EP3571458A1 - Système de communication pour la transmission d'informations d'objet acquises entre au moins deux partenaires de communication - Google Patents

Système de communication pour la transmission d'informations d'objet acquises entre au moins deux partenaires de communication

Info

Publication number
EP3571458A1
EP3571458A1 EP18701028.5A EP18701028A EP3571458A1 EP 3571458 A1 EP3571458 A1 EP 3571458A1 EP 18701028 A EP18701028 A EP 18701028A EP 3571458 A1 EP3571458 A1 EP 3571458A1
Authority
EP
European Patent Office
Prior art keywords
information
communication
view
field
displayed
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
Application number
EP18701028.5A
Other languages
German (de)
English (en)
Inventor
Matthias Hofmann
Peter Haag
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.)
Steiner Optik GmbH
Original Assignee
Steiner Optik GmbH
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Steiner Optik GmbH filed Critical Steiner Optik GmbH
Publication of EP3571458A1 publication Critical patent/EP3571458A1/fr
Pending legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41GWEAPON SIGHTS; AIMING
    • F41G3/00Aiming or laying means
    • F41G3/14Indirect aiming means
    • F41G3/16Sighting devices adapted for indirect laying of fire
    • F41G3/165Sighting devices adapted for indirect laying of fire using a TV-monitor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41GWEAPON SIGHTS; AIMING
    • F41G3/00Aiming or laying means
    • F41G3/02Aiming or laying means using an independent line of sight
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41GWEAPON SIGHTS; AIMING
    • F41G3/00Aiming or laying means
    • F41G3/06Aiming or laying means with rangefinder
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41GWEAPON SIGHTS; AIMING
    • F41G3/00Aiming or laying means
    • F41G3/06Aiming or laying means with rangefinder
    • F41G3/065Structural association of sighting-devices with laser telemeters
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/14Digital output to display device ; Cooperation and interconnection of the display device with other functional units
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast
    • H04N7/181Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast for receiving images from a plurality of remote sources
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/80Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/02Hierarchically pre-organised networks, e.g. paging networks, cellular networks, WLAN [Wireless Local Area Network] or WLL [Wireless Local Loop]
    • H04W84/10Small scale networks; Flat hierarchical networks
    • H04W84/12WLAN [Wireless Local Area Networks]

