EP1950722B1 - Verfahren zur Konfiguration einer Befehlsübermittlungsanlage in einem Heimsystem - Google Patents

Verfahren zur Konfiguration einer Befehlsübermittlungsanlage in einem Heimsystem Download PDF

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Publication number
EP1950722B1
EP1950722B1 EP08150495A EP08150495A EP1950722B1 EP 1950722 B1 EP1950722 B1 EP 1950722B1 EP 08150495 A EP08150495 A EP 08150495A EP 08150495 A EP08150495 A EP 08150495A EP 1950722 B1 EP1950722 B1 EP 1950722B1
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EP
European Patent Office
Prior art keywords
transmitter
command
emitter
identifier
signal
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EP08150495A
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English (en)
French (fr)
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EP1950722A1 (de
Inventor
Eric Lagarde
Olivier Poulet
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Somfy SA
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Somfy SA
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    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • G08C17/02Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B9/00Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
    • E06B9/02Shutters, movable grilles, or other safety closing devices, e.g. against burglary
    • E06B9/04Shutters, movable grilles, or other safety closing devices, e.g. against burglary of wing type, e.g. revolving or sliding
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B9/00Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
    • E06B9/56Operating, guiding or securing devices or arrangements for roll-type closures; Spring drums; Tape drums; Counterweighting arrangements therefor
    • E06B9/68Operating devices or mechanisms, e.g. with electric drive
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C2201/00Transmission systems of control signals via wireless link
    • G08C2201/20Binding and programming of remote control devices

Definitions

  • the invention relates to the field of home automation or building automation and in particular communications between issuers of fixed or nomadic type control commands and control command receivers linked to actuators, in particular door actuators. , windows, shutters, screens.
  • the communications between the command transmitters and the command receivers are very generalized over a non-wired network, that is to say through electromagnetic waves and more particularly radio waves (although other types of communication can be implemented).
  • the set consisting of command transmitters, command receivers and actuators driving their associated products is called home automation system.
  • the communication between the command transmitter and the command receiver is unidirectional.
  • This method consists for example of recording, by a particular procedure called pairing, an address containing an identifier of the transmitter at the receiver.
  • a communication frame and in particular a control frame, comprises in addition to the order associated with it, the address of the transmitter to the origin of the message.
  • each listener decrypts the message contained in the frame, verifies that it is addressed to it (if it contains an address that it accepts), and transmits the order of execution to the actuator. If the address contained in the frame is unknown, the receiver ignores the command message.
  • Such a scenario generator is described in bidirectional systems, that is to say when the issuers of orders and the command receivers are both transmitters and receivers.
  • Such scenario commands are very practical and easy to use.
  • many systems currently installed or available on the market still operate unidirectionally and the invention seeks to improve these devices in particular to increase the functionality and ease of use of an existing unidirectional home automation system.
  • One solution may be to use as an element equivalent to a scenario generator a transmitter of "multi-channel” type, that is to say, transmitting on the frequency common to the transmitters and receivers of the installation, but having a plurality of "Channels", that is, identifiers that can be selected individually.
  • each channel can be paired with one or more receivers, under the control of the transmitter known by this or these receivers as described in the patent.
  • FR 2,761,183 Such an operation corresponds to a remote control of "individual and general" type known from the state of the art.
  • a display means each channel is for example indicated by a light-emitting diode
  • keys for selecting a channel and control keys it is possible to control a set of equipment from the same transmitter, with different commands.
  • such a scenario generator will necessarily have a complex user interface to enable the management of a scenario (screen, browser or keyboard input, selection keys ).
  • various documents of the state of the art are concerned with the cloning of transmitters, that is to say the copying of the functionalities of a first transmitter towards a second one, for example the document DE 196 16,399 or learning code and code format (eg patent US 4,905,279 ).
  • the clone of the first transmitter can then substitute for each transmitter, taking its identity, so that the command is executed by each actuator concerned.
  • the address of a command transmitter consists of a fixed part (fixed identifier) and a so-called rotating code part.
  • This rotating code is incremented according to an appropriate algorithm for each frame sending so as to prevent the true copy of a transmitted frame, for example maliciously listened to, can not be reused to drive an actuator.
