CN115339288A - Air conditioner interaction interface display control method and device and vehicle - Google Patents

Air conditioner interaction interface display control method and device and vehicle Download PDF

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Publication number
CN115339288A
CN115339288A CN202211050798.1A CN202211050798A CN115339288A CN 115339288 A CN115339288 A CN 115339288A CN 202211050798 A CN202211050798 A CN 202211050798A CN 115339288 A CN115339288 A CN 115339288A
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China
Prior art keywords
air conditioner
operating system
layer
display screen
vehicle
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CN202211050798.1A
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Chinese (zh)
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王梅
刘凯
吴刚
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Zhejiang Geely Holding Group Co Ltd
Geely Automobile Research Institute Ningbo Co Ltd
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Zhejiang Geely Holding Group Co Ltd
Geely Automobile Research Institute Ningbo Co Ltd
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Priority to CN202211050798.1A priority Critical patent/CN115339288A/en
Publication of CN115339288A publication Critical patent/CN115339288A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60HARRANGEMENTS OF HEATING, COOLING, VENTILATING OR OTHER AIR-TREATING DEVICES SPECIALLY ADAPTED FOR PASSENGER OR GOODS SPACES OF VEHICLES
    • B60H1/00Heating, cooling or ventilating [HVAC] devices
    • B60H1/00642Control systems or circuits; Control members or indication devices for heating, cooling or ventilating devices
    • B60H1/00985Control systems or circuits characterised by display or indicating devices, e.g. voice simulators

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  • Thermal Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Air-Conditioning For Vehicles (AREA)

Abstract

The invention provides an air conditioner interactive interface display control method, an air conditioner interactive interface display control device and a vehicle, wherein the air conditioner interactive interface display control method is applied to the vehicle, the vehicle comprises a first operating system and a second operating system, the starting time of the first operating system is shorter than that of the second operating system, and the vehicle air conditioner interactive interface display control method comprises the following steps: when the first operating system is started and the second operating system is not started, enabling the first operating system to generate a first air conditioner layer and sending the first air conditioner layer to a display screen of the vehicle; when the second operating system is started, the second operating system is enabled to generate a second air conditioner layer and send the second air conditioner layer to a display screen of the vehicle, the second air conditioner layer is used for switching the first air conditioner layer at the display screen, and the first air conditioner layer and the second air conditioner layer are both used for displaying an air conditioner interaction interface at the display screen. The invention has the beneficial effects that: the quick start of the air conditioner can be realized, and the shielding of the air conditioner interaction interface on other interfaces under the condition of multiple systems is avoided.

