Research software · Platform direction

One energy system.
More ways to understand it.

H2 Intelligence is the direction of my research software: bringing offshore hydrogen, onshore hydrogen and hybrid microgrid studies into a common engineering and decision-support experience, while retaining independently testable simulation engines.

Platform integration is planned. The three modes below do not yet operate as one released application.

Three complementary domains

One direction. Modular engineering foundations.

Each domain has its own physical and operational questions. The goal is to reuse what is common without compromising the models that make each system distinct.

≈Existing software

OffshoreH2

Chronological simulation of offshore renewable hydrogen production, buffering, liquefaction and export. The established OffshoreLH2 application provides the baseline; risk and multi-year research extensions are under development.

Wind & metoceanLH₂ / GH₂Marine logistics
Explore OffshoreLH2
◈Research prototype

OnshoreH2

A separate development branch models wind, solar and grid-supplied electrolysis, gaseous hydrogen storage and customer delivery. Wider delivery pathways, operational optimization and independent validation remain future work.

Wind & PVGrid dispatchGH₂ delivery
Not yet a released application
▦Existing research code

Microgrids / PGMcpp

Hybrid renewable microgrid models and research workflows for lithium-ion and vanadium flow batteries, converters, thermal-aware operation and load-following versus predictive control.

Li-ion & VRFBAC/DCMPC
Microgrid research

The engineering idea

One workflow, without one monolithic model.

Integrating a hydrogen project with a battery, converter or microgrid should not require rebuilding the same component twice.

The proposed architecture keeps distinct simulation engines and adds compatible interfaces for component configuration, dispatch, reproducible studies, risk analysis and reporting. Results remain tied to their assumptions and verification status.

Not all proposed capabilities are currently connected. Model compatibility, solver licensing, source attribution and scientific validation are part of the integration roadmap.

PROPOSED STUDY WORKFLOW
01Define systemSite · Technology · Operation · Delivery
02Run physical simulationHourly balances · Constraints · Degradation
03Compare design optionsControl · Cost · Reliability · Uncertainty
04Document evidenceInputs · Assumptions · Reports · Reproducibility

Development status

An evolving research platform, not a finished commercial product.

The current software and research code are developed incrementally with independent regression tests. A unified interface and cross-domain control framework are planned work.

01 / ESTABLISHED

Offshore simulation

Core offshore hydrogen workflows and a desktop research application exist today.

02 / PROTOTYPE

Onshore reference

Initial onshore hydrogen modeling and studies are implemented on an isolated branch.

03 / INDEPENDENT

Microgrid research

PGMcpp remains a separate codebase while reusable electrical models are evaluated.

04 / PLANNED

Unified experience

Common project navigation, component interfaces, predictive control and evidence views.

Research-stage disclosure. This page describes existing software alongside a future architecture. Descriptions are not claims of third-party certification, field validation or commercial readiness. Published research results and in-development code are distinct from an integrated software release.

Research collaboration

Connecting hydrogen systems and electrical energy storage.

Interested in the research, modelling methods or collaboration opportunities? Explore the current software or get in touch.