WO2022062491A1 - 一种基于智能座舱的车载智能硬件管控方法和智能座舱 - Google Patents

一种基于智能座舱的车载智能硬件管控方法和智能座舱 Download PDF

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Publication number
WO2022062491A1
WO2022062491A1 PCT/CN2021/100615 CN2021100615W WO2022062491A1 WO 2022062491 A1 WO2022062491 A1 WO 2022062491A1 CN 2021100615 W CN2021100615 W CN 2021100615W WO 2022062491 A1 WO2022062491 A1 WO 2022062491A1
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WIPO (PCT)
Prior art keywords
vehicle
hardware
intelligent hardware
page
intelligent
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PCT/CN2021/100615
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English (en)
French (fr)
Inventor
闫祯杰
饶恒
戴观祺
黄翔
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广州小鹏汽车科技有限公司
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Publication of WO2022062491A1 publication Critical patent/WO2022062491A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60RVEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
    • B60R16/00Electric or fluid circuits specially adapted for vehicles and not otherwise provided for; Arrangement of elements of electric or fluid circuits specially adapted for vehicles and not otherwise provided for
    • B60R16/02Electric or fluid circuits specially adapted for vehicles and not otherwise provided for; Arrangement of elements of electric or fluid circuits specially adapted for vehicles and not otherwise provided for electric constitutive elements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60RVEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
    • B60R16/00Electric or fluid circuits specially adapted for vehicles and not otherwise provided for; Arrangement of elements of electric or fluid circuits specially adapted for vehicles and not otherwise provided for
    • B60R16/02Electric or fluid circuits specially adapted for vehicles and not otherwise provided for; Arrangement of elements of electric or fluid circuits specially adapted for vehicles and not otherwise provided for electric constitutive elements
    • B60R16/037Electric or fluid circuits specially adapted for vehicles and not otherwise provided for; Arrangement of elements of electric or fluid circuits specially adapted for vehicles and not otherwise provided for electric constitutive elements for occupant comfort, e.g. for automatic adjustment of appliances according to personal settings, e.g. seats, mirrors, steering wheel
    • B60R16/0373Voice control

Definitions

  • the present application relates to the technical field of vehicles, and in particular, to a vehicle-mounted intelligent hardware management and control method based on an intelligent cockpit and an intelligent cockpit.
  • in-vehicle intelligent hardware has begun to be popularized in the interior space of vehicles. Therefore, the access and use of in-vehicle intelligent hardware is becoming more and more important for the driver's car experience.
  • in-vehicle intelligent hardware is to transform traditional in-vehicle equipment through the combination of software and hardware, and then make it intelligent, that is, it can be controlled through an app (application program).
  • app application program
  • each in-vehicle smart hardware can only be controlled individually through different apps, so it is inconvenient to use and manage, and there are risks to control while driving.
  • users cannot gain in-depth understanding of the detailed information of the in-vehicle intelligent hardware used in the vehicle.
  • the present application provides a smart cockpit-based vehicle intelligent hardware management and control method and a smart cockpit.
  • the present application provides a vehicle-mounted intelligent hardware management and control method based on an intelligent cockpit, and the method includes:
  • a preset page corresponding to the in-vehicle intelligent hardware is entered.
  • the response to an operation instruction for an interface element of the in-vehicle intelligent hardware enters a preset page corresponding to the in-vehicle intelligent hardware, including:
  • Obtain status information of the vehicle-mounted intelligent hardware the status information at least includes purchased, unpurchased, connected and unconnected;
  • the response to an operation instruction for an interface element of the vehicle-mounted intelligent hardware, entering a preset page corresponding to the vehicle-mounted intelligent hardware according to the status information including:
  • the hardware introduction page uses To introduce the detailed information when the vehicle-mounted intelligent hardware is used in the vehicle.
  • the response to an operation instruction for an interface element of the vehicle-mounted intelligent hardware, entering a preset page corresponding to the vehicle-mounted intelligent hardware according to the status information including:
  • the hardware control page corresponding to the in-vehicle intelligent hardware in response to the operation instruction for the interface element of the in-vehicle intelligent hardware; the hardware control page is used for The in-vehicle intelligent hardware is controlled correspondingly in response to an operation instruction on the hardware control page.
  • the smart management page has a three-dimensional display button, and after the smart management page is opened in response to the operation instruction for the smart cockpit, the method further includes:
  • the three-dimensional display page is entered; the three-dimensional display page is used to display a schematic introduction of the use of the vehicle-mounted intelligent hardware in the vehicle.
  • the method before entering into a hardware control page corresponding to the in-vehicle intelligent hardware in response to an operation instruction for the interface element of the in-vehicle intelligent hardware, the method further includes:
  • the interface element corresponding to the vehicle-mounted intelligent hardware displays the shortcut operation button
  • the interface element corresponding to the in-vehicle intelligent hardware will prompt that the in-vehicle intelligent hardware is not connected.
  • the response to the operation instruction of the interface element of the in-vehicle intelligent hardware enters a hardware control page corresponding to the in-vehicle intelligent hardware, including:
  • connection page In response to the operation instruction for the interface element corresponding to the in-vehicle intelligent hardware, enter a connection page; the connection page is used for network connection;
  • a cockpit map is displayed on the smart management page, wherein the cockpit map marks the specific location of the in-vehicle smart hardware that has been purchased or that has been purchased and connected.
  • the vehicle-mounted intelligent hardware includes at least one of a smart fragrance, an in-vehicle smart camera, an in-vehicle projector and an in-vehicle refrigerator.
  • the present application provides an intelligent cockpit, including:
  • the intelligent management page opening module is used to open the intelligent management page in response to the operation instruction for the intelligent cockpit;
  • an interface element display module configured to display interface elements corresponding to the vehicle-mounted intelligent hardware in the intelligent management page;
  • the interface elements have a plurality of preset pages, and the preset pages are used to introduce or control the vehicle-mounted intelligent hardware;
  • the preset page entry module is used to enter the preset page corresponding to the vehicle-mounted intelligent hardware in response to the operation instruction for the interface element of the vehicle-mounted intelligent hardware.
  • the preset page entry module includes:
  • a state information acquisition sub-module for acquiring the state information of the vehicle-mounted intelligent hardware; the state information at least includes purchased, unpurchased, connected and unconnected;
  • the preset page entry sub-module is used to respond to the operation instruction for the interface element of the vehicle-mounted intelligent hardware, and enter the preset page corresponding to the vehicle-mounted intelligent hardware according to the state information.
  • the preset page entry sub-module includes:
  • the introduction page entry unit is used to enter the hardware introduction page corresponding to the vehicle intelligent hardware in response to the operation instruction for the interface element of the vehicle intelligent hardware when the state information is that the vehicle intelligent hardware has not been purchased ;
  • the hardware introduction page is used to introduce the detailed information of the on-board intelligent hardware used in the vehicle.
  • the preset page entry sub-module includes:
  • control page entry unit configured to enter a hardware control page corresponding to the in-vehicle intelligent hardware in response to an operation instruction for the interface element of the in-vehicle intelligent hardware when the state information is the purchase of the in-vehicle intelligent hardware;
  • the hardware control page is used for correspondingly controlling the vehicle-mounted intelligent hardware in response to an operation instruction for the hardware control page.
  • the smart cockpit further includes:
  • the three-dimensional display entry module is used to respond to the operation instruction for the three-dimensional display button and enter the three-dimensional display page; the three-dimensional display page is used to display the schematic introduction of the vehicle-mounted intelligent hardware used in the vehicle.
  • the preset page entry sub-module further includes:
  • a shortcut operation display unit configured to display the shortcut operation button on an interface element corresponding to the vehicle-mounted intelligent hardware if the status information indicates that the vehicle-mounted intelligent hardware is successfully connected;
  • the unconnected display unit is configured to prompt that the on-board smart hardware is not connected on an interface element corresponding to the on-board smart hardware if the status information is that the on-board smart hardware is not connected successfully.
  • the preset page entry submodule further includes:
  • connection page enters the sub-unit, which is used to enter the connection page in response to the operation instruction for the interface element corresponding to the in-vehicle intelligent hardware; the connection page is used for network connection; after the network connection is successful, enter the corresponding in-vehicle intelligent hardware hardware control page.
  • a cockpit map is displayed on the smart management page, wherein the cockpit map marks the specific location of the in-vehicle smart hardware that has been purchased or that has been purchased and connected.
  • the vehicle-mounted intelligent hardware includes at least one of a smart fragrance, an in-vehicle smart camera, an in-vehicle projector and an in-vehicle refrigerator.
  • the present application provides a vehicle, comprising a processor, a memory, and a computer program stored on the memory and capable of running on the processor, the computer program being executed by the processor to implement all of the above based on A method for on-board intelligent hardware control of a smart cockpit.
  • the present application provides a computer-readable storage medium, where a computer program is stored on the computer-readable storage medium, and when the computer program is executed by a processor, all the above-mentioned methods for intelligent cockpit-based vehicle-mounted intelligent hardware management and control are implemented.
  • the smart management page is opened in response to the operation instruction for the smart cockpit, and the smart management page displays the interface elements corresponding to the vehicle-mounted intelligent hardware.
  • the interface elements have multiple preset pages, and the preset pages are used to introduce or control the vehicle-mounted intelligent hardware.
  • the intelligent hardware can then enter a preset page corresponding to the in-vehicle intelligent hardware in response to the operation instruction for the interface element of the in-vehicle intelligent hardware.
  • the vehicle-mounted intelligent hardware is configured in the intelligent cockpit to realize the unified management and control of various types of vehicle-mounted intelligent hardware, and the vehicle-mounted intelligent hardware is controlled through the preset page, which makes the management and control of the vehicle-mounted intelligent hardware simpler, more intuitive and more efficient. It is more convenient and safe to use the in-vehicle intelligent hardware; you can also introduce the in-vehicle intelligent hardware through a preset page, allowing users to know the detailed information of the in-vehicle intelligent hardware.