Description

Air conditioner interaction interface display control method and device and vehicle
Technical Field
The invention relates to the technical field of automobile air conditioners, in particular to an air conditioner interaction interface display control method and device and a vehicle.
Background
Today, the integration level of intelligent cabin controllers is higher, and a scheme for integrating instruments, air conditioners, entertainment hosts and the like in automobiles is provided. The existing vehicle chip generally supports multi-system operation, for example, the operation of a QNX system and an Android system is simultaneously supported, some functions are respectively deployed according to different application scenes, for the basic functions of an air conditioner and other automobiles, the basic functions are often deployed on the QNX system side, correspondingly, the QNX system sends an interactive interface of the air conditioner to a central control screen for displaying, so that a driver can control and know the state of the air conditioner, and some complex interactive functions are deployed on the Android system side. Because the priority of the QNX system is generally higher than that of the Android system, in this case, the air-conditioning interface displayed by the QNX system often shields the information to be displayed by the Android system, and further interference to the driver is caused. The air conditioner is directly deployed through the Android, and the problem that the air conditioner cannot be started in advance due to the fact that the Android is slow in starting time is solved.
Disclosure of Invention
The present invention is directed to solving the technical problems in the related art at least to some extent.
The invention provides an air conditioner interactive interface display control method, which is applied to a vehicle, wherein the vehicle comprises a first operating system and a second operating system, the starting time of the first operating system is less than that of the second operating system, and the vehicle air conditioner interactive interface display control method comprises the following steps:
when the first operating system is started and the second operating system is not started, enabling the first operating system to generate a first air conditioner layer and sending the first air conditioner layer to a display screen of the vehicle;
when the second operating system is started, the second operating system is enabled to generate a second air conditioner layer and send the second air conditioner layer to the display screen of the vehicle, the second air conditioner layer is used for switching the first air conditioner layer at the display screen, and the first air conditioner layer and the second air conditioner layer are both used for displaying an air conditioner interaction interface at the display screen.
The air conditioner interactive interface display control method can be applied to vehicle air conditioner control, when a vehicle is started, the first operating system can be quickly started, the air conditioner application can quickly run on the system layer at the moment, before the second operating system is not started, the first operating system generates the first air conditioner layer, the first air conditioner layer can display the air conditioner interactive interface on a vehicle display screen, and the quick start of the first operating system can meet the requirement of a user for quickly starting an air conditioner when the user drives the vehicle. The second operating system can be started later than the first operating system, the second operating system directly generates a second air conditioner layer and sends the second air conditioner layer to the display screen of the vehicle, the second operating system is used for rapidly switching the first air conditioner layer of the first operating system at the display screen, the display of the air conditioner interaction interface is taken over by the second operating system at the moment, the display of various interfaces of the follow-up vehicle display screen is mainly centralized on the second operating system for management, the control authority of the related layers is more uniform at the moment, the air conditioner interaction interface displayed by the first operating system can be prevented from shielding other interfaces displayed by the second operating system, and therefore the user experience is better.
Further, when the first operating system is started and the second operating system is not started, the method further comprises the following steps: the method comprises the steps of enabling an air conditioner application to run in the first operating system, obtaining running state data generated by the air conditioner through the first operating system, and generating first state display information according to the running state data, wherein the first state display information is used for displaying the state of the air conditioner on the air conditioner interaction interface of the display screen.
Further, when the second operating system is started, the method further comprises the following steps: and operating the air conditioner application in the second operating system, acquiring the running state data generated by the air conditioner through the second operating system, generating second state display information according to the running state data, and sending the second state display information to the second air conditioner layer at the display screen, wherein the second state display information is used for displaying the state of the air conditioner at the air conditioner interaction interface of the display screen.
Further, when the second operating system is started, the method further comprises the following steps: and acquiring the first state display information sent by the first operating system through the second operating system, and sending the first state display information to the second air conditioner layer at the display screen.
Further, the method also comprises the following steps:
when the air conditioner application is started up and finished by the second operating system and the drawing of the second air conditioner layer is finished, judging whether the air conditioner application of the first operating system is in an enabled state or not;
if not, switching the first air conditioner layer to the second air conditioner layer at the display screen;
and if so, identifying the operation state of the user, and switching the first air conditioner layer to the second air conditioner layer at the display screen when the operation state of the user accords with a preset operation state.
Further, the second air conditioner layer has the same form as the first air conditioner layer, and the second air conditioner layer is located at a lower layer of the first air conditioner layer before the first air conditioner layer is switched to the second air conditioner layer at the display screen; the switching the first air conditioner layer to the second air conditioner layer at the display screen comprises:
and closing the first air conditioner layer to enable the second air conditioner layer to be displayed on the display screen.
Further, the air conditioner interaction interface display control method further comprises the following steps: and when receiving prompt messages sent by the display screen for completing operation and exiting the air conditioner interaction interface, judging that the operation state of the user accords with the preset operation state, wherein the prompt messages are generated by the display screen according to the touch condition of the user.
Further, the second operating system includes a plurality of layers, the layers include the second air conditioner layer, and the air conditioner interactive interface display control method further includes:
and after the second operating system is started, distributing the layer to the display screen for displaying according to a preset priority distribution method.
The invention also provides an air-conditioning interactive interface display control device, which is applied to a vehicle, wherein the vehicle comprises a first operating system and a second operating system, the starting time of the first operating system is less than that of the second operating system, and the vehicle air-conditioning interactive interface display control device comprises:
the first system processing module is used for enabling the first operating system to generate a first air conditioner layer and sending the first air conditioner layer to a display screen of the vehicle when the first operating system is started and the second operating system is not started;
and the second system processing module is used for enabling the second operating system to generate a second air conditioner layer when the second operating system is started, and sending the second air conditioner layer to the display screen of the vehicle, wherein the second air conditioner layer is used for switching the first air conditioner layer at the display screen, and the first air conditioner layer and the second air conditioner layer are both used for displaying an air conditioner interaction interface at the display screen.
The air conditioner interactive interface display control device has the similar technical effect of the air conditioner interactive interface display control method, and is not repeated herein.
The invention also provides a vehicle which comprises a memory, a processor and a computer program which is stored on the memory and can run on the processor, and when the processor executes the computer program, the air conditioner interaction interface display control method is realized.
The vehicle, such as a passenger vehicle, an engineering vehicle and the like, in the invention has the similar technical effect of the air conditioner interactive interface display control method, and the details are not repeated herein.
Drawings
FIG. 1 is a flowchart of an air conditioner interactive interface display control method according to an embodiment of the present invention;
fig. 2 is a block diagram of an air conditioner interactive interface display control device according to an embodiment of the present invention.
Detailed Description
In order to make the aforementioned objects, features and advantages of the present invention comprehensible, embodiments accompanied with figures are described in detail below.
It should be noted that the terms "first," "second," and the like in the description and claims of the present invention and in the drawings described above are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It is to be understood that the data so used is interchangeable under appropriate circumstances such that the embodiments of the invention described herein are capable of operation in other sequences than those illustrated or described herein.
In the description herein, references to "an embodiment," "one embodiment," and "one implementation," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