Definitions

  • Communication system for transmitting captured object information between at least two communication partners
  • the invention relates to a communication system for transmitting detected object information between at least two communication partners.
  • a corresponding communication system comprises as communicating components of the communication system at least two communication partners communicating with each other.
  • a respective communication partner forming part of the communication system comprises a communication device which is set up to transmit information to another communication partner and / or to receive information transmitted by another communication partner.
  • the target distance measuring device comprises, in addition to the communication device, an object detection device which is set up to detect remote objects and to generate object information describing a respective detected object.
  • the rifle scope device comprises, in addition to the communication device, a display device which varies in dependence on the (spatial) alignment of the rifle scope device.
  • the object of the invention is to disclose an improved communication system, in particular with regard to an extended information content of a display device of a rifle scope device forming a communication partner of a communication system.
  • the communication system described herein which may also be referred to as a communication device, generally serves to transmit captured object information - which may also be referred to as object data - between multiple, i. H. at least two, communication partners.
  • object data captured object information
  • the transmission of detected object information as well as the transmission of all further information between the respective communication partners of the communication system typically takes place via a radio-based, in particular bidirectional, possibly data-encrypted, communication connection between the respective communication partners of the communication system.
  • a radio-based communication connection can be based on any communication standard for radio-based data transmission, so that merely by way of example reference is made to Bluetooth or WLAN connections.
  • a first communication partner of the communication system is a target range measuring device.
  • the target distance measuring device is configured in its basic functionality for detecting a distance between the location of the target distance measuring device and an object or target remote therefrom.
  • the detection of the distance between the location of the Zielentfernungsmess owned and a remote from this object may, for. B. optically.
  • the Zielentfernungsmess worn can concretely z. B. as a so-called range finder, in particular laser range finder, be formed or include such.
  • the destination range finder may be associated with a first user of the communication system.
  • the Zielentfernungsmess is formed with an object detection device or comprises at least one such.
  • the hardware and / or software implemented object detection device is set up, remote objects - which are both living mobile or stationary objects, ie humans or animals, as well as inanimate mobile or stationary objects, ie eg land or air vehicles , Buildings, etc., can act - and to generate at least one respective detected object directly or indirectly descriptive or relevant object information.
  • the object information may, for. B. the orientation and / or position of an object, in particular the relative orientation and / or position of the object relative to the Zielentfernungsmess stimulate describe or relate.
  • the object detection device can be equipped with suitable object detection algorithms which, in particular based on specific detectable object-specific features, can be used to detect specific objects Objects, possibly from a variety of detected objects, are set up.
  • the Zielentfernungsmess is further formed with a communication device or comprises at least one such.
  • the communication device can be set up for, in particular radio-based, optionally encrypted, transmission of information to and / or from a further communication partner of the communication system.
  • the communication device can be an optionally modular, transmitting and / or receiving device.
  • the communication device is in particular set up, an object information generated by the object detection device to a second communication partner of the communication system, d. H. in particular to a riflescope device explained below.
  • a firearm device such as a rifle, attachable or fixed, riflescope device.
  • the rifle scope device is set up for visually enlarging or displaying a scene removed from the location of the rifle scope, or an object or target located within such a scene, and includes suitable optically magnifying elements for this purpose.
  • H. in particular an optically magnifying arrangement, in particular lenticular or -shaped, optical elements.
  • the visually magnified or enlarged display of the remote from the location of the rifle scope scenery can, for. B. electronically and / or optically.
  • the rifle scope can concretely z. B. be designed as optical and / or electronic riflescope or include such.
  • the riflescope device may be associated with a second user of the communication system, in which it is z. B. can act as a sniper.
  • the rifle scope device is formed with a display device or comprises at least one such device.
  • the display device or the rifle scope device comprises a variable field of view depending on the (spatial) orientation of the rifle scope device.
  • the field of vision changes accordingly in a manner known per se depending on the (spatial) orientation of the rifle scope.
  • the display device may be arranged or formed in an optical channel of the rifle scope extending between an eyepiece and an objective end.
  • the display device may, for. B. as an electronic display, in particular as an OLED display, be formed or include such.
  • the rifle scope device is also formed with a communication device or includes at least one such.
  • the communication device can be set up for, in particular radio-based, optionally encrypted, transmission of information to and / or from a further communication partner of the communication system.
  • the communication device can be an optionally modular, transmitting and / or receiving device.
  • the communication device is in particular configured to receive an object information transmitted by the first communication partner, ie the rifle scope device.
