EP3217765B1 - Concept simplifié de mise en service destiné à commander des actionneurs d'une installation de bâtiment - Google Patents

Concept simplifié de mise en service destiné à commander des actionneurs d'une installation de bâtiment Download PDF

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Publication number
EP3217765B1
EP3217765B1 EP16205643.6A EP16205643A EP3217765B1 EP 3217765 B1 EP3217765 B1 EP 3217765B1 EP 16205643 A EP16205643 A EP 16205643A EP 3217765 B1 EP3217765 B1 EP 3217765B1
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EP
European Patent Office
Prior art keywords
operating
control unit
profile
fact
unit
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EP16205643.6A
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German (de)
English (en)
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EP3217765A1 (fr
Inventor
Volker Grosch
Andrew Melnik
Matthias Donat
Henning Marquardt
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Insta GmbH
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Insta GmbH
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Publication of EP3217765A1 publication Critical patent/EP3217765A1/fr
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/175Controlling the light source by remote control
    • H05B47/19Controlling the light source by remote control via wireless transmission
    • H05B47/1965
    • H05B47/199

Definitions

  • the invention relates to an arrangement comprising a control unit and a control unit for controlling at least one actuator which can be brought into different actuator positions in a building installation.
  • Luminaire or light source arrangements are in many cases part of a networked building installation. These actuators are connected to a building installation bus and are controlled via this using a light control program, such as DMX, DALI or LEDTRIX. In this way, it is possible to control individual luminaires or also light walls or luminous ceilings which have a multiplicity of individual light sources, typically RGB LEDs. In this way, large-format displays can be realized.
  • a light control program such as DMX, DALI or LEDTRIX.
  • WO 2013/132416 A1 to call As an example of this is WO 2013/132416 A1 to call.
  • This describes the setup of controls that control a home installation can, by means of a mobile terminal. It is the goal of this device to assign the arranged on the control panel operating sensors a specific Aktor too.
  • a button on a control panel a specific light scene can be assigned.
  • the manual button on the control panel is pressed, the respective action is then carried out.
  • the data volume on the lines should be reduced. This is achieved by using a base as a translator.
  • the keypads send uncertified signals to this base, whereupon the base uses a certified protocol to trigger the individual actuators.
  • the commissioning can be made easily user side and selected in principle the required hardware at least in part on the user side and can be put together.
  • the control unit which is required for the control of the actuators, already provided with several predetermined operating profiles as templates.
  • These operating profiles are profiles in which certain individual functions relating to activation of the actuator (s) are combined.
  • the operating profiles differ with regard to the individual functions combined in each case, wherein these can differ from one another with regard to their composition and also in their number in the individual operating profiles.
  • the user immediately has a certain functionality available. Setup measures by trained personnel are then not needed.
  • the individual functions in such an operating profile are also each associated with an actuation sensor, for example a pushbutton.
  • the actuation sensors are not in or on the control unit, but are outsourced to an external control unit with respect to the control unit. This concept allows a variety of operating parts for operating the individual functions of one and the same operating profile, since the Betuschistssensorzuowski already control unit side is made. If, for example, eight individual functions are combined in an operating profile, each individual function being assigned to an actuation sensor, eight actuation sensors corresponding to the predetermined occupancy in the operating profile are assigned to the individual functions on the servicing part.
  • the design of the actuation sensors as well as their number depends on the design of the control panel or its possibilities.
  • control panel will be one with a touch-sensitive display, be it a fixed control panel or a mobile control panel, such as a smartphone, a tablet PC, or the like.
  • graphic support and the graphic possibilities of such operating parts are used in order to display the actuation sensors in the manner of buttons on the touch-sensitive display.
  • This may of course also be wiper sensors, which are shown on the display.
  • the interface between such a control panel and the controller is not only kept simple, but preconfigured. Likewise, neither addressing of such a control panel nor addressing of the actuators to be addressed is required.
  • the individual functions are selected from a function database available on the ECU side.
  • the individual functions can be composed of one or more functions of the function database. This measure, which can otherwise only be performed by trained personnel, is thus predetermined in this concept, at least to the extent of the individual functions combined in an operating profile. This does not rule out that further individual functions can be defined via an appropriate access and implemented in an existing operating profile or that other operating profiles are created in a conventional manner.
  • Control unit side only such operating profiles are proposed to a user during commissioning, which can actually be controlled by the controller and are actually available as a building installation.
  • a selection of operating profiles offered during commissioning already takes place on the control device side as a function of the activatable actuators.
