Summary
A results-driven Renewable Energy Engineer with 6 years of experience in designing, optimizing, and implementing sustainable power solutions for utility-scale and commercial projects. Proven expertise in solar PV systems, battery energy storage, and grid integration, contributing to significant energy cost reductions and carbon footprint minimization. Skilled in project management, technical analysis, and cross-functional team leadership to deliver high-performance renewable energy assets.
Experience
- Managed the technical design and commissioning of over 15 utility-scale solar PV projects, totaling 300+ MW, increasing project efficiency by 12%.
- Implemented advanced energy modeling techniques, leading to a 7% improvement in predicted energy yield for new developments.
- Spearheaded the integration of 50 MWh of battery energy storage systems (BESS) with existing solar farms, enhancing grid stability and revenue generation by 10%.
- Mentored junior engineers, improving team productivity by 25% and reducing design review cycles by 15%.
- Collaborated with cross-functional teams to ensure projects adhered to NERC, FERC, and local utility interconnection requirements, achieving 100% compliance.
- Conducted feasibility studies and due diligence for 20+ potential renewable energy projects, identifying opportunities to optimize capital expenditure by 8%.
- Performed detailed energy production analyses using PVSyst and Windographer, supporting the development of 150 MW of new capacity.
- Designed and optimized electrical balance of plant (BOP) for solar and wind projects, reducing material costs by an average of 5% per project.
- Assisted in grid interconnection studies and participated in technical review meetings with utilities, streamlining project approvals by 20%.
- Developed custom Python scripts to automate data analysis for performance monitoring, saving approximately 10 hours per month in manual effort.
Projects
- Led the design and integration of a 2 MW solar array with a 4 MWh BESS to provide 24/7 reliable power for a remote community, reducing diesel consumption by 85%.
- Managed a $7.5 million budget and coordinated a multidisciplinary team to ensure compliance with stringent environmental and community impact assessments.
- Developed the control logic for seamless grid-tied and islanded mode transitions, ensuring 99.9% uptime during pilot operation.
- Engineered an optimized layout for a 75 MW solar PV plant in a challenging desert environment, increasing annual energy production by 3% through advanced shading analysis.
- Reduced construction costs by 4% by identifying and implementing more efficient cable routing and trenching strategies.
- Utilized drone imagery and topographical data to create precise 3D models for comprehensive site assessment and design validation.
- Developed an internal Python-based tool to automate preliminary grid interconnection studies for new projects, reducing initial assessment time by 40%.
- Integrated public utility data and internal project parameters to quickly evaluate potential interconnection points and associated costs.
- Provided valuable insights for project selection and risk mitigation at early development stages, improving decision-making efficiency.
Education
- Developed a novel optimization algorithm for hybrid solar-wind microgrids, reducing energy waste by 15% in simulations.
- Awarded Dean's List for four consecutive semesters with a cumulative GPA of 3.9/4.0.
- Thesis: "Economic Feasibility and Grid Integration of Advanced Battery Storage Systems in the Western US."
- Graduated Magna Cum Laude, maintaining a 3.8/4.0 GPA.
- Led a senior design project to build a smart home energy management system, achieving 20% peak demand reduction in test environments.
- Member of the Institute of Electrical and Electronics Engineers (IEEE) Student Chapter.





