Summary
Experience
- Led the design and engineering for utility-scale PV projects totaling over 350 MW, reducing project development timelines by 15% through optimized layouts.
- Developed advanced energy production models using PVsyst and Helioscope, achieving +/- 2% accuracy in predicting annual energy yield for projects up to 100 MW.
- Managed cross-functional teams to ensure compliance with NEC, IEEE, and local AHJ requirements, successfully permitting 7 major solar farms.
- Implemented innovative tracking and bifacial module technologies, increasing projected energy output by an average of 5-8% across new installations.
- Conducted detailed site assessments and feasibility studies, identifying over $2M in potential cost savings through value engineering initiatives.
- Designed and engineered commercial and industrial rooftop PV systems ranging from 500 kW to 5 MW, overseeing 20+ successful project completions.
- Performed comprehensive electrical calculations, single-line diagrams, and equipment specifications, reducing material waste by 10% through precise planning.
- Collaborated with sales and project management teams to develop compelling proposals, contributing to securing $15M in new project contracts.
- Utilized AutoCAD Electrical for detailed layout and wiring diagrams, improving design accuracy and reducing field rework by 20%.
- Analyzed system performance data to identify areas for optimization, resulting in a 3% average increase in system uptime and energy generation.
Projects
- Led the complete electrical design package for an 80 MW utility-scale project, optimizing inverter and string sizing to achieve a 1.25 DC/AC ratio and maximize energy harvest.
- Managed coordination with grid operators and utility companies for a complex interconnection process, ensuring adherence to all NERC/WECC requirements.
- Implemented innovative terrain following tracker technology, reducing grading costs by 18% and accelerating construction timelines.
- Developed and implemented energy optimization strategies for a portfolio of 15 commercial rooftop PV systems (totaling 15 MW), enhancing overall fleet performance by 7%.
- Designed and integrated battery energy storage systems (BESS) for 3 key sites, enabling peak shaving and demand charge reduction by an average of 25%.
- Analyzed SCADA data to identify underperforming assets and proposed targeted maintenance and upgrade solutions, extending system lifespans by 5+ years.
- Conducted a comprehensive performance study on next-generation bifacial and thin-film solar modules under varying climatic conditions in Florida.
- Utilized MATLAB for data analysis and modeling, demonstrating a 3-5% energy gain for bifacial modules compared to monofacial counterparts in specific scenarios.
- Authored internal report detailing findings, influencing corporate procurement strategies for future project developments.
Education
- Graduated Magna Cum Laude with a GPA of 3.8/4.0.
- Completed Capstone Project on 'Optimizing Residential Grid-Tied PV Systems for Peak Demand Reduction.'
- Awarded Dean's List for 6 consecutive semesters for academic excellence.



