WO2015199635A1 - Dispositif multifonctionnel « miroir 3d d'observation raccourcie » - Google Patents

Dispositif multifonctionnel « miroir 3d d'observation raccourcie » Download PDF

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Publication number
WO2015199635A1
WO2015199635A1 PCT/UA2014/000079 UA2014000079W WO2015199635A1 WO 2015199635 A1 WO2015199635 A1 WO 2015199635A1 UA 2014000079 W UA2014000079 W UA 2014000079W WO 2015199635 A1 WO2015199635 A1 WO 2015199635A1
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WO
WIPO (PCT)
Prior art keywords
unit
image
control unit
monitor
touchscreen
Prior art date
Application number
PCT/UA2014/000079
Other languages
English (en)
Russian (ru)
Inventor
Руслан Васыльовыч РОМАНЧУК
Original Assignee
Руслан Васыльовыч РОМАНЧУК
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 Руслан Васыльовыч РОМАНЧУК filed Critical Руслан Васыльовыч РОМАНЧУК
Publication of WO2015199635A1 publication Critical patent/WO2015199635A1/fr

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Classifications

    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B35/00Stereoscopic photography
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G5/00Control arrangements or circuits for visual indicators common to cathode-ray tube indicators and other visual indicators
    • G09G5/14Display of multiple viewports
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N13/00Stereoscopic video systems; Multi-view video systems; Details thereof

