WO2020151431A1 - Procédé et système de traitement de données pour visualisation intelligente de véhicule - Google Patents

Procédé et système de traitement de données pour visualisation intelligente de véhicule Download PDF

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Publication number
WO2020151431A1
WO2020151431A1 PCT/CN2019/126956 CN2019126956W WO2020151431A1 WO 2020151431 A1 WO2020151431 A1 WO 2020151431A1 CN 2019126956 W CN2019126956 W CN 2019126956W WO 2020151431 A1 WO2020151431 A1 WO 2020151431A1
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WIPO (PCT)
Prior art keywords
information
car
input
scene
switching
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PCT/CN2019/126956
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English (en)
Chinese (zh)
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李新福
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广东康云科技有限公司
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Publication of WO2020151431A1 publication Critical patent/WO2020151431A1/fr

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/06Buying, selling or leasing transactions
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T17/00Three dimensional [3D] modelling, e.g. data description of 3D objects

Definitions

  • the invention relates to the field of computer data processing, in particular to a data processing method and system for smart car watching.
  • Visiting a physical store in person and there are many types of cars that need to be experienced, it consumes a lot of time for customers, reduces the efficiency of customers to understand the car, and there may be incomplete types of experience cars in the physical store, which indirectly affects the customer's operating experience.
  • the purpose of the present invention is to provide a more convenient and efficient way to understand the car's situation.
  • Another object of the present invention is to provide a more convenient and efficient car viewing system for understanding the car situation.
  • a data processing method for smart car watching includes the following steps:
  • the switching information includes angle switching information, position switching information, and color switching information.
  • the step of adjusting the screen displaying the three-dimensional scene according to the switching information specifically includes the following steps:
  • the color of the car in the 3D scene is switched and displayed according to the color switching information.
  • step of starting the car is specifically:
  • customer service connection step specifically includes the following steps:
  • the communication connection is a voice connection or a video connection
  • the customer service is an intelligent customer service or a manual customer service.
  • the intelligent voice control step is:
  • the instruction type information is converted and the corresponding instruction information is triggered;
  • the voice information is question type information
  • the question type information After matching the question type information with the preset question database, obtain and play the corresponding answer information;
  • the corresponding instruction information includes at least any one of zoom information, angle switch information, position switch information, color switch information, open information, click information, call information, and close information.
  • AR navigation step is specifically:
  • the third-party AR navigation service is invoked through the interface to generate a navigation route in combination with the departure address information and the preset destination address.
  • the automatic navigation step is specifically:
  • the screens of the 3D scene are switched in sequence according to the preset path, and all the introduction information is obtained and then automatically played in the preset order until the screen switching ends.
  • a data processing system for smart car watching includes:
  • the link display module is used to obtain the input link information and render and display the three-dimensional scene of the car according to the model data corresponding to the link information;
  • the screen adjustment module is used to obtain the input switching information and adjust the screen displaying the 3D scene according to the switching information;
  • the zoom display module is used to obtain the input zoom information, and zoom and display the partial images of the three-dimensional scene according to the zoom information.
  • a data processing system for smart car viewing including:
  • At least one processor At least one processor
  • At least one memory for storing at least one program
  • the at least one processor When the at least one program is executed by the at least one processor, the at least one processor implements the aforementioned data processing method for smart car watching.
  • the beneficial effects of the present invention are: the running model data of the present invention renders and displays the three-dimensional scene of the car, and adjusts the display of the three-dimensional scene through the input switching information and zoom information, which solves the problem of the user’s inefficient and rough way of looking at the car, and makes the user Car viewing is more convenient, improving the user’s viewing efficiency and experience, and meeting users’ high requirements for comfort and efficiency.
  • Figure 1 is a flow chart of the steps of a data processing method for smart car viewing according to the present invention
  • Figure 2 is a block diagram of a data processing system for smart car viewing of the present invention.
  • this embodiment provides a data processing method for smart car watching, which includes the following steps:
  • the 3D model of the car is built in advance and the 3D model is stored on the server.
  • the server is accessed through the link, and after selecting the corresponding car, the 3D model of the reconstructed car is rendered.
  • the user can access the server through a smart terminal such as a mobile phone, a tablet computer or a notebook computer, and display the three-dimensional scene of the car through the existing display device.
  • the display device can adopt AR display equipment, VR display equipment, air screen, LED display Screen, LCD display, OLED display or dot matrix display.
  • car buyers can choose an offline service point to watch the car. There is a large screen at the offline service point, which can display the three-dimensional scene at the same scale as the car.
  • the offline service point has real cars for customers to watch
  • the screen of the three-dimensional scene is controlled through human-computer interaction
  • the user inputs switching information and zoom information
  • the screen of the three-dimensional scene of the car is adjusted in real time according to the input information.
  • the user can input switching information through the mobile phone screen, such as swiping the screen with a finger to realize an all-round view of the 3D scene of a car, and dragging the screen with two fingers to zoom in and out of partial images.
