Abstract:
A method for operating an installation for the automated control of the conditions in a building, the installation comprising a central control unit, electrical equipment items with which areas of the building are equipped and a unit for managing sensors comprising at least one sensor suitable for measuring an input physical quantity, the method being characterized in that it comprises: a step of modelling the building and the areas of the building, a step of obtaining at least one first value of the input physical quantity measured by the at least one sensor, a step of iteratively determining values of at least one output physical quantity, as a function of at least one second value of the input physical quantity, of the model of the building and of the areas of the building, a step of using the determined values in order to control the electrical equipment items with which each area of the building is equipped.
Abstract:
Method of constructing a reference data structure and method of controlling an actuator. The present invention is aimed at a method of constructing a reference data structure (DR) comprising at least one setpoint parameter (PAR) for at least one actuator (12) of an item of equipment of a building-automation installation, comprising a step (S30) of generating the reference data structure (DR) comprising an association set ({CVE1j; VPi}) for associating between at least one determined value (VPi) corresponding to the at least one setpoint parameter and the determined combination (CVE1j) belonging to the set (E1) of functional data (CVE1) and a method of controlling at least one actuator (12) of an item of equipment of a building-automation installation, the method being implemented by the actuator (12) or by a controller (11) associated with said actuator (12) and comprising a step (E30) of controlling the at least one actuator (12) by applying a setpoint (Cs) determined as a function of the at least one setpoint parameter value (VP) selected in the reference data structure (DR) as well as a system comprising at least one computer (20) and at least one actuator (12) for the respective implementation of said methods.
Abstract:
A method for operating an installation for the automated control of the conditions in a building, the installation including a central control unit, electrical equipment items with which areas of the building are equipped and a unit for managing sensor(s) suitable for measuring an input physical quantity, includes modelling the building and the building areas, obtaining at least one first value of the input physical quantity measured by the sensor(s), iteratively determining values of at least one output physical quantity, as a function of at least one second value of the input physical quantity, of the model of the building and of the areas of the building, and using the determined values in order to control the electrical equipment items.
Abstract:
Method of constructing a reference data structure and method of controlling an actuator. The present invention is aimed at a method of constructing a reference data structure (DR) comprising at least one setpoint parameter (PAR) for at least one actuator (12) of an item of equipment of a building-automation installation, comprising a step (S30) of generating the reference data structure (DR) comprising an association set ({CVE1j; VPi}) for associating between at least one determined value (VPi) corresponding to the at least one setpoint parameter and the determined combination (CVE1j) belonging to the set (E1) of functional data (CVE1) and a method of controlling at least one actuator (12) of an item of equipment of a building-automation installation, the method being implemented by the actuator (12) or by a controller (11) associated with said actuator (12) and comprising a step (E30) of controlling the at least one actuator (12) by applying a setpoint (Cs) determined as a function of the at least one setpoint parameter value (VP) selected in the reference data structure (DR) as well as a system comprising at least one computer (20) and at least one actuator (12) for the respective implementation of said methods.