Definitions

  • the multifunctional device “Mirror 3D foreshortening
  • the utility model relates to devices for the formation, digital processing and playback of 3D three-dimensional images and can be used as a mirror device with new functionality.
  • a well-known fitting room (Patent of Ukraine N ° 67191, IPC G02B 27/22, publ. 02/10/2012, Bull. JV? 3, 2012), which consists of a cabin with a mirror attached to its wall, a computer unit with installed software, connected to the Internet, and contains a set of cameras built into its walls with the possibility of interactive control using a peripheral device capable of perceiving voice commands and body movements of the user, by means of a programmed automatic sequential switching of image transmission from discharge chamber to another, and lighting devices, wherein the mirror performs a function screen, which by means of a multimedia projector designed pickup results.
  • the disadvantage of this technical solution is the lack of the ability to change the angle of vision of your reflection. Also, the image that is projected onto the screen using a multimedia projector is not a complete (real) reproduction of the user's image.
  • Known volumetric fitting room (Patent of Ukraine ⁇ ° 90526, IPC G02B 27/22, publ. 05.26.2014, Bull. ⁇ _> 10), which consists of a booth with a display attached to its wall, on which directly there is a presentation of the shooting results with the possibility of interactive control of them, a computer unit with installed software connected to the Internet, and also in the booth there is a set of cameras or cameras built into its walls with the possibility of interactive control by means of a programmed automatic sequential switching of image transmission from one camera to another, and lighting fixtures.
  • the cabin has a square or rectangular construction, and at least eight blocks of double vertical chambers are fixed on its walls - four camera blocks in the center of the walls and four blocks in the corners of the cabin.
  • Each block consists of at least two cameras located one below the other, the shooting results of which are programmatically connected in real time into one picture.
  • the touchscreen display is used in the cabin, which the user can tactilely contact, and the cabin is equipped with means of simulating winds of various strengths, made, for example, in the form of fans, and a cabin lighting intensity regulator, which bring the fitting results closer to real environmental conditions.
  • the prior art device for demonstrating a three-dimensional image of a person’s appearance consisting of a conventional mirror, camera, video conversion unit, display, designed for visualization of the image, as well as the unit for positioning the camera in 3 D space around a person looking at himself.
  • the disadvantage of this device is the presence of separately functioning parts: a conventional mirror and a display to which a real-time image is transmitted.
  • Another disadvantage is that the known device does not provide the ability to store images, transfer it over the Internet in order to later view this file, for example, at home or in a cosmetic clinic.
  • Another disadvantage is that when working with an image that is displayed, it is impossible to select certain areas of the image, increasing or decreasing them, but it is only possible to zoom in or out.
  • a device for recording the appearance of an object from different angles and visualizing the resulting image (RF Patent for utility model ⁇ 104831, IPC A45D42 / 00, published May 27, 2018), consisting of a control unit, an illumination forming unit, an image forming unit including one stationary camera, a camera angle changing unit, including a moving platform for changing the spatial position of the subject, as well as an image conversion unit, an image transmission unit, an image bank, visualization unit, including a display and control elements, designed to select the image of the object in the desired angle and change its scale.
  • Functions of the control unit, image conversion unit, image transfer unit, image bank, as well as visualization unit a personal electronic computer is executed, to which additional image visualization units are connected.
  • the imaging unit includes several stationary cameras, and the camera angle unit includes an electronic module for sequential camera activation.
  • the disadvantage of this device is the presence of a large number of sophisticated equipment, for example, changing the shooting angle by rotating the mobile platform on which the client stands, or which is responsible for moving the camera around the object, and the device is controlled, the image is processed by a personal computer.
  • Another disadvantage is that viewing images is carried out only on the display, which is an integral part of this device, that is, the client or another user is not able to view this file later or transfer it over the Internet in order to later view this file, for example , at home or in a cosmetic clinic.
  • Another disadvantage is that when working with an image that is displayed, it is impossible to select certain sections of the image, increasing or decreasing them, which contributes to a more detailed examination of the image. This technical solution is selected for the prototype.
  • the utility model is based on the task of creating a multifunctional device “Mirror of 3D viewing angle”, in which by making the device in the form of a capacitive touch display with a touchscreen surface, in which an imaging unit is integrated, which includes at least one video camera and a control processor, the possibility is achieved generate and reproduce a high-quality image, change the viewing angle, increasing individual portions of the image, with the possibility simultaneous observation of the general and partial image, with the ability to observe these operating modes, both in real time and in recording, to archive photos and video images and transfer them over the Internet.
  • the proposed multifunctional device "Mirror 3D viewing angle" containing a visualization unit, an image forming unit including at least one video camera, a control unit, a memory unit, in which, according to a utility model, the visualization unit is made in the form of multimedia capacitive touchscreen display with touchscreen surface with built-in microprocessor-based control unit with operating system and software, image forming unit, b the processing unit of the incoming signal, which are interconnected and the touchscreen surface of the monitor, in addition, the control unit is configured to connect to the Internet both by cable and using a wireless communication device, the memory unit is connected to the control unit and the processing unit of the incoming signal, and the unit image formation includes at least one video camera integrated in the touch monitor and at least one video camera that is located behind the touch monitor, in addition, the touchscreen surface of the sensor molecular weight of the display is covered with a film which, when switched off, the device is a common smooth surface, and when the touch device is a multimedia monitor.