  • Fig. 1 is the step flow chart of a kind of intelligent cockpit-based vehicle-mounted intelligent hardware management and control method of the present application
  • FIG. 2 is a flow chart of steps of another intelligent cockpit-based vehicle-mounted intelligent hardware management and control method of the present application
  • FIG. 3 is a flow chart of the steps of another intelligent cockpit-based vehicle-mounted intelligent hardware management and control method according to the present application;
  • FIG. 4 is a schematic diagram of an introduction page of unpurchased vehicle-mounted intelligent hardware according to the present application.
  • Fig. 5 is the schematic diagram of a kind of intelligent fragrance hardware control page of the present application.
  • FIG. 6 is a schematic diagram of a purchased vehicle-mounted intelligent hardware intelligent management page of the present application.
  • FIG. 7 is a schematic diagram of a 3D display page of the present application.
  • FIG. 8 is a schematic diagram of a touch operation management and control flow diagram of the present application.
  • FIG. 9 is a schematic diagram of a voice command management and control process of the present application.
  • FIG. 10 is a schematic diagram of a wake-up voice command of the present application.
  • FIG. 11 is a schematic structural diagram of a smart cockpit of the present application.
  • Figure 12 schematically shows a block diagram of a computing processing device for performing methods according to the present application
  • Figure 13 schematically shows a memory unit for holding or carrying program code implementing the method according to the application.
  • the cabin can improve the intelligence of the cockpit and make the cockpit the core of human-vehicle interaction experience, which can provide users with a better vehicle riding experience.
  • the intelligent cockpit electronic system can refer to a complete system consisting of central control, full LCD instrumentation, head-up display, entertainment system, intelligent audio, car networking module, streaming media rearview mirror, telematics system, etc.
  • the intelligent cockpit system can refer to the system that takes the cockpit area controller as the center, realizes the functions of the above-mentioned intelligent cockpit electronic system on a unified software and hardware platform, and integrates intelligent interaction, intelligent scenes, and personalized services.
  • the intelligent cockpit system can form the basis for human-vehicle interaction and the interconnection between vehicles and the outside world.
  • the usage scenarios of the intelligent cockpit system can usually cover all scenarios in which the user uses the vehicle. Specifically, it may include time scenes before the user uses the vehicle, during the user's use of the vehicle, and after the user uses the vehicle, and may also include space scenes of the driver, co-pilot, rear passengers, and related persons or objects outside the vehicle.
  • the human-computer interaction in the intelligent cockpit can be combined with the usage scenarios of the vehicle and the user, based on basic technologies such as image recognition, speech recognition, and environmental perception, to achieve an intelligent effect that is more in line with user needs.
  • One of the core concepts of the present application is to realize the unified management and control of the in-vehicle intelligent hardware based on the intelligent cockpit.
  • the interface elements of the in-vehicle intelligent hardware can be displayed on the management page of the intelligent cockpit, and multiple preset pages are set for the interface elements.
  • the preset page makes the management and control of the vehicle intelligent hardware simpler, more intuitive and more efficient. It is more convenient and safe for the user to use the vehicle intelligent hardware when driving.
  • the preset page can also obtain the introduction information of the in-vehicle intelligent hardware, so that the user can know the detailed information of the in-vehicle intelligent hardware.
  • FIG. 1 shows a flow chart of steps of a smart cockpit-based vehicle-mounted intelligent hardware management and control method provided by the present application, which may specifically include the following steps:
  • Step 101 in response to the operation instruction for the smart cockpit, open the smart management page
  • the relevant information of the in-vehicle intelligent hardware is preset in the smart cockpit, such as the function introduction information of the in-vehicle intelligent hardware and the preview information of usage scenarios, etc., so that the intelligent cockpit can uniformly manage and control the in-vehicle intelligent hardware.
  • the in-vehicle intelligent hardware includes at least one of an intelligent fragrance, an in-vehicle intelligent camera, an in-vehicle projector and an in-vehicle refrigerator.
  • the smart management page is a page used to display the in-vehicle intelligent hardware. On the intelligent management page, the in-vehicle intelligent hardware is displayed as a corresponding interface element. Usually, one in-vehicle intelligent hardware corresponds to one interface element.
  • the smart management page is opened, and the smart management page will show the user all interface elements corresponding to different in-vehicle smart hardware.
  • interface elements corresponding to smart fragrances and smart car hardware such as smart refrigerators can be displayed to the user.
  • Step 102 displaying interface elements corresponding to the in-vehicle intelligent hardware in the intelligent management page;
  • the interface elements have a plurality of preset pages, and the preset pages are used to introduce or control the in-vehicle intelligent hardware;
  • the preset page is related to the interface elements corresponding to the in-vehicle intelligent hardware, and different interface elements correspond to different preset pages.
  • the same interface element may have multiple corresponding preset pages, for example, it may include an introduction page for in-vehicle intelligent hardware.
  • the smart management page can show the user all interface elements corresponding to different vehicle-mounted smart hardware.
  • Step 103 In response to the operation instruction for the interface element of the vehicle-mounted intelligent hardware, enter a preset page corresponding to the vehicle-mounted intelligent hardware.
  • the interface elements of different in-vehicle intelligent hardware correspond to different preset pages. After the user triggers an operation instruction of a certain interface element on the intelligent management page, and responds to the operation instruction for the interface element of the in-vehicle intelligent hardware, the user can enter the user interface.
  • the smart management page is opened in response to the operation instruction for the smart cockpit, and the smart management page displays the interface elements corresponding to the in-vehicle intelligent hardware.
  • the interface elements have multiple preset pages, and the preset pages are used to introduce or control the in-vehicle intelligence The hardware, and then responds to the operation instruction for the interface element of the in-vehicle intelligent hardware, thereby entering a preset page corresponding to the in-vehicle intelligent hardware.
  • the vehicle-mounted intelligent hardware is configured in the intelligent cockpit to realize unified management and control of various types of vehicle-mounted intelligent hardware. Specifically, the vehicle-mounted intelligent hardware can be controlled through a preset page, which makes the management and control of the vehicle-mounted intelligent hardware simpler, more intuitive and more efficient.
  • the introduction information of the in-vehicle intelligent hardware can be obtained through the preset page, so that the user can obtain the detailed information of the in-vehicle intelligent hardware.
  • a flowchart of steps of another intelligent cockpit-based vehicle-mounted intelligent hardware management and control method may specifically include the following steps:
  • Step 201 in response to the operation instruction for the smart cockpit, open the smart management page;
  • Step 202 displaying interface elements corresponding to the in-vehicle intelligent hardware in the intelligent management page; the interface elements have a plurality of preset pages, and the preset pages are used to introduce or control the in-vehicle intelligent hardware;
  • the smart management page in response to the operation instruction for the smart cockpit, the smart management page is opened, and the smart management page will display all interface elements corresponding to different vehicle-mounted smart hardware to the user.
  • Interface elements corresponding to different in-vehicle intelligent hardware, and multiple preset pages corresponding to the interface elements are used to introduce or control the in-vehicle intelligent hardware.
  • Step 203 obtaining status information of the vehicle-mounted intelligent hardware; the status information at least includes purchased, unpurchased, connected and unconnected;
  • the status information is the current state of the on-board intelligent hardware, including the four states of the vehicle has been purchased, not purchased, connected and not connected, and the status information of different on-board intelligent hardware can be displayed through the corresponding interface elements. to display.
  • connected and not connected refers to whether it is connected to the network.
  • the smart cockpit can obtain the status information of all on-board smart hardware, and display the corresponding on-board smart hardware status information through the interface elements displayed on the smart management page, and different status information is displayed through the interface elements.
  • the corresponding status information will be displayed on the interface elements.
  • the unpurchased in-vehicle smart hardware will not be connected to the smart cockpit, and of course there is no question of whether it is connected to the network, so in practice, there is no need to display whether the unpurchased in-vehicle smart hardware is connected to the network.
  • Step 204 In response to an operation instruction for an interface element of the vehicle-mounted intelligent hardware, enter a preset page corresponding to the vehicle-mounted intelligent hardware according to the state information.
  • the interface elements of the in-vehicle intelligent hardware display different status information, and different status information corresponds to different preset pages. For example, assuming that the in-vehicle intelligent hardware has four status information: purchased, unpurchased, connected and unconnected, you can enter the preset pages corresponding to different state information, so that the information in different states can be adjusted according to the preset pages.
  • the in-vehicle intelligent hardware carries out corresponding management and control.
  • the intelligent management page is opened, and the intelligent management page displays the interface elements corresponding to the in-vehicle intelligent hardware, then obtains the status information of the in-vehicle intelligent hardware, and enters the preset page corresponding to the in-vehicle intelligent hardware according to the status information, so as to
  • this application configures the on-board intelligent hardware in the smart cockpit, and then through the intelligent management page, according to the status information corresponding to the on-board intelligent hardware, realizes the unified management and control of different on-board intelligent hardware, making the management and control of the on-board intelligent hardware simpler , Intuitive and more efficient, it is more convenient and safer for users to use the on-board intelligent hardware when driving.
  • FIG. 3 it is shown that another kind of on-board intelligent hardware management and control method based on intelligent cockpit provided by this application is a flow chart of steps, which can specifically include the following steps:
  • Step 301 in response to the operation instruction for the smart cockpit, open the smart management page;
  • Step 302 displaying interface elements corresponding to the in-vehicle intelligent hardware in the intelligent management page; the interface elements have a plurality of preset pages, and the preset pages are used to introduce or control the in-vehicle intelligent hardware;
  • Step 303 Obtain status information of the vehicle-mounted intelligent hardware; the status information at least includes purchased, unpurchased, connected and unconnected;
  • the smart management page when the user opens the smart management page through the smart cockpit, the smart management page will show the user interface elements corresponding to all different on-board smart hardware.
  • the smart cockpit will obtain the status information of all on-board smart hardware, and through the smart management
  • the interface elements of the in-vehicle intelligent hardware displayed on the page, and the status information of the corresponding in-vehicle intelligent hardware is displayed on the interface elements.
