Ventilation/dehumidification — the silent 24/7 load, with heat recovery. Part of the glass family — like our glass BESS, biogas plant and CHP.
An Arbitrage-Fahrplan is the algorithmic control module of a battery storage system (BESS), which controls the state of charge (SoC) based on dynamic market prices. It serves economic optimisation by charging energy when prices are low and feeding it into the grid during periods of high demand or high spot market prices. Implementation is carried out in strict compliance with the regulatory requirements of the EnWG and the StromNZV.
For this component, no own register is connected; therefore, no example value is provided here. Where the system measures, the value is read as read-only and calculated internally. It is visible via connected components.

Monitored: continuous
The scenario: > Monitored: continuously · according to price and weather The scenario: if storage operates without preparation during peaks, it is purchased at a high price, leading to avoidable procurement costs and a loss of arbitrage. The AI: identifies early when pre-charging is required — the peak is covered, the rest earns. It detects the trend before the threshold is triggered.
A precise Arbitrage-Fahrplan maximises return on equity by exploiting price differences and simultaneously minimises costs for grid fees. Through automated control according to the Arbitrage-Fahrplan, the lifespan of the cells is preserved through optimised charging cycles. Furthermore, precise scheduling enables efficient use of the BESS to stabilise the local grid connection. shifted energy (kWh) · Price spread (ct/kWh) → — €/cycle Calculation path: Energy × Spread
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