  • the latter accepts a transmitter identifier with a known fixed identifier and whose rotating code belongs to a predetermined code range in relation to the last rotary code received.
  • Document is also known US 2005/026604 a universal remote control comprising means for receiving and emitting electromagnetic signals. It further comprises means for identifying the characteristics of the transmitter at the origin of a signal, this transmitter being already paired with a device. These features transmitters differ from the function code representing the command order contained in the signal.
  • the object of the invention is to provide a command transmitter obviating the disadvantages mentioned above and improving the known transmitters of the prior art.
  • the object of the invention is also to provide a method for configuring such a transmitter.
  • the invention proposes an order transmitter and a command transmitter configuration method making it possible to increase the functionality of an existing home automation system in which the communications between the command transmitters and the command receivers. are unidirectional and in which the communications may for example be protected by a rotating code system
  • the object of the invention is to maintain a very intuitive approach when configuring a transmitter for scenario commands in an existing system. The invention simply allows to add, modify or delete actuators participating in an animation scenario of the home automation system.
  • the command transmitter according to the invention is defined by claim 9.
  • An embodiment of the transmitter is defined by claim 11.
  • the figure 1 is a diagram of a home automation system provided with an embodiment of a command transmitter according to the invention.
  • the figure 2 is a flow chart of a pairing procedure implemented in an embodiment of the configuration method according to the invention.
  • the figure 3 is an example of a map of identifiers stored in a transmitter according to the invention.
  • the figure 4 is a flow chart of a pairing procedure implemented in an embodiment of the configuration method according to the invention.
  • the figure 5 is an example of a scenario table stored in a transmitter according to the invention.
  • the figure 6 is a flow chart of a control operation method of a home automation installation comprising a transmitter according to the invention.
  • the figure 1 schematically a home automation system comprising a first emitter EMA, capable of driving a first actuator ACT1.
  • the emitter EMA has previously communicated its @EMA identifier to a receiver R1 of the first actuator ACT1.
  • the first transmitter comprises a keyboard KA in electrical connection with an ULTA processing logic unit, itself in electrical connection with a MEMA memory and an electromagnetic signal emitting means EM1.
  • the receiver R1 of ACT1 actuator comprises in particular a means for receiving electromagnetic signals RM1 in electrical connection with a logic processing unit ULTR1 itself being in electrical connection with a memory MEMR1.
  • the actuator further comprises an electric motor not shown and makes it possible to move a screen SCR1 such as for example a blind, a shutter or a door.
  • the system also includes a second EMB transmitter, capable of driving a second actuator ACT2.
  • the emitter EMB and actuator ACT2 are paired, that is to say that the emitter EMB has previously communicated its identifier @EMB to a receiver R2 of the second actuator ACT2.
  • the second transmitter comprises a KB keyboard in electrical connection with a ULTB processing logic unit, itself in electrical connection with a MEMB memory and electromagnetic signal emitting means EM2.
  • the receiver R2 of the actuator ACT2 comprises in particular a means for receiving electromagnetic signals RM2 in electrical connection with a logic processing unit ULTR2 itself being in electrical connection with a memory MEMR2.
  • the actuator further comprises an electric motor not shown and makes it possible to move a screen SCR2 such as for example a blind, a shutter or a door.
  • the system also includes other transmitters as well as other actuators not shown.
  • One or more of the actuators of the system may also control other types of loads than a motor, for example lighting devices.
  • This command can be generated automatically when the actuator is first powered up or by a specific command on the power supply line (mains power failure with special ON / OFF sequence). It can also be generated remotely via a transmitter already known to the actuator.
  • the latter form of setting pairing mode has the advantage of targeting the actuators to which we must pair a new transmitter, unlike the double break, which puts in pairing mode all the actuators powered by the same power line.
  • the known transmitter transmits a programming message (following a particular maneuver of a user, for example on a discrete button on the back of the transmitter), which the actuator interprets as a command to put in mode of operation. pairing and not a conventional command order. This procedure is secure since the order of setting in pairing mode is at least accompanied by the address of the known issuer.
  • the actuator then remains in pairing mode for a predefined time.
  • the system also includes an SCN1 transmitter.
  • This transmitter is a special transceiver, which allows to control the actuators according to a predefined scenario.
  • the transmitter SCN1 comprises an input interface K1 comprising two buttons SCN1 + and SCN1-, for adding and removing actuators of the scenario.
  • the transmitter SCN1 also includes a programming button (for example on the back of the remote control, less accessible) allowing its pairing with various actuators.
  • the input interface is in electrical connection with a logic processing unit ULT1, itself in electrical connection with a memory MEM1 and a means for transmitting electrical signals TEM1 and a means for receiving electrical signals TRM1.
  • a set of available identifiers, for example @ SCN1A- @ SCN1J, are stored in memory MEM1.
  • the interface also includes a SCN1L scenario launch button.
  • the transmitter SCN1 sends a set of orders each containing an identifier of the transmitter SCN1.
  • Each order of the scenario is executed by the actuator or actuators that recognize the identifier of the transmitter SCN1.
  • the logic processing unit ULT1 also comprises software means, such as computer programs for implementing a configuration method according to the invention and / or such as computer programs for implementing a method of operation. of the transmitter according to the invention. These means comprise in particular means for implementing the steps of the configuration method according to the invention and / or means for implementing the steps of the operating method according to the invention.
  • the figure 2 illustrates the method of registering the @ SCN1A identifier of the transmitter SCN1 at the first actuator ACT1.
  • a first step 101 the PROG programming button of the transmitter is manually pressed. This places the transmitter in a dual pairing mode during a step 102.
  • a programming button of the emitter EMA is activated manually. This results in the issuance of a pairing order in a step 105. All actuators ACT1, ACT2 and those not represented listen to the message and test if it is addressed to them. The first actuator ACT1 recognizes the identifier of the first emitter EMA during a step 107 and goes into pairing mode during a step 109.
  • the transmitter SCN1 being in dual pairing mode, it receives the message from the transmitter EMA during a step 106.
  • the transmitter SCN1 records the identifier @EMA of the emitter EMA contained in the received message.
  • the transmitter SCN1 automatically transmits a pairing message containing a first identifier @ SCN1A, to the actuators which are still in pairing mode. This is the case of the first ACT1 actuator. The latter therefore receives the message sent by the transmitter SCN1 during a step 113 and stores the identifier @ SCN1A transmitted in this message. The transmitter SCN1 is then paired with the first actuator ACT1, as well as, in a manner equivalent to that described in connection with the first actuator, with all the actuators paired with the first emitter EMA.
  • the transmitter SCN1 thus establishes, in its memory MEM1, a correspondence table between the identifier that it has just transmitted @ SCN1A and the identifier @EMA of the transmitter that it has recorded.
  • the end of the double pairing process is marked by the step 116 of end of the dual pairing mode of the transmitter SCN1 and the step 117 of the end of the pairing mode of the first actuator ACT1.
  • the same method can be repeated for pairing the transmitter SCN1 with the actuators responding to the second emitter EMB, the transmitter then using a new identifier @ SCN1B among the free identifiers that it has.
  • a pairing method could be realized from two programming buttons at the SCN1 transmitter, one corresponding to a programming with transmission of its own identifier and the other to a programming button for learning the program. id. The installer must activate both buttons in a particular sequence that allows him to recreate what has been described automatically above.
  • the purpose of this preliminary pairing is therefore the construction of a correspondence table between different identifiers associated with the transmitter SCN1 and identifiers of transmitters in the home automation system.
  • the table of the figure 3 illustrates the contents of the memories associated with the different actuators.
  • the first actuator ACT1 is paired with the emitter EMA and with the transmitter SCN1 which it knows by a first identifier @ SCN1A
  • the second actuator ACT2 with the emitter EMB and with the transmitter SCN1 which it knows by a second identifier @ SCN1 B.
  • the organization chart of the figure 4 illustrates the construction of a scenario.
  • the user has two buttons for defining a scenario, called “ear buttons", SCN1 + and SCN1-.
  • a step 201 the user activates the SCN1 + button for adding an actor to the scenario.
  • the transmitter SCN1 then goes into command listening mode during a step 202.
  • a movement command from one of the transmitters known to the SCN transmitter for example a rising command from the transmitter EMA.
  • the command listening mode transmitter SCN1 receives this command in a step 206 and is able to distinguish, during a step 208, the source (identifier @EMA) and the content of the command, that is, ie, the order, especially in this case, the "Ascent" command issued in step 204.
  • the command therefore translates what must execute the actuator in response to a request from the user such as pressing a given key of the issuer of orders.
  • the command is independent of the receiver of the signal and the identifier of the transmitter.
  • a step 210 it then associates in a scenario table the command to the identifier of the issuer @EMA and consequently, using the correspondence table, to the identifier @ SCN1A.
  • the transmitter then leaves the listening mode during a step 216 (this possibly on manual validation action by the installer).
  • the command sent by the first transmitter is received in parallel during a step 211 and executed during a step 213 by the actuators that recognize the identifier @EMA transmitted in the command signal.
  • a new activation of the addition button SCN1 + makes it possible to record another control relation.
  • the transmitter does not immediately or automatically leave the listening mode and if a new order is issued by another transmitter, another control relationship can be recorded.
  • the EMB transmitter is activated to control the actuators with which it is paired to a predetermined intermediate position and recorded at the actuator.
  • the command listening mode transmitter SCN1 receives this command and is able to distinguish the source (identifier @EMB) and the contents of the order, that is, the command "Intermediate position". , equivalent to a movement command to the predetermined intermediate position.
  • the scenario table corresponds to that of the figure 5 .
  • the figure 6 then illustrates the command mode in the form of scenario using the transmitter SCN1 and the elements of the system as linked according to the table of the figure 2 .
  • the transmitter When pressing the SCN1 L scenario start key during a step 301, the transmitter enters a scenario start mode (step 302). It selects the orders to be issued in the scenario table associated with the launch button during a step 304. During a step 305, the transmitter sends the set of selected orders to the various elements of the system. This set of orders includes the commands and the different identifiers of the transmitter that were previously registered at the actuator level.
  • the transmitter sends a first order containing its first identifier @ SCN1A and a rising command and a second command containing its second identifier @ SCN1 B and a movement command to an intermediate position.
  • a single press on the transmitter's scenario start key therefore potentially triggers a plurality of commands transmitted by the transmitter.
  • the first actuator ACT1 receives during a step 310 the control signals and identifies (step 311) that one of the commands is addressed to him by recognizing the identifier @ SCN1A. In a step 312, the actuator executes the command associated with the identifier @ SCN1A: the screen SCR1 is driven up.
  • the actuator ACT2 receives during a step 320 the control signals and identifies (step 321) that one of the commands is addressed to him by recognizing the identifier @ SCN1 B.
  • the actuator executes the command associated with the identifier @ SCN1B: the screen SCR2 is driven to its intermediate position.
  • the transmitter SCN1 operates according to the same radio communication protocol as the transmitters of the home automation system 1. As a result, the control commands of the transmitter SCN1 are secured (address with rotating code and encryption).
  • Changing a scenario is also possible in a very simple and intuitive way.
  • the addition of a new actor in the scenario is done from the add button to the SCN1 + scenario as previously described.
  • a new actor can be added (to the extent of the transmitter's available identifiers) or removed at any time.
  • the user has a second withdrawal button SCN1- scenario, allowing the removal of an actor scenario.
  • the user activates the button SCN1- for removing an actor from the scenario.
  • the transmitter SCN1 then goes into control listening mode.
  • the user gives a movement order to the actuator or actuators he wishes to remove from the scenario from the corresponding transmitter, for example a rising order from the transmitter EMA.
  • This order is received and executed by the actuators which recognize the identifier @EMA transmitted in the command signal.
  • the SCN1 transmitter in command listening mode also receives this command and is able to distinguish the source (@EMA identifier). It then removes from the scenario table the command to the identifier of the issuer @EMA and consequently, by using the correspondence table, to the identifier @ SCN1A. If the relation between the command and the identifier is not in the table, an error message in the form of a luminous indication may be sent to the user.
  • Controls for sunshade or sunshade actuators are Open / Close / Stop commands. There can therefore be in the same scenario a first order to an actuator and a second order to the same actuator. In this respect, another embodiment will be described later.
  • various equipment may be involved in a scenario as described in this application and it is possible to associate in the scenario table two different identifiers with two different orders. from the same transmitter (for example an order of lighting of a lamp followed by an order of variation of the luminous intensity).
  • the transmitter Once the transmitter is paired with different actuators, it has a table containing relations between a particular identifier of the transmitter and an issuer identifier. When listening to a new command to be added to the scenario, the order issued in the command is entered in the table, instead of the identifier of the corresponding issuer.
  • the scenario table therefore only includes relations between an order and a particular identifier of the transmitter.
  • a transmitter may include several scenario start buttons.
  • each scenario is defined according to a table of its own and in which the user can record different relationships.
  • Each scenario button also has two functions: in normal operating mode, activating a scenario button triggers the scenario as defined in the corresponding scenario table. In listening mode, that is to say within a certain period of time following the activation of a scenario definition button, the activation of a scenario button makes it possible to select a scenario to be modified.
  • the "ear buttons" are therefore advantageously common to all the scenario buttons.
  • a list of identifiers available is dedicated to each scenario.
  • Various sensors and automatisms can be associated with the transmitter and trigger the recorded scenarios according to detected parameters, for example a clock, a solar collector, a temperature sensor).
  • a first scenario key can be assigned to a "sun” scenario and a second to a "no sun” scenario.
  • the first scenario is triggered automatically, and when the sun disappears, the second scenario is started.
  • the automation can be activated or deactivated by means of a selection button and the "sun” or “no sun” scenario commands can be triggered by manual activations of the scenario start buttons.
  • the listening function of the transmitter being implemented manually, only during the creation or modification of a scenario, it does not penalize the energy resources of the nomadic transmitter.
  • the identifier registration method Since the identifier registration method has a double pairing, although realized in a single maneuver, it is the identifier or the own identifiers of the transmitter which is addressed or are addressed thereafter to the receivers, with the rotating code or the rotary codes managed by this transmitter. This one does not have to listen permanently, outside the phases of scenario building. A permanent listening would be essential if it were to replace each transmitter and synchronize its rotating codes on those of different transmitters.
  • a visual indicator indicates the state of the transmitter (normal operating mode / listening mode).
  • the transmitter does not require a very advanced LCD screen display function.
  • a simple LED may suffice to provide any feedback to the user of the transmitter. Only a few action buttons are enough.
  • models of transmitters operating according to the invention may include a more advanced user interface, in particular to introduce temporal sequences between the different commands of the scenario.
  • a transmitter or transmitter When a transmitter or transmitter is described in this description by its identifier, it is the fixed part of the multi-bit coded address and includes the fixed part and a code rotating at each use. of the issuer to transmit an order. This address helps to ensure the security of the system. Thus, the same identifier can not be reused by a second transmitter to drive an actuator without risk of falling outside the range of rotating code accepted by the actuator.
  • the described method refers to a correspondence relation between an issuer identifier and a particular identifier of the transmitter, as well as to a control relationship between a command previously issued by the transmitter and the particular identifier of the transmitter. This equates to a relationship between the command, the identifier of the transmitter and the particular identifier of the transmitter.
  • the method of configuring a scenario comprises a step in which not only association relationships between specific identifiers of the transmitter and commands are recorded, but also the time intervals separating the various signals containing these commands. received by the transmitter. This implies that the transmitter includes a clock. Subsequently, when the scenario is started by action on the transmitter, the various signals including the various commands are sent respecting the previous time sequence.
  • the man-machine interface of the transmitter may include means for entering delay values separating the signal transmissions of the same scenario.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Selective Calling Equipment (AREA)
  • Transmitters (AREA)
  • Radio Relay Systems (AREA)
  • Communication Control (AREA)
  • Small-Scale Networks (AREA)

Claims (10)

  1. Verfahren zur Konfiguration eines Befehlsübermittlers (SCN1), genannt Transmitter, in einer haustechnischen Anlage, welche einen Befehlssender (EMA), genannt Sender, sowie einen Befehlsempfänger (R1), genannt Empfänger, aufweist, mit dem der Sender korrespondiert, wobei die Geräte dazu bestimmt sind, über elektromagnetische Signale einseitig gerichtet miteinander zu kommunizieren, wobei der Transmitter einen Speicher (MEM1), ein Mittel zum Senden elektromagnetischer Signale (TEM1) sowie ein Mittel zum Empfang elektromagnetischer Signale (TRM1) aufweist, und wobei das Verfahren folgende Schritte enthält:
    - Aktivierung des Mittels zum Empfang elektromagnetischer Signale im Transmitter,
    - Aktivierung des Senders zum Senden eines für den Empfänger bestimmten Signals, welches eine Kennung (@EMA) des Senders sowie einen Befehl enthält,
    - Empfang des Signals im Transmitter,
    dadurch gekennzeichnet, dass das Verfahren weiterhin umfasst:
    - eine vorgängige Phase zum Speichern einer Entsprechungsbeziehung zwischen der Kennung des Senders und einer Sonderkennung des Transmitters (@SCN1A) und Übermittlung dieser Sonderkennung zum Empfänger, und
    - einen Schritt zum Speichern einer Zuordnungsbeziehung zwischen dem im Signal enthaltenen Befehl und der Sonderkennung des Transmitters im Speicher (MEM1) des Transmitters.
  2. Verfahren zur Konfiguration nach vorstehendem Anspruch, dadurch gekennzeichnet, dass die vorgängige Phase zum Speichern der Entsprechungsbeziehung die folgenden Schritte aufweist:
    - Aktivierung des Mittels zum Empfang elektromagnetischer Signale im Transmitter;
    - Aktivierung des Senders zum Senden eines Signals zum Abstimmen des Senders mit dem Empfänger, um diesen in einen Abstimmmodus zu versetzen,
    - Empfang des Signals durch den Transmitter,
    - nach diesem Empfang des Signals und wenn sich der Empfänger immer noch in einem Abstimmmodus befindet, Ausgabe eines Abstimmbefehls, welcher eine Sonderkennung des Transmitters enthält, durch den Transmitter,
    - Empfang und Speicherung der Sonderkennung des Transmitters im Empfänger.
  3. Verfahren zur Konfiguration nach vorstehendem Anspruch, dadurch gekennzeichnet, dass das Abstimmsignal eine Kennung des Senders enthält, und dass das Verfahren einen Schritt aufweist, bei dem nach dem Empfang des Signals im Transmitter dieser die Kennung des Senders speichert und diese Kennung des Senders der Sonderkennung des Transmitters zuordnet.
  4. Verfahren zur Konfiguration nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass es das Löschen einer Zuordnungsbeziehung zwischen einem Befehl und der Sonderkennung des Transmitters in einem Speicher des Transmitters umfasst.
  5. Verfahren zur Konfiguration nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass es vor der Speicherung einer Zuordnungsbeziehung zwischen einem Befehl und der Sonderkennung des Transmitters einen Schritt aufweist, bei dem bereits gespeicherte Zuordnungsbeziehungen überprüft werden und Informationen zurückgegeben werden, wenn eine Beziehung, welche diese Sonderkennung betrifft, bereits gespeichert ist.
  6. Verfahren zur Konfiguration nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass bei der Speicherung einer Zuordnungsbeziehung zwischen einem Befehl und der Sonderkennung des Transmitters ein Teilschritt ausgeführt wird, bei dem bereits gespeicherte Beziehungen überprüft werden und die Speicherung einer Zuordnungsbeziehung, welche diese Sonderkennung betrifft und schon vorliegt, gelöscht wird.
  7. Verfahren zum Betrieb eines Befehlstransmitters (SCN1) in einer haustechnischen Anlage, welche einen Befehlssender (EMA) und einen Befehlsempfänger (R1) aufweist, mit dem der Sender korrespondiert, wobei Sender und Empfänger dazu bestimmt sind, über elektromagnetische Signale einseitig gerichtet miteinander zu kommunizieren, und wobei der Transmitter ein Mittel zum Senden elektromagnetischer Signale (TEM1) sowie ein Mittel zum Empfang elektromagnetischer Signale (TER1) aufweist, dadurch gekennzeichnet, dass das Verfahren folgende Schritte aufweist:
    - ein Konfigurationsverfahren nach einem der Ansprüche 1 bis 6,
    - ein Befehlsverfahren, bei welchem der Befehlstransmitter nach seiner Inbetriebsetzung an den Befehlsempfänger mindestens ein Signal richtet, das
    - eine Sonderkennung des Befehlstransmitters und
    - einen Befehl
    enthält, wobei für diese Objekte während der Konfigurationsprozedur eine Zuordnungsbeziehung im Speicher (MEM1) des Transmitters abgelegt wurde.
  8. Verfahren zum Betrieb nach vorstehendem Anspruch, dadurch gekennzeichnet, dass die Inbetriebsetzung des Befehlstransmitters durch die Betätigung einer Taste zur Einleitung eines Betriebsablaufs (SCN1L) bewirkt wird.
  9. Befehlstransmitter (SCN1), mit einem Mittel (TEM1) zur Abgabe von elektromagnetischen Signalen und einem Mittel (TER1) zum Empfang von elektromagnetischen Signalen, dadurch gekennzeichnet, dass er Hardwaremittel (ULT1, MEM1, K1) und Softwaremittel zur Ausführung des Verfahrens nach einem der vorstehenden Ansprüche enthält.
  10. Befehlstransmitter nach Anspruch 9, dadurch gekennzeichnet, dass er zur Verwendung in einer haustechnischen Anlage vorgesehen ist, welche mindestens einen Befehlssender (EMA) und mindestens einen Befehlsempfänger (R1) aufweist, mit dem der Sender korrespondiert, wobei Sender und Empfänger dazu eingerichtet sind, über elektromagnetische Signale einseitig gerichtet miteinander zu kommunizieren, und dass der Transmitter folgende Teile aufweist:
    - eine Tabelle, die sich in einem Speicher (MEM1) befindet und worin Zuordnungsbeziehungen zwischen einem Befehl, der vom Befehlssender ausgegeben wird, und einer Sonderkennung des Transmitters gespeichert werden können, und
    - mindestens eine Abhörtaste (SCN1+), deren handbetätigte Aktivierung das Abhören eines Signals zur Folge hat, welches von einem Sender ausgegeben wird, wobei beim Empfang eines solchen Signals eine Zuordnungsbeziehung zwischen der Sonderkennung des Transmitters, welcher dem Sender entspricht, und dem Befehl definiert wird, welcher Bestandteil des Signals ist, sowie die Speicherung oder das Löschen dieser Zuordnungsbeziehung in der Tabelle bewirkt.
EP08150495A 2007-01-26 2008-01-22 Verfahren zur Konfiguration einer Befehlsübermittlungsanlage in einem Heimsystem Not-in-force EP1950722B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR0700553A FR2911986B1 (fr) 2007-01-26 2007-01-26 Procede de configuration d'un transmetteur d'ordres dans un systeme domotique.

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EP1950722A1 EP1950722A1 (de) 2008-07-30
EP1950722B1 true EP1950722B1 (de) 2010-09-22

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FR3032993B1 (fr) * 2015-02-23 2017-03-31 Simu Procede d'appairage d'un actionneur avec au moins un emetteur sans fil, procede de commande d'un actionneur et installation de fermeture comprenant un tel actionneur
CN111202417A (zh) * 2019-08-16 2020-05-29 宁波森瑞机电技术有限公司 一种窗帘遥控器及其遥控行程设置方法

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Publication number Priority date Publication date Assignee Title
JPH01218296A (ja) * 1988-02-26 1989-08-31 Nec Home Electron Ltd 学習機能付きリモコン受信器
DE19616399A1 (de) 1996-04-24 1997-10-30 Marantec Antrieb Steuerung Fernbedienung
FR2761183B1 (fr) 1997-03-24 1999-05-28 Somfy Dispositif de commande d'un actionneur telecommande
FR2847060B1 (fr) * 2002-11-12 2005-02-11 Somfy Sas Procede de securisation du mode d'enregistrement d'un dispositif pilotant un element assurant la securite et/ou le confort d'un batiment
US8264333B2 (en) * 2003-02-21 2012-09-11 Johnson Controls Technology Company Trainable remote controller and method for determining the frequency of a learned control signal
FR2853981B1 (fr) * 2003-04-15 2007-02-02 Somfy Procede de fonctionnement d'un emetteur d'ordres
US7120430B2 (en) * 2003-07-30 2006-10-10 Lear Corporation Programmable interoperable appliance remote control

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FR2911986B1 (fr) 2009-05-08
DE602008002608D1 (de) 2010-11-04
EP1950722A1 (de) 2008-07-30
FR2911986A1 (fr) 2008-08-01

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