  • this is made possible by the fact that the control unit has a plurality of free slots.
  • the free slots are populated with actuator-specific hardware modules, each hardware module is designed to control a specific actuators, such as a lighting device on a specific fieldbus.
  • the slots are encoded with respect to the hardware modules to be plugged therein.
  • the control unit side detects which actuator is to be controlled. If the building installation to be activated is, for example, a lighting device, this preselection can be made as a function of the placement of the slot and the actuator system that is thus announced by the control unit, which type of lights or light sources are to be controlled. If, for example, a tunable-white illumination device is connected to the control device, only those which have a reference to a tunable-white illumination device are proposed as operating profiles. Accordingly, no operating profiles are offered which include as an individual function influencing RGB channels. The same applies to an RGB illumination device and also to an RGBW illumination device.
  • the operating profile selection is skipped during subsequent calls to the operating application on the operating unit and an operation of the operating sensor or sensors is possible directly.
  • you will interpret the operation of the control panel so that a recourse to the then initially skipped control profile selection is possible.
  • FIG. 1 shows a schematic diagram in the manner of a simplified flow chart to illustrate the inventive arrangement for simplified startup and operation of a building installation.
  • the controller is a sequencer.
  • the sequencer is equipped with a basic functionality and has several free slots into which a hardware module is to be plugged depending on the actuator to be controlled.
  • the control unit is designed in principle to carry out a control of a tunable-white illumination device, an RGB illumination device and / or an RGBW illumination device.
  • a fieldbus module for controlling an RGB illumination device is plugged into one of these free slots. For this reason is in the column "control unit" in FIG. 1 This actuator has been highlighted.
  • the control unit several operating profiles are stored for each of the actuators to be controlled.
  • three operating profiles are stored under the RGB control, namely a standard operating profile, a universal operating profile and an Eco operating profile.
  • the further actuators to be actuated have the same operating profiles.
  • Each operating profile is equipped with a different number of individual functions.
  • the operating profile "universal” is shown in the figure.
  • the operating profile "universal” includes the functions on / off, symbolized by I / O, a dimming function D and two predetermined light scenes LZ1, LZ2.
  • Each of these individual functions is in the operating profile "Universal" an operating sensor, shown in the figure by way of example as virtual buttons assigned.
  • the individual function I / O lies on the operating sensor B1, the dimming function on the operating sensor B2, the light scene LZ1 on the operating sensor B3 and the light scene LZ2 on the operating sensor B4.
  • This button assignment is transmitted to the control panel or its actuation sensors when selecting this operating profile.
  • Each individual function is taken from a function database or composed of individual functions of the function database.
  • the function database contains the total number of options for influencing the actuators to be activated. In the case of conventional methods, this function database is used directly to create light scenes or to define other functionalities. In the described concept, this is also possible, but a user in the exemplary selection of the operating profile "universal" the default four Individual functions provided, which are directly usable by the user.
  • a control of the control unit is made in the illustrated embodiment with a mobile control panel, typically a smartphone or a tablet PC.
  • the control panel has a corresponding user routine (application).
  • the display of the keypad After registering the keypad on the control unit for which log-on can be accessed using conventional log-on procedures, the display of the keypad displays the three possible operating profiles "Standard" "Universal” and "Eco". That these operating profiles relate to a control of RGB light sources, as already described, already predetermine the control unit side. It is quite possible, on the control side, to control the actuators to be activated, here: RGB light sources, on the display of the control panel. A preselection is not required in this embodiment, since in the control unit only that slot is equipped with a hardware module, can be controlled by the RGB light sources.
  • a plurality of slots in the control unit are equipped with corresponding hardware modules, that actuator is displayed with the start of the application in front of the display shown in the figure for selecting an operating profile, which can be operated via the control unit.
  • a tunable-white illumination device TW illumination device
  • a selection between these two illumination devices would be displayed on the display of the control unit.
  • the user selects the operating profile "Universal". From the control unit, the control panel then receives the predetermined actuation sensor occupancy. Therefore, after selecting the operating profile, here: the operating profile "Universal", on the display of the control panel, a display with four actuation sensors shown as a button with the control unit side appears deposited occupancy.
  • the actuation sensors displayed on the display of the control panel are characterized in terms of their function to be actuated, letter abbreviations having been used in the figure for this purpose. The individual functions placed on the actuation sensors can now be operated by the user.
  • the service-part-side user routine is terminated after such a startup and a possible first actuator control. If this application is called again, the operator profile selection step is skipped so that the operator display appears immediately.