  • the user views the 3D scene through the computer, he can input switching information through the mouse, view the 3D scene of the car in all directions by scrolling the mouse, and zoom in and out the partial picture by dragging the mouse.
  • a user views a three-dimensional scene through a VR display device or an AR display device, the user's visual angle information is obtained through the helmet device, thereby viewing the three-dimensional scene of the car.
  • brainwave sensors, somatosensory sensors, eye trackers, touch devices, voice input devices, or gesture recognition modules can be used to control the switching of the 3D scene screen to realize the full view of the 3D scene of the car;
  • the brain wave sensor is used to collect the user's brain wave signal in order to recognize the user's ideas or thoughts, thereby controlling the switching of the three-dimensional scene of the car, which can be realized by using the existing brain wave sensor;
  • the somatosensory sensor is used for Capturing the user’s somatosensory signal (such as the user’s driving and sliding motion signals) to control the switching of the car’s three-dimensional scene can be achieved by using existing somatosensory sensors;
  • the eye tracker is used to capture the user’s eye movements according to the eye
  • the action control to switch the 3D scene of the car can be realized by using an existing eye tracker;
  • the touch device is used for the user to input touch instructions by touch, such as a touch screen, and the 3D scene of the car can be switched
  • the existing touch device is implemented; the voice input device is used to collect the user's voice signal, and switch the three-dimensional scene of the car through the input voice signal system, such as inputting "left" voice information through voice to control the three-dimensional
  • the scene switching display to the left can be realized by using existing voice input equipment; the gesture recognition module is used to capture the user's gesture signal and control the switching of the car's three-dimensional scene through the gesture signal, and the existing gesture recognition module can be used to fulfill.
  • the existing gesture recognition module can be used to fulfill. Provides a variety of human-computer interaction modes, allowing users to better control the switching of car 3D scenes.
  • this embodiment provides the function of partially zooming in and zooming out the 3D scene of the car, as well as the perspective view, exploded view, transformer and fluid special effects of the car 3D scene. It is convenient for users to obtain more car information (internal parts, etc.) and more dynamic effects, fully understand the parameters of the car, and make better choices; specifically, set virtual buttons on the 3D scene, and switch perspective views through virtual buttons. Or exploded diagram and other display effects.
  • the user can watch and understand the specific parameters and conditions of the car through the smart terminal, avoiding simply seeing the appearance pictures and simple parameter data of the car through the poster, and there is no need to go to different car stores to understand the car parameters, making the user more efficient and convenient To view the situation of the car; moreover, by displaying the three-dimensional scene of the car, it can reflect the situation of the car more realistically and improve the user’s viewing experience.
  • the switching information includes angle switching information, position switching information, and color switching information
  • step S2 specifically includes steps S21 to S23:
  • the user switches the information through the angle to switch the angle of the three-dimensional scene, such as rotating the car 360° to view the shape of the car from various angles. For example, at the beginning, the side of the car is displayed. By entering the angle switch information, you can view the front of the car or the roof above, so as to get a more comprehensive understanding of the shape and appearance of the car.
  • the user switches the user's location by inputting location switching information, and renders the screen showing the 3D scene accordingly. For example, at the beginning, the user's location is displayed outside the car. Outside the car, the displayed 3D scene is the appearance of the car.
  • the angle switching information can be used to view the appearance of the car in all directions; when the position switching information is input, the user’s position is switched, such as switching to the main driving position.
  • the three-dimensional scene displayed at this time is the interior of the car, and the main angle picture is the main In the driving position screen, you can view the main driver's screen according to the angle switching information, such as the front glass, steering wheel, control gear, and co-pilot; through the position switching information, the user can also switch to the co-pilot position and the rear seat position, which is more comprehensive Observe the interior of the car in a more detailed way, learn more about the details of the car, and improve the customer's operating experience.
  • the pop-up frame displays several optional color blocks, such as white , Blue, black, red, etc., when the user selects the white color block, the car’s shell will be displayed as white, because the color of the car is one of the important criteria for the user to choose a car, and the user can learn more about the car by switching the color This is difficult to achieve in a physical car store, and there are few samples of the same car model in different colors for customers to watch.
  • white , Blue, black, red, etc. when the user selects the white color block, the car’s shell will be displayed as white, because the color of the car is one of the important criteria for the user to choose a car, and the user can learn more about the car by switching the color This is difficult to achieve in a physical car store, and there are few samples of the same car model in different colors for customers to watch.
  • step of starting the car further includes a step of starting the car, and the step of starting the car is specifically:
  • the user controls the car to start by inputting the start information, and adjusts the headlights of the car and the screen of the car's internal display screen accordingly.
  • the start-up information includes car start-up information, rear trunk opening information, and window lift information.
  • the trigger car is started, the car will start.
  • the user starts the car through the virtual button.
  • the car After starting the car, the car’s headlights in the 3D scene turn on.
  • the user can control the car through the control buttons in the car. For example, when the user presses the case that the tail box is opened, the screen of the tail box will be adjusted and displayed accordingly.
  • an intelligent recognition function which recognizes objects in a three-dimensional scene by clicking information.
  • the corresponding car image is displayed in the 3D scene for customers to view.
  • the user can obtain the corresponding information by inputting and clicking information.
