the University of Sheffield, I am passionate about energy harvesting, aircraft stability, and robust subsystem integration. I aim to apply my skills to cutting-edge aerospace projects and drive practical improvements in performance and reliability.

Available to hire

I am a highly motivated aerospace and control systems engineer with hands-on experience in CFD, CAD, and automation. I enjoy turning complex physics into reliable, real-world solutions and thrive in collaborative, cross-disciplinary teams.

Currently pursuing an MSc in Advanced Control & Systems Engineering at the University of Sheffield, I am passionate about energy harvesting, aircraft stability, and robust subsystem integration. I aim to apply my skills to cutting-edge aerospace projects and drive practical improvements in performance and reliability.

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Language

English
Fluent
Hindi
Advanced
Bengali
Advanced
German
Beginner

Work Experience

Systems and Development Engineer at Rolls-Royce University Technology Centre (Control & Systems Engineering)
May 1, 2024 - Present
Improved thermal flow prediction accuracy by 10% through developing ANSYS Fluent and Simulink models for an engine-mounted thermal energy-harvest system; validated through 90% correlation with LabVIEW test data. Designed a thermoelectric harvester assembly in SolidWorks integrating commercial TEG units, aluminium plates, finned heatsinks and vibration isolated fastener stacks for a Rolls-Royce engine subsystem; qualified for 10−2000 Hz vibration loads. Achieved 20% above target power output after prototype testing. Increased high temperature reliability by analysing material performance and specifying PEEK fasteners to ensure structural integrity and low thermal conduction in 150°C engine conditions. Engineered a PETG 3D-printed internal mounting frame using SolidWorks integrating seven circuit boards, optimised wiring layout for space efficiency and validated robustness through engine-level vibration testing.
Volunteer Fundraiser at British Red Cross
March 1, 2023 - April 30, 2023
Raised £200 through community fundraising activities and door-to-door campaigns over a 3-week period.

Education

MSc (Eng) Advanced Control & Systems Engineering at University of Sheffield
September 1, 2024 - September 1, 2025
BEng Aerospace Engineering at University of Sheffield
September 1, 2021 - June 30, 2024

Qualifications

Eric Rose Prize 2025 – Best Dissertation in the entire cohort
January 11, 2030 - April 3, 2026

Industry Experience

Manufacturing, Professional Services, Transportation & Logistics, Software & Internet