
Contributed to RoboJackets/robowrestling-software by developing embedded features for the Celebi robot and implementing autonomous evasion capabilities. Established a PlatformIO-based project structure in C++ to support scalable embedded development, including pointer-based motor driver initialization for improved memory management and safer hardware integration. Designed and integrated a modular dodge algorithm using the Arduino Framework, enabling the robot to independently control motor speeds and react to lateral threats. Enhanced the codebase with test scaffolding and documentation updates, laying groundwork for future robotics features. The work demonstrated depth in algorithm development, embedded systems, and robotics, focusing on maintainability and robust hardware interaction.
February 2025 monthly summary for RoboJackets/robowrestling-software. Focused on delivering an autonomous dodge capability to enhance survivability and match competitiveness. Implemented a Robot Dodge/Evasion Algorithm skeleton and integrated a new drive_custom control path to robot_actions, enabling independent motor speed and direction control. Initial threat-reactivity logic now handles enemies on the left and right with a placeholder for front-facing threats, establishing a foundation for more comprehensive evasion strategies.
February 2025 monthly summary for RoboJackets/robowrestling-software. Focused on delivering an autonomous dodge capability to enhance survivability and match competitiveness. Implemented a Robot Dodge/Evasion Algorithm skeleton and integrated a new drive_custom control path to robot_actions, enabling independent motor speed and direction control. Initial threat-reactivity logic now handles enemies on the left and right with a placeholder for front-facing threats, establishing a foundation for more comprehensive evasion strategies.
November 2024 monthly summary for RoboJackets/robowrestling-software focused on enabling embedded development for Celebi and enhancing motor driver initialization through a pointer-based refactor, positioning the project for safer hardware integration and scalable growth.
November 2024 monthly summary for RoboJackets/robowrestling-software focused on enabling embedded development for Celebi and enhancing motor driver initialization through a pointer-based refactor, positioning the project for safer hardware integration and scalable growth.

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