  • the introduction information specifically, when the user clicks on the seat on the screen, the click information is mapped to the three-dimensional scene, the trigger information of the seat is recognized, and the introduction information is obtained from the preset database according to the trigger information and displayed, such as the introduction seat The size and material of the chair, etc.; wherein the introduction information can be any of text information, voice information or video information.
  • customer service connection step specifically includes the following steps:
  • the communication connection is a voice connection or a video connection
  • the customer service is an intelligent customer service or a manual customer service.
  • the customer can be a human customer service or an intelligent customer service (ie, an intelligent robot).
  • the call information can be entered by voice or manually.
  • a virtual button is placed on the three-dimensional scene. The button is set at the upper left corner of the screen. The user clicks the button to trigger the establishment of communication with the customer service. connection. When the communication is over, click the button again and enter the closing information to disconnect the communication.
  • users have questions, they can consult customers in real time to improve the user's efficiency in understanding the car situation.
  • the customer service adopts intelligent customer service, which can return to the user's problems within 24 hours, reducing labor costs and improving work efficiency.
  • the intelligent voice control step is:
  • the instruction type information is converted and the corresponding instruction information is triggered;
  • the voice information is question type information
  • the question type information After matching the question type information with the preset question database, obtain and play the corresponding answer information;
  • the corresponding instruction information includes at least any one of zoom information, angle switch information, position switch information, color switch information, start information, click information, call information, and close information.
  • an intelligent voice control function is provided.
  • the user can directly control the switching of the three-dimensional scene screen through voice.
  • the voice information includes instruction type information and question type information.
  • the instruction type information is used to control the three-dimensional scene.
  • Screen switching the question type information is used for consulting questions.
  • the instruction type information is converted and the corresponding instruction information is triggered, and then the switching of the three-dimensional scene screen is controlled. For example, after the voice input "left", the "left” is converted to the direction Slide the information on the left to control the 3D scene adjustment screen.
  • the question type information is matched with the preset question database, and after the processing, the answer information is input. For example, the customer needs to know how much space is inside the car.
  • the question database is matched, and after the matching is completed, the corresponding answer information is input.
  • the output answer information can be output in text or voice.
  • it further includes an AR navigation step, and the AR navigation step is specifically:
  • the third-party AR navigation service is invoked through the interface to generate a navigation route in combination with the departure address information and the preset destination address.
  • This embodiment provides an AR navigation function.
  • the user wants to watch the car on-site after watching the car, he can directly input the departure address information on the screen, and the system combines the departure address information and the preset destination address to call a third party through the interface
  • the AR navigation service generates a navigation route
  • the third-party AR navigation service can select an existing third-party navigation service, and the user goes to the source of the car according to the navigation route.
  • users can also make reservations through the online system. For example, users can input basic information and time information of the reservation person through their mobile phones, which improves the user's car viewing efficiency and facilitates the management of car source managers. If the user sees the car at the offline service point, after choosing the car, he can directly make an appointment with the staff to get the car key.
  • the automatic navigation step is specifically:
  • the screens of the 3D scene are switched in sequence according to the preset path, and all the introduction information is obtained and then automatically played in the preset order until the screen switching ends.
  • This embodiment provides an automatic navigation function, which is an optional function.
  • an automatic navigation function which is an optional function.
  • the screen automatically plays the picture
  • the switching path of the picture is the preset path
  • the introduction information is automatically played during the picture switching process, which makes it more convenient for users to understand the situation of the car.
  • the method of the present invention has the following advantages over the prior art:
  • this embodiment provides a data processing system for smart car watching, including:
  • the link display module is used to obtain the input link information and render and display the three-dimensional scene of the car according to the model data corresponding to the link information;
  • the screen adjustment module is used to obtain the input switching information and adjust the screen displaying the 3D scene according to the switching information;
  • the zoom display module is used to obtain the input zoom information, and zoom and display the partial images of the three-dimensional scene according to the zoom information.
  • the system of the present invention renders and displays the three-dimensional scene of the car by running model data, and adjusts the display of the three-dimensional scene through the input switching information and zoom information, which solves the problem of the user's inefficient and rough way of looking at the car, and makes it more convenient for the user to see the car , Improve the user's car viewing efficiency and experience, and meet the users' high requirements for comfortable and efficient car viewing.
  • This embodiment provides a data processing system for smart car watching, including:
  • At least one processor At least one processor
  • At least one memory for storing at least one program
  • the at least one processor When the at least one program is executed by the at least one processor, the at least one processor implements the data processing method for smart car watching described in the first embodiment.
  • the data processing system for smart car watching of this embodiment can execute the data processing method for smart car watching provided in the first embodiment of the method of the present invention, and can execute any combination of implementation steps of the method embodiments, and has the corresponding method The functions and beneficial effects.