  • the display device is set up next to the display contents d supplied by the rifle scope device. H. in particular, the visually magnified scenery by means of the rifle scope device, also display contents not supplied by the rifle scope device, d. H. in particular, regardless of the display contents supplied by the riflescope display contents generated to display.
  • the latter display contents are, in particular, received object information.
  • the display device is thus set up to also display received object information in addition to the display contents supplied by the rifle scope device. It is essential that at a given orientation of the riflescope device and a defined by the given orientation of the riflescope device field of view of the rifle scope outside of the field of view objects are marked as displayed outside the field of view of the rifle scope.
  • the display device By means of the display device, therefore, objects possibly supplied by the rifle scope, actually located in the field of vision of the riflescope device at a given orientation of the riflescope device, and objects additionally located at the given orientation of the rifle scope outside the field of view of the rifle scope can be displayed. Objects located outside the field of view of the riflescope device at the given orientation of the riflescope device are indicated as being located outside the field of view of the rifle scope device.
  • a user of the rifle scope device is therefore displayed on the display device of the rifle scope on the one hand, the displayed on the riflescope display contents.
  • object information received by a user of the riflescope device may be displayed, and if these include objects located outside the field of view of the rifle scope at a given orientation of the display device or the rifle scope, are indicated as being located outside the field of view of the rifle scope.
  • a user of the rifle scope is on the display on the one hand on the one hand on actually located in the field of view of the rifle scope objects and over informed outside the field of view of the rifle scope or the scenery objects.
  • the information content of the display device is therefore not limited to the objects actually located in the field of view. It is, especially with regard to an extended information content of the display device of the rifle scope, improved communication system before.
  • An object described by the object information in particular located at a given orientation of the rifle scope outside the field of view of the rifle scope, does not have to be an object, that is, an object. h are displayed with the actually given, in particular visual, features of the object.
  • An object described by the object information can therefore partially or completely be in another, d. H. especially in partially or completely abstracted representation.
  • an object described by the object information, in particular at a given orientation of the rifle scope device outside the field of view of the rifle scope device can be represented by graphical and / or alphanumeric information.
  • a correspondingly changed or abstracted representation of objects described by the object information can, for. B. in view of the data volume transmitted between the communication partners be appropriate, as the transmitted data volume can be kept relatively small.
  • objects located outside the field of view can accordingly be displayed or displayed as being visible outside of the field of view by graphic information, in particular by at least one symbol.
  • graphic information in particular by at least one symbol.
  • a corresponding graphical information d. H.
  • a corresponding symbol it may be at least one graphical element, in particular a point, a triangle, a square, etc., or a combination of several, possibly different, graphical elements.
  • objects located outside the field of view can be displayed or displayed as being characterized outside the field of view by alphanumeric information.
  • Corresponding alphanumeric information may be at least one alphanumeric element, in particular a letter or a number, or a combination of several, possibly different, alphanumeric elements.
  • objects located at a given orientation of the riflescope device may be represented by graphical information and / or by alphanumeric information as being out of the field of view can be displayed or displayed.
  • objects which differ in at least one object parameter relating to a property of the respective object can be displayed or displayed by different graphical information and / or by different alphanumeric information.
  • a respective object parameter can z. B. the removal of the respective objects to the riflescope device can be used. Consequently, objects located at different distances from the rifle scope can be displayed differently, ie in particular in different colors and / or geometries.
  • objects located within the field of view may be identified by a first graphical and / or alphanumeric information as the target scope Marked within the field of view and displayed at the or a given orientation of the rifle scope outside of the prepares for objects displayed by one of the first graphical and / or alphanumeric information different second graphical and / or alphanumeric information as outside the field of view marked or displayed.
  • a first graphical information and a second graphical information, in particular a first and a second symbol, may, for. B. in at least one, in particular the geometry and / or the color of a respective symbol descriptive, symbol parameters differ. The same applies to first and second alphanumeric information.
  • objects located outside of the field of view may be displayed or displayed as being out of the field of view by graphic information in the form of a symbol.
  • the symbol may be a directional symbol, in particular arrow-like or -shaped, which indicates a direction in which the respective object is located relative to the sighting telescope device.
  • At or a given orientation of the riflescope device located outside the field of view objects may be displayed or displayed in addition to at least one additional alphanumeric information.
  • the information content in connection with the display located outside of the field of view objects thus further increased and the communication system improved overall become.
  • the alphanumeric information or the additional alphanumeric information may be z.