  • Step 304 when the status information indicates that the vehicle-mounted intelligent hardware has not been purchased, enter the hardware introduction page corresponding to the vehicle-mounted intelligent hardware in response to the operation instruction for the interface element of the vehicle-mounted intelligent hardware; the hardware The introduction page is used to introduce the detailed information of the in-vehicle intelligent hardware used in the vehicle;
  • the preset pages may include multiple types and are associated with state information, and enter different preset pages according to different state information.
  • a preset page corresponding to the status information of the in-vehicle intelligent hardware can be entered.
  • the preset page corresponding to the vehicle intelligent hardware is the hardware introduction page
  • the hardware introduction page contains the detailed information of the vehicle intelligent hardware when it is used in the vehicle, including hardware introduction, usage scene preview and The QR code connected to the purchase portal of the boutique mall.
  • the interface elements corresponding to the in-vehicle intelligent hardware are grayed out, and the user can initiate an operation command of the View Introduction button for the interface element corresponding to the in-vehicle intelligent hardware to enter the hardware introduction page corresponding to the in-vehicle intelligent hardware .
  • the hardware introduction page users can know the introduction information of the in-vehicle intelligent hardware in advance, preview the usage scene in the vehicle, and enter the boutique mall to purchase by scanning the QR code provided on the hardware introduction page.
  • the intelligent management page displays unpurchased vehicle-mounted intelligent hardware, such as intelligent fragrances, in-vehicle intelligent cameras, and in-vehicle projectors and car refrigerator, respond to the operation instructions for the interface elements of the smart fragrance, and enter the hardware introduction page of the smart fragrance.
  • the QR code can enter the boutique mall to purchase smart fragrances.
  • Step 305 when the status information is the purchase of the vehicle-mounted intelligent hardware, enter the hardware control page corresponding to the vehicle-mounted intelligent hardware in response to the operation instruction for the interface element of the vehicle-mounted intelligent hardware; the hardware control The page is used to control the in-vehicle intelligent hardware in response to the operation instruction for the hardware control page.
  • the preset page corresponding to the interface element corresponding to the in-vehicle intelligent hardware is the hardware control page, and the hardware control page has operation buttons for the in-vehicle intelligent hardware.
  • the status information is the purchase of vehicle-mounted intelligent hardware
  • the hardware control page corresponding to the vehicle-mounted intelligent hardware
  • FIG. 5 is a schematic diagram of a smart fragrance hardware control page provided by the present application.
  • the purchased smart fragrance enters the hardware control page of the smart fragrance in response to an operation instruction for the corresponding interface element of the smart fragrance
  • the hardware control page of the smart fragrance has buttons for opening timing, timing switch, fragrance concentration control and fragrance flow rate control, as well as fragrance modes such as starry night, sea rhyme, and forest to choose from, which can be selected according to the user's environment and needs. Control the smart fragrance by operating the specific operation buttons on the control page of the smart fragrance hardware.
  • the method before entering a hardware control page corresponding to the vehicle-mounted intelligent hardware in response to an operation instruction for the interface element of the vehicle-mounted intelligent hardware, the method further includes:
  • the interface element corresponding to the vehicle-mounted intelligent hardware displays the shortcut operation button
  • the interface element corresponding to the in-vehicle intelligent hardware will prompt that the in-vehicle intelligent hardware is not connected.
  • the shortcut operation buttons include on-board intelligent hardware on, off and mode switching buttons.
  • the interface element displays the operation instructions of the shortcut operation buttons, which can easily control the vehicle intelligent hardware. For example, for a purchased and connected smart fragrance, it is possible to quickly control the opening, closing and mode of the smart fragrance in response to the operation instruction displayed on the smart fragrance interface element displaying the shortcut operation button.
  • the interface element is grayed out, indicating that the user cannot manage and control the on-board smart hardware temporarily, and the interface element shows that the on-board smart hardware is not connected.
  • FIG. 6 is a schematic diagram of an intelligent management page of a purchased vehicle-mounted intelligent hardware provided by the present application.
  • the interface element corresponding to the purchased and unconnected in-vehicle intelligent camera shows that the connection has been disconnected.
  • There is an immediate connection button on the top and the interface elements are grayed out; the interface elements corresponding to the purchased and connected smart fragrance, in-car projector and car refrigerator are displayed as connected, the interface elements are highlighted, and there are shortcuts on the interface elements. Operation keys for users to perform quick operations.
  • the method further includes: responding to an operation instruction for the interface element corresponding to the in-vehicle intelligent hardware, entering a connection page;
  • the connection page is used for network connection; after the network connection is successful, the hardware control page corresponding to the in-vehicle intelligent hardware is entered.
  • the connection page includes a Bluetooth connection page or a WiFi connection page.
  • the user can trigger an operation instruction for the immediate connection of the button on the interface element, and the vehicle responds to the operation instruction for the immediate connection of the button on the interface element , enter the Bluetooth connection page or the WiFi connection page, so that the in-vehicle intelligent hardware is connected to the network, and after the network connection is successful, enter the hardware control page corresponding to the in-vehicle intelligent hardware.
  • a cockpit map is displayed on the intelligent management page, and the cockpit map marks the specific location of the in-vehicle intelligent hardware that has been purchased or that has been purchased and connected.
  • a cockpit map is displayed on the smart management page, and the cockpit map is a panoramic view of the smart cockpit.
  • the on-board intelligent hardware for different status information can be marked.
  • the marking method may be a method such as box selection, blacking out, or highlighting at a specific position of the vehicle-mounted intelligent hardware in the cockpit map.
  • the purchased smart car hardware, or the purchased and connected smart car hardware can be marked on the cockpit map, so that the user can quickly know that the car has been purchased in the car based on the cockpit map.
  • purchased and connected smart in-vehicle device hardware can be marked on the cockpit map, so that the user can quickly know that the car has been purchased in the car based on the cockpit map.
  • purchased and connected smart in-vehicle device hardware can be marked on the cockpit map, so that the user can quickly know that the car has been purchased in the car based on the cockpit map.
  • purchased and connected smart in-vehicle device hardware can be marked on the cockpit map, so that the user can quickly know that the car has been purchased in
  • the status information is the purchased in-vehicle intelligent hardware, or the purchased and connected in-vehicle intelligent hardware is marked and displayed in the corresponding position, which can create a user's sense of ownership of the in-vehicle intelligent hardware.
  • the intelligent management page has a three-dimensional display button
  • the method further includes: responding to an operation instruction for the three-dimensional display button, entering a three-dimensional display page; the three-dimensional display page
  • the three-dimensional display page is a three-dimensional display or virtual reality three-dimensional display of the on-board intelligent hardware inside the vehicle.
  • the three-dimensional display page includes three-dimensional three-dimensional display and virtual reality three-dimensional display.
  • the three-dimensional display or virtual reality three-dimensional display you can understand the placement of the on-board intelligent hardware in the vehicle. And the schematic introduction for use in the vehicle, at the same time, you can switch the front and rear stereoscopic display environment to watch from different perspectives. It also includes unpurchased on-board smart hardware, so you can intuitively experience the display scene of all on-board smart hardware in the car under the three-dimensional view of the car cockpit, so that users can intuitively feel the usage of on-board smart hardware in the car, It can also learn about the unpurchased in-vehicle intelligent hardware in advance.
  • FIG. 6 a 3D display button is set in the upper right corner of the cockpit in the figure, and the 3D display page is entered by responding to the operation instruction for the 3D display button.
  • FIG. 7 is a 3D display page provided by this application. Schematic diagram, as can be seen from the figure, the 3D display page shows a schematic introduction to the use of the vehicle-mounted intelligent hardware in the vehicle, such as the placement of the vehicle-mounted intelligent hardware in the vehicle.
  • the present application can trigger operation instructions through voice or touch, so the operation instructions in the above may include touch-trigger-based touch-triggered instructions and voice-triggered-based voice instructions.
  • FIG. 8 a flow chart of the steps of controlling the vehicle-mounted intelligent hardware in a touch-controlled manner is shown, as follows:
  • Step 801 open the intelligent hardware management page
  • Step 802 determine whether the in-vehicle intelligent hardware has been purchased; if the in-vehicle intelligent hardware has not been purchased, go to step 803, if the in-vehicle intelligent hardware is purchased, go to step 805;
  • Step 803 the interface element is grayed out
  • Step 804 touch the interface elements to display the hardware introduction page; enter the three-dimensional display page through the 3D button;
  • Step 805 determine whether the vehicle-mounted intelligent hardware is connected; if the vehicle-mounted intelligent hardware is not connected, go to step 806, and if the vehicle-mounted intelligent hardware is connected, go to step 808;
  • Step 806 the interface element displays an unconnected state
  • Step 807 touch the interface element, enter the connection page to perform network connection
  • Step 808 the interface element is highlighted; the interface element displays the corresponding shortcut operation button; the specific location of the connected on-board intelligent hardware is marked in the cockpit map;
  • Step 809 touch the interface element to enter the hardware control page; touch the hardware control page to control the vehicle-mounted intelligent hardware; and complete the operation.
  • FIG. 9 it is a flowchart showing the steps of controlling the vehicle-mounted intelligent hardware in a voice manner, as follows:
  • Step 901 wake up the little P and recognize the user's voice command to start the in-vehicle intelligent hardware, such as open the fragrance, open the Haiyun fragrance, open the refrigerator, turn on the camera, etc.; as shown in Figure 10, after waking up the little P, if It is recognized that the user speaks the voice command of the vehicle-mounted intelligent hardware, and the text information corresponding to the voice command "Open Haiyun Fragrance" can be displayed on the interface or in the pop-up window.
  • the in-vehicle intelligent hardware such as open the fragrance, open the Haiyun fragrance, open the refrigerator, turn on the camera, etc.
