Virtus operates a digital‑twin platform that models global renewable supply and demand in real time, generating forecasts used to automate procurement, routing, storage and trading of low‑carbon fuels. Its AI‑driven logistics engine balances the market, reduces price volatility and curtailment, and provides utilities, industrial buyers and renewable producers with predictable, low‑emission power via an API‑connected network.
Funding
Funding not disclosed
Founders
Product
Problem
Energy markets experience frequent price volatility and logistical inefficiencies due to fragmented forecasting, manual coordination, and limited visibility of physical renewable energy flows. These challenges hinder the reliable delivery of low‑carbon power and increase operational waste for utilities and large energy consumers.
Solution
Virtus operates as a technology‑driven physical energy merchant that leverages a proprietary Global Energy Model (GEM) digital twin to predict global supply and demand for renewable and low‑carbon fuels. By continuously simulating physical energy flows, the platform can pre‑emptively balance the market, reducing price swings and minimizing curtailment. Automated trading and logistics algorithms execute procurement, transportation, and storage decisions without human intervention, improving safety and operational efficiency. The resulting autonomous distribution network delivers stable, low‑carbon energy to end users while lowering waste and emissions across the supply chain.
Target Audience
Primary customers are utilities, industrial energy buyers, and renewable energy producers that require reliable, low‑carbon power at predictable prices and seek to automate their supply‑chain operations.
Features
- Global Energy Model (GEM) digital twin that ingests real‑time generation, transmission, and consumption data to forecast supply‑demand dynamics at a planetary scale
- AI‑driven autonomous logistics engine that optimizes procurement, routing, and storage of renewable fuels in near‑real time
- Predictive price stabilization module that executes hedging and market‑balancing trades based on forecasted volatility
- Integrated safety and error‑reduction controls that limit manual intervention across the physical energy infrastructure
- API layer for seamless connection with utilities, grid operators, and large‑scale energy purchasers to exchange forecast data and transaction orders
- Continuous performance monitoring dashboard that tracks waste reduction, emissions impact, and price stability metrics