  • a respective object descriptive position information can be generated by a, further explained below, further communication partner of the communication system and transmitted to the Zielentfernungsmess worn and / or the rifle scope.
  • the object detection device may include a hardware and / or software implemented selection device, which is set up for the user-side selection of certain detected remote objects from a number of remote objects detected by means of the object detection device.
  • the selector is a user interface, i. H. z.
  • a user operating element arranged or formed on a housing of the target range measuring device, via which a user can make a selection of certain detected remote objects from a number of remote objects detected by the object detecting device.
  • the object detection device may be configured to generate object information describing at least one user-selected detected remote object.
  • the selection device thus enables a selection of specific objects detected by means of the object detection device, so that in the following only detected user-selected remote objects are generated and transmitted to the riflescope device. This, in turn, may be expedient with regard to the data volume transmitted between the communication partners, as the transmitted data volume can be kept comparatively small.
  • the communication system may additionally comprise at least one further communication partner.
  • the other communication partner is of course formed with a communication device or comprises at least one such.
  • the communication device may, in particular, radio-based, if necessary encrypted, transmission of information to one and / or be set up by the first and / or second communication partner of the communication system.
  • the communication device can be an optionally modular, transmitting and / or receiving device.
  • the at least one other communication partner can, for. B. as a user-side mobile device, in particular as a laptop, smartphone or tablet PC, be designed with a communication device.
  • the communication device of the further communication partner can be set up to receive object information transmitted by the first communication partner.
  • the further communication partner can be set up to process the object information transmitted by the first communication partner in terms of hardware and / or software, ie. H. in particular with regard to an evaluation criterion, such. B. a temporal change of the object information, z. B. at a time-varying position of the object described by the object information to evaluate.
  • the at least one further communication partner can be set up, corresponding additional information, ie. H. z. B. current or future positions, in particular GPS coordinate positions, a respective object descriptive position information can be generated by a, explained in more detail below, further communication partner of the communication system and to the Zielentfernungsmess worn and / or the rifle scope.
  • the further communication partner may include a display device for displaying information and a storage device in which geographical map information is stored.
  • the display device may, for. B. be configured to display geographical map information and additionally located therein described by a received object information objects and / or a line of sight described by a received field of view information and / or described by a received field of view information field of view.
  • the invention also relates to a target range measuring device for a communication system as described.
  • the target distance measuring device is characterized in particular by a communication device and an object detection device, wherein the object detection device is set up to detect remote objects and to generate object information describing a respective detected remote object, and the communication device is set up a generated object information to a second To transfer communication partners.
  • the object detection device is set up to detect remote objects and to generate object information describing a respective detected remote object
  • the communication device is set up a generated object information to a second To transfer communication partners.
  • the invention relates to a riflescope device for a communication system as described.
  • the rifle scope device is characterized by a communication device and a display device that varies in dependence on the alignment of the rifle scope, the communication device being configured to receive object information transmitted by a communication partner, and Display device is configured to display received object information, wherein at a given orientation of the rifle scope outside of the field of view objects are displayed as being displayed or displayed outside of the field of view. All, in particular the riflescope device relevant statements to the communication system apply analogously to the riflescope device.
  • the invention relates to a method for transmitting acquired object information between at least two communication partners.
  • the method is characterized in that a communication system as described is used for its implementation. All versions of the communication system apply analogously to the procedure.
  • FIG. 1 is a schematic diagram of a communication system according to a
  • FIGS. 2-4 each show a display of a display device of a riflescope device according to an embodiment.
  • Fig. 1 shows a schematic diagram of a communication system 1 according to an embodiment.
  • the communication system 1 is used to transmit detected object information between a plurality, ie at least two, communication partners 2-4.
  • a radio-based communication connection can Any communication standard based on radio-based data transmission, so that only by way of example referred to Bluetooth or WLAN connections.
  • the first communication partner 2 of the communication system 1 is a target range measuring device 6.
  • the target distance measuring device 6 is configured to detect a distance between the location of the target range measuring device 6 and an object 7 or target remote therefrom and includes a specific detection area 8 for this purpose
  • the Zielentfernungsmess worn 6 is designed as a so-called range finder, in particular laser range finder.
  • the target range measuring device 6 is typically associated with a first user (not shown) of the communication system 1.
  • the target distance measuring device 6 is formed with an object detecting device 9.
  • the hardware and / or software implemented object detection device 9 is set up, remote objects 7 - which are both mobile or stationary objects animated, d. H. z. Humans or animals, as well as inanimate mobile or stationary objects, d. H. z.