  • Step 902 determine whether the in-vehicle intelligent hardware has been purchased; if the in-vehicle intelligent hardware has not been purchased, go to step 903, and if the in-vehicle intelligent hardware is purchased, go to step 906;
  • Step 903 prompting not to purchase and asking if you understand; if the user is replying No, go to Step 904; if the user is replying Yes, go to Step 905;
  • Step 904 the dialogue ends
  • Step 905 enter the hardware introduction page
  • Step 906 determine whether the vehicle-mounted intelligent hardware has been connected; if the vehicle-mounted intelligent hardware is not successfully connected, execute step 907; if the vehicle-mounted intelligent hardware is successfully connected, execute step 910;
  • Step 907 prompting that the connection is not connected and asking whether to connect; if the user is replying No, go to Step 908; if the user is replying Yes, go to Step 909;
  • Step 908 the dialogue ends
  • Step 909 enter the connection page
  • step 910 the voice command is executed, and the dialogue ends.
  • the vehicle-mounted intelligent hardware is managed and controlled by voice commands, so that the user can avoid leaving his hands from the steering wheel to control the vehicle-mounted intelligent hardware while driving, which improves the safety of driving, and the vehicle-mounted intelligent hardware can be controlled by voice.
  • the operation is faster and more convenient.
  • FIG. 11 a schematic structural diagram of a smart cockpit provided by the present application is shown, which may specifically include the following modules:
  • the intelligent management page opening module 1101 is used to open the intelligent management page in response to the operation instruction for the intelligent cockpit;
  • the interface element display module 1102 is used to display the interface elements corresponding to the in-vehicle intelligent hardware in the intelligent management page; the interface elements have a plurality of preset pages, and the preset pages are used to introduce or control the in-vehicle intelligent hardware ;
  • the preset page entry module 1103 is configured to enter a preset page corresponding to the vehicle-mounted intelligent hardware in response to the operation instruction for the interface element of the vehicle-mounted intelligent hardware.
  • the preset page entry module 1103 includes:
  • a state information acquisition sub-module for acquiring the state information of the vehicle-mounted intelligent hardware; the state information at least includes purchased, unpurchased, connected and unconnected;
  • the preset page entry sub-module is used to respond to the operation instruction for the interface element of the vehicle-mounted intelligent hardware, and enter the preset page corresponding to the vehicle-mounted intelligent hardware according to the state information.
  • the preset page entry sub-module includes:
  • the introduction page entry unit is used to enter the hardware introduction page corresponding to the vehicle intelligent hardware in response to the operation instruction for the interface element of the vehicle intelligent hardware when the state information is that the vehicle intelligent hardware has not been purchased ;
  • the hardware introduction page is used to introduce the detailed information of the on-board intelligent hardware used in the vehicle.
  • the preset page entry sub-module includes:
  • control page entry unit configured to enter a hardware control page corresponding to the in-vehicle intelligent hardware in response to an operation instruction for the interface element of the in-vehicle intelligent hardware when the state information is the purchase of the in-vehicle intelligent hardware;
  • the hardware control page is used for correspondingly controlling the vehicle-mounted intelligent hardware in response to an operation instruction for the hardware control page.
  • the smart cockpit further includes:
  • the three-dimensional display page entry module is used to enter the three-dimensional display page in response to the operation instruction for the three-dimensional display button; the three-dimensional display page is used to display a schematic introduction of the use of the vehicle-mounted intelligent hardware in the vehicle.
  • the preset page entry submodule also includes:
  • a shortcut operation display unit configured to display the shortcut operation button on an interface element corresponding to the vehicle-mounted intelligent hardware if the status information indicates that the vehicle-mounted intelligent hardware is successfully connected;
  • the unconnected display unit is configured to prompt that the on-board smart hardware is not connected on an interface element corresponding to the on-board smart hardware if the status information is that the on-board smart hardware is not connected successfully.
  • the preset page entry submodule further includes:
  • connection page entry unit is used to enter the connection page in response to the operation instruction for the interface element corresponding to the in-vehicle intelligent hardware; the connection page is used for network connection; after the network connection is successful, enter the corresponding in-vehicle intelligent hardware.
  • Hardware control page is used to enter the connection page in response to the operation instruction for the interface element corresponding to the in-vehicle intelligent hardware; the connection page is used for network connection; after the network connection is successful, enter the corresponding in-vehicle intelligent hardware.
  • a cockpit map is displayed on the smart management page, wherein the cockpit map marks the specific location of the in-vehicle intelligent hardware that has been purchased or that has been purchased and connected.
  • the in-vehicle intelligent hardware includes at least one of a smart fragrance, an in-vehicle intelligent camera, an in-vehicle projector and an in-vehicle refrigerator.
  • the smart management page is opened in response to the operation instruction for the smart cockpit, and the smart management page displays the interface elements corresponding to the in-vehicle intelligent hardware.
  • the interface elements have multiple preset pages, and the preset pages are used to introduce or control the in-vehicle intelligence The hardware, and then responds to the operation instruction for the interface element of the in-vehicle intelligent hardware, thereby entering a preset page corresponding to the in-vehicle intelligent hardware.
  • the vehicle-mounted intelligent hardware is configured in the intelligent cockpit to realize unified management and control of various types of vehicle-mounted intelligent hardware. Specifically, the vehicle-mounted intelligent hardware can be controlled through a preset page, which makes the management and control of the vehicle-mounted intelligent hardware simpler, more intuitive and more efficient.
  • the introduction information of the in-vehicle intelligent hardware can be obtained through the preset page, so that the user can obtain the detailed information of the in-vehicle intelligent hardware.
  • the present application also provides a vehicle, comprising a processor, a memory, and a computer program stored on the memory and capable of running on the processor, the computer program being executed by the processor to achieve the above-mentioned
  • a vehicle comprising a processor, a memory, and a computer program stored on the memory and capable of running on the processor, the computer program being executed by the processor to achieve the above-mentioned
  • the method for vehicle-mounted intelligent hardware management and control based on the intelligent cockpit according to any one of the above.
  • the present application also provides a computer-readable storage medium, where a computer program is stored on the computer-readable storage medium, and when the computer program is executed by a processor, the intelligent cockpit-based vehicle-mounted vehicle according to any one of the above is implemented.
  • the method of intelligent hardware management is also provided.
  • Various embodiments of the present application may be implemented in hardware, or in software modules running on one or more processors, or in a combination thereof. It should be understood by those skilled in the art that a microprocessor or a digital signal processor (DSP) may be used in practice to implement some or all of the functions of some or all of the components in the computing processing device according to the embodiments of the present application.
  • DSP digital signal processor
  • the present application can also be implemented as an apparatus or apparatus program (eg, computer programs and computer program products) for performing part or all of the methods described herein.
  • Such a program implementing the present application may be stored on a computer-readable medium, or may be in the form of one or more signals. Such signals may be downloaded from Internet sites, or provided on carrier signals, or in any other form.
  • Figure 12 shows a computing processing device that can implement methods according to the present application.
  • the computing processing device traditionally includes a processor 1210 and a computer program product or computer readable medium in the form of a memory 1220 .
  • the memory 1220 may be electronic memory such as flash memory, EEPROM (Electrically Erasable Programmable Read Only Memory), EPROM, hard disk, or ROM.
  • the memory 1220 has storage space 1230 for program code 1231 for performing any of the method steps in the above-described methods.
  • the storage space 1230 for program codes may include various program codes 1231 for implementing various steps in the above methods, respectively. These program codes can be read from or written to one or more computer program products.
  • These computer program products include program code carriers such as hard disks, compact disks (CDs), memory cards or floppy disks. Such computer program products are typically portable or fixed storage units as described with reference to FIG. 13 .
  • the storage unit may have storage segments, storage spaces, etc. arranged similarly to the memory 1220 in the computing processing device of FIG. 12 .
  • the program code may, for example, be compressed in a suitable form.
  • the storage unit includes computer readable code 1231', ie code readable by a processor such as 1210 for example, which when executed by a computing processing device, causes the computing processing device to perform any of the methods described above. of the various steps.

