Motivated and diligent graduate student currently pursuing a Master's degree, specializing in attitude optimization for on-orbit assembly. Proficient in mathematical modeling, numerical simulation, and algorithm development. Passionate about advancing aerospace research, with a keen eye for precision and innovation. Eager to leverage expertise and dedication to make a significant impact in the aerospace/defense industry.
-Conducted advanced research in the field of attitude optimization with a specific focus on its application to in-orbit assembly.
-Developed mathematical models and algorithms to analyze and optimize the attitude control systems of spacecraft involved in telescope assembly missions.
-Designed and executed numerical simulations to assess the performance of attitude control strategies and their impact on the precision and stability of on-orbit telescope assembly.
-Utilized software tools and programming languages, such as MATLAB and python, to implement and validate research models and simulations.
-Stayed current with relevant literature and advancements in the field, continuously integrating new insights into the research.
-Conducted routine, scheduled, and unscheduled maintenance, inspections, and repairs on UH-60 Blackhawk helicopters, ensuring safe operation and compliance with aviation regulations.
-Troubleshot and diagnosed mechanical and electrical issues, implementing necessary repairs and replacement using technical manuals, schematics, and diagnostic equipment.
-Conducted pre-flight and post-flight inspections to verify aircraft integrity.
-Collaborated with a maintenance team to achieve operational readiness goals, maintaining detailed records of all actions.
-Assisted in phase inspections and modifications, increasing operational readiness.
MATLAB
Python
C
Siemens NX
Solidworks
Korean (Native)
Japanese(Professional)