  • the implementation of the visualization unit of the multimedia capacitive touch screen with a touchscreen surface allows you to control the device without additional devices (keyboard, mouse), namely by clicking on the corresponding zones on the monitor.
  • the presence of video cameras integrated in the touch monitor (in the case when the user is located frontally to the video cameras) makes it possible to obtain a detailed angle three-dimensional image with a variable viewing angle of 180 degrees, and the use of video cameras that are located outside the touch monitor and are installed on the back or on the sides him, allows you to get a detailed three-dimensional image with a variable viewing angle of 360 degrees. It should be noted that the viewing angle is variable not only in the horizontal, but also in the vertical plane.
  • the viewing angle changes at any point on the hemisphere, which is located in front of the user’s frontal plane
  • the viewing angle changes at any point on the sphere that is located around user.
  • this device when the device is turned off, this device can be used as a regular mirror, since the surface of the touch screen is covered with a film, which when the device is turned off, is a normal mirror surface, and when the device is turned on, it is a multimedia touch monitor.
  • Fig. 1 shows a structural diagram of the proposed device "Mirror 3D viewing angle"
  • Fig. 2 schematically depicts one embodiment and use of the device.
  • the multifunctional device "Mirror 3D viewing angle" contains a visualization unit 1, an imaging unit 2, including at least one video camera 3, a control unit 4, a memory unit 5.
  • the visualization unit 1 is made in as a multimedia capacitive touchscreen display with touchscreen surface 7 with integrated control unit 4 based on a microprocessor with an operating system and software, an imaging unit 2, an input signal processing unit 6, which are interconnected with a touchscreen surface 7 of the monitor.
  • the control unit 4 is configured to connect to the Internet as a cable, or using a wireless device to provide image transmission: static (surround photo) or dynamic (surround video).
  • the memory unit 5 is connected with the control unit 4 and the processing unit of the incoming signal 6.
  • This communication provides the transmission of the processed signal, which comes from the imaging unit 2, for storage and / or archiving in the memory unit 5.
  • the memory unit 5 can be implemented as built-in or external storage medium.
  • the touchscreen surface 7 of the touch monitor is covered with a film, which, when the device is turned off, is a normal mirror surface, and when the device is turned on, it is a multimedia touch monitor.
  • the film has such properties that allow the image on the screen itself without color and quality distortion to "skip" the image coming directly to the surface of the screen.
  • the imaging unit 2 includes at least one video camera 3 integrated in the touch monitor and at least one video camera 9, which is located beyond the touch monitor.
  • the video camera 3 can be located:
  • Video cameras 3 can be built into the touch monitor and located around the perimeter of the monitor or in other places, or video cameras 9 are located below the touch screen. In this case, the viewing angle, the angle of the device, is
  • FIXED SHEET (RULE 91) ISA / RU 180 degrees (the viewing angle changes at any point on the hemisphere, which is located in front of the frontal plane of the user).
  • the viewing angle the angle of the device, is 360 degrees (the viewing angle changes at any point on the sphere that is located around the user).
  • the control unit 4 is a microprocessor device with an operating system and software, the functional control of which is carried out using the touchscreen of the surface 7 of the touch monitor. These functions are:
  • control unit 4 with the appropriate user command, makes it possible to obtain a detailed image of the desired individual part of the surface of the display object, enlarge it and view this image against the background of the general
  • FIXED SHEET (RULE 91) ISA / RU images, having the ability to change the physical dimensions of the “detailed image”, change the viewing angles of both the main image and the embedded image (both independently of each other, as well as in the mode of simultaneous change of angle for both images).
  • the input signal processing unit 6 receives video signals from all video cameras (image forming unit 2) and turns it into a three-dimensional image.
  • the image can be presented as a photograph (static three-dimensional image) or as a video image (dynamic three-dimensional image). All user actions specified by the control unit 4 are processed in this unit 6.
  • This device is equipped with an uninterrupted and high-quality power supply unit with electric current 11.
  • Figure 2 schematically shows one embodiment of the device.
  • video scanning of his appearance will be carried out by video cameras 3, which are built into the touch monitor and located around the perimeter of the monitor or in other places, or video cameras 9 that are outside the touch screen.
  • the user on the surface 7 of the touch monitor will see his image with the ability to change the viewing angle of 180 degrees. If the user wants to see his image from all sides, he needs to rotate 180 degrees and then the device will display the user's image from all sides, or in another embodiment, there is a mechanical device for rotating the object. By setting the necessary commands, the user can change the viewing angle, increase the necessary sections of the image, at the same time observe these areas against the background of the entire image.
  • FIXED SHEET (RULE 91) ISA / RU can be stored in memory unit 5 or transmitted via the Internet to e-mail and then viewed or allowed to view others.
  • the device is equipped with video cameras 10, and user 8 wants to see himself from all sides, then by setting the necessary commands, he turns on video cameras 10, which are located on the back side of it or on the sides.
  • the user on the surface 7 of the monitor will see his surround image from all sides, that is, the viewing angle of the device is 360 degrees.
  • the proposed device can be used in everyday life, as a regular mirror (off), or as a multifunctional high-tech device, which greatly expands its scope and functionality.
  • this device can be used in beauty salons, fitness rooms, gyms, changing rooms, cosmetology clinics, plastic surgery hospitals, etc., where the important point is to determine the general appearance of the object (user) from all angles of view, from all sides, for example, determination of real appearance after separate procedures: stylistic, surgical, exercises and others.
  • users can use this device to transfer their surround image or video image to mobile devices, tablets, laptops, etc. via the Internet, for various purposes, for example, to approve (not approve) a girlfriend when choosing a dress, a plastic surgeon to find ways solving goals, a clothing store in order to send an image with a virtual fitting of a new collection, etc.

