EP4241469A1 - Dispositif et procede de pilotage du rayonnement d'un dispositif de communication - Google Patents
Dispositif et procede de pilotage du rayonnement d'un dispositif de communicationInfo
- Publication number
- EP4241469A1 EP4241469A1 EP21815567.9A EP21815567A EP4241469A1 EP 4241469 A1 EP4241469 A1 EP 4241469A1 EP 21815567 A EP21815567 A EP 21815567A EP 4241469 A1 EP4241469 A1 EP 4241469A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- communication device
- radiation
- local
- interface
- radio waves
- 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.)
- Pending
Links
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/06—Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]; Services to user groups; One-way selective calling services
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W12/00—Security arrangements; Authentication; Protecting privacy or anonymity
- H04W12/08—Access security
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W12/00—Security arrangements; Authentication; Protecting privacy or anonymity
- H04W12/12—Detection or prevention of fraud
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W84/00—Network topologies
- H04W84/02—Hierarchically pre-organised networks, e.g. paging networks, cellular networks, WLAN [Wireless Local Area Network] or WLL [Wireless Local Loop]
- H04W84/10—Small scale networks; Flat hierarchical networks
- H04W84/12—WLAN [Wireless Local Area Networks]
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
- H04W88/12—Access point controller devices
Definitions
- the invention relates to a device and a method for controlling the radiation of a communication device, in particular the radiation of radio waves for a local wireless communication device, such as WifiTM, BluetoothTM, etc.
- the home gateway is a device allowing a user to connect one or more terminals to the generally wired Internet network (copper, fiber, etc.).
- the terminals are connected to the home gateway by wire (Ethernet) or, most often, via a wireless home communication network in particular based on WifiTM protocols.
- the principle of the so-called WifiTM network is to link several electronic devices via local radio waves within a wireless local communication network in order to allow the transmission of data between them and communication devices of the Internet network to which the home gateway is connected. connected.
- the home gateway is able to communicate via Wifi with the equipment of the wireless local communication network by broadcasting local radio waves in all directions. It is possibly possible to stop the Wifi transmission by time programming.
- the WifiTM radiation may not only not cover the user's entire home but also cover certain rooms in the user's home in a useless or even disruptive manner.
- user in particular rooms such as those of young children, the home of one or more neighbors, or a public place equipped with an access point (also called hot-spot in English).
- the solutions currently proposed to solve this problem allow the user to test his Wifi in his home in order to define the best location of the home gateway in the home.
- software services implemented for example on a communication terminal such as a smartphone or a tablet making it possible to measure the strength of the Wifi signal received at the place where this terminal is located.
- the WiFi coverage of the home will be optimized but not necessarily total depending on the size of the home and the WiFi transmission power of the home gateway. In addition, this does not solve the problems of Wifi transmission outside the home.
- An object of the invention is a device for controlling the local radiation of a communication device by local radio waves, the control device comprises a local radio wave emission direction controller of the communication device.
- the direction of emission of the radio waves being controlled can be avoided and the risks of hacking limited.
- it can also help reduce unnecessary exposure to radio waves, in particular by avoiding the emission of radio waves towards the bedrooms.
- the controller generates a local radio wave transmission direction command comprising at least one zone definition parameter from among the following:
- the direction of radio wave emission is controlled to optimize the connection and/or avoid inappropriate radio exposure (disruption of a third-party WiFi network, risk of hacking, unnecessary exposure of the user, etc.) .
- the controller generates a local radio wave transmission direction command from among the following:
- the controller generates a local radio wave transmission direction command as a function of at least one datum among the following:
- the piloting is automated according to data collected and/or parameterized by the user in particular according to his needs (for example definition of zone of use of the wireless local area network and of "white" zone in which the radio radiation is not desired).
- Another object of the invention is a method for controlling the orientation of the local radiation of a communication device by local radio waves, the method for controlling comprises a control of the direction of emission of local radio waves of the device of communication.
- An object of the invention is also a communication device comprising at least one antenna for transmitting local radio waves, in which the transmitting antenna comprises a local radio wave emission direction controllable by a local radiation control device.
- the communication device further includes the device for controlling the local radiation.
- the piloting is carried out without delay linked to the transmissions between the piloting device and the communication device, further reducing the risks of connection problems of the communication device linked to an inappropriate orientation of the radiation due to a lack of communication with the steering device.
- the transmit antenna is one of the following:
- a transmission direction is preferred, which is particularly appropriate when the communication device, in particular the home gateway, is placed in a corner of the user's home, thus concentrating the power. emission in the user's home and reducing it outside.
- a reconfigurable antenna thus makes it possible to configure more precisely the areas covered and not covered by the emission of radio waves, in particular to define radio coverage by room: cover the living room but not the adjoining bedroom, etc.
- the communication device is a device able to be connected to a wireless local communication network among the following: a home gateway, a communication terminal.
- the invention can be implemented in a home gateway but also in other communication devices, in particular fixed devices such as a desktop computer, a connected television.
- a single transmission direction can be defined once the home gateway and the terminal have been positioned in the user's home (i.e. following the association of the terminal with the home gateway) with a single relatively fine and powerful radiation beam towards the home gateway, or several beams: the most powerful towards the home gateway and possibly other less powerful beams because they consume less in terms of data transmission towards peripherals such as a printer for the continuation of the communication in progress during the association of the terminal with the gateway but also for any new communication thus avoiding the omnidirectional radiation of the communication terminal during subsequent communications.
- An object of the invention is also a management interface for a local radio wave communication device, the management interface comprises:
- radiation control interface an interface of a local radiation control device of the communication device, called radiation control interface, said radiation control interface comprising a configuration interface of the local radiation control device of the communication device.
- the management interface is able to be implemented in a communication terminal connected to the wireless local communication network.
- the user can monitor or even manage the piloting from any communication terminal, such as a connected television, a portable or mobile terminal, in particular a smartphone, a tablet, etc.
- any communication terminal such as a connected television, a portable or mobile terminal, in particular a smartphone, a tablet, etc.
- An object of the invention is also a method for managing a communication device by local radio waves comprising:
- the at least one element of interaction with a configuration of the reproduced controller corresponds to a room of a reproduced plan of a building in which the communication device emits local radio waves.
- the at least one element of interaction with a configuration of the reproduced controller comprises one of the following parameters:
- the various steps of at least one method according to the invention are implemented by computer software or program, this software comprising software instructions intended to be executed by a processor of data a device forming part of the control device and/or of the management interface and being designed to control the execution of the various steps of this method.
- the invention therefore also relates to a program comprising program code instructions for the execution of the steps of the method for controlling the orientation of the local radiation and/or of the method for managing a communication device when said program is executed. by a processor.
- This program can use any programming language and be in the form of source code, object code or intermediate code between source code and object code such as in a partially compiled form or in any other desirable form.
- FIG. 1 a simplified diagram of a communication architecture comprising a control device and a communication device according to the invention
- FIG. 2 a simplified diagram of a control method according to the invention
- FIG. 3a a simplified diagram of a management interface according to the invention illustrating an interface for activating radiation from a communication device
- FIG. 3b a simplified diagram of a management interface according to the invention illustrating a first embodiment of an interface for controlling radiation from a communication device
- Figure 3b a simplified diagram of a management according to the invention illustrating a second embodiment of an interface for controlling radiation from a communication device
- FIG. 4 a simplified diagram of a method for managing a communication device according to the invention .
- FIG. 1 illustrates a simplified diagram of a communication architecture comprising a control device and a communication device according to the invention.
- the control device 3, 13 controls local radiation from a communication device 1 by local radio waves.
- the control device 3, 13 comprises a controller 30, 130 for the direction of transmission of local radio waves of the communication device.
- control device 13 is implemented in the communication device 1 .
- the piloting device 3 is implemented outside the communication device 1.
- the piloting device 3 can be implemented either in local equipment, such as one communication terminal 7 or not shown, or in remote equipment (not shown).
- the control device 3 is implemented in remote equipment, it is connected to the communication device via a remote communication network, such as the Internet.
- the remote equipment is in particular an operator equipment and/or a service provision device.
- controller 30, 130 generates a round local radio wave transmission direction command comprising at least one zone definition parameter pz from among the following:
- controller 30, 130 generates a round local radio wave transmission direction command among the following:
- controller 30, 130 generates a round local radio wave transmission direction command as a function of at least one of the following data:
- the controller then pilots the direction of emission of local radio waves from at least one of these data.
- the use of data captured from the propagation of local waves makes it possible in particular to establish the areas of a home covered or not by the emission of local radio waves when they are emitted in all directions.
- a user uses a mobile phone to pick up local radio waves at different points in the home, or even outside the home, thus making it possible to map the distribution of local waves emitted by the communication device.
- the control device may possibly redirect the emission power of local radio waves from unnecessarily covered areas (outdoor areas, areas selected as not covered by the user, etc.) to less well covered areas of the home (because away from the communication device or separated from it by an obstacle).
- the use of the usage data captured corresponds in particular to the use of exchange history data between the communication device and one or more communication terminals in the home (the history comprising at least usage directions possibly associated with ranges of use).
- the direction of use is determined by a signal reception direction sensor transmitted locally by radio by a communication terminal exchanging with the communication device, or by the supply position information (such as GPS coordinates) supplied by the communication terminal in particular upon request from the communication device, etc.
- the use of the data entered corresponds to the taking into account of the need expressed by the user, in particular by means of a management interface, such as directly the needs in terms of direction: in degree and a beam width for example, being understood for example that 0° corresponds to the direction perpendicular to the front face of the router, or needs in terms of use of local radio waves (time slot and zone of use).
- a management interface such as directly the needs in terms of direction: in degree and a beam width for example, being understood for example that 0° corresponds to the direction perpendicular to the front face of the router, or needs in terms of use of local radio waves (time slot and zone of use).
- sensors are implemented in the control device 3, 13 and/or the communication device 1. These sensors, respectively local wave propagation sensors 14, 34, 134, and device use sensors communication 15, 35, 135, provide the captured data, respectively the captured local wave propagation data dcp, and the captured data of use.
- an input interface (keyboard, microphone, etc.) 16, 76 implemented either directly in the communication device 1 or in a communication terminal 7 separate from the communication device allows at least one user of the communication device to enter data of need of the communication device 1 . For example, indicating that the communication device will be used in a first direction or zone on a first time slot (for example working hours for an office), or will not be used in a second direction or zone on a second time slot schedule (for example, the bedroom at night or a time slot determined by parents for the children's bedroom, thus allowing parental control).
- a first time slot for example working hours for an office
- a second time slot schedule for example, the bedroom at night or a time slot determined by parents for the children's bedroom, thus allowing parental control.
- the communication device 1 comprises at least one antenna 12 for transmitting local radio waves.
- the transmitting antenna 12 comprises a local radio wave transmission direction modifier 120 controllable by a local radiation steering device 3, 13.
- the transmit antenna 12 includes a motor 121 allowing the latter to rotate when the transmit antenna is a rotating antenna.
- the direction modifier 120 provides the motor 121 in particular with an angle of rotation 0 in which the rotating antenna 12 will be placed.
- the radiation of the local waves emitted by the rotary antenna 12 will be directed in the direction 0 according to the round piloting of the piloting device 3, 13.
- the rotary antenna 12 When the rotary antenna 12 is capable of radiating in several directions, it may be provided with several motors 121 making it possible to modify the different direction of radiation independently of one another. In this case, the direction modifier 120 can provide one or more angles of rotation ⁇ depending on which motors 121 they wish to control. Thus, one or more directions of radiation of the local waves emitted by the rotary antenna 12 will be modified in one or more of the directions 0 according to the round steering of the steering device 3, 13.
- the transmit antenna 12 when the transmit antenna 12 is a reconfigurable antenna, the transmit antenna 12 includes a configurator 121 capable of modifying the radiation pattern of the antenna.
- the direction modifier 120 provides the configurator 121 in particular with at least one configuration parameter pconf used to reconfigure the reconfigurable antenna 12.
- the radiation of the local waves emitted by the rotary antenna 12 will be directed according to the configuration requested pconf according to the rcmd control of the control device 3, 13.
- the communication device 1 further comprises the local radiation control device 13.
- the transmit antenna 12 is one of the following:
- a reconfigurable antenna is in particular an antenna with controllable radiation, for example by means of software.
- the communication device 1 is a device able to be connected to a wireless local communication network among the following: a home gateway, a communication terminal.
- FIG. 2 illustrates a simplified diagram of a piloting method according to the invention.
- the PPORL steering method of the orientation of the local radiation of a communication device by local radio waves drives the communication device 1.
- This PPORL steering method can be implemented in the communication device 1 or in another communication equipment separate from the communication device 1, such as a communication terminal 7 or a remote service provision device.
- the PPORL piloting method comprises a direction control DIR_CNT of emission of local radio waves of the communication device 1.
- the PPORL piloting method uses data picked up, in particular picked up data from the propagation of local waves dcp, and/or picked up data on the use of the communication device du, and/or picked up data db.
- the PPORL piloting method receives (not shown) at least part of these data captured dcp, from and/or these data entered cto of the communication device 1 and/or a third-party device such as a communication terminal 7.
- the PPROL control process captures, in particular at the least part of this captured data.
- the piloting method comprises a capture of local wave propagation PROP_CPT which provides captured local wave propagation data dcp and/or a capture of use of the communication device US_CPT which provides captured data of use of the communication device.
- the PPORL piloting process generates CMD_GN a round local radio wave transmission direction command as a function of at least one datum among the following:
- the direction command generation CMD_GN is optionally implemented by the direction control DIR_CNT.
- the PPORL piloting method generates a round local radio wave transmission direction command comprising at least one parameter for defining a zone pz from among the following:
- the PPORL piloting method generates a round local radio wave transmission direction command among the following:
- the piloting process PPORL transmits CMD_TR the direction command rcmd to the transmit antenna 12.
- the direction command transmission CMD_TR is optionally implemented by the direction control DIR_CNT.
- FIGS 3a to 3c illustrate a management interface according to the invention reproducing respectively an activation interface, a management interface in a first and a second embodiment.
- the management interface 70 of a communication device 1 by local radio waves comprises:
- the radiation control interface an interface of a local radiation control device 702 of the communication device, called the radiation control interface (illustrated by FIGS. 3b and 3c), said radiation control 702 comprising a parameterization interface 702PR of the local radiation control device 3, 13 of the communication device 1.
- the setting interface 702PR of the local radiation steering device 3, 13 is a setting interface of the local radio wave emission direction controller 30, 130 implemented in the local radiation steering device 3, 13.
- management interface in which the management interface 702 is able to be implemented in a communication terminal 7 connected to the wireless local communication network.
- FIG. 3a illustrates a simplified diagram of a management interface according to the invention illustrating an interface for activating radiation from a communication device.
- the management interface 70 comprises a reproducer of the activation interface 701.
- FIG. 3a illustrates the case of a management interface 70 and an activation interface 701 reproduced by display on a screen of a communication terminal 7.
- These interfaces 70 and 701 can optionally be reproduced vocally, for example through a connected speaker 7 making it possible to orally control the activation and deactivation of the local radiation of a domestic gateway.
- Activation will only be possible if it has been programmed in advance (activation time slot) or if the communication terminal 7 is connected directly (wired connection since local radiation is disabled) or indirectly to the communication device ( via a service provision device managing the activation of the communication device 1, service provision device to which the communication terminal 7 is connected in particular via remote wireless communication: 4G, 5G) during the activation command.
- the activation interface 701 reproduces an identification RL_ACT_INT allowing the user to know with which interface he is interacting.
- the activation interface 701 reproduces a switch 7010 comprising two positions 7010 P os_i and 7010 P os_o corresponding respectively to a deactivation position and an activation position.
- the user sliding the switch 7010 reproduced in the position 7010 P os_i, respectively the position 7010 pO s_o triggers a deactivation, respectively an activation, of the radiation of local waves of the communication device 1.
- the activation interface 701 further comprises a programming parameter interface (not shown).
- a programming parameter interface not shown.
- FIG. 3b illustrates a simplified diagram of a management interface according to the invention illustrating a first embodiment of an interface for controlling radiation from a communication device.
- the radiation piloting interface 702 comprises a reproducer of the radiation piloting interface 702.
- FIG. 3b illustrates the case of a management interface 70 and of a radiation piloting interface 702 reproduced by display on a screen of a communication terminal 7.
- These interfaces 70 and 702 can optionally be reproduced vocally for example through a connected speaker 7 making it possible to orally control the direction of the local radiation of a domestic gateway.
- the radiation control interface 702 reproduces an identification Z_RL allowing the user to know with which interface he is interacting.
- the radiation parameterization interface 702PR of the radiation piloting interface 702 reproduces, initially, the radiation diagram of the antenna of the communication device 1 .
- the user can thus interact with this radiation pattern 702b.
- the radiation pattern has a single lobe.
- the user can interact with the directivity of this lobe 0d, and/or its gain Gi.
- the parameters thus modified by the user: directivity 0d and/or gain Gi are transmitted by the radiation control interface 702 to the control device 3, 13 to generate the round control command.
- the radiation control interface 702 further comprises a programming parameter interface 702PH.
- the programming configuration interface 702PH comprises an interface for entering at least one instant of modification of the radiation and/or at least one time slot 702h as illustrated by FIG. 3b.
- the parameters thus modified by the user: time slot 702h are transmitted by the radiation control interface 702 to the control device 3, 13 to generate the round control command at the programmed instant. If a time slot 702h is transmitted, the control device 3, 13 will generate a control command rcmd making it possible, in particular, to return to a default radiation configuration at the end of the indicated time slot if another configuration has not been been programmed by the user.
- FIG. 3c illustrates a simplified diagram of a management interface according to the invention illustrating a second embodiment of an interface for controlling radiation from a communication device.
- the radiation piloting interface 702 comprises a replica of the radiation piloting interface 702.
- FIG. 3c also illustrates the case of a management interface 70 and of a radiation piloting interface 702 reproduced by display on a screen of a communication terminal 7.
- These interfaces 70 and 702 can optionally be reproduced vocally, for example through a connected speaker 7 making it possible to orally control the direction of the local radiation of a domestic gateway.
- the radiation control interface 702 reproduces an identification Z_RL allowing the user to know with which interface he is interacting.
- the radiation parameterization interface 702PR of the radiation control interface 702 reproduces, initially, a plan of the local building and of the areas of this building covered by the antenna of the communication device 1.
- the user can thus interact with this plan 702b.
- the plan has 5 zones (including 4 rooms: a bedroom, an office, a bathroom, and a living room divided into two zones: the kitchen and the living room).
- the user can interact with this plan to indicate the areas to be covered by local radiation and the areas that should not be covered by this local radiation.
- the user indicates that the zones corresponding to the office 702zc2 and the living room 702zci must be covered, but that the zone of the bedroom 702ZE must not be covered.
- the parameters thus modified by the user 702zci, 702zc2 and 702ZE are transmitted by the radiation control interface 702 to the control device 3, 13 to generate the round control command.
- the radiation control interface 702 further includes a programming parameter interface 702PH.
- the programming configuration interface 702PH comprises an interface for entering at least one instant of modification of the radiation and/or at least one time range 702 ZE, 702hzc2 as illustrated by FIG. 3c.
- the parameters thus modified by the user: time slot 702 ZE, 702hzc2 are transmitted by the radiation control interface 702 to the control device 3, 13 to generate the control command rcmd at the programmed instant.
- the user can therefore indicate his work time slot 702hzc2 as the office coverage time slot 702zc2 and his sleep time slot 702hZE as the non-coverage time slot for the room 702ZE.
- the proposed solution makes it possible to control the radiation of local radio waves, such as Wifi, in particular of a domestic gateway by a third-party device, in particular an application implemented by a smartphone, a tablet, a computer, etc. and to privilege, in this way, certain areas of radiation, or even to program radiation in such an area on such a time slot.
- the zone can be defined according to different parameters: cardinal points, sector/angular cone from the position of the communication device 1.
- the radiation will then be channeled in this direction, making it possible either to suppress any radiation outside or at least to reduce considerably the radiation power apart. By considerably, it being understood that the radiation power is not sufficient to transmit and/or receive data, and/or that the radiation power is below recommended thresholds for health, sleep, etc. .
- FIG. 4 illustrates a simplified diagram of a method for managing a communication device according to the invention.
- the DCMNGT management method of a local radio wave communication device comprises:
- the management method DCMNGT comprises a command of an activation/deactivation EIA_CMD of the communication device DC following the reproduction of an activation interaction element EIA_PRP when the user performs an activation/deactivation interaction aact with the EIA activation interaction element.
- the EIA activation interaction element triggers eia_trg the command activation/deactivation EIA_CMD which transmits an ad hoc activation/deactivation signal acv to the communication device DC.
- the management method DCMNGT comprises a command for parameterizing the radiation EIC_CMD of the communication device DC following the reproduction of an element of interaction with the radiation EIC_PRP when the user performs an interaction for parameterizing the radiation cact with the element of interaction with the setting of the EIC radiation.
- the user moves a lobe in a direction 0d on an interface such as illustrated by FIG. 3b or selects one or more zones to cover 702zci, 702zc2 or not to cover 702ZE on a plane reproduced by an interface such as illustrated by Figure 3c.
- Radiation interaction also called coverage interaction, cact: displacement, selection, etc. triggers eic_trg the radiation command EIC_CMD which transmits a setting signal pram to the control device DP which controls the direction of radiation rcmd of the communication device DC.
- the at least one EIC interaction element with reproduced radiation parameterization corresponds to a room of a reproduced plan of a building (see the illustration of Figure 3c) in which the communication device 1 transmits.
- the at least one EIC interaction element with a replicated controller setting includes one of the following settings:
- a particular embodiment of the method for controlling the orientation of the local radiation and/or of the method for managing a communication device is a program comprising program code instructions for the execution of the steps of the method for controlling the the orientation of the local radiation and/or of the management method of a communication device when said program is executed by a processor.
- the invention also relates to a support.
- the information carrier can be any entity or device capable of storing the program.
- the medium may comprise a storage medium, such as a ROM, for example a CD ROM or a microelectronic circuit ROM or else a magnetic recording medium, for example a floppy disk or a hard disk.
- the information medium can be a transmissible medium such as an electrical or optical signal which can be conveyed via an electrical or optical cable, by radio or by other means.
- the program according to the invention can in particular be downloaded onto a network, in particular of the Internet type.
- the information carrier may be an integrated circuit in which the program is incorporated, the circuit being adapted to execute or to be used in the execution of the method in question.
- the invention is implemented using software and/or hardware components. From this perspective, the term module can correspond either to a software component or to a hardware component.
- a software component corresponds to one or more computer programs, one or more sub-programs of a program, or more generally to any element of a program or software capable of implementing a function or a function set as described above.
- a hardware component corresponds to any element of a hardware assembly capable of implementing a function or a set of functions.
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- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Computer Security & Cryptography (AREA)
- Multimedia (AREA)
- Mobile Radio Communication Systems (AREA)
- Selective Calling Equipment (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| FR2011276A FR3115937A1 (fr) | 2020-11-03 | 2020-11-03 | Dispositif et procédé de pilotage du rayonnement d’un dispositif de communication |
| PCT/FR2021/051945 WO2022096830A1 (fr) | 2020-11-03 | 2021-11-04 | Dispositif et procede de pilotage du rayonnement d'un dispositif de communication |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4241469A1 true EP4241469A1 (fr) | 2023-09-13 |
Family
ID=75278075
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP21815567.9A Pending EP4241469A1 (fr) | 2020-11-03 | 2021-11-04 | Dispositif et procede de pilotage du rayonnement d'un dispositif de communication |
Country Status (4)
| Country | Link |
|---|---|
| US (1) | US20240015482A1 (fr) |
| EP (1) | EP4241469A1 (fr) |
| FR (1) | FR3115937A1 (fr) |
| WO (1) | WO2022096830A1 (fr) |
Family Cites Families (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP2115811B1 (fr) * | 2007-01-22 | 2014-06-25 | Raytheon Company | Procédé et système de contrôle de la direction d'un faisceau d'antenne |
| FR3060933A1 (fr) * | 2016-12-15 | 2018-06-22 | Orange | Procede de controle d'un signal radio emis par une passerelle, passerelle et programme d'ordinateur correspondants |
-
2020
- 2020-11-03 FR FR2011276A patent/FR3115937A1/fr not_active Withdrawn
-
2021
- 2021-11-04 WO PCT/FR2021/051945 patent/WO2022096830A1/fr not_active Ceased
- 2021-11-04 EP EP21815567.9A patent/EP4241469A1/fr active Pending
- 2021-11-04 US US18/251,459 patent/US20240015482A1/en active Pending
Also Published As
| Publication number | Publication date |
|---|---|
| US20240015482A1 (en) | 2024-01-11 |
| WO2022096830A1 (fr) | 2022-05-12 |
| FR3115937A1 (fr) | 2022-05-06 |
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