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Abstract

一种基于智能座舱的车载智能硬件管控方法、智能座舱、车辆和计算机可读存储介质,方法包括:在响应针对智能座舱的操作指令,打开智能管理页(101),在所述智能管理页中展示车载智能硬件对应的界面元素,所述界面元素具有多个预设页面,所述预设页面用于介绍或者控制车载智能硬件(102),响应针对车载智能硬件的界面元素的操作指令,进入车载智能硬件对应的预设页面(103)。该方法通过将车载智能硬件配置在智能座舱内,实现对各类车载智能硬件的统一管控,通过预设页面控制车载智能硬件,使得车载智能硬件的管控更加简单、直观、效率更高,用户行车时使用车载智能硬件更加方便和安全,还可以通过预设页面介绍车载智能硬件,对车载智能硬件的详情信息进行了解。

Description

一种基于智能座舱的车载智能硬件管控方法和智能座舱
本申请要求在2020年09月28日提交中国专利局、申请号202011043938.3、发明名称为“一种基于智能座舱的车载智能硬件管控方法和智能座舱”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及车辆技术领域,特别是涉及一种基于智能座舱的车载智能硬件管控方法和智能座舱。
背景技术
随着汽车行业的急速发展,车辆不管是在工作还是在生活中的普及率都非常高,因此车辆的内部空间也被普遍认为是家庭空间的延续。
目前在车辆内部空间开始普及车载智能硬件,因此车载智能硬件的接入与使用,对于驾驶员用车体验越来越重要。具体地,车载智能硬件,是通过软件与硬件结合的方式,对传统车载设备进行改造,进而让其实现智能化,即能够通过app(应用程序)进行控制。然而,目前对各个车载智能硬件只能通过不同的app单独控制,因此使用和管理都不方便,且在行车时控制还有风险。此外,用户对车载智能硬件在车辆内使用时的详情信息也无法深入了解。
发明内容
有鉴于此,本申请提供了一种基于智能座舱的车载智能硬件管控方法和智能座舱。
本申请提供了一种基于智能座舱的车载智能硬件管控方法,所述方法包括:
响应针对智能座舱的操作指令,打开智能管理页;
在所述智能管理页中展示车载智能硬件对应的界面元素;所述界面元素具有多个预设页面,所述预设页面用于介绍或者控制所述车载智能硬件;
响应针对所述车载智能硬件的界面元素的操作指令,进入所述车载智能硬件对应的预设页面。
在某些实施方式中,所述响应针对所述车载智能硬件的界面元素的操作指令,进入所述车载智能硬件对应的预设页面,包括:
获取所述车载智能硬件的状态信息;所述状态信息至少包括已购入、未购入、已连接和未连接;
响应针对所述车载智能硬件的界面元素的操作指令,根据所述状态信息进入所述车载智能硬件对应的预设页面。
在某些实施方式中,所述响应针对所述车载智能硬件的界面元素的操作指令,根据所述状态信息进入所述车载智能硬件对应的预设页面,包括:
当所述状态信息为所述车载智能硬件未购入时,响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件介绍页面;所述硬件介绍页面用于介绍所述车载智能硬件在车辆内使用时的详情信息。
在某些实施方式中,所述响应针对所述车载智能硬件的界面元素的操作指令,根据所述状态信息进入所述车载智能硬件对应的预设页面,包括:
当所述状态信息为所述车载智能硬件购入时,响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件控制页面;所述硬件控制页面用于响应针对所述硬件控制页面操作指令操作对应控制所述车载智能硬件。
在某些实施方式中,所述智能管理页具有立体展示按钮,在所述响应针对智能座舱的操作指令,打开智能管理页之后,所述方法还包括:
响应针对所立体展示按钮的操作指令,进入立体展示页面;所述立体展示页面用于展示所述车载智能硬件在车辆内使用的示意介绍。
在某些实施方式中,在所述响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件控制页面之前,所述方法还包括:
若所述状态信息为所述车载智能硬件已连接,则所述车载智能硬件对应 的界面元素显示所述快捷操作按键;
若所述状态信息为所述车载智能硬件未连接,则在所述车载智能硬件对应的界面元素提示所述车载智能硬件未连接。
在某些实施方式中,所述响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件控制页面,包括:
响应针对所述车载智能硬件对应的界面元素的操作指令,进入连接页面;所述连接页面用于进行网络连接;
在网络连接成功后,进入所述车载智能硬件对应的硬件控制页面。
在某些实施方式中,所述智能管理页中显示有座舱图,其中,所述座舱图中对已购入,或者已购入且已连接的所述车载智能硬件具体位置进行标记。
在某些实施方式中,所述车载智能硬件至少包括智能香氛、车内智能摄像头、车内投影仪与车载冰箱的其中一种。
本申请提供了一种智能座舱,包括:
智能管理页打开模块,用于响应针对智能座舱的操作指令,打开智能管理页;
界面元素展示模块,用于在所述智能管理页中展示车载智能硬件对应的界面元素;所述界面元素具有多个预设页面,所述预设页面用于介绍或者控制所述车载智能硬件;
预设页面进入模块,用于响应针对所述车载智能硬件的界面元素的操作指令,进入所述车载智能硬件对应的预设页面。
在某些实施方式中,所述预设页面进入模块包括:
状态信息获取子模块,用于获取所述车载智能硬件的状态信息;所述状态信息至少包括已购入、未购入、已连接和未连接;
预设页面进入子模块,用于响应针对所述车载智能硬件的界面元素的操作指令,根据所述状态信息进入所述车载智能硬件对应的预设页面。
在某些实施方式中,预设页面进入子模块包括:
介绍页面进入单元,用于当所述状态信息为所述车载智能硬件未购入时,响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能 硬件对应的硬件介绍页面;所述硬件介绍页面用于介绍所述车载智能硬件在车辆内使用时的详情信息。
在某些实施方式中,预设页面进入子模块包括:
控制页面进入单元,用于当所述状态信息为所述车载智能硬件购入时,响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件控制页面;所述硬件控制页面用于响应针对所述硬件控制页面操作指令操作对应控制所述车载智能硬件。
在某些实施方式中,所述智能座舱还包括:
立体展示进入模块,用于响应针对所立体展示按钮的操作指令,进入立体展示页面;所述立体展示页面用于展示所述车载智能硬件在车辆内使用的示意介绍。
在某些实施方式中,所述预设页面进入子模块还包括:
快捷操作显示单元,用于若所述状态信息为所述车载智能硬件连接成功,则所述车载智能硬件对应的界面元素显示所述快捷操作按键;
未连接显示单元,用于若所述状态信息为所述车载智能硬件未连接成功,则在所述车载智能硬件对应的界面元素提示所述车载智能硬件未连接。
在某些实施方式中,预设页面进入子模块还包括:
连接页面进入子单元,用于响应针对所述车载智能硬件对应的界面元素的操作指令,进入连接页面;所述连接页面用于进行网络连接;在网络连接成功后,进入所述车载智能硬件对应的硬件控制页面。
在某些实施方式中,所述智能管理页中显示有座舱图,其中,所述座舱图中对已购入,或者已购入且已连接的所述车载智能硬件具体位置进行标记。
在某些实施方式中,所述车载智能硬件至少包括智能香氛、车内智能摄像头、车内投影仪与车载冰箱的其中一种。
本申请提供了一种车辆,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现如上述中所有基于智能座舱的车载智能硬件管控的方法。
本申请提供了一种计算机可读存储介质,所述计算机可读存储介质上存 储计算机程序,所述计算机程序被处理器执行时实现如上述中所有基于智能座舱的车载智能硬件管控的方法。
本申请实施方式中,响应针对智能座舱的操作指令,打开智能管理页,智能管理页中展示车载智能硬件对应的界面元素,界面元素具有多个预设页面,预设页面用于介绍或者控制车载智能硬件,然后响应针对车载智能硬件的界面元素的操作指令,可以进入车载智能硬件对应的预设页面。本申请将车载智能硬件配置在智能座舱内,实现对各类车载智能硬件的统一管控,通过预设页面控制车载智能硬件,使得车载智能硬件的管控更加简单、直观、效率更高,用户行车时使用车载智能硬件更加方便和安全;还可以通过预设页面介绍车载智能硬件,可以让用户了解车载智能硬件的详情信息。
附图说明
本申请上述的和/或附加的方面和优点从下面结合附图的描述中将变得明显和容易理解,其中:
图1是本申请的一种基于智能座舱的车载智能硬件管控方法的步骤流程图;
图2是本申请的另一种基于智能座舱的车载智能硬件管控方法的步骤流程图;
图3是本申请的又一种基于智能座舱的车载智能硬件管控方法的步骤流程图;
图4是本申请的一种未购入车载智能硬件介绍页面的示意图;
图5是本申请的一种智能香氛硬件控制页面的示意图;
图6是本申请的一种已购入车载智能硬件智能管理页的示意图;
图7是本申请的一种3D展示页面的示意图;
图8是本申请的一种触控操作管控流程示意图;
图9是本申请的一种语音指令管控流程的示意图;
图10是本申请的一种唤醒语音指令的示意图;
图11是本申请的一种智能座舱的结构示意图;
图12示意性地示出了用于执行根据本申请的方法的计算处理设备的框 图;
图13示意性地示出了用于保持或者携带实现根据本申请的方法的程序代码的存储单元。
具体实施方式
下面详细描述本申请实施方式,所述实施方式的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施方式是示例性的,旨在用于解释本申请,而不能理解为对本申请的限制。
近年来,车辆行业发展的主要驱动力已经由过去供给端的产品和技术驱动,逐步转换为不断提高的用户需求驱动,用户对车辆的认知也逐渐从单一的交通工具向生活空间转变,而驾驶舱作为用户直接体验的空间,提高驾驶舱的智能程度,使驾驶舱成为人车交互的体验核心,可以为用户提供更好的车辆乘坐体验。
传统汽车座舱功能区布局碎片化、信息过载造成了人车交互的障碍,导致将汽车本身作为交互入口的价值被低估,而随着电子信息技术开始向车内转移,产生了智能座舱,智能座舱能够通过各种智能化手段满足不同人在车内的不同需求,将带来更为智能、安全的交互体验,同时也是高级辅助驾驶、自动驾驶和人工智能等新时代技术的关键接口。智能座舱电子系统可以指由中控、全液晶仪表、平视显示器、娱乐系统、智能音响、车联网模块、流媒体后视镜、远程信息处理系统等组成的一整套系统。