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Abstract

L'invention concerne un procédé et un système de traitement de données pour visualisation intelligente de véhicule, le procédé comprenant les étapes suivantes consistant à : obtenir des informations de liaison entrées, puis restituer et afficher une scène tridimensionnelle d'un véhicule selon des données de modèle correspondant aux informations de liaison (S1) ; obtenir des informations de commutation entrées, puis ajuster et afficher un écran de la scène tridimensionnelle conformément aux informations de commutation (S2) ; et obtenir des informations de zoom entrées, puis zoomer et afficher une partie de l'écran de la scène tridimensionnelle selon les informations de zoom (S3). Le procédé exécute les données de modèle pour rendre et afficher la scène tridimensionnelle du véhicule, et règle et affiche l'écran de la scène tridimensionnelle au moyen des informations de commutation entrées et des informations de zoom, ce qui résout le problème de l'utilisateur selon lequel une visualisation de véhicule est inefficace et réalisée de manière brute, rend le véhicule plus pratique pour l'utilisateur, améliore l'efficacité et l'expérience de visualisation du véhicule de l'utilisateur, répond aux exigences élevées de l'utilisateur pour une visualisation de véhicule confortable et efficace, et peut être largement utilisé dans le domaine du traitement de données informatiques.
PCT/CN2019/126956 2019-01-21 2019-12-20 Procédé et système de traitement de données pour visualisation intelligente de véhicule WO2020151431A1 (fr)

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CN109949121A (zh) * 2019-01-21 2019-06-28 广东康云科技有限公司 一种智能看车的数据处理方法及系统
CN111414225B (zh) * 2020-04-10 2021-08-13 北京城市网邻信息技术有限公司 三维模型远程展示方法、第一终端、电子设备及存储介质
CN111861666A (zh) * 2020-07-21 2020-10-30 上海仙豆智能机器人有限公司 车辆信息的交互方法及装置
CN113205386A (zh) * 2021-05-11 2021-08-03 福建省万物智联科技有限公司 一种个性化定制鞋服的视觉处理的方法、装置及存储介质
CN113900510A (zh) * 2021-09-03 2022-01-07 北京城市网邻信息技术有限公司 车辆信息展示方法、设备及存储介质
CN114063785A (zh) * 2021-11-23 2022-02-18 Oppo广东移动通信有限公司 信息输出方法、头戴式显示设备及可读存储介质
CN114791766A (zh) * 2022-05-16 2022-07-26 上海邻里邻外信息科技有限公司 一种基于ar设备的操作方法、装置、介质及设备
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