  • the object information Ol may, for. B. the orientation and / or position of an object 7, in particular the relative orientation and / or position of the object 7 relative to the Zielentfernungsmess worn, 6 describe or relate.
  • the object detection device 9 can be equipped with suitable object detection algorithms, which are set up, in particular based on specific detectable object-specific features, for detecting specific objects 7, possibly from a plurality of detected objects 7.
  • the object detection device 9 optionally includes a hardware and / or software implemented selection device 10, which is set up for the user-side selection of certain detected remote objects 7 from a number of detected by means of the object detection device 9 remote objects 7.
  • the selector 10 is a user interface 11, ie, for example, a user operating element arranged or designed on a housing (not designated) of the target range measuring device 6, via which a user selects a selected number of detected distant objects 7 from a number of means the object detection device 9 detected removed objects 7 can make.
  • the object detection device 9 can be set up to generate an object information item Ol describing at least one user-selected detected remote object 7.
  • the target distance measuring device 6 is further formed with a communication device 12.
  • the communication device 12 is set up for radio-based, possibly encrypted, transmission of information to and / or from a further communication partner 3, 4 of the communication system 1.
  • the communication device 12 may be an optionally modular, transmitting and / or receiving device.
  • the communication device 12 is set up to transmit an object information Ol generated by the object detection device 9 to further communication partners 3, 4 of the communication system 1.
  • the second communication partner 3 of the communication system 1 is one, possibly on a firearm device (not shown), such.
  • the riflescope device 13 is designed for optically magnifying or enlarged display of a remote from the location of the rifle scope 13 scene or located within such a scene object 7 or target and includes suitable for this purpose optically magnifying elements, d. H. in particular an optically magnifying arrangement 14, in particular lens-like or optical elements (not shown).
  • the visually magnified or enlarged display of the remote from the location of the rifle scope 13 scenery can, for. B. electronically and / or optically.
  • the rifle scope device 13 is designed as an optical and / or electronic riflescope.
  • the rifle scope 13 may be associated with a second user (not shown) of the communication system 1, in which it may be e.g. B. can act as a sniper.
  • the rifle scope device 13 is formed with a display device 15.
  • the display device 15 or the riflescope device 13 comprises a variable depending on the (spatial) orientation of the rifle scope 13 field of view 16.
  • the field of view 16 changes accordingly in a conventional manner depending on the (spatial) orientation of the rifle scope 13.
  • the display device 15 can in an optical channel (not shown) of the rifle scope 13 extending between an eyepiece and an objective end.
  • In the display device 15 may be z. B. to an electronic display, in particular as an OLED display act.
  • the rifle scope device 13 is also formed with a communication device 17.
  • the communication device 17 is configured for radio-based, possibly encrypted, transmission of information to and / or from a further communication partner 2, 4 of the communication system 1. It can be concrete the communication device 17 is an optionally modular, transmitting and / or receiving device.
  • the communication device 17 is set up to receive an object information item Ol transmitted by the first communication partner 2.
  • the display device 15 is set up next to the display contents d supplied from the scope device 13. H. in particular, the visually magnified scenery by means of the rifle scope device 13, also display contents not supplied by the rifle scope device 13, d. H. in particular independently of the display contents provided by the rifle scope 13, display contents.
  • the latter display contents are, in particular, received object information Ol.
  • the display device 15 is thus configured to also display received object information Ol in addition to the display contents supplied by the rifle scope device 13.
  • a user of the rifle scope device 13 is therefore displayed on the display device 15 of the rifle scope device 13, on the one hand, the display contents delivered via the rifle scope device 13.
  • object information Ol received by a user of the riflescope device 13 may be displayed, and if they include objects 7A, 7B located outside the field of view 16 of the rifle scope 13 at a given orientation of the riflescope device 13, they are indicated as being located outside the field of view 16 of the rifle scope device 13 , A user of the rifle scope device 13 is informed via the display device 15 on the one hand about objects 7 actually located in the field of view 16 of the rifle scope device 13 and about objects 7A, 7B located outside the field of view 16 of the rifle scope device 13 or the scene. The information content of the display device 15 is therefore not on the actually located in the field of view of the rifle scope 13 Objects 7 limited.
  • viewable display of the display device 15 of a riflescope device 13 shows, described by the object information Ol, especially at a given orientation of the riflescope device 13 located outside the field of view 16 of the rifle scope 13, object 7A, 7B not as just that object 7A, 7B, d. h are displayed with the actually given, in particular visual, features of the object 7A, 7B.
  • An object 7A, 7B described by the object information Ol may be stored in another, i. H. especially in abstracted, representation to be displayed. The same applies to objects 7 described by the object information Ol, in particular in the case of a given orientation of the rifle scope device 13 within the field of view 16 of the rifle scope device 13.
  • an object 7A, 7B described by the object information Ol in particular at a given orientation of the rifle scope 13 outside the field of view 16 of the rifle scope 13, can be represented by graphical and / or alphanumeric information.
  • a correspondingly modified or abstracted representation of objects 7A, 7B described by the object information Ol can be described, for example, in FIG. B. with regard to the transferred between the communication partners 2 - 4 data volume be useful as the transmitted data volume can be kept relatively small.
  • respective objects 7, 7A, 7B respectively located within and outside the field of view 16 of the rifle scope device 13 are respectively represented by a graphical information, in particular a symbol, here purely by way of example a triangle, as outside the field of view 16 of the rifle scope 13 indicated indicated.
  • a corresponding graphical information d. H.
  • a corresponding symbol it may therefore be a graphic element or a combination of several, possibly different, graphic elements.
  • graphical information in particular a symbol, here purely by way of example a point, indicated within the field of view 16 of the rifle scope device 13.
  • the objects 7A, 7B located outside the field of view 16 of the rifle scope device 13 are additionally located outside of Field of view 16 and outside of the display device 15 and outside the riflescope device 13 shown.
  • a respective symbol is expediently one, in particular arrow-like or -shaped, direction symbol which indicates a direction in which the respective object 7A, 7B is located relative to the sighting telescope device 13.
  • the information content of the representation of respective objects 7A, 7B displayed as being displayed outside the field of view 16 is thus increased in a simple manner.
  • objects 7A, 7B located outside the field of view 16 of the rifle scope device 13 may be indicated by an alphanumeric information as being outside the field of view 16 of the rifle scope device 13 in the case of a given orientation of the rifle scope device 13.
  • a corresponding alphanumeric information may be an alphanumeric element, in particular a letter or a number, or a combination of several, possibly different, alphanumeric elements. The same applies, as mentioned, for located at the given orientation of the rifle scope 13 within the field of view 16 of the rifle scope 13 objects 7.
  • the rifle scope device 13 may be located within the field of view 16 at the given orientation located objects 7 by a first graphical information as within the field of view 16 and at the or a given orientation of the rifle scope 13 located outside the reformfels 16 located objects 7A, 7B by a different from the first graphic information second graphical information as outside the field of view 16 be displayed marked.
  • objects 7A, 7B located within the field of view 16 in FIGS. 2-4 are exemplarily shown as a point and objects located outside the field of view 16 7A, 7B by way of example as a triangle.
  • First and second graphical information thus differ in at least one, in particular the geometry and / or the color of a respective symbol descriptive, symbol parameters. The same could be done alternatively or additionally with purely alphanumeric information.
  • objects 7, 7A, 7B which differ in at least one object parameter relating to a property of the respective object 7, 7A, 7B can be indicated by different graphical information and / or by different alphanumeric information.
  • a respective object parameter can z.
  • the removal of the respective objects 7, 7A, 7B to the rifle scope 13 may be used. Consequently, objects 7, 7A, 7B located at different distances from the rifle scope device 13 can be represented differently, ie in particular in different colors and / or geometries.
  • objects 7A, 7B located at different distances from the rifle scope device 13 are shown, for example, in different sizes.
  • objects 7, 7A, 7B located inside and outside the field of view 16 for a given orientation of the rifle scope device 13 can additionally be displayed with at least one additional alphanumeric information item.
  • the alphanumeric additional information may be z. B.
  • a respective object 7, 7A, 7B descriptive position information can be generated by another communication partner 4 of the communication system 1 and transmitted to the Zielentfernungsmess worn 6 and / or the rifle scope 13.
  • Fig. 1 shows that the communication system 1 in addition to the first and second communication partner (s) 2, 3 may additionally comprise at least one other communication partner 4.
  • the further communication partner 4 is also formed with a communication device 18.
  • the communication device 18 is configured for radio-based, possibly encrypted, transmission of information to the first and / or second communication partner 2, 3 and / or from the first and / or second communication partner 2, 3.
  • the communication device 18 may again be an optionally modular, transmitting and / or receiving device.
  • the other communication partner 4 can z. B. as a user-side mobile terminal 19, In particular, as a laptop, smartphone or tablet PC, be formed with a communication device 18.
  • the further communication partner 4 can be set up to process the object information Ol transmitted by the first communication partner 2 in terms of hardware and / or software, ie, in particular with regard to an evaluation criterion, such as eg. B. a temporal change of the object information Ol, z. B. at a time-varying position of the described by the object information Ol object 7, 7A, 7B, evaluate.
  • the further communication partner 4 can be set up, corresponding additional information, d. H. z. B. current or future positions, in particular GPS coordinate positions, a respective object 7, 7A, 7B descriptive position information to generate and transmit to the Zielentfernungsmess worn 6 and / or the riflescope device 13.
  • the further communication partner 4 may include a display device 20 for displaying information and a storage device (not shown) in which geographical map information is stored.
  • the display device 20 may, for. B. be set to display geographical map information and additionally located therein by a received object information Ol described objects 7, 7A, 7B and / or a line of sight information received by a visual field and / or described by a received field of view information field 16.
  • a method for transmitting detected object information O1 between at least two communication partners 2-4 can be implemented.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Human Computer Interaction (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • User Interface Of Digital Computer (AREA)
  • Telescopes (AREA)
  • Telephone Function (AREA)
  • Radar Systems Or Details Thereof (AREA)
  • Aiming, Guidance, Guns With A Light Source, Armor, Camouflage, And Targets (AREA)
  • Optical Communication System (AREA)

