At Elicit the Green Energy, we believe the future of renewable power depends not only on how energy is generated, but on how efficiently it is stored, managed, and delivered.
Our Energy Storage Solutions (ESS) platform is being developed to integrate multiple forms of energy storage into a unified architecture. Rather than relying on a single storage technology, our vision is to create an intelligent platform that can utilize the most suitable storage method based on application, duration, efficiency, and operating conditions.
The Smart MVDC Platform serves as the electrical backbone of this ecosystem, enabling different renewable sources and storage technologies to work together through a common intelligent energy management system.
Renewable energy is available in many forms, and each storage technology has unique advantages. Elicit's long-term vision is to develop an integrated energy platform capable of managing multiple storage technologies within a common intelligent architecture.
Our research and development roadmap includes:
Each technology addresses different operational requirements, from seconds of power support to long-duration energy storage.
The Smart Medium Voltage Direct Current (MVDC) Platform is the foundation of our future energy architecture.
Rather than functioning only as a power collection system, the Smart MVDC Platform is envisioned as an intelligent energy highway that connects renewable generation, storage systems, power conversion equipment, and future DC loads.
The platform is designed to integrate:
By maintaining energy in DC form through much of the collection and storage process, the platform aims to simplify system architecture while supporting flexible renewable energy integration.
Lithium Battery Energy Storage Systems provide fast-response energy storage for residential, commercial, industrial, and utility-scale applications
Applications include:
Our future roadmap includes concentrated solar thermal energy storage using molten salt systems.
Thermal energy collected during periods of high solar irradiation can be stored and later used to support industrial heating or electricity generation where appropriate.
Potential applications include:
Cooling demand represents a significant portion of energy consumption in commercial buildings.
Our development roadmap includes systems capable of storing cooling energy generated during periods of surplus renewable energy and utilizing it during peak demand.
Potential applications include:
Flywheel systems store energy mechanically as rotational kinetic energy.
They provide rapid response and high cycle life, making them suitable for applications requiring instantaneous power support.
Potential applications include:
Green Hydrogen represents one of the most promising long-duration renewable energy storage technologies.
Surplus renewable electricity can be used to produce hydrogen through electrolysis. The hydrogen can then be stored for later use in industrial processes, transportation, or electricity generation through fuel cells.
Potential applications include:
The Elicit Energy Management System (EMS) is intended to coordinate renewable generation, storage technologies, and power conversion equipment through a common digital platform.
Future capabilities under development include:
Elicit The Green Energy is actively pursuing research into advanced renewable energy architectures, intelligent control systems, and multi-technology energy storage
Current areas of development include:
These concepts are part of our ongoing engineering and research program. As technologies mature, selected innovations may form the basis of future intellectual property filings and commercial products.