
Contributed to RocketPy-Team/RocketPy by developing and refining features that enhance rocket simulation fidelity and code maintainability. Focused on improving aerodynamic calculations and sensor data processing, the work included correcting beta angle computations and damping coefficient signs to ensure accurate force and moment modeling. Delivered new capabilities for body-frame velocity and acceleration tracking, and improved gyroscope rotation calculations using direct rotation matrices. Enhanced documentation and test coverage, clarifying orientation conventions and validating sensor outputs. Leveraged Python, Numpy, and scientific computing techniques to support robust integration testing and code refactoring, resulting in more reliable simulations and clearer, well-documented code.
April 2025 performance summary for RocketPy-Team/RocketPy. Delivered high-impact features, fixed a critical gyroscope rotation bug, and improved sensor orientation consistency, documentation, and test rigor. The work enhances simulation fidelity, reliability of attitude data, and maintainability of the codebase, supporting safer and more accurate rocket simulations.
April 2025 performance summary for RocketPy-Team/RocketPy. Delivered high-impact features, fixed a critical gyroscope rotation bug, and improved sensor orientation consistency, documentation, and test rigor. The work enhances simulation fidelity, reliability of attitude data, and maintainability of the codebase, supporting safer and more accurate rocket simulations.
November 2024 monthly summary for RocketPy-Team/RocketPy focusing on bug fixes in aerodynamic calculations and changelog maintenance, resulting in improved model fidelity and reliability. Key outcomes include corrected beta angle computation, proper damping coefficient sign, and proper changelog documentation, aligning with product quality standards and user trust.
November 2024 monthly summary for RocketPy-Team/RocketPy focusing on bug fixes in aerodynamic calculations and changelog maintenance, resulting in improved model fidelity and reliability. Key outcomes include corrected beta angle computation, proper damping coefficient sign, and proper changelog documentation, aligning with product quality standards and user trust.

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