Abstract

L'invention concerne un système de communication destiné à la transmission d'informations d'objet (OI) acquises entre deux partenaires de communication, comprenant : au moins un premier partenaire de communication qui est configuré en tant que dispositif de mesure de la distance à la cible comprenant un dispositif de communication et un dispositif de détection d'objet, le dispositif de détection d'objet étant conçu pour détecter des objets distants (7, 7A, 7B) et pour générer une information d'objet (OI) décrivant un objet distant (7, 7A, 7B) respectivement détecté, et le dispositif de communication étant conçu pour transmettre une information d'objet (OI) générée à un deuxième partenaire de communication ; au moins un deuxième partenaire de communication qui est configuré en tant que dispositif à lunette de visée comprenant un dispositif de communication et un dispositif d'affichage (15) qui affiche un champ de vision (16) variable en fonction de l'orientation du dispositif à lunette de visée, le dispositif de communication étant conçu pour recevoir des informations d'objet (OI) transmises par le premier partenaire de communication et le dispositif d'affichage (15) étant conçu pour afficher les informations d'objet (OI) reçues. Avec une orientation donnée du dispositif à lunette de visée, les objets (7A, 7B) qui se trouvent en-dehors du champ de vision (16) peuvent être affichés comme étant identifiés en-dehors du champ de vision (16).
EP18701028.5A 2017-01-20 2018-01-18 Système de communication pour la transmission d'informations d'objet acquises entre au moins deux partenaires de communication Pending EP3571458A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102017101118.8A DE102017101118A1 (de) 2017-01-20 2017-01-20 Kommunikationssystem zur Übertragung von erfassten Objektinformationen zwischen wenigstens zwei Kommunikationspartnern
PCT/EP2018/051236 WO2018134318A1 (fr) 2017-01-20 2018-01-18 Système de communication pour la transmission d'informations d'objet acquises entre au moins deux partenaires de communication

Publications (1)

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EP3571458A1 true EP3571458A1 (fr) 2019-11-27

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EP18701028.5A Pending EP3571458A1 (fr) 2017-01-20 2018-01-18 Système de communication pour la transmission d'informations d'objet acquises entre au moins deux partenaires de communication

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Country Link
US (2) US10852101B2 (fr)
EP (1) EP3571458A1 (fr)
JP (1) JP6996693B2 (fr)
CN (1) CN110199170B (fr)
DE (1) DE102017101118A1 (fr)
WO (1) WO2018134318A1 (fr)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102019105093A1 (de) 2019-02-28 2020-09-03 Carl Zeiss Ag Verfahren zum Unterstützen eines Benutzers beim Anvisieren eines Objekts mittels eines Fernrohrs

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Also Published As

Publication number Publication date
JP2019535996A (ja) 2019-12-12
US11204221B2 (en) 2021-12-21
US10852101B2 (en) 2020-12-01
CN110199170B (zh) 2022-11-15
CN110199170A (zh) 2019-09-03
DE102017101118A1 (de) 2018-07-26
US20210080226A1 (en) 2021-03-18
US20190285383A1 (en) 2019-09-19
JP6996693B2 (ja) 2022-01-17
WO2018134318A1 (fr) 2018-07-26

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