Nu-Logos connects requirements, engineering data, analysis models, and verification evidence into a traceable engineering information layer for nuclear systems. When a design changes, you can see which analyses and evidence are affected, and trace each decision back to its source.
From documents alone, it is often impossible to tell whether a design value was derived from first principles or carried over from an earlier design. When a generation of engineers moves on without that distinction, the values remain and the principles disappear.
Requirements, design parameters, analysis models and results, and verification evidence are spread across documents, tools, and organizations.
A single design change can affect multiple systems, analyses, assumptions, and verification activities. Engineers still trace those dependencies by hand.
The result may still exist, but the links between the requirement, inputs, model version, calculation, and decision are hard to reconstruct later.
Nu-Logos is currently validating its traceability architecture on a limited-scope power conversion system workflow. A controlled design change is applied to a baseline case, the affected parameters and outputs are identified, and the analysis is re-run. If the requirements are met, the resulting evidence is linked to an updated baseline.
A limited-scope proof of concept (PoC). We are confirming that the traceability structure and change impact detection work on a single system workflow.
A Nuclear Digital Thread that connects requirements, design, analysis, verification, licensing evidence, configuration history, and engineering decisions, and a Nuclear Digital Master built on top of it.
We started from research in nuclear system design and thermal-hydraulic analysis, and we build our information structures on hands-on experience with design documents and analysis codes.
We design our information model around MBSE (model-based systems engineering), SysML v2, requirements engineering standards, and data provenance models.
Developing SMRs (small modular reactors) and other advanced reactors involves frequent design iterations and many organizations working together. Being able to trace what changed and why directly affects schedules and licensing.
We welcome inquiries about pilot projects, technology partnerships, and anything else by email.