Designed comprehensive electrical distribution CAD models for a data center, integrating line layouts and mechanical systems compatible with ANSYS for advanced simulation
Modeled HVAC systems in EnergyPlus, achieving energy consumption optimizations of 15–25% through refined temperature and electrical usage profiling
Collaborated with site engineers to collect field data, evaluate system compliance, and address technical queries during implementation improving database records by 30%
Programmed Python-based temperature sensors to deliver real-time thermal readings, enhancing model accuracy by 50% through integration with power analysis tools
Conducted MATLAB simulations using a transient server model, benchmarking exhaust server temperatures to establish a baseline for achieving a 20% improvement in data center thermal stability
Led aerodynamic testing of thermal management solutions, ensuring compliance with regulatory standards for operational temperatures (15–32C)
Engineering Intern
EPSON
09.2022 - 01.2023
Developed a tap-in/tap-out office attendance system using Python and Raspberry Pi with RFID scanners, improving office management efficiency by 40%
Conducted luminance testing for LCDs, optimizing brightness and video parameters to meet HUD application standards with luminance exceeding 0.1 cd/m²
Partnered with engineers to develop cost-effective, secure database solutions for attendance data storage, streamlining manual data processing workflows to form a local database eliminating 50% of database costs
Restructured IT equipment layout to enhance workspace efficiency and improve network accessibility for employees by 40-60% depending on office section
Education
Bachelor of Applied Science - Electrical Engineering