
Cedrus Solutions provides an AI-powered platform that helps building owners and managers plan, execute, and monitor the decarbonization of their real estate portfolios. The platform generates building diagnostics without on-site visits, proposes optimal action plans with cost and impact scenarios, and tracks energy/carbon trajectories in real time. It reduces costs and delays by at least 60% compared to traditional methods.
Funding
Funding not disclosed
Founders
Product
Problem
Buildings account for nearly one gigatonne of CO₂ emissions annually, and over 210 million buildings must be renovated by 2050 to meet climate targets. Traditional energy audits and decarbonization planning require costly, time-consuming on-site visits and manual analysis, making it difficult for asset owners to scale their efforts across large portfolios.
Solution
Cedrus Solutions offers an AI-driven platform that automates the entire building decarbonization workflow. The platform generates a complete technical and energy diagnostic of a building portfolio without any on-site visits, using mathematical models trained on millions of buildings and synthetic data equivalent to standard simulation results. It then helps users define optimal decarbonization plans by comparing multiple strategic and financial scenarios with detailed action plans, including costs, profitability, and impact. The solution continuously measures energy and carbon impact, updating trajectories in real time to ensure alignment with sustainability goals. By automating the work of traditional service providers into a single platform, Cedrus reduces costs and delays by at least 60%.
Target Audience
Primary customers are real estate asset owners, property managers, and portfolio operators who need to plan and monitor decarbonization across large building portfolios, as well as organizations subject to energy and carbon regulatory requirements.
Features
- AI-based building diagnostics generated without site visits or building instrumentation, using models developed by scientists and engineers from Mines de Paris
- Training on millions of buildings with a synthetic database that replicates real simulations equivalent to STD/SED results
- Automated scenario planning for decarbonization strategies, including cost, profitability, and impact analysis for each action plan
- Real-time energy and carbon trajectory tracking with continuous updates to refine strategy and optimize outcomes
- Dynamic portfolio-level and building-level dashboards for monitoring and decision-making
- Integration-ready platform designed to fit into existing processes and workflows