TROUVE LABS PORTFOLIO

Deep Tech Portfolio

& Core IP.

We don't just conduct research; we build companies. Explore the core technologies that have graduated from the lab into sovereign production.

Active Ventures

Core Research Tracks

Agent-Based Systems

Autonomous agents collaborating over distributed graphs to solve complex, multi-step problems.

Graph Reasoning & Optimization

Dynamic graph construction, aggregation, and real-time inference for structural knowledge.

Cryptographic AI

Zero-Knowledge Proofs (ZKPs), secure aggregation, and encrypted computation.

Federated Learning & MLOps

Decentralized model training with verifiable updates, preserving data sovereignty.

Audio & Video Intelligence

Federated perception with privacy guarantees, processing streams at the edge.

Perception

From Research to Real-World Intelligence

How Trouve Labs technologies graduate into operational systems

Research (Trouve Labs)

World Models

Understanding dynamic, real-world environments

Multimodal Intelligence

Vision + Sound + Sensor fusion

Temporal Systems

Continuous tracking, prediction, sequence modeling

Signal Processing

Exoracting structure from noisy, real-world inputs

Director's Note

"We navigate complex technological landscapes to innovate solutions that are both practical and transformative."

True innovation isn't just about the technology itself—it's about building the infrastructure for the future. At Trouve Labs, we focus on creating sustainable research cycles that ensure a consistent flow of solutions that drive real-world value for smart cities, mobility, and critical infrastructure.

HK

Hood Khizer

Director of Innovation & Research | CEO, Trouve Labs

Director's Note

"We navigate complex technological landscapes to innovate solutions that are both practical and transformative."

True innovation isn't just about the technology itself—it's about building the infrastructure for the future. At Trouve Labs, we focus on creating sustainable research cycles that ensure a consistent flow of solutions that drive real-world value for smart cities, mobility, and critical infrastructure.

HK

Hood Khizer

Director of Innovation & Research | CEO, Trouve Labs

Director's Note

"We navigate complex technological landscapes to innovate solutions that are both practical and transformative."

True innovation isn't just about the technology itself—it's about building the infrastructure for the future. At Trouve Labs, we focus on creating sustainable research cycles that ensure a consistent flow of solutions that drive real-world value for smart cities, mobility, and critical infrastructure.

HK

Hood Khizer

Director of Innovation & Research | CEO, Trouve Labs

Graduation → Operational Systems

Real-Time Multimodal Perception

• Multi-camera ingestion (synchronized streams)
• Audio + environmental signal fusion
• Low-latency inference pipelines

System Awareness

• Cross-sensor reasoning
• Environmental state modeling
• Decision-ready outputs

Continuous Understanding

• Object tracking across time (not frames)
• Behavior + anomaly detection
• Context-aware scene modeling

Products - Available Today

Perception Platform

Real-time perception across video, audio, and sensors

Integrated with Routing, Data Intelligence, and Orchestration layers

Integrated with Routing, Data Intelligence, and Orchestration layers

Vision

Multi-camera tracking, detection, segmentation

Sound

Acoustic intelligence and event detection

Sensors

Environmental awareness and telemetry integration

• Sub-second multimodal inference latency
• Cross-camera tracking with temporal consistency
• Robust performance in noisy environments
• Production-grade deployment (edge/on-prem)

The Venture Science Model

We operate at the intersection of deep research and venture building. Every project is designed to become a sovereign capability.

Designed for decentralization from day one.

Built with cryptographic guarantees (ZKPs).

Evaluated under real-world network constraints.

Intended for sovereign, on-premise deployment.

Integrated directly into operational stacks.

Focus on system-level emergent intelligence.

Validation Beyond Accuracy

Traditional benchmarks focus on static accuracy. We evaluate research based on operational viability.

System Performance

Under high load & concurrency

Latency & Resilience

Network partition tolerance

Privacy Preservation

Mathematically verified

Verifiability

Cryptographic proof of compute

Stability

Long-term operational uptime

LIVE METRICS

Key Benchmarks

Comparative G-RAG Accuracy

vs. Standard RAG (76%)

Audio Enhancement SNR

+12dB Improvement

Fed. Learning Robustness

vs. Adversarial Attack

LIVE METRICS

Key Benchmarks

Comparative G-RAG Accuracy

vs. Standard RAG (76%)

Audio Enhancement SNR

+12dB Improvement

Fed. Learning Robustness

vs. Adversarial Attack

LIVE METRICS

Key Benchmarks

Comparative G-RAG Accuracy

vs. Standard RAG (76%)

Audio Enhancement SNR

+12dB Improvement

Fed. Learning Robustness

vs. Adversarial Attack

Venture Creation Process

01

Research

Hypothesis & Mathematical Proof

02

Prototype

Isolated Sandbox Validation

03

System

Integration & Architecture

04

Spin-out

Sovereign Deployment & Scale

GraphRAG Research

G-RAG

G-RAG

Federated AV Research

AVML

AVML

OR + Graph Opt.

GTS

GTS

Our research is complete only when it operates in the real world.

That is the standard we hold ourselves to.

AI and Advanced Algorithms for Complex Problems.

Research-driven systems powering orchestration, logistics, and critical infrastructure.

AI and Advanced Algorithms for Complex Problems.

Research-driven systems powering orchestration, logistics, and critical infrastructure.

AI and Advanced Algorithms for Complex Problems.

Research-driven systems powering orchestration, logistics, and critical infrastructure.