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omnipraxis

Transform operational knowledge into operational capability using Generative AI

Convert manuals and operational procedures into AI-generated immersive experiences that accelerate workforce readiness, preserve expertise and strengthen operational excellence.

No hardware install needed Standardized metrics export
omnipraxis_viewport.sys
3D WebGL Viewport
omnipraxis industrial 3D simulation environment render

Operational knowledge is difficult to preserve, expensive to transfer and challenging to standardize across growing industrial operations.

Industrial companies continuously update procedures, but training rarely keeps pace. Critical knowledge remains with experienced personnel; rare activities are difficult to practice and immersive training is expensive to produce. Generative AI changes that!

1. Rare activities are difficult to practice.

High-risk environments limit safe repetition, deliberate failure, and real-world experimentation. Learning on live, active assets introduces immense liability and hazard.

2. New assets require rapid workforce integration.

Classroom slides, flat manuals, and static compliance videos fail to reproduce 3D spatial orientation, muscle reflexes, or the physiological pressure of real operational stress.

3. Critical knowledge remains with experienced personnel

Paper checklists and binary pass/fail grades do not capture deep behavioral telemetry, procedural speed, micro-hesitations, or learning curves over time.

AI transforms procedures into immersive experiences.

AI map and digitize your complex workflows, using AI generation to deploy immersive scenarios matched to your operations.

01

Operational Knowledge

Procedures, manuals, lessons learned and expert knowledge exist in separate formats.

02

Generative AI

AI interprets operational knowledge and automatically generates immersive learning experiences..

03

Immersive Capability

Interactive training is created, updated and adapted much faster than traditional development.

04

Operational Excellence

Teams achieve broader training coverage, faster readiness and more consistent execution.

Reduce risk by increasing training coverage.

Bridge the gap between knowledge and critical split-second muscle memory, accelerate readiness and strengthen operational excellence. Continuously evolve organizational knowledge.

Increase Training Coverage

Generate immersive experiences for procedures that were previously impractical to develop.

Accelerate Workforce Readiness

Reduce the time between procedure publication and operational training.

Preserve Critical Knowledge

Convert expert knowledge into organizational capability.

Strengthen Operational Excellence

Improve consistency across teams and assets.

Every generated training becomes part of a continuously evolving operational knowledge platform.

omnipraxis transforms complex paper manuals, hazard schematics, and critical operating procedures into highly interactive immersive simulations where users can repeatedly practice procedures, experience visual risks, and receive instant safety feedback.

Fail Safely, Learn Deliberately

Allow operators to experience the visual and spatial consequences of hazardous mistakes without real-world damage.

Cross-Browser Portability

Deploy training protocols natively via standard 3D web browsers on desktops, laptops, or web-enabled displays.

Training Performance Assessment

Track attention. Evaluate training performance, error frequencies, and task execution accuracy.

Combining startup agility and deep academic legacy.

The team leverages proven spatial computing execution with elite algorithmic mathematics and visualization research from Latin America's leading mathematics institute. Research in Generative AI, Computer Vision and Spatial Computing supports the core technologies behind our platform.

eFluxa Core Team

Enylton Machado, PhD
FOUNDER / LEAD

Creator of the core omnipraxis simulation platform. Leads WebGL performance optimization and architectural spatial layouts.

Bernardo Dias
UX/UI DESIGN

Specializes in low-polygon high-fidelity industrial asset optimization. Designs photorealistic materials for optimal browser frame rates.

Enzo Ribeiro
3D ENVIRONMENT

Designs 3D immersive experiences for both gaming engines and real-time browser engines.

Aryanna Gazotti
CUSTOMER SUCCESS

Tailors the immersive experiences and solutions to the needs of users. Helps with training and simulations.

IMPA / VISGRAF Research Partners

Prof. Luiz Velho, PhD
LAB LEAD

Leading researcher in computer graphics at IMPA. Co-coordinates computational geometry, interactive visualization, and visual media.

Rafael Romeiro, D.Sc.
VISUALIZATION

Researches multimodal world models to build immersive spatial AI experiences, combining radiance fields, Gaussian splatting and generative narrative into 3D environments.

Luis Zerkowski, M.Sc.
AI / VISION

Research, Development and implementation of computer vision and multimodal Artificial Intelligence models and algorithms.

Isadora Fragoso
MATH MODELING

Researcher focused on software development. Exploring interdisciplinary AI, computational and mathematical scenarios.

IMPA Tech Interns

Lucas Barcelos
INTERN

Internship in Artificial Intelligence - model and inference.

Gustavo Cardoso
INTERN

Internship in Artificial Intelligence - model and inference.

IMPA / VISGRAF

Collaboration Agreement No. 2026-X1

Mathematical Modeling

Applied partial differential equations and computer vision pipelines optimized for real-time spatial reconstruction.

Computer Graphics History

VISGRAF (Computer Graphics Laboratory) was created at IMPA in 1989. It operates as an epicenter of visual communication, education, and development across Latin America.

Documented Achievements

Documented research involving immersive visual systems, custom hand-interaction mechanics, 3D reconstructions, and high-fidelity physical simulations.

Status: ACTIVE RESEARCH IN PROGRESS
Research and Development Foundation

Built with research depth.

omnipraxis’s immersive training research is being developed in strict collaboration with IMPA/VISGRAF. This synergy connects state-of-the-art applied simulation design with theoretical and computational expertise in computer graphics, visualization, and interactive environments.

IMPA is an internationally renowned research institution in mathematics and its applications, holding a leading research role in Brazil and Latin America. The VISGRAF laboratory operates on the bleeding edge of 3D simulation reconstruction and interaction mechanics.

By anchoring omnipraxis's simulation design agility with IMPA's deep academic legacy, we deliver simulation architectures that are not just visually accurate, but mathematically grounded—offering realistic spatial calculations, rigid-body physics, and accurate fluid system behavior.

From Procedure to Operational Capability.

We map and digitize your complex workflows, ensuring immersive scenarios matched to your operations.

01

Map the procedure

We extract operational steps, hazard thresholds, decision trees, and performance metrics from standard procedures.

02

Build the simulation

We build interactive 3D scenarios, visual feedback cues, error handling, and hazard warnings.

03

Deploy the experience

We deliver standard browser simulation links requiring no additional hardware downloads.

04

Measure and improve

We export telemetry on performance accuracy, learning curves, and operational readiness.

Live Demonstration Block

Try the current simulation demo.

Explore the current working version of omnipraxis’s immersive training experience and see how complex operational knowledge translates into fluid, spatial interactive practice. Run on desktop, laptop, or standard web browsers.

Target URL Reference
HTTPS SECURED
https://raolir.github.io/omnipraxis/
Demo Core Elements
WebGL Native
Input Handlers
LoD Optimized
Multi-device CSR

Ready to modernize your crew's critical practice?

Contact our engineering and research team today to explore how the omnipraxis simulation architecture can be adapted to your industrial procedures.