Claims (10)

  1. Système comprenant une unité de commande et une unité de manipulation pour commander, dans une installation de bâtiment, au moins un actionneur qui peut être amené dans différentes positions d'actionneur, au moyen de laquelle unité de manipulation l'au moins un actionneur peut être commandé et laquelle unité de manipulation sert à commander l'unité de commande, caractérisé en ce que
    - plusieurs profils de manipulation prédéterminés par actionneur sont mémorisés dans l'unité de commande en tant que profils de manipulation disponibles en fonction du type d'actionneur ou d'actionneurs à commander, les profils de manipulation différant par rapport aux fonctions individuelles regroupées dans un profil de manipulation, et les fonctions individuelles affectées à un profil de manipulation étant prises dans une base de données de fonctions contenant de possibles commandes d'actionneur ou étant constituées d'une pluralité de ces fonctions,
    - le système est configuré de telle sorte que dans l'unité de commande chaque fonction individuelle d'un profil de manipulation soit affectée à un capteur d'actionnement actionnable manuellement pour déclencher le profil de manipulation, et
    - le système est configuré de telle sorte qu'après que l'unité de manipulation s'est connectée à l'unité de commande pendant la mise en service via une routine de sélection d'une application du côté de l'unité de manipulation, il sélectionne d'abord l'un des profils de manipulation disponibles pour une application actuelle, et qu'ensuite la function individuelle affectée correspondante peut être affectée aux capteurs d'actionnement du côté de l'unité de manipulation, de sorte que les fonctions individuelles du profil de manipulation puissent ensuite être déclenchées en actionnant le capteur d'actionnement affecté à la fonction individuelle correspondante.
  2. Système selon la revendication 1, caractérisé en ce que le système est conçu pour mémoriser un profil de manipulation sélectionné comme préréglage du côté de l'unité de manipulation, de sorte qu'une manipulation du ou des capteurs d'actionnement soit possible immédiatement lors de l'emploi de l'application du côté de l'unité de manipulation suivant une première sélection du profil de manipulation.
  3. Système selon la revendication 1 ou 2, caractérisé en ce que l'unité de manipulation comporte un écran tactile et en ce que les capteurs d'actionnement sont représentés graphiquement après sélection du profil de manipulation.
  4. Système selon la revendication 1 ou 2, caractérisé en ce que l'unité de manipulation comporte une pluralité de boutons-poussoirs physiques comme capteurs d'actionnement.
  5. Système selon l'une des revendications 1 à 4, caractérisé en ce que l'unité de manipulation est conçue comme un capteur mural et est reliée à l'unité de commande par un câblage.
  6. Système selon l'une des revendications 1 à 4, caractérisé en ce que l'unité de manipulation est reliée à l'unité de commande par communication radio si l'unité de manipulation doit agir sur l'unité de commande.
  7. Système selon l'une des revendications 1 à 6, caractérisé en ce que des sources lumineuses ou des modules de sources lumineuses, en particulier ceux d'un plafond lumineux ou d'une paroi lumineuse, sont commandés comme actionneurs par l'unité de commande.
  8. Système selon l'une des revendications 1 à 7, caractérisé en ce qu'une présélection des fonctions individuelles combinées pour former un profil de manipulation dépend d'un montage matériel de commande de l'unité de commande.
  9. Système selon la revendication 8, caractérisé en ce qu'en plus d'une carte de circuit imprimé principale, l'unité de commande comporte une pluralité de ports pour connecter différents modules, et en ce que les ports sont codés pour connecter un autre module en interaction avec le module à disposer sur un port spécifique, de sorte que seul un module prédéfini puisse être enfiché dans le port respectif.
  10. Système selon la revendication 8 ou 9, caractérisé en ce que le module à enficher dans un tel port est un module de bus de terrain sous la forme d'une carte de circuit imprimé enfichable.
EP16205643.6A 2016-03-10 2016-12-21 Concept simplifié de mise en service destiné à commander des actionneurs d'une installation de bâtiment Active EP3217765B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102016104347.8A DE102016104347B4 (de) 2016-03-10 2016-03-10 Vereinfachtes Inbetriebnahmekonzept zum Ansteuern von Aktoren einer Gebäudeinstallation

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EP3217765A1 EP3217765A1 (fr) 2017-09-13
EP3217765B1 true EP3217765B1 (fr) 2019-06-26

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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202018102043U1 (de) 2017-07-14 2018-05-03 Insta Gmbh Elektrisches/elektronisches Gerätesystem
DE102018129678A1 (de) * 2018-11-26 2020-05-28 Insta Gmbh Verfahren zum Einrichten eines Ansteuergerätes in einem Gebäudeinstallationsnetzwerk

Citations (1)

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EP2506096A2 (fr) * 2011-03-29 2012-10-03 Insta Elektro GmbH Procédé de transmission logique de capteurs et d'actionneurs dans le cadre de la mise en service d'un système d'installation

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DE102016104347B4 (de) 2020-07-30
EP3217765A1 (fr) 2017-09-13
DE102016104347A1 (de) 2017-09-14

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