To use my physics and aerospace knowledge for the development of aerospace systems.
Georgia Institute of Technology, Atlanta, GA
· MS Aerospace Engineering (Projected Summer 2012) GPA 3.4
· Master’s thesis in progress – “A Scalable Modeling Framework for the Analysis of Reusable Launch Vehicle Operations”
New College of Florida, Sarasota, FL
· BA Physics (2010) GPA 4.0
· Undergraduate thesis: “Sequestration and Stabilization: Taming the Black Hole”
· Software languages: Python, MatLab, Visual Basic, Java, DOS batch
· Integration Software: ModelCenter, modeFrontier
· Arduino hardware & software
· CAD drafting and designing, laser cutting and 3-D printing equipment
· Performing trade studies
· Deriving requirements
· Rigorously defining requirements
· Team coordination
· Compiling clear documentation
· Producing and delivering presentations for sponsors
· Rapid adaptability
· Multi-disciplinary knowledge of aerospace systems
· Years of teaching experience
Graduate Research Assistant – Aerospace Systems Design Lab
Georgia Institute of Technology, Atlanta, Georgia (2010-Present)
· Co-head of a team of graduate research assistants working for the Army Research Laboratory on Micro-Autonomous Systems & Technologies (MAST)
o Lead regular meetings for organizing resources and progress
o Communicate with sponsors in and outside of Georgia Tech including presenting at the annual MAST conference (March 2011)
o Coordinate team deadlines with sponsor expectations
· Execute improvements to an Interactive Reconfigurable Matrix of Alternatives (IRMA) for cost and performance optimization resulting in a 10% processing time decrease
· Head of two sections of research:
o Development and analysis of a high-fidelity autonomous quad-rotor simulation
· Combining the Unreal physics engine with the Unified System for Automation and Robot Simulation (USARSim) producing a stochastic simulation of autonomous quad-rotor performance.
· Integratingthe Robotic Operating System (ROS) to perform Simultaneous Locating And Mapping (SLAM) and other autonomy algorithms.
o Development and testing of a physical autonomous quad-rotor
· In order to verify simulation results, a physical model was constructed to compare simulated and physical quad-rotor performance.
· Custom designed and cut acrylic pieces incorporated into the design for further sensor integration
New College of Florida, Sarasota, Florida (2007-2010)
· Organized a team of teaching assistants for weekly grading sessions
· Led weekly open sessions for each class’ students
· Subjects ranged from Introductory Astronomy to Physics II
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