Designing the Grid of the Next Century
OpenEnergyStack is an open-source platform for planning, designing, operating, and governing modern energy infrastructure. It provides an integrated framework for utilities, governments, municipalities, cooperatives, researchers, and communities to build resilient, transparent, and intelligent energy systems using open standards and collaborative engineering.
Rather than being a single application, OpenEnergyStack is a modular infrastructure platform composed of independent services that can be deployed together or individually. Every component communicates through open interfaces, allowing organizations to customize deployments while maintaining interoperability.
Modern energy infrastructure is one of the most complex systems ever created, yet many of the tools used to plan and manage it remain fragmented, proprietary, or inaccessible.
OpenEnergyStack provides an open alternative by combining infrastructure planning, engineering intelligence, simulation, governance, analytics, and operational monitoring into a unified ecosystem.
The platform is designed to support projects ranging from local microgrids to national transmission systems while promoting transparency, resilience, interoperability, and community participation.
- Open infrastructure planning
- Transparent decision making
- Modular architecture
- Vendor-neutral deployment
- Standards-based interoperability
- Community participation
- Long-term infrastructure resilience
- AI-assisted planning and forecasting
- Public accountability
Every component is implemented as an independent module with well-defined APIs.
Modules may operate as:
- standalone services
- distributed services
- cloud deployments
- local-first deployments
- hybrid infrastructure
- federated deployments
Communication between modules may occur through REST APIs, message queues, event streams, or other open protocols.
Comprehensive geospatial infrastructure mapping.
Features
- transmission mapping
- substation mapping
- transformer inventory
- renewable resource mapping
- environmental constraints
- land-use analysis
- infrastructure overlays
- AI demand mapping
- demographic analysis
Infrastructure planning and simulation environment.
Features
- power flow simulation
- transmission optimization
- renewable integration
- storage simulation
- demand forecasting
- contingency analysis
- resilience modeling
- capacity planning
- long-term infrastructure scenarios
Standardized engineering templates.
Features
- solar farm templates
- wind farm templates
- battery storage templates
- nuclear infrastructure templates
- transmission templates
- substation templates
- engineering documentation
- permitting guidance
- cost estimation
Real-time operational intelligence.
Features
- telemetry collection
- operational dashboards
- infrastructure monitoring
- anomaly detection
- predictive maintenance
- outage visualization
- congestion monitoring
- asset health monitoring
Planning and project management.
Features
- transmission corridor planning
- interconnection management
- easement planning
- infrastructure lifecycle tracking
- project scheduling
- infrastructure dependency mapping
Economic planning and analysis.
Features
- infrastructure cost analysis
- ratepayer modeling
- financing models
- investment forecasting
- energy market analytics
- infrastructure ROI analysis
Management of decentralized resources.
Features
- rooftop solar
- battery coordination
- EV integration
- microgrid coordination
- virtual power plants
- distributed generation planning
Environmental planning and reporting.
Features
- emissions reporting
- carbon accounting
- pollution monitoring
- environmental impact analysis
- water resource analysis
- biodiversity considerations
Open governance framework.
Features
- Grid Constitution
- infrastructure auditing
- public participation
- infrastructure transparency
- governance workflows
- policy documentation
- regulatory tracking
Protection of critical infrastructure.
Features
- cybersecurity monitoring
- anomaly detection
- infrastructure hardening
- incident management
- vulnerability tracking
- security compliance
Shared infrastructure knowledge.
Features
- engineering documentation
- educational resources
- standards library
- workforce knowledge
- research repository
- collaborative documentation
Infrastructure transparency platform.
Features
- project registry
- construction history
- maintenance history
- lifecycle records
- public auditing
- cryptographic verification
Artificial intelligence services.
Features
- infrastructure forecasting
- demand prediction
- optimization
- planning assistance
- predictive maintenance
- operational recommendations
OpenEnergyStack supports optional plugins that extend the platform without modifying the core.
- real-time grid twin
- scenario simulation
- infrastructure visualization
- microgrid planning
- islanding simulation
- resilience analysis
- hydrogen production
- storage planning
- pipeline management
- battery optimization
- storage forecasting
- long-duration storage planning
- compute demand forecasting
- data center planning
- cooling analysis
- energy allocation
- cooperative management
- public participation
- community investment
- energy sharing
- community funding
- infrastructure investment
- dividend management
- public ownership tracking
- workforce mapping
- certification tracking
- labor forecasting
- training management
- supplier marketplace
- contractor management
- procurement workflows
- permit tracking
- regulatory workflows
- environmental reviews
- manufacturing intelligence
- transformer inventory
- material forecasting
- logistics analysis
- wildfire modeling
- flood modeling
- hurricane simulation
- climate adaptation
- solar storm monitoring
- geomagnetic event analysis
- transformer risk assessment
- cooling water analysis
- aquifer monitoring
- desalination planning
- material recovery
- recycling analytics
- circular economy planning
- wholesale pricing
- capacity markets
- transmission pricing
- market forecasting
- regional planning
- power sharing
- emergency coordination
- engineering collaboration
- standards exchange
- research publishing
OpenEnergyStack follows several core principles.
- Open by default
- Modular architecture
- API-first design
- Local-first capable
- Cloud compatible
- Vendor neutral
- Federated deployments
- Human-centered governance
- AI-assisted decision support
- Security by design
- Transparent infrastructure
- Extensible plugin ecosystem
- utilities
- municipalities
- state governments
- federal agencies
- energy cooperatives
- engineering firms
- infrastructure operators
- universities
- researchers
- nonprofit organizations
- emergency planners
- developers
OpenEnergyStack is intended to become the open infrastructure foundation for modern energy systems.
Future development may extend beyond electricity into water infrastructure, transportation systems, communications infrastructure, industrial infrastructure, and other critical public systems while maintaining the same principles of openness, transparency, interoperability, and collaborative governance.
- Fully AGPL-3.0+ compliant system
- Copyleft enforced for network deployments
- Required attribution:
- Roxanne Ardary
- https://www.roxanneardary.com/
- Specification Branding License (SBL)
- Attribution-free commercial deployment
- Pricing based on scale, usage, and deployment scope
- https://roxanneardary.com/openenergystack/
OpenEnergyStack is released under the GNU Affero General Public License v3.0 or later (AGPL-3.0+).
By contributing to this project, you agree that your contributions will also be released under this license.
Please note the following:
- All contributions must comply with the AGPL-3.0+ terms.
- Under Section 7 of the license, all redistributions, forks, and derivative works must preserve attribution to:
Roxanne Ardary and roxanneardary.com. - OpenEnergyStack specificiations are free to use with attribution. A Specification Branding License can be negotiated upon request.
- The project's notice.md file tracks attribution requirements and contributor acknowledgments.
Any update that adds new contributors or modifies attribution should also updatenotice.md. - When submitting a pull request, ensure that any new files maintain the attribution headers where applicable.
- Network-deployed versions of this software must also remain fully AGPL-3.0+ compliant, including exposure of source code modifications when applicable under the license.
For full legal details, please refer to the AGPL-3.0+ license and the project's notice.md file.