Battery Storage Optimization & Energy Management for Commercial & Industrial Use

Battery Storage Optimization & Energy Management for Commercial & Industrial Use

Our software optimizes battery storage in real-world operations. Even in complex use cases - data-driven and forecast-supported.

problem

The operation of a battery storage in commerce and industrial is complex.

The operation is hard to predict.

Load, production and prices are continuously changing.

The planned load peak is exceeded due to increased consumption levels.

Lack of transparency in the operation.

It is often unclear in operations which applications are truly worthwhile.

The battery storage is operating in a one-dimensional way and is underloaded.

Missing economic returns.

The EMS or the battery storage control is configured once and never adjusted again.

The packback of the battery storage is continuously deteriorating.

solution

Lumera Energy: Battery storage software for predictive optimization and control.

Lumera Energy makes battery storage optimization forward-looking, transparent, and actionable.

Forecast-based decision-making

Forward-looking decision-making

Consider future developments already in ongoing operations. Lumera automatically incorporates forecasts for load, generation, and prices into operational decisions.

Make informed decisions with an eye on the coming hours and days.

Multi-Use Optimization

Consider all applications of a battery storage system together rather than individually. Lumera prioritizes different use cases within a consistent optimization logic.

Use peak shaving, load peak capping, self-consumption, and arbitrage in parallel—without operational conflicts.

Transparent savings

Reduce your energy costs by operating the battery storage system. Lumera shows transparently how savings are achieved through multi-use.

Plan how the cash flow will develop.

Multi-use applications for your commercial storage system

self-consumption optimization

Battery storage absorbs excess PV production and makes it available later for free – under the same favorable conditions as directly from the PV system.

Last peak capping

Dynamic electricity tariffs

Atypical network usage

Spot market arbitrage

Multi-Use

self-consumption optimization

Battery storage absorbs excess PV production and makes it available later for free – under the same favorable conditions as directly from the PV system.

Last peak capping

Dynamic electricity tariffs

Atypical network usage

Spot market arbitrage

Multi-Use

self-consumption optimization

Battery storage absorbs excess PV production and makes it available later for free – under the same favorable conditions as directly from the PV system.

Last peak capping

Dynamic electricity tariffs

Atypical network usage

Spot market arbitrage

Multi-Use

Savings potential inquiry

Known from:

Supported by: