EP3504393B1 - Motorisierte antriebsvorrichtung für eine schliess- oder sonnenschutzeinheit und entsprechende einheit - Google Patents

Motorisierte antriebsvorrichtung für eine schliess- oder sonnenschutzeinheit und entsprechende einheit Download PDF

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Publication number
EP3504393B1
EP3504393B1 EP17755206.4A EP17755206A EP3504393B1 EP 3504393 B1 EP3504393 B1 EP 3504393B1 EP 17755206 A EP17755206 A EP 17755206A EP 3504393 B1 EP3504393 B1 EP 3504393B1
Authority
EP
European Patent Office
Prior art keywords
battery
monitoring unit
electromechanical actuator
drive device
power supply
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP17755206.4A
Other languages
English (en)
French (fr)
Other versions
EP3504393A1 (de
Inventor
Pierre-Emmanuel Cavarec
Vincent Depreux
Fabien ROUSSEAU
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Somfy Activites SA
Original Assignee
Somfy Activites SA
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Filing date
Publication date
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Publication of EP3504393A1 publication Critical patent/EP3504393A1/de
Application granted granted Critical
Publication of EP3504393B1 publication Critical patent/EP3504393B1/de
Active legal-status Critical Current
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Classifications

    • 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
    • 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
    • E06B9/24Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
    • E06B2009/2476Solar cells
    • 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
    • E06B2009/6809Control
    • E06B2009/6818Control using sensors
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C2201/00Transmission systems of control signals via wireless link
    • G08C2201/10Power supply of remote control devices
    • G08C2201/11Energy harvesting
    • G08C2201/114Solar power

Definitions

  • the present invention relates to a motorized drive device for a home automation system for closing or protecting the sun.
  • the present invention also relates to a home automation system for closing or sun protection comprising a screen which can be rolled up, by means of such a motorized drive device, on a winding tube driven in rotation by an electromechanical actuator.
  • the present invention relates to the field of concealment devices comprising a motorized drive device setting a screen in motion, between at least a first position and at least a second position.
  • a motorized drive device comprises an electromechanical actuator of a movable closing, concealment or sun protection element such as a shutter, a door, a grille, a blind or any other equivalent material, hereinafter called a screen. .
  • This motorized drive device comprises an electromechanical actuator, an autonomous electric power supply device and a monitoring unit.
  • the autonomous electric power supply device comprises a battery.
  • the electromechanical actuator is electrically connected to the battery.
  • the monitoring unit determines a magnitude of the power supply to the electromechanical actuator from the battery.
  • the monitoring unit is electrically connected, on the one hand, to the battery and, on the other hand, to the electromechanical actuator.
  • the monitoring unit is integrated with an electronic control unit of the electromechanical actuator.
  • this motorized drive device has the drawback of only allowing the processing of the magnitude of the electrical supply to the electromechanical actuator by the battery from the electronic control unit of the electromechanical actuator.
  • the result of the treatment of the magnitude of the electric power supply of the electromechanical actuator by the battery can only be transmitted by a wireless link by a wireless communication module of the electromechanical actuator to a remote unit. , according to a communication protocol implemented in the wireless communication module of the electromechanical actuator.
  • the object of the present invention is to resolve the aforementioned drawbacks and to propose a motorized drive device for a home automation system for closing or sun protection, as well as a home automation system for closing or sun protection comprising such a drive device.
  • motorized making it possible to transmit signals, depending on a quantity of the power supply of an electromechanical actuator by a battery, by a wireless link to a remote unit, so as to remotely monitor the operation of the drive device motorized, for home automation systems already in service or new home automation systems.
  • the motorized drive device further comprises a unit for monitoring a quantity of the power supply to the electromechanical actuator by the battery, the monitoring unit being independent of the battery and of the electromechanical actuator and external to the battery and to the electromechanical actuator, the monitoring unit being electrically connected, on the one hand, to the battery and, on the other hand, to the electromechanical actuator.
  • the monitoring unit comprises a housing, which is separate from a battery housing and separate from the housing of the electromechanical actuator.
  • the monitoring unit includes another wireless communication module, this other wireless communication module being configured to communicate with a remote unit.
  • the monitoring unit is external to the battery and to the actuator electromechanical, which makes it possible to install it in home automation systems already in service or in new home automation systems.
  • This monitoring unit includes the wireless communication module to transmit signals, depending on a magnitude of the power supply of the electromechanical actuator from the battery, to the remote unit, which allows the operation to be monitored remotely. of the motorized drive device.
  • the monitoring unit can be installed in a motorized drive device of an existing home automation installation comprising an electromechanical actuator, equipped or not with a communication module, and an autonomous electrical power supply device. equipped with a battery.
  • the wireless communication module of the monitoring unit makes it possible to transmit signals according to a wireless communication protocol associated with the monitoring unit and which can be independent of a wireless communication protocol of a module. wireless communication of the electromechanical actuator of the motorized drive device.
  • the monitoring unit makes it possible to remotely monitor the operation of the motorized drive device and, more particularly, that of the device for supplying autonomous electrical energy, in particular the state of charge of the battery.
  • the monitoring unit which is independent of the battery and the electromechanical actuator, can be installed temporarily or permanently in the motorized drive device.
  • the monitoring unit comprises at least one sensor for measuring the magnitude of the electrical supply to the electromechanical actuator by the battery and the housing of the monitoring unit contains the other wireless communication module and sensor.
  • the battery is electrically connected to the monitoring unit by a first electrical supply cable, the first electrical supply cable comprising a first electrical connector connected to a first electrical connector of the monitoring unit.
  • the electromechanical actuator is electrically connected to the monitoring unit by a second power supply cable, the second power supply cable comprising an electrical connector connected to a second electrical connector of the monitoring unit.
  • the device for supplying Autonomous electrical energy comprises at least one photovoltaic cell.
  • the photovoltaic cell is electrically connected to the battery.
  • the photovoltaic cell is electrically connected directly to the battery, without going through the monitoring unit.
  • the photovoltaic cell is electrically connected to the battery by a third electrical supply cable, the third electrical supply cable comprising an electrical connector connected to a second electrical connector of the first electrical supply cable.
  • the photovoltaic cell is electrically connected to the battery through the monitoring unit.
  • the photovoltaic cell is electrically connected to the battery by a third electrical supply cable, the third electrical supply cable comprising an electrical connector connected to a third electrical connector of the monitoring unit.
  • the monitoring unit is supplied with electrical energy via the battery of the autonomous electrical energy supply device.
  • the monitoring unit is supplied with electrical energy via an additional battery, the additional battery for supplying electrical energy to the monitoring unit being independent of the supply battery. into electrical energy from the electromechanical actuator.
  • the wireless communication module of the monitoring unit comprises a transmitter.
  • the transmitter is configured to transmit signals using a wireless communication protocol designed to allow long distance communications at low speed.
  • the wireless communication module of the monitoring unit also comprises a receiver.
  • the receiver is configured to receive signals using the wireless communication protocol designed to allow long distance communications at low speed.
  • an electrical connection between the monitoring unit and the electromechanical actuator is also a wired communication medium, so as to set the parameters.
  • electromechanical actuator by means of data received by a receiver of the wireless communication module of the monitoring unit from the remote unit.
  • the present invention aims, according to a second aspect, a home automation installation closing or sun protection comprising a screen which can be rolled up by means of a motorized drive device, according to the invention and as mentioned above, on a winding tube driven in rotation by an electromechanical actuator.
  • This home automation installation has characteristics and advantages similar to those described above in relation to the motorized drive device according to the invention.
  • a home automation system according to the invention and installed in a building comprising an opening 1, window or door, equipped with a screen 2 belonging to a concealment device 3, in particular a motorized roller shutter.
  • the concealment device 3 can be a rolling shutter, a fabric blind or with adjustable slats, or even a rolling gate.
  • the present invention applies to all types of concealment device.
  • the screen 2 of the concealment device 3 is wound on a winding tube 4 driven by a motorized drive device 5 and movable between a rolled-up position, in particular high, and an unwound position, in particular low.
  • the mobile screen 2 of the concealment device 3 is a closing, concealing and / or sun protection screen, winding on the winding tube 4, the internal diameter of which is substantially greater than the external diameter of an electromechanical actuator 11, so that the electromechanical actuator 11 can be inserted into the winding tube 4, when assembling the concealment device 3.
  • the motorized drive device 5 comprises the electromechanical actuator 11, in particular of the tubular type, making it possible to set the winding tube 4 in rotation, so as to unwind or wind the screen 2 of the concealment device 3.
  • the concealment device 3 comprises the winding tube 4 for winding the screen 2, where, in the mounted state, the electromechanical actuator 11 is inserted into the winding tube 4.
  • the roller shutter which forms the concealment device 3
  • the roller shutter comprises an apron comprising horizontal slats articulated to each other, forming the screen 2 of the roller shutter 3, and guided by two lateral slides 6. These slats are contiguous when the shutter 2 of the roller shutter 3 reaches its lower, unrolled position.
  • the high rolled-up position corresponds to the bearing of an L-shaped final end blade 8 of the shutter 2 of the rolling shutter 3 against an edge of a box 9 of the rolling shutter 3
  • the lower unrolled position corresponds to the resting of the final end blade 8 of the shutter 2 of the roller shutter 3 against a threshold 7 of the opening 1.
  • the first blade of the roller shutter 3, opposite the end blade, is connected to the winding tube 4 by means of at least one articulation 10, in particular a fastening part in the form of a strip.
  • the winding tube 4 is arranged inside the box 9 of the roller shutter 3.
  • the apron 2 of the roller shutter 3 winds up and unwinds around the winding tube 4 and is housed at least partly inside the roller shutter. inside the trunk 9.
  • the box 9 is placed above the opening 1, or else in the upper part of the opening 1.
  • the motorized drive device 5 is controlled by a control unit.
  • the control unit can be, for example, a local control unit 12, where the local control unit 12 can be wired or wirelessly connected to a central control unit 13.
  • the central control unit 13 controls the local control unit 12, as well as other similar local control units distributed in the building.
  • the central control unit 13 can be in communication with a remote weather station outside the building, including, in particular, one or more sensors that can be configured to determine, for example, a temperature, a brightness, or even a speed. Wind.
  • a remote control 14 which may be a type of local control unit, and provided with a control keyboard, which comprises selection and display means, further allows a user to intervene on the actuator electromechanical 11 and / or the central control unit 13.
  • the motorized drive device 5 is preferably configured to execute the commands for unwinding or winding the screen 2 of the concealment device 3, which can be emitted, in particular, by the remote control 14.
  • the electromechanical actuator 11 comprises an electric motor 16.
  • the electric motor 16 comprises a rotor and a stator, not shown and positioned coaxially about an axis of rotation X, which is also the axis of rotation of the tube. winding 4 in mounted configuration of the motorized drive device 5.
  • Control means of the electromechanical actuator 11 allowing the displacement of the screen 2 of the concealment device 3, consist of at least one electronic control unit 15.
  • This electronic control unit 15 is capable of operating the electric motor 16 of the electromechanical actuator 11, and, in particular, allowing the supply of electric energy to the electric motor 16.
  • the electronic control unit 15 controls, in particular, the electric motor 16, so as to open or close the screen 2, as described above.
  • the electronic control unit 15 also comprises a communication module 27, in particular for receiving control commands, as illustrated on figure 4 , the control orders being issued by a command transmitter, such as the remote control 14 intended to control the electromechanical actuator 11.
  • the communication module 27 of the electronic control unit 15 is of the wireless type.
  • the communication module 27 is configured to receive radio control commands.
  • the communication module 27 can also allow the reception of control commands transmitted by wired means.
  • the central control unit 13, the electronic control unit 15 or the local control unit 12 can also be in communication with a server 28, so as to control the electromechanical actuator 11 according to data made available. remotely via a communication network, in particular an Internet network which can be linked to the server 28.
  • the control means of the electromechanical actuator 11 comprise hardware and / or software means.
  • the hardware means can comprise at least one microcontroller.
  • the electromechanical actuator 11 is supplied with electrical energy by means of at least one battery 24.
  • battery 24 is used to designate one or more batteries depending on the configuration of an autonomous electric power supply device 26, to which the battery 24 belongs.
  • the battery 24 can be recharged by at least one photovoltaic cell 25.
  • the expression “the photovoltaic cell 25” is used to designate one or more photovoltaic cells depending on the configuration of the autonomous electric power supply device 26.
  • the electromechanical actuator 11 makes it possible to move the screen 2 of the concealment device 3.
  • the electromechanical actuator 11 comprises an electric power supply cable 18 allowing it to be supplied with electric energy from the battery 24.
  • a casing 17 of the electromechanical actuator 11 is preferably of cylindrical shape.
  • the housing 17 is made of a metallic material.
  • the material of the housing of the electromechanical actuator is not limiting and may be different. It may be, in particular, a plastic material.
  • the electromechanical actuator 11 also comprises a gear reduction device 19, a brake 29 and an output shaft 20.
  • the electromechanical actuator 11 can also include an end-of-travel and / or obstacle detection device, which can be mechanical or electronic.
  • the electric motor 16, the brake 29 and the gear reduction device 19 are arranged inside the casing 17 of the electromechanical actuator 11.
  • the output shaft 20 of the electromechanical actuator 11 is arranged inside the winding tube 4, and at least partly outside the casing 17 of the electromechanical actuator 11.
  • the output shaft 20 of the electromechanical actuator 11 is coupled by a connecting element 22 to the winding tube 4, in particular a connecting element in the form of a wheel.
  • the electromechanical actuator 11 also comprises a closure element 21 of one end of the housing 17.
  • the casing 17 of the electromechanical actuator 11 is fixed to a support 23, in particular a cheek, of the case 9 of the concealment device 3 by means of the closure element 21 forming a torque support, in particular a shutter and torque recovery head.
  • the shutter element 21 forms a torque support
  • the shutter element 21 is also called a fixed point of the electromechanical actuator 11.
  • the electronic control unit 15 is arranged, in other words integrated, inside the casing 17 of the electromechanical actuator 11.
  • the motorized drive device 5 comprises the autonomous electric power supply device 26.
  • the autonomous electrical energy supply device 26 comprises the battery 24.
  • the autonomous electrical power supply device 26 makes it possible to supply the electromechanical actuator 11 with electrical energy, without itself being electrically connected to the mains network.
  • the battery 24 is placed inside the box 9 of the concealment device 3.
  • the battery 24 is arranged outside the box 9.
  • the electromechanical actuator 11 is electrically connected to the battery 24. And, more particularly, the electronic control unit 15 of the electromechanical actuator 11 is electrically connected to the battery 24.
  • the motorized drive device 5 comprises a unit 30 for monitoring a quantity of the power supply of the electromechanical actuator 11 by the battery 24.
  • the monitoring unit 30 is electrically connected, on the one hand, to the battery 24 and, on the other hand, to the electromechanical actuator 11.
  • the monitoring unit 30 is independent of the battery 24 and of the electromechanical actuator 11, in particular from a structural point of view.
  • the monitoring unit 30 includes a wireless communication module 31.
  • the wireless communication module 31 is configured to communicate with a remote unit 12, 13, 28.
  • the Wireless communication module 31 is configured to communicate by radio signals.
  • the monitoring unit 30 is external to the battery 24 and to the electromechanical actuator 11, which makes it possible to install the latter in home automation systems already in service or in new home automation systems.
  • the monitoring unit 30 comprises the wireless communication module 31 for transmitting signals, depending on a magnitude of the power supply of the electromechanical actuator 11 by the battery 24, to the remote unit 12, 13, 28 , which makes it possible to remotely monitor the operation of the motorized drive device 5.
  • the monitoring unit 30 can be installed in a motorized drive device 5 of an existing home automation installation comprising an electromechanical actuator 11, equipped or not with a communication module, and a power supply device.
  • autonomous electrical energy 26 equipped with a battery 24.
  • the motorized drive device 5 can additionally comprise the monitoring unit 30 independent of the battery 24 and of the electromechanical actuator 11 without having to modify the motorized drive device 5 of a home automation system. existing, in particular without having to modify the electrical connection elements between the battery 24 and the electromechanical actuator 11.
  • the wireless communication module 31 of the monitoring unit 30 makes it possible to transmit signals according to a wireless communication protocol associated with the monitoring unit 30 and which can be independent of a wireless communication protocol of the. wireless communication module 27 of the electromechanical actuator 11 of the motorized drive device 5.
  • the monitoring unit 30 makes it possible to remotely monitor the operation of the motorized drive device 5 and, more particularly, that of the autonomous electric power supply device 26, in particular the state of charge of the battery. 24.
  • the monitoring unit 30, which is independent of the battery 24 and the electromechanical actuator 11, can be installed temporarily or permanently in the motorized drive device 5.
  • the monitoring unit 30 is arranged outside a housing 32 of the battery 24 and outside the housing 17 of the electromechanical actuator 11.
  • the magnitude measured by the monitoring unit 30 can be, in particular, a voltage or an intensity of the electric supply current of the electromechanical actuator 11 by the battery 24.
  • the remote unit is the server 28, in particular a server from the manufacturer of the motorized drive device 5.
  • the wireless communication module 31 of the monitoring unit 30 transmits signals to the server 28, so as to allow processing of the data contained by these signals, then possibly to transmit them to an installer in charge of maintenance. of the motorized drive device 5, or even to a user of the motorized drive device 5.
  • the remote unit is the central control unit 13 or the local control unit 12, in particular a smart phone.
  • the wireless communication module 31 of the monitoring unit 30 transmits signals to the central control unit 13 or to the local control unit 12, so as to allow processing of the data contained by these. signals, then transmit them to a user of the motorized drive device 5.
  • the wireless communication module 31 of the monitoring unit 30 comprises a transmitter.
  • the transmitter is configured to transmit signals according to a wireless communication protocol designed to allow long distance communications at a low rate.
  • Such a wireless communication protocol is generally LPWAN (acronym for the English term Low-Power Wide-Area Network).
  • the wireless communication module 31 of the monitoring unit 30, configured to transmit signals according to such a wireless communication protocol, can transmit data to the remote unit, in particular the server 28, without having to use a local 12 or central 13 control unit of the home automation installation or even an internet access point of the building in which the home automation system is installed.
  • the wireless communication module 31 of the monitoring unit 30 also comprises a receiver.
  • the receiver is configured to receive signals according to the wireless communication protocol designed to allow long distance communications at a low rate.
  • the monitoring unit 30, in particular the wireless communication module 31 of the monitoring unit 30, is configured to transmit data. periodically to the remote unit 12, 13, 28.
  • the remote monitoring of the operation of the motorized drive device 5 and, more particularly, that of the autonomous electric power supply device 26, in particular the state of charge of the battery 24, can be implemented at intervals. regular, for example over the course of a day, for a predetermined period of time, which may be several months, or even during the lifetime of the motorized drive device 5, while minimizing the consumption of electrical energy, in particular using wireless communication protocol designed to allow long distance communications at low speed.
  • the wireless communication module 31 of the monitoring unit 30 is configured to receive data from a sensor 47, in particular an opening detector or a movement detector, and, optionally , transmit these data to the remote unit 12, 13, 28 and / or to the electronic control unit 15 of the electromechanical actuator 11.
  • the wireless communication module 31 of the monitoring unit 30 retrieves data from the sensor 47 and can relay them to the remote unit 12, 13, 28 and / or to the electronic control unit 15 of the. 'electromechanical actuator 11.
  • the wireless communication between the wireless communication module 31 of the monitoring unit 30 and the sensor 47 is, preferably, implemented by means of the wireless communication protocol designed to allow long distance communications at a low rate.
  • the senor 47 can be installed in a room remote from the building, in which is / are installed one or more concealment devices 3, as well as the local control unit 12 and the control unit. central control 13.
  • the remote room can be, for example, a cellar, a garden shed or even a garage remote from the building.
  • the senor 47 can be referred to as an isolated sensor.
  • the monitoring unit 30 comprises a housing 33.
  • the housing 33 of the monitoring unit 30 is distinct from the housing 32 of the battery 24 and distinct from the housing 17 of the electromechanical actuator 11.
  • the monitoring unit 30 comprises a sensor 34 for measuring the magnitude of the power supply to the electromechanical actuator 11 by the battery 24.
  • the senor 34 of the monitoring unit 30 can comprise either a voltage divider, a comparator and a microcontroller, one of its inputs of which is provided with an analog-to-digital converter, in the case of where the measured quantity is a voltage, that is to say a shunt resistor and a microcontroller of which one of its inputs is provided with an analog-to-digital converter, in the case where the measured quantity is a current.
  • the monitoring unit 30 can, in particular, make it possible to measure an output voltage of the battery 24, to monitor a state of charge of the battery 24 or a temperature of the battery 24.
  • the battery 24 is electrically connected to the monitoring unit 30 by a first electrical supply cable 35.
  • the first electrical supply cable 35 comprises a first electrical connector 36 connected to a first electrical connector 37 of the monitoring unit. monitoring 30.
  • the electromechanical actuator 11 is electrically connected to the monitoring unit 30 by the second power supply cable 18.
  • the second power supply cable 18 includes an electrical connector 38 connected to a second electrical connector 39 of the cable. monitoring unit 30.
  • the first and second electrical connectors 37, 39 of the monitoring unit 30 are electrical connectors of the same type as the electrical connectors 36, 38 of the first and second electrical supply cables 35, 18, so as to allow a assembly of the motorized drive device 5, in particular an electrical connection of the electromechanical actuator 11 and of the battery 24, with or without the monitoring unit 30.
  • the autonomous electrical energy supply device 26 comprises the photovoltaic cell 25.
  • the photovoltaic cell 25 is electrically connected to the battery 24.
  • the monitoring unit 30 is also independent of the photovoltaic cell 25.
  • the monitoring unit 30 is also external to the photovoltaic cell 25.
  • the monitoring unit 30, in particular the housing 33 of the monitoring unit 30, is also arranged outside the housing 46 of the photovoltaic cell 25.
  • the photovoltaic cell 25 is electrically connected to the battery 24 via the monitoring unit 30.
  • the photovoltaic cell 25 is electrically connected to the battery 24 by a third electrical supply cable 40.
  • the third supply cable electrical 40 comprises an electrical connector 41 connected to a third electrical connector 42 of the monitoring unit 30.
  • the electrical connectors 37, 42 of the monitoring unit 30 are also electrical connectors of the same type as the electrical connectors 36, 41 of the first and third electrical supply cables 35, 40, so as to allow assembly of the motorized drive device 5, in particular an electrical connection of the electromechanical actuator 11 and of the battery 24, with or without the monitoring unit 30, as well as with or without the photovoltaic cell 25.
  • the monitoring unit 30 is supplied with electrical energy via the battery 24 of the autonomous electrical energy supply device 26.
  • the battery 24 makes it possible to supply electrical energy on the one hand, the electromechanical actuator 11 and, on the other hand, the monitoring unit 30.
  • the monitoring unit 30 is simplified, since the latter does not have a built-in battery.
  • the battery 24 is of the rechargeable type and supplies the electromechanical actuator 11 with electrical energy.
  • the battery 24 is supplied with electrical energy by the photovoltaic cell 25.
  • the recharging of the battery 24 is implemented by solar energy by means of the photovoltaic cell 25.
  • the battery 24 can be recharged without having to remove part of the box 9 from the concealment device 3.
  • the motorized drive device 5 and, in particular, the photovoltaic cell 25 comprises charging elements configured to charge the battery 24 from the solar energy recovered by the photovoltaic cell 25.
  • the charging elements configured to charge the battery 24 from solar energy make it possible to convert the solar energy recovered by the photovoltaic cell 25 into electrical energy.
  • the autonomous electric power supply device 26 comprises a plurality of photovoltaic cells 25 constituting a photovoltaic panel.
  • the monitoring unit 30 is supplied with electrical energy via an additional battery, not shown.
  • the additional battery for supplying electrical energy to the monitoring unit 30 is independent of the battery 24 for supplying electrical energy to the electromechanical actuator 11.
  • the monitoring unit 30 has its own battery, in particular in the case where the autonomous electric power supply device 26 does not have a photovoltaic cell 25, allowing the battery 24 to be recharged. into electrical energy from the electromechanical actuator 11.
  • the supply of electrical energy to the electromechanical actuator 11 by the battery 24 can replace the supply of electrical energy to the electromechanical actuator 11 by an electrical energy supply network.
  • the supply of electrical energy to the electromechanical actuator 11 by the battery 24 makes it possible to dispense with a connection to the electrical energy supply network.
  • the electrical energy supply to the electromechanical actuator 11 is implemented, on the one hand, by an electrical energy supply network and, on the other hand, by the battery 24.
  • the supply of electrical energy to the electromechanical actuator 11 by the battery 24 makes it possible, in particular, to make up for an interruption of the electrical energy supply to the electromechanical actuator 11 by an electrical energy supply network. .
  • the electromechanical actuator 11 is then supplied with electrical energy, on the one hand, by means of an electrical supply cable connected to the electrical energy supply network and, on the other hand, by the battery 24.
  • the supply of electrical energy to the electromechanical actuator 11 by an electrical energy supply network makes it possible to recharge the battery 24, in particular when the battery 24 is insufficiently recharged by the photovoltaic cell 25.
  • the electrical connection between the monitoring unit 30 and the electromechanical actuator 11, produced by means of the power supply cable 18, is also a wired communication medium, so as to configure the electromechanical actuator 11 by means of data received by the receiver of the wireless communication module 31 of the monitoring unit 30 from the remote unit 12, 13, 28.
  • data received by the wireless communication module 31 of the monitoring unit 30 from the remote unit 12, 13, 28 can be transmitted to the electronic control unit 15 of the electromechanical actuator 11, in especially at low flow.
  • the rate of the wired communication protocol between the monitoring 30 and the electronic control unit 15 of the electromechanical actuator 11 depends on the rate of the wireless communication protocol between the remote unit 12, 13, 28 and the monitoring unit 30.
  • the data received by the wireless communication module 31 of the monitoring unit 30 can be transmitted wired to the electronic control unit 15 of the electromechanical actuator 11 in order to parameterize the latter, in particular to modify the sensitivity level of the wireless communication module 27 of the electronic control unit 15 of the electromechanical actuator 11.
  • the signals transmitted by the wireless communication module 31 of the monitoring unit 30 can, in particular, contain a value of the voltage of the battery 24, of the state of charge of the battery 24, of the temperature of the battery. 24, sunshine or a warning message.
  • the photovoltaic cell 25 is electrically connected directly to the battery 24.
  • the photovoltaic cell 25 is electrically connected to the battery 24 by a third electrical supply cable 43.
  • the third electrical supply cable 43 comprises an electrical connector 44 connected to a second electrical connector 45 of the first supply cable. electric 35.
  • the monitoring unit is external to the battery and to the electromechanical actuator, which makes it possible to install the latter in home automation systems already in service or in new home automation systems.
  • This monitoring unit includes the wireless communication module to transmit signals, depending on a magnitude of the power supply of the electromechanical actuator from the battery, to the remote unit, which allows the operation to be monitored remotely. of the motorized drive device.
  • the monitoring unit can be installed in a motorized drive device of an existing home automation installation comprising an electromechanical actuator, equipped or not with a communication module, and an autonomous electrical power supply device. equipped with a battery.
  • the wireless communication module of the monitoring unit makes it possible to transmitting signals according to a wireless communication protocol associated with the monitoring unit and which may be independent of a wireless communication protocol of a wireless communication module of the electromechanical actuator of the motorized drive device.
  • the monitoring unit makes it possible to remotely monitor the operation of the motorized drive device and, more particularly, that of the autonomous electric power supply device, in particular the state of charge of the battery.
  • the monitoring unit which is independent of the battery and the electromechanical actuator, can be installed temporarily or permanently in the motorized drive device.
  • the battery can be a unit battery or a group of batteries connected by means of an electrical insulator.

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  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Selective Calling Equipment (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Claims (14)

  1. Vorrichtung (5) zum motorisierten Antrieb für eine Hausautomatisierungsanlage zum Schließen oder Sonnenschutz, die mindestens umfasst:
    - einen elektromechanischen Stellantrieb (11), wobei der elektromechanische Stellantrieb (11) einen Elektromotor (16) und einen Kasten (17) umfasst,
    - eine elektronische Steuereinheit (15), wobei die elektronische Steuereinheit (15) dazu geeignet ist, den Elektromotor (16) des elektromechanischen Stellantriebs (11) in Betrieb zu versetzen, wobei die elektronische Steuereinheit (15) in dem Inneren des Kastens (17) des Stellantriebs (11) angeordnet ist und ein Kommunikationsmodul (27) umfasst,
    - eine autonome Stromversorgungsvorrichtung (26), wobei die autonome Stromversorgungsvorrichtung (26) mindestens eine Batterie (24) umfasst, wobei der elektromechanische Stellantrieb (11) elektrisch mit der Batterie (24) verbunden ist,
    dadurch gekennzeichnet, dass
    - die Vorrichtung (5) zum motorisierten Antrieb außerdem eine Einheit (30) zur Überwachung einer Größe der Stromversorgung des elektromechanischen Stellantriebs (11) durch die Batterie (24) umfasst,
    - die Überwachungseinheit (30) von der Batterie (24) und dem elektromechanischen Stellantrieb (11) unabhängig ist und außerhalb der Batterie (24) und des elektromechanischen Stellantriebs (11) liegt,
    - die Überwachungseinheit (30) elektrisch einerseits mit der Batterie (24) und andererseits mit dem elektromechanischen Stellantrieb (11) verbunden ist;
    - die Überwachungseinheit (30) ein Gehäuse (33) umfasst, das von einem Gehäuse (32) der Batterie (24) getrennt ist und von dem Kasten (17) des elektromechanischen Stellantriebs (11) getrennt ist; und
    - die Überwachungseinheit (30) ein anderes drahtloses Kommunikationsmodul (31) umfasst, wobei das andere drahtlose Kommunikationsmodul (31) dazu konfiguriert ist, mit einer Ferneinheit (12, 13, 28) zu kommunizieren.
  2. Vorrichtung (5) zum motorisierten Antrieb für eine Hausautomatisierungsanlage zum Schließen oder Sonnenschutz, nach Anspruch 1, dadurch gekennzeichnet, dass:
    - die Überwachungseinheit (30) mindestens einen Fühler (34) zum Messen der Größe der Stromversorgung des elektromechanischen Stellantriebs (11) durch die Batterie (24) umfasst, und
    - das Gehäuse (33) der Überwachungseinheit (30) das andere drahtlose Kommunikationsmodul (31) und den Fühler (34) enthält.
  3. Vorrichtung (5) zum motorisierten Antrieb für eine Hausautomatisierungsanlage zum Schließen oder Sonnenschutz nach Anspruch 1 oder Anspruch 2, dadurch gekennzeichnet, dass die Batterie (24) elektrisch mit der Überwachungseinheit (30) durch ein erstes Stromversorgungskabel (35) verbunden ist, wobei das erste Stromversorgungskabel (35) einen ersten elektrischen Steckverbinder (36) umfasst, der an einen ersten elektrischen Steckverbinder (37) der Überwachungseinheit (30) angeschlossen ist, und dass der elektromechanische Stellantrieb (11) elektrisch mit der Überwachungseinheit (30) durch ein zweites Stromversorgungskabel (18) verbunden ist, wobei das zweite Stromversorgungskabel (18) einen elektrischen Steckverbinder (38), der an einen zweiten elektrischen Steckverbinder (39) der Überwachungseinheit (30) angeschlossen ist, umfasst.
  4. Vorrichtung (5) zum motorisierten Antrieb für eine Hausautomatisierungsanlage zum Schließen oder Sonnenschutz nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass die autonome Stromversorgungsvorrichtung (26) mindestens eine fotovoltaische Zelle (25) umfasst, wobei die fotovoltaische Zelle (25) elektrisch mit der Batterie (24) verbunden ist.
  5. Vorrichtung (5) zum motorisierten Antrieb für eine Hausautomatisierungsanlage zum Schließen oder Sonnenschutz nach Anspruch 4, dadurch gekennzeichnet, dass die fotovoltaische Zelle (25) elektrisch direkt mit der Batterie (24) verbunden ist, ohne durch die Überwachungseinheit (30) durchzugehen.
  6. Vorrichtung (5) zum motorisierten Antrieb für eine Hausautomatisierungsanlage zum Schließen oder Sonnenschutz nach Anspruch 5, dadurch gekennzeichnet, dass die fotovoltaische Zelle (25) elektrisch mit der Batterie (24) durch ein drittes Stromversorgungskabel (43) verbunden ist, wobei das dritte Stromversorgungskabel (43) einen elektrischen Steckverbinder (44) umfasst, der an einen zweiten elektrischen Steckverbinder (45) des ersten Stromversorgungskabels (35) angeschlossen ist.
  7. Vorrichtung (5) zum motorisierten Antrieb für eine Hausautomatisierungsanlage zum Schließen oder Sonnenschutz nach Anspruch 4, dadurch gekennzeichnet, dass die fotovoltaische Zelle (25) elektrisch mit der Batterie (24) über die Überwachungseinheit (30) verbunden ist.
  8. Vorrichtung (5) zum motorisierten Antrieb für eine Hausautomatisierungsanlage zum Schließen oder Sonnenschutz nach Anspruch 7, dadurch gekennzeichnet, dass die fotovoltaische Zelle (25) elektrisch mit der Batterie (24) durch ein drittes Stromversorgungskabel (40) verbunden ist, wobei das dritte Stromversorgungskabel (40) einen elektrischen Steckverbinder (41) umfasst, der an einen dritten elektrischen Steckverbinder (42) der Überwachungseinheit (30) angeschlossen ist.
  9. Vorrichtung (5) zum motorisierten Antrieb für eine Hausautomatisierungsanlage zum Schließen oder Sonnenschutz nach einem der Ansprüche 1 bis 8, dadurch gekennzeichnet, dass die Überwachungseinheit (30) mit Strom über die Batterie (24) der autonomen Stromversorgungsvorrichtung (26) versorgt wird.
  10. Vorrichtung (5) zum motorisierten Antrieb für eine Hausautomatisierungsanlage zum Schließen oder Sonnenschutz nach einem der Ansprüche 1 bis 8, dadurch gekennzeichnet, dass die Überwachungseinheit (30) mit Strom über eine zusätzliche Batterie versorgt ist, wobei die zusätzliche Stromversorgungsbatterie der Überwachungseinheit (30) von der Stromversorgungsbatterie (24) des elektromechanischen Stellantriebs (11) unabhängig ist.
  11. Vorrichtung (5) zum motorisierten Antrieb für eine Hausautomatisierungsanlage zum Schließen oder Sonnenschutz nach einem der Ansprüche 1 bis 10, dadurch gekennzeichnet, dass das drahtlose Kommunikationsmodul (31) der Überwachungseinheit (30) einen Sender umfasst, wobei der Sender dazu konfiguriert ist, Signale gemäß einem Protokoll zur drahtlosen Kommunikation zu senden, um Fernmeldekommunikationen mit einem geringen Durchsatz zu erlauben.
  12. Vorrichtung (5) zum motorisierten Antrieb für eine Hausautomatisierungsanlage zum Schließen oder Sonnenschutz nach Anspruch 11, dadurch gekennzeichnet, dass das drahtlose Kommunikationsmodul (31) der Überwachungseinheit (30) auch einen Empfänger umfasst, wobei der Empfänger dazu konfiguriert ist, Signale gemäß dem Protokoll zur drahtlosen Kommunikation zu empfangen, um Fernmeldekommunikationen mit einem geringen Durchsatz zu erlauben.
  13. Vorrichtung (5) zum motorisierten Antrieb für eine Hausautomatisierungsanlage zum Schließen oder Sonnenschutz nach einem der Ansprüche 1 bis 12, dadurch gekennzeichnet, dass die Stromverbindung zwischen der Überwachungseinheit (30) und dem elektromechanischen Stellantrieb (11), die mittels eines Stromversorgungskabels (18) hergestellt ist, auch ein Träger zur drahtgebundenen Kommunikation derart ist, dass der elektromechanische Stellantrieb (11) mittels Daten, die von einem Empfänger des drahtlosen Kommunikationsmoduls (31) der Überwachungseinheit (30) von einer Ferneinheit (12, 13, 28) empfangen werden, parametriert wird.
  14. Hausautomatisierungsanlage zum Schließen oder Sonnenschutz, die eine Blende (2) umfasst, die mittels einer Vorrichtung (5) zum motorisierten Antrieb auf ein Aufrollrohr (4), das in Drehung von einem elektromechanischen Stellantrieb (11) angetrieben wird, aufrollbar ist, dadurch gekennzeichnet, dass die Vorrichtung (5) zum motorisierten Antrieb einem der Ansprüche 1 bis 13 entspricht.
EP17755206.4A 2016-08-26 2017-08-25 Motorisierte antriebsvorrichtung für eine schliess- oder sonnenschutzeinheit und entsprechende einheit Active EP3504393B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR1657970A FR3055349B1 (fr) 2016-08-26 2016-08-26 Dispositif d'entrainement motorise pour une installation domotique de fermeture ou de protection solaire et installation domotique associee
PCT/EP2017/071454 WO2018037118A1 (fr) 2016-08-26 2017-08-25 Dispositif d'entraînement motorisé pour une installation domotique de fermeture ou de protection solaire et installation domotique associée

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EP3504393B1 true EP3504393B1 (de) 2021-07-28

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Publication number Priority date Publication date Assignee Title
CA2870983A1 (en) 2014-11-06 2016-05-06 Etapa Window Fashions Inc Motor retrofitted on roll-up blind cords
US10863846B2 (en) 2015-10-02 2020-12-15 Axis Labs Inc. External motor drive system for window covering system with continuous cord loop
FR3081492B1 (fr) * 2018-05-28 2020-05-15 Somfy Activites Sa Dispositif d'occultation pour une installation domotique de fermeture ou de protection solaire d'un batiment et installation domotique associee
FR3110299B1 (fr) * 2020-05-15 2022-12-09 Somfy Activites Sa Dispositif d’alimentation électrique, actionneur électromécanique comportant un tel dispositif d’alimentation électrique, installation de fermeture, d’occultation ou de protection solaire comprenant un tel actionneur électromécanique
US11840886B2 (en) 2021-05-12 2023-12-12 Ryse Inc. External motor drive system adjusting for creep in window covering system with continuous cord loop

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US20140133019A1 (en) * 2010-02-23 2014-05-15 Homerun Holdings Corporation High efficiency motorized roller screen and method of operation

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FR2910523B1 (fr) * 2006-12-26 2009-02-27 Simu Soc Par Actions Simplifie Ensemble autonome d'actionnement de volet roulant ou store
FR3016002B1 (fr) * 2013-12-31 2016-01-22 Somfy Sas Procede de fonctionnement d'une fenetre pour batiment

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Publication number Priority date Publication date Assignee Title
US20140133019A1 (en) * 2010-02-23 2014-05-15 Homerun Holdings Corporation High efficiency motorized roller screen and method of operation

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FR3055349A1 (fr) 2018-03-02
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EP3504393A1 (de) 2019-07-03

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