
Developed core gameplay systems for the chungheonLee0325/VALORANT repository, delivering a data-driven architecture that accelerated feature iteration and improved maintainability. Leveraged C++, Unreal Engine Blueprints, and data tables to implement agent, weapon, and ability frameworks, integrating the Gameplay Ability System for scalable mechanics. Enhanced multiplayer networking and client-server synchronization, while refining animation blueprints and visual effects for higher fidelity and reliability. Addressed over 30 bugs and introduced robust error handling, performance optimizations, and UI/UX improvements. Refactored core systems to streamline onboarding and future enhancements, demonstrating disciplined engineering practices and a focus on maintainable, extensible code across all gameplay features.
June 2025 Monthly Summary for chungheonLee0325/VALORANT: Delivered architectural improvements, gameplay QoL enhancements, and stability fixes that collectively raise maintainability, player experience, and reliability. The work spans refactoring, QoL/visual polish across agents, robust error handling, and core VFX/SFX playback improvements, with targeted UI/UX enhancements to streamline onboarding and in-game interactions.
June 2025 Monthly Summary for chungheonLee0325/VALORANT: Delivered architectural improvements, gameplay QoL enhancements, and stability fixes that collectively raise maintainability, player experience, and reliability. The work spans refactoring, QoL/visual polish across agents, robust error handling, and core VFX/SFX playback improvements, with targeted UI/UX enhancements to streamline onboarding and in-game interactions.
May 2025 monthly highlights for chungheonLee0325/VALORANT focused on delivering core monetization and gameplay features, stabilizing the codebase, and enabling data-driven design for faster iteration. Key features were implemented with attention to business value, ramping up end-to-end capabilities from in-game economy (Shop/Credit Management) to core gameplay systems (Spike, Weapons, Abilities) and UI synchronization. The work also included robust bug fixes, performance/maintenance improvements, and groundwork for scalable future enhancements.
May 2025 monthly highlights for chungheonLee0325/VALORANT focused on delivering core monetization and gameplay features, stabilizing the codebase, and enabling data-driven design for faster iteration. Key features were implemented with attention to business value, ramping up end-to-end capabilities from in-game economy (Shop/Credit Management) to core gameplay systems (Spike, Weapons, Abilities) and UI synchronization. The work also included robust bug fixes, performance/maintenance improvements, and groundwork for scalable future enhancements.
April 2025 monthly summary for chungheonLee0325/VALORANT: Delivered a data-driven Valorant prototype core and resolved animation asset issues, enabling rapid feature iteration and higher fidelity agent animation. Key deliverables include a data-driven core gameplay framework (base entity classes: Agent, Skill, Weapon; data tables for agents and weapons; gameplay effect and ability data structures; EffectManager; initial GAS integration) plus development utilities and documentation assets to support rapid feature iteration. Fixed Animation Blueprint asset issues impacting agent animations by updating ABP/Agent and idle pose assets, restoring animation reliability.
April 2025 monthly summary for chungheonLee0325/VALORANT: Delivered a data-driven Valorant prototype core and resolved animation asset issues, enabling rapid feature iteration and higher fidelity agent animation. Key deliverables include a data-driven core gameplay framework (base entity classes: Agent, Skill, Weapon; data tables for agents and weapons; gameplay effect and ability data structures; EffectManager; initial GAS integration) plus development utilities and documentation assets to support rapid feature iteration. Fixed Animation Blueprint asset issues impacting agent animations by updating ABP/Agent and idle pose assets, restoring animation reliability.

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