智能座舱系统可以指以驾驶舱区域控制器为中心,在统一的软硬件平台上实现上述智能座舱电子系统功能,并融入智能交互、智能场景、个性化服务的系统。智能座舱系统可以形成人车交互、车与外界互联的基础。
智能座舱系统的使用场景通常可以覆盖用户使用车辆的全部场景。具体地,可以包括用户使用车辆前、用户使用车辆过程中,用户使用车辆后的时间场景,也可以包括驾驶员、副驾驶、后排乘客、车外相关人物或物体的空间场景。
智能座舱中的人机交互,与过去的指令式交互相比,可以结合车辆与用 户的使用场景,基于图像识别、语音识别、环境感知等基础技术,实现更加符合用户需求的智能化效果。
本申请核心构思之一在于,基于智能座舱实现对于车载智能硬件的统一管控,具体地,在智能座舱的管理页面上可以展示车载智能硬件的界面元素,且针对界面元素设置有多个预设页面,通过预设页面可以为用户介绍或者让用户控制车载智能硬件,通过预设页面使得车载智能硬件的管控更加简单、直观、效率更高,用户行车时使用车载智能硬件更加方便和安全,同时通过预设页面还可以获取车载智能硬件的介绍信息,使得用户可以了解到车载智能硬件的详情信息。
参照图1,示出了本申请提供的一种基于智能座舱的车载智能硬件管控方法的步骤流程图,具体可以包括如下步骤:
步骤101,响应针对智能座舱的操作指令,打开智能管理页;
其中,智能座舱中预先设置了车载智能硬件的相关信息,例如车载智能硬件的功能介绍信息以及使用场景预览信息等,使得智能座舱能够对于车载智能硬件进行统一管控。车载智能硬件至少包括智能香氛、车内智能摄像头、车内投影仪与车载冰箱的其中一种。智能管理页是用于展示车载智能硬件的页面,在智能管理页上车载智能硬件展示为对应的界面元素,通常一个车载智能硬件对应一个界面元素。
具体地,在用户触发启动智能座舱的操作指令后,响应针对智能座舱的操作指令,打开智能管理页,智能管理页就会向用户展示所有不同车载智能硬件对应的界面元素。举例来说,在智能管理页上可以向用户展示智能香氛与智能冰箱等智能车载硬件对应的界面元素。
步骤102,在所述智能管理页中展示车载智能硬件对应的界面元素;所述界面元素具有多个预设页面,所述预设页面用于介绍或者控制所述车载智能硬件;
其中,预设页面是车载智能硬件对应的界面元素相关联,不同的界面元素对应的预设页面不同,此外同一个界面元素可以有多个对应的预设页面, 例如可以包括用于介绍车载智能硬件的预设页面,以及用于控制车载智能硬件的预设页面。在本申请中,针对智能座舱的操作指令打开智能管理页后,智能管理页可以向用户展示所有不同车载智能硬件对应的界面元素。
步骤103,响应针对所述车载智能硬件的界面元素的操作指令,进入所述车载智能硬件对应的预设页面。
具体地,不同的车载智能硬件的界面元素对应不同的预设页面,在用户触发智能管理页面上的某个界面元素的操作指令后,响应针对车载智能硬件的界面元素的操作指令,可以进入用于介绍车载智能硬件的硬件介绍页面或者用于控制车载智能硬件的硬件控制页面。
在本申请中,响应针对智能座舱的操作指令,打开智能管理页,智能管理页中展示车载智能硬件对应的界面元素,界面元素具有多个预设页面,预设页面用于介绍或者控制车载智能硬件,然后响应针对车载智能硬件的界面元素的操作指令,从而进入车载智能硬件对应的预设页面。本申请将车载智能硬件配置在智能座舱内,实现对各类车载智能硬件的统一管控,具体地,通过预设页面可以控制车载智能硬件,使得车载智能硬件的管控更加简单、直观、效率更高,用户行车时使用车载智能硬件更加方便和安全,同时通过预设页面还可以获取车载智能硬件的介绍信息,使得用户获取车载智能硬件的详情信息。
参照图2,出了本申请提供的的另一种基于智能座舱的车载智能硬件管控方法的步骤流程图,具体可以包括如下步骤:
步骤201,响应针对智能座舱的操作指令,打开智能管理页;
步骤202,在所述智能管理页中展示车载智能硬件对应的界面元素;所述界面元素具有多个预设页面,所述预设页面用于介绍或者控制所述车载智能硬件;
具体的,响应针对智能座舱的操作指令,打开智能管理页,智能管理页就会向用户展示所有不同车载智能硬件对应的界面元素。不同车载智能硬件对应的界面元素,界面元素其对应的多个预设页面用于介绍或者控制车载智 能硬件。
步骤203,获取所述车载智能硬件的状态信息;所述状态信息至少包括已购入、未购入、已连接和未连接;
其中,状态信息为车载智能硬件当前所处的状态,包括在车辆已购入,未购入、已连接及未连接这四种状态,且不同的车载智能硬件的状态信息,可以通过对应界面元素进行显示。其中,已连接和未连接是指的是否连接到网络。
具体地,智能座舱可以获取所有车载智能硬件的状态信息,并通过智能管理页展示的界面元素显示对应的车载智能硬件的状态信息,且不同的状态信息通过界面元素显示。举例来说,对已购入安装并连接的智能香氛与未购入的智能冰箱等智能车载硬件,其对应的状态信息会在界面元素上显示。在实际中,未购入的车载智能硬件是不会连接到智能座舱,当然也不会存在是否连接网络的问题,因此在实际中对于未购入的车载智能硬件可以无需显示是否连接网络。
步骤204,响应针对所述车载智能硬件的界面元素的操作指令,根据所述状态信息进入所述车载智能硬件对应的预设页面。
其中,车载智能硬件的界面元素显示不同的状态信息,不同状态信息对应不同的预设页面。例如,假设车载智能硬件有已购入、未购入、已连接和未连接的四种状态信息,则可以进入不同状态信息对应的预设页面,从而可以根据预设页面对处于不同状态信息的车载智能硬件进行相应的管理和控制。在本申请中,打开智能管理页,智能管理页展示车载智能硬件对应的界面元素,然后获取车载智能硬件的状态信息,并根据状态信息进入车载智能硬件对应的预设页面,以根据预设页面管控车载智能硬件,本申请将车载智能硬件配置在智能座舱内,然后通过智能管理页,根据车载智能硬件对应的状态信息,实现对不同车载智能硬件的统一管控,让车载智能硬件的管控更加简单、直观、效率更高,用户行车时使用车载智能硬件更加方便和安全。
参照图3,示出了本申请提供的又一种基于智能座舱的车载智能硬件管 控方法的步骤流程图,具体可以包括如下步骤:
步骤301,响应针对智能座舱的操作指令,打开智能管理页;
步骤302,在所述智能管理页中展示车载智能硬件对应的界面元素;所述界面元素具有多个预设页面,所述预设页面用于介绍或者控制所述车载智能硬件;
步骤303,获取所述车载智能硬件的状态信息;所述状态信息至少包括已购入、未购入、已连接和未连接;
具体地,在用户通过智能座舱打开智能管理页,智能管理页就会向用户展示所有不同车载智能硬件对应的界面元素,另外,智能座舱会去获取所有车载智能硬件的状态信息,并通过智能管理页展示的车载智能硬件的界面元素,并界面元素上显示对应的车载智能硬件的状态信息。
步骤304,当所述状态信息为所述车载智能硬件未购入时,响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件介绍页面;所述硬件介绍页面用于介绍所述车载智能硬件在车辆内使用时的详情信息;
其中,预设页面可以包括多种并且与状态信息相关联,根据不同的状态信息进入不同的预设页面。在本申请中,响应针对车载智能硬件的界面元素的操作指令时,可以进入该车载智能硬件的状态信息对应的预设页面。
其中,在状态信息为车载智能硬件未购入时,车载智能硬件对应的预设页面是硬件介绍页面,硬件介绍页面包含车载智能硬件在车辆内使用时的详情信息包括硬件介绍、使用场景预览以及精品商城购买入口连接的二维码。
具体地,对于未购入的车载智能硬件,车载智能硬件对应的界面元素置灰,用户可发起针对车载智能硬件对应的界面元素的查看介绍按键的操作指令,进入车载智能硬件对应的硬件介绍页面,通过硬件介绍页面,用户可提前了解车载智能硬件介绍信息,在车辆内使用场景预览状况,并可以通过扫描硬件介绍页面提供的二维码进入精品商城进行购买。
图4是本申请提供的一种未购入车载智能硬件介绍页面的示意图,如图可见,智能管理页展示未购入的车载智能硬件,如智能香氛、车内智能摄像 头、车内投影仪及车载冰箱,响应针对智能香氛的界面元素的操作指令,进入智能香氛的硬件介绍页面,该硬件介绍页面包括硬件介绍、使用场景预览及进入精品商城购买连接二维码等信息,通过扫描二维码可进入精品商城购买智能香氛。
步骤305,当所述状态信息为所述车载智能硬件购入时,响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件控制页面;所述硬件控制页面用于响应针对所述硬件控制页面操作指令操作对应控制所述车载智能硬件。
其中,在状态信息为车载智能硬件购入时,车载智能硬件对应的界面元素对应的预设页面为硬件控制页面,硬件控制页面内具有针对车载智能硬件的操作按键。具体地,在状态信息为车载智能硬件购入时,响应针对车载智能硬件对应界面元素的操作指令,进入车载智能硬件对应的硬件控制页面,响应针对硬件控制页面具体操作按键的操作指令,对车载智能硬件进行控制。
图5是本申请提供的一种智能香氛硬件控制页面的示意图,如图可见,已购入的智能香氛,响应针对智能香氛对应界面元素的操作指令,进入智能香氛的硬件控制页面,智能香氛的硬件控制页面具有开启时机、定时开关、香氛浓度控制及香氛流速控制按键,还具备星夜、海韵、森林等香氛模式进行选择,可根据用户所处环境及需求,针对智能香氛硬件的控制页面的具体操作按键进行操作来对智能香氛进行管控。
在本申请中,对于状态信息为已购入的车载智能硬件,可以进入其硬件控制页面对该车载智能进行进一步的管控,提升对车载智能硬件的使用体验。
在本申请中,在响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件控制页面之前,所述方法还包括:
若所述状态信息为所述车载智能硬件连接成功,则所述车载智能硬件对应的界面元素显示所述快捷操作按键;
若所述状态信息为所述车载智能硬件未连接成功,则在所述车载智能硬件对应的界面元素提示所述车载智能硬件未连接。
其中,快捷操作按键包括针对车载智能硬件的开启、关闭及模式转换按 键。
具体地,在车载智能硬件购入后,若状态信息为车载智能硬件连接成功,界面元素高亮,表示用户可以对车载智能硬件进行管控,并且在车载智能硬件上显示有快捷操作按键,响应针对界面元素显示快捷操作按键的操作指令,对车载智能硬件进行简易操控。举例来说,对已购买并连接的智能香氛,可响应针对智能香氛界面元素显示快捷操作按键的操作指令,对智能香氛的开启、关闭及模式进行快捷操控。
此外,在车载智能硬件购入后,若状态信息为车载智能硬件未连接成功,界面元素置灰,表示用户暂时不能对车载智能硬件进行管控,同时界面元素显示车载智能硬件未连接。
图6是本申请提供的一种已购入车载智能硬件智能管理页的示意图,如图可见,已购入未连接的车内智能摄像头所对应的界面元素显示连接已断开,同时在界面元素上设有立即连接按键,界面元素置灰;已购入已连接的智能香氛、车内投影仪及车载冰箱所对应的界面元素显示已连接,界面元素高亮,同时界面元素上设有快捷操作按键,以供用户进行快捷操作。
