Thus we connect — read only
The value comes fromModbus TCP · Plant PLC · M-Bus (meters)of the installation —read, not controlled. Everything isin the housecalculated, nothing leaves the house. No obligation to disclose operational data.
Your own LLM for CHP — offline
Questions in plain language, answered byYour own installation data— local, no cloud. The AI runs internally; the installation remains yours.
Regulatory framework:NF ISO 8528 (generator sets) (CHP Test) · Manufacturer specifications (Maintenance plan)
Associated causal chains
This component is part ofInstallation causal chains— from cause to effect (gas quality → engine → exhaust gas → heat → efficiency). The AI reads the entire chain, not just the individual value.
Link with the entire installation
A CHP unit is never alone: electricity, heat and gas are linked, and with PV and battery storage, it becomes a system. The AI calculates the entire installation.
Frequently asked questions
What is a knock sensor in a CHP unit?
A knock sensor is a piezoelectric or magnetostrictive component that measures pressure shocks in the combustion chamber.
Why is monitoring of knock events important?
Knocking causes extreme mechanical stress and can lead to cracks in the piston or damage to the cylinder walls.
What happens in case of a mixture that is too rich?
A mixture that is too rich leads to incomplete combustion, while a mixture that is too lean increases the risk of knocking due to high temperatures.
From when should a knock signal be triggered?
The system reacts immediately if the amplitude of vibrations exceeds a defined limit in order to correct the ignition timing.
How does the intake air temperature influence the knock signal?
An intake air temperature that is too high promotes combustion that is too rapid and increases the probability of pressure peaks.
What role does the knock sensor play during load changes?
During rapid load changes, the sensor helps to dynamically adjust the optimal ignition timing to keep the engine's rotation speed stable.