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Computer Hardware Design (AREA)
  • Theoretical Computer Science (AREA)
  • Studio Devices (AREA)
  • Closed-Circuit Television Systems (AREA)

Abstract

Le modèle d'utilité se rapport à des dispositifs de génération, de traitement numérique et de reproduction d'une image volumétrique 3D, et peut être utilisé comme dispositif-miroir ayant de nouvelles capacités fonctionnelles. L'invention concerne un miroir 3D multifonctionnel d'observation raccourcie comprenant une unité de visualisation, une unité de génération d'image comprenant au moins une caméra vidéo, une unité de commande et une unité de mémoire. Dans le dispositif, l'unité de visualisation se présente sous forme d'un affichage tactile capacitif multimédia avec une surface d'écran tactile dans lequel sont intégrés une unité de commande comprenant un microprocesseur avec un système d'exploitation et un logiciel, une unité de génération d'image, et une unité de traitement de signal d'entrée qui sont connectées entre elles et à la surface d'écran tactile du moniteur. L'unité de commande vient se connecter au réseau Internet par le biais d'un câble ou d'un dispositif de connexion sans fil, l'unité de mémoire est connectée à l'unité de commande et à l'unité de traitement de signal d'entrée, et l'unité de génération d'image comprend au moins une caméra vidéo intégrée dans le moniteur tactile et au moins une caméra vidéo située au-delà du contour du moniteur tactile. La surface tactile de l'affichage tactile est recouverte d'un film qui, lors de l'arrêt du dispositif, est une surface miroir classique et qui, lors de la mise en marche du dispositif, consiste en un moniteur tactile multimédia.
PCT/UA2014/000079 2014-06-26 2014-07-24 Dispositif multifonctionnel « miroir 3d d'observation raccourcie » WO2015199635A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
UAU201407217 2014-06-26
UAU201407217U UA92753U (ru) 2014-06-26 2014-06-26 Многофункциональное устройство "зеркало 3d ракурсного обзора"

Publications (1)

Publication Number Publication Date
WO2015199635A1 true WO2015199635A1 (fr) 2015-12-30

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Application Number Title Priority Date Filing Date
PCT/UA2014/000079 WO2015199635A1 (fr) 2014-06-26 2014-07-24 Dispositif multifonctionnel « miroir 3d d'observation raccourcie »

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UA (1) UA92753U (fr)
WO (1) WO2015199635A1 (fr)

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20090032428A (ko) * 2007-09-28 2009-04-01 이창덕 미용실 컴퓨터 시스템
CN101470694A (zh) * 2007-12-28 2009-07-01 英业达股份有限公司 利用镜子建议着衣的装置及其方法
EP2210532A2 (fr) * 2008-11-14 2010-07-28 N.V. Nederlandsche Apparatenfabriek NEDAP Miroir sur pied intelligent de hauteur intégrale
CN103600697A (zh) * 2013-12-15 2014-02-26 王�义 具有移动终端的智能车内后视镜

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20090032428A (ko) * 2007-09-28 2009-04-01 이창덕 미용실 컴퓨터 시스템
CN101470694A (zh) * 2007-12-28 2009-07-01 英业达股份有限公司 利用镜子建议着衣的装置及其方法
EP2210532A2 (fr) * 2008-11-14 2010-07-28 N.V. Nederlandsche Apparatenfabriek NEDAP Miroir sur pied intelligent de hauteur intégrale
CN103600697A (zh) * 2013-12-15 2014-02-26 王�义 具有移动终端的智能车内后视镜

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Publication number Publication date
UA92753U (ru) 2014-08-26

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