在本申请中,在所述车载智能硬件对应的界面元素提示所述车载智能硬件未连接之后,所述方法还包括:响应针对所述车载智能硬件对应的界面元素的操作指令,进入连接页面;所述连接页面用于进行网络连接;在网络连接成功后,进入所述车载智能硬件对应的硬件控制页面。
其中,连接页面包括蓝牙连接页面或WiFi连接页面。
具体地,在车载智能硬件购入后,若状态信息为车载智能硬件未连接成功,则用户可以触发针对界面元素上立即连接按键的操作指令,车辆则响应针对界面元素上立即连接按键的操作指令,进入蓝牙连接页面或WiFi连接页面,以使车载智能硬件进行网络连接,且在网络连接成功后,进入所述车载智能硬件对应的硬件控制页面。
在本申请中,所述智能管理页中显示有座舱图,所述座舱图中对已购入,或者已购入且已连接的所述车载智能硬件具体位置进行标记。
具体地,智能管理页显示有座舱图,座舱图为智能座舱的全景图。在座 舱图中可以针对不同状态信息的车载智能硬件进行标记。其中,标记方式可以是在座舱图的车载智能硬件的具体位置处框选、涂黑或者高亮等方式。作为一种示例,可以对已购入的智能车载硬件,或者已购入且已连接的智能车载硬件在座舱图进行标记,使得用户基于座舱图可以快速了解到车内已购入车载智能硬件,或者已购入且已连接的智能车载设备硬件。
在上述中,在座舱图中对状态信息为已购入的车载智能硬件,或者已购入且已连接的车载智能硬件在相应位置进行标记显示,可以营造用户对车载智能硬件的拥有感。
在本申请中,所述智能管理页具有立体展示按钮,在所述打开智能管理页之后,所述方法还包括:响应针对所立体展示按钮的操作指令,进入立体展示页面;所述立体展示页面用于展示所述车载智能硬件在车辆内使用的示意介绍。
其中,立体展示页面是通过三维立体展示或虚拟现实立体展示车辆内部车载智能硬件,车载智能硬件包括已购入安装的车载智能硬件,还包括未购入的车载智能硬件。
具体地,响应针对立体展示按钮的操作指令,进入立体展示页面,立体展示页面包括三维立体展示和虚拟现实立体展示,通过三维立体展示或虚拟现实立体展示可以了解车载智能硬件在车辆内的放置情况和在车辆内使用的示意介绍,同时还可切换前后排立体展示环境,在不同视角下进行观看,其中,在立体展示页面中展示的车载智能硬件除了已购入安装的车载智能硬件之外,还包括未购入的车载智能硬件,因此可以在立体视角的车内座舱下直观感受所有的车载智能硬件在车内的展示场景,让用户对车载智能硬件在车内的使用情况有直观感受,还能提前对未购入的车载智能硬件进行了解。作为一示例,如图6所示,图内座舱图右上角设有3D展示按钮,通过响应针对3D展示按钮的操作指令,进入3D展示页面,图7是本申请提供的一种3D展示页面的示意图,从图中可见,3D展示页面中展示车载智能硬件在车辆内使用的示意介绍,例如车载智能硬件在车辆内的放置情况。
需要说明的是,本申请可以通过语音方式或者触控方式来触发操作指令,因此在上述中的操作指令可以包括基于触控触发的触控指令和基于语音触发的语音指令。
为了使本领域技术人员能够更好地理解,以下分别对本申请基于触控方式和语音方式实现车载智能硬件的管控方式加以示例性说明,但应当理解的是,本申请并不限于此。
针对基于触控方式的车载智能硬件的管控方式:
具体地,参照图8,所示为一种触控方式管控车载智能硬件步骤流程图,具体如下所示:
步骤801,打开智能硬件管理页;
步骤802,判断是否已购入车载智能硬件;若未购入车载智能硬件,在执行步骤803,若购入车载智能硬件,则执行步骤805;
步骤803,界面元素置灰;
步骤804,触控界面元素,显示硬件介绍页面;通过3D按钮,进入立体展示页面;
步骤805,判断是否已连接车载智能硬件;若未连接车载智能硬件,执行步骤806,若连接车载智能硬件,则执行步骤808;
步骤806,界面元素显示未连接状态;
步骤807,触控界面元素,进入连接页面进行网络连接;
步骤808,界面元素高亮;界面元素显示对应的快捷操作按键;座舱图中对已连接的所述车载智能硬件具体位置进行标记;
步骤809,触控界面元素,进入硬件控制页面;触控硬件控制页面控制所述车载智能硬件;完成操作。
本申请中,通过触控方式对智能管理页进行操作,可实现对是所有的车载智能硬件进行统一管控,车载智能硬件的管控更加简单、直观、效率更高,用户行车时使用车载智能硬件更加方便和安全。
针对基于语音方式的车载智能硬件的管控方式:
具体地,参照图9,所示为一种语音方式管控车载智能硬件步骤流程图, 具体如下所示:
步骤901,唤醒小P并识别用户的启动车载智能硬件的语音指令,例如打开香氛、打开海韵香氛、打开冰箱、打开摄像头等;如图10所示,可在唤醒小P后,若识别出用户说出车载智能硬件的语音指令,则可以在界面或者弹窗中显示该语音指令对应的文本信息“打开海韵香氛”。
步骤902,判断是否已购入车载智能硬件;若未购入车载智能硬件,执行步骤903,若购入车载智能硬件,则执行步骤906;
步骤903,提示未购买并询问是否了解;若用户正向回复否,执行步骤904;若用户正向回复是,则执行步骤905;
步骤904,对话结束;
步骤905,进入硬件介绍页面;
步骤906,判断是否已连接车载智能硬件;若车载智能硬件未连接成功,执行步骤907;若车载智能硬件连接成功,则执行步骤910;
步骤907,提示未连接并询问是否要连接;若用户正向回复否,执行步骤908;若用户正向回复是,则执行步骤909;
步骤908,对话结束;
步骤909,进入连接页面;
步骤910,执行语音指令,对话结束。
本申请中,通过语音指令对车载智能硬件进行管控,可以在行车中的用户避免双手离开方向盘去控制车载智能硬件,提高了行车的安全性,并且通过语音方式就可控制车载智能硬件,用户的操作更加快捷、便利。
申请申请申请
参照图11,示出了本申请提供的一种智能座舱的结构示意图,具体可以包括如下模块:
智能管理页打开模块1101,用于响应针对智能座舱的操作指令,打开智能管理页;
界面元素展示模块1102,用于在所述智能管理页中展示车载智能硬件对应的界面元素;所述界面元素具有多个预设页面,所述预设页面用于介绍或 者控制所述车载智能硬件;
预设页面进入模块1103,用于响应针对所述车载智能硬件的界面元素的操作指令,进入所述车载智能硬件对应的预设页面。
在本申请中,所述预设页面进入模块1103包括:
状态信息获取子模块,用于获取所述车载智能硬件的状态信息;所述状态信息至少包括已购入、未购入、已连接和未连接;
预设页面进入子模块,用于响应针对所述车载智能硬件的界面元素的操作指令,根据所述状态信息进入所述车载智能硬件对应的预设页面。
在本申请中,预设页面进入子模块包括:
介绍页面进入单元,用于当所述状态信息为所述车载智能硬件未购入时,响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件介绍页面;所述硬件介绍页面用于介绍所述车载智能硬件在车辆内使用时的详情信息。
在本申请中,预设页面进入子模块包括:
控制页面进入单元,用于当所述状态信息为所述车载智能硬件购入时,响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件控制页面;所述硬件控制页面用于响应针对所述硬件控制页面操作指令操作对应控制所述车载智能硬件。
在本申请中,所述智能座舱还包括:
立体展示页面进入模块,用于响应针对所立体展示按钮的操作指令,进入立体展示页面;所述立体展示页面用于展示所述车载智能硬件在车辆内使用的示意介绍。
在本申请中,所预设页面进入子模块还包括:
快捷操作显示单元,用于若所述状态信息为所述车载智能硬件连接成功,则所述车载智能硬件对应的界面元素显示所述快捷操作按键;
未连接显示单元,用于若所述状态信息为所述车载智能硬件未连接成功,则在所述车载智能硬件对应的界面元素提示所述车载智能硬件未连接。
在本申请中,所述预设页面进入子模块还包括:
连接页面进入单元,用于响应针对所述车载智能硬件对应的界面元素的操作指令,进入连接页面;所述连接页面用于进行网络连接;在网络连接成功后,进入所述车载智能硬件对应的硬件控制页面。
在本申请中,所述智能管理页中显示有座舱图,其中,所述座舱图中对已购入,或者已购入且已连接的所述车载智能硬件具体位置进行标记。
在本申请中,所述车载智能硬件至少包括智能香氛、车内智能摄像头、车内投影仪与车载冰箱的其中一种。
在本申请中,响应针对智能座舱的操作指令,打开智能管理页,智能管理页中展示车载智能硬件对应的界面元素,界面元素具有多个预设页面,预设页面用于介绍或者控制车载智能硬件,然后响应针对车载智能硬件的界面元素的操作指令,从而进入车载智能硬件对应的预设页面。本申请将车载智能硬件配置在智能座舱内,实现对各类车载智能硬件的统一管控,具体地,通过预设页面可以控制车载智能硬件,使得车载智能硬件的管控更加简单、直观、效率更高,用户行车时使用车载智能硬件更加方便和安全,同时通过预设页面还可以获取车载智能硬件的介绍信息,使得用户获取车载智能硬件的详情信息。
本申请还提供了一种车辆,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现如上述所述中任一项所述的基于智能座舱的车载智能硬件管控的方法。
本申请还提供了一种计算机可读存储介质,所述计算机可读存储介质上存储计算机程序,所述计算机程序被处理器执行时实现如上所述中任一项所述的基于智能座舱的车载智能硬件管控的方法。
本申请的各个实施方式可以以硬件实现,或者以在一个或者多个处理器上运行的软件模块实现,或者以它们的组合实现。本领域的技术人员应当理解,可以在实践中使用微处理器或者数字信号处理器(DSP)来实现根据本申请实施方式的计算处理设备中的一些或者全部部件的一些或者全部功能。 本申请还可以实现为用于执行这里所描述的方法的一部分或者全部的设备或者装置程序(例如,计算机程序和计算机程序产品)。这样的实现本申请的程序可以存储在计算机可读介质上,或者可以具有一个或者多个信号的形式。这样的信号可以从因特网网站上下载得到,或者在载体信号上提供,或者以任何其他形式提供。
例如,图12示出了可以实现根据本申请的方法的计算处理设备。该计算处理设备传统上包括处理器1210和以存储器1220形式的计算机程序产品或者计算机可读介质。存储器1220可以是诸如闪存、EEPROM(电可擦除可编程只读存储器)、EPROM、硬盘或者ROM之类的电子存储器。存储器1220具有用于执行上述方法中的任何方法步骤的程序代码1231的存储空间1230。例如,用于程序代码的存储空间1230可以包括分别用于实现上面的方法中的各种步骤的各个程序代码1231。这些程序代码可以从一个或者多个计算机程序产品中读出或者写入到这一个或者多个计算机程序产品中。这些计算机程序产品包括诸如硬盘,紧致盘(CD)、存储卡或者软盘之类的程序代码载体。这样的计算机程序产品通常为如参考图13所述的便携式或者固定存储单元。该存储单元可以具有与图12的计算处理设备中的存储器1220类似布置的存储段、存储空间等。程序代码可以例如以适当形式进行压缩。通常,存储单元包括计算机可读代码1231’,即可以由例如诸如1210之类的处理器读取的代码,这些代码当由计算处理设备运行时,导致该计算处理设备执行上面所描述的方法中的各个步骤。
