Gamified Sports App
This is the development of an innovative fitness app that combines workouts, gamification, tokenization, and virtual 3D characters. The goal is to create a platform that motivates users to engage in regular physical activity through gameplay, rewards, and visual progress.
Onboarding of new agents was accelerated in a model with tokenized motivation
Training consistency improved thanks to gamified goals and progression

Task
- Develop the concept of an app that stimulates movement through gameplay
- Create a system of virtual 3D avatars that “level up” through user activity
- Implement a tokenized reward system using Web3
- Build a technical architecture with gameplay and user activity tracking
Solution
1. Concept, gamification, characters
- A unique idea was developed: workouts → avatar progression
- Custom 3D avatars were created — digital representations of the user
- Introduced a leveling system with unlockable outfits, items, and achievements
- Motivation is reinforced through visual progress and rewards
2. Technical implementation
- User profiles, activity tracking, and workout history were built
- Added a reward module: tokens, trophies, bonuses
- Designed a financial model: activity → reward → internal motivation
Technologies
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Frontend: React
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Backend: Node.js
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Web3: tokenization on ERC20
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3D: Unity + Blender
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Database: PostgreSQL
Results
- Developed a prototype with functional game logic, a test 3D avatar, and basic animation
- Prepared a presentation with video, visuals, and gameplay demonstration
- All modules are ready for scaling and launching a full MVP
Client Feedback
“The concept turned out to be deep and fresh. The team delivered more than we expected — from avatars to tokenomics. The prototype impressed us, and the foundation is already solid”
— Project lead
Conclusion
This is an example of integrating fitness, gamification, and Web3 into a high-potential app format. The technical foundation, design, and mechanics show how to build a product that motivates movement through play, rewards, and 3D representation.