Analyse
Understand energy data, asset structure, load profiles and requirements.
Tailored energy management systems for larger battery storage, industry, heat sources, charging infrastructure and complex energy systems.
For commercial and industrial projects from around 200 kWh of battery storage, with a focus on roughly 1 MWh and above – up to the multi-MW range.
Illustrative view – not live data
These tiles show how the visualisation is structured. In operation, real values come from the respective site; they are deliberately not simulated here.
Built for manufacturers, integrators and project developers.
Photovoltaics, battery storage, the grid connection point, heat sources, charging infrastructure and other controllable loads do not run side by side in our approach. They come together in a single, shared control logic.
The NEWOLUTION EMS sits above the existing manufacturer systems: the OEM BMS and the manufacturer's safety-critical functions remain untouched. We provide the supervisory control, the asset integration, the visualisation and the optimisation.
Four steps that build on one another in every project.
Understand energy data, asset structure, load profiles and requirements.
Integrate generation, storage, loads, meters and interfaces.
Improve operating strategies and energy flows commercially and technically.
Operate assets automatically, safely and across manufacturers.
Our focus is on developing supervisory energy management systems. The established photovoltaic software remains a strong, independent second pillar.
A supervisory master EMS that brings heterogeneous assets together under one shared control logic – from the battery storage system to the charging infrastructure and the grid connection point.
Digital tools for sales, planning and quotation processes in the photovoltaic business – built on years of practice with installers and sales organisations.
At a real reference site, the system controls around 1.7 MW of installed charging capacity through a grid connection of only 100 kW. PV, battery storage and AC as well as DC charging infrastructure are brought together under one shared control logic.
Site-specific figures. All figures refer exclusively to this particular reference site. They are neither a general market claim nor a commitment for other projects. In particular, the ratio of roughly 1:17 is a site-specific reference. Technical feasibility and achievable values are assessed individually in every project.
Are you planning a storage, industrial or charging infrastructure project and looking for the supervisory control layer? Let's assess together what makes technical sense and stands up commercially.