FIELD: control and measuring equipment.
SUBSTANCE: invention relates to intelligent heat supply systems of cities or other settlements and can be used to control, account and plan consumption of energy resources. System consists of heat meter, boiler room; heat supply facilities; central control and data processing station; a data transceiver with a central control and information processing station (CCIPS) in the boiler room; power supply regulator; boiler; energy consumption meter; sensors for measuring parameters of the state of the boiler; water supply regulator; reservoirs with water; unit for receiving water from the return pipeline; unit of heat energy output to heat network; unit for receiving heat energy from the heat network; CCIPS data transceiver in heat supply facility; heat energy distribution unit along heating risers; heat consumers; return pipeline of heat network; thermostatic valves; room temperature sensors; module for setting temperature in rooms of heat energy consumers; data transceiver with heat supply objects; room temperature database (DB); DB of preset room temperature; a module for calculating the number of changes in the temperature setting for the planned period; module for calculating degree of confidence to given temperatures; DB of characteristics of heat energy consumers; module for calculating the degree of influence of neighboring heat consumers; DB of parameters of heat supply facilities; a module for correcting real consumption of heat energy; boiler energy efficiency determination module; DB of real energy consumption in the boiler; data transceiver with boiler room; DB of forecasts for heat energy consumption; intelligent module for prediction of heat energy consumption; weather data receiving module; module for calculating control signals to regulators.
EFFECT: increased accuracy of measurements of consumed heat energy by individual consumers; automatic control of heat energy supply to each individual consumer; control of heat energy supply control in remote mode; higher efficiency of heat production.
1 cl, 4 dwg
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Authors
Dates
2024-05-03—Published
2023-06-23—Filed