以上仅表达了本申请的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对本申请专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本申请构思的前提下,还可以做出若干变形和改进,这些都属于本申请的保护范围。因此,本申请专利的保护范围应以所附权利要求为准。

Claims (12)

  1. 一种基于智能座舱的车载智能硬件管控方法,其特征在于,所述方法包括:
    响应针对智能座舱的操作指令,打开智能管理页;
    在所述智能管理页中展示车载智能硬件对应的界面元素;所述界面元素具有多个预设页面,所述预设页面用于介绍或者控制所述车载智能硬件;
    响应针对所述车载智能硬件的界面元素的操作指令,进入所述车载智能硬件对应的预设页面。
  2. 根据权利要求1所述的方法,其特征在于,所述响应针对所述车载智能硬件的界面元素的操作指令,进入所述车载智能硬件对应的预设页面,包括:
    获取所述车载智能硬件的状态信息;所述状态信息至少包括已购入、未购入、已连接和未连接;
    响应针对所述车载智能硬件的界面元素的操作指令,根据所述状态信息进入所述车载智能硬件对应的预设页面。
  3. 根据权利要求2所述的方法,其特征在于,所述响应针对所述车载智能硬件的界面元素的操作指令,根据所述状态信息进入所述车载智能硬件对应的预设页面,包括:
    当所述状态信息为所述车载智能硬件未购入时,响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件介绍页面;所述硬件介绍页面用于介绍所述车载智能硬件在车辆内使用时的详情信息;
  4. 根据权利要求2所述的方法,其特征在于,所述响应针对所述车载智能硬件的界面元素的操作指令,根据所述状态信息进入所述车载智能硬件对应的预设页面,包括:
    当所述状态信息为所述车载智能硬件购入时,响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件控制页面;所述硬件控制页面用于响应针对所述硬件控制页面操作指令操作对应控制所述车载智能硬件。
  5. 根据权利要求1所述的方法,其特征在于,所述智能管理页具有立体展示按钮,所述在响应针对智能座舱的操作指令,打开智能管理页之后,所述方法还包括:
    响应针对所述立体展示按钮的操作指令,进入立体展示页面;所述立体展示页面用于展示所述车载智能硬件在车辆内使用的示意介绍。
  6. 根据权利要求4所述的方法,其特征在于,在所述响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件控制页面之前,所述方法还包括:
    若所述状态信息为所述车载智能硬件已连接,则所述车载智能硬件对应的界面元素显示所述快捷操作按键;
    若所述状态信息为所述车载智能硬件未连接,则在所述车载智能硬件对应的界面元素提示所述车载智能硬件未连接。
  7. 根据权利要求6所述的方法,其特征在于,所述响应针对所述车载智能硬件的所述界面元素的操作指令,进入所述车载智能硬件对应的硬件控制页面,包括:
    响应针对所述车载智能硬件对应的界面元素的操作指令,进入连接页面;所述连接页面用于进行网络连接;
    在网络连接成功后,进入所述车载智能硬件对应的硬件控制页面。
  8. 根据权利要求2所述的方法,其特征在于,所述智能管理页中显示有座舱图,其中,所述座舱图中对已购入,或者已购入且已连接的所述车载智能硬件具体位置进行标记。
  9. 根据权利要求1-8所述的方法,其特征在于,所述车载智能硬件至少包括智能香氛、车内智能摄像头、车内投影仪与车载冰箱的其中一种。
  10. 一种智能座舱,其特征在于,包括:
    智能管理页打开模块,用于响应针对智能座舱的操作指令,打开智能管理页;
    界面元素展示模块,用于在所述智能管理页中展示车载智能硬件对应的界面元素;所述界面元素具有多个预设页面,所述预设页面用于介绍或者控 制所述车载智能硬件;
    预设页面进入模块,用于响应针对所述车载智能硬件的界面元素的操作指令,进入所述车载智能硬件对应的预设页面。
  11. 一种车辆,其特征在于,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现如权利要求1至9中任一项所述的基于智能座舱的车载智能硬件管控的方法。
  12. 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质上存储计算机程序,所述计算机程序被处理器执行时实现如权利要求1至9中任一项所述的基于智能座舱的车载智能硬件管控的方法。
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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112172705A (zh) * 2020-09-28 2021-01-05 广州小鹏汽车科技有限公司 一种基于智能座舱的车载智能硬件管控方法和智能座舱
CN114764290B (zh) * 2021-01-11 2023-10-27 广州汽车集团股份有限公司 一种车载香氛控制方法及系统
CN113978328B (zh) * 2021-10-29 2022-08-16 广州小鹏汽车科技有限公司 控制方法及装置、车辆及存储介质

Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20140069777A (ko) * 2012-11-30 2014-06-10 ㈜베이다스 차량용 스마트 운전 보조 시스템
CN104463640A (zh) * 2014-12-26 2015-03-25 小米科技有限责任公司 智能硬件商品的推荐显示方法及装置
CN104503688A (zh) * 2014-12-31 2015-04-08 小米科技有限责任公司 智能硬件设备的控制实现方法及装置
CN105376125A (zh) * 2015-12-08 2016-03-02 深圳众乐智府科技有限公司 一种智能家居系统操控方法及装置
CN105487392A (zh) * 2015-11-26 2016-04-13 小米科技有限责任公司 设备展示方法及装置
CN110488978A (zh) * 2019-08-22 2019-11-22 大陆投资(中国)有限公司 车辆驾驶舱系统和使用说明交互设备与方法
CN110989890A (zh) * 2019-12-23 2020-04-10 北京汽车集团越野车有限公司 一种车用屏幕的显示方法、车用中控面板及具有其的车辆
KR20200073416A (ko) * 2018-12-14 2020-06-24 에스케이하이닉스 주식회사 스마트 카 시스템
CN111439220A (zh) * 2020-03-17 2020-07-24 中国电子科技集团公司第二十八研究所 一种特种车辆车载设备集中控制系统和方法
CN112172705A (zh) * 2020-09-28 2021-01-05 广州小鹏汽车科技有限公司 一种基于智能座舱的车载智能硬件管控方法和智能座舱

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102541415B (zh) * 2010-12-30 2015-02-11 上海博泰悦臻电子设备制造有限公司 车载电子系统的模式切换方法
CN105346391A (zh) * 2014-08-22 2016-02-24 坦亿有限公司 仪表板模块、仪表板整合系统与显示方法
CN105083213A (zh) * 2015-07-24 2015-11-25 重庆长安汽车股份有限公司 汽车影像记录仪系统
CN105346483B (zh) * 2015-11-04 2018-07-17 常州加美科技有限公司 一种无人驾驶车辆的人机交互系统
CN107705171B (zh) * 2017-08-31 2021-05-04 北京小米移动软件有限公司 信息显示方法、装置及终端

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20140069777A (ko) * 2012-11-30 2014-06-10 ㈜베이다스 차량용 스마트 운전 보조 시스템
CN104463640A (zh) * 2014-12-26 2015-03-25 小米科技有限责任公司 智能硬件商品的推荐显示方法及装置
CN104503688A (zh) * 2014-12-31 2015-04-08 小米科技有限责任公司 智能硬件设备的控制实现方法及装置
CN105487392A (zh) * 2015-11-26 2016-04-13 小米科技有限责任公司 设备展示方法及装置
CN105376125A (zh) * 2015-12-08 2016-03-02 深圳众乐智府科技有限公司 一种智能家居系统操控方法及装置
KR20200073416A (ko) * 2018-12-14 2020-06-24 에스케이하이닉스 주식회사 스마트 카 시스템
CN110488978A (zh) * 2019-08-22 2019-11-22 大陆投资(中国)有限公司 车辆驾驶舱系统和使用说明交互设备与方法
CN110989890A (zh) * 2019-12-23 2020-04-10 北京汽车集团越野车有限公司 一种车用屏幕的显示方法、车用中控面板及具有其的车辆
CN111439220A (zh) * 2020-03-17 2020-07-24 中国电子科技集团公司第二十八研究所 一种特种车辆车载设备集中控制系统和方法
CN112172705A (zh) * 2020-09-28 2021-01-05 广州小鹏汽车科技有限公司 一种基于智能座舱的车载智能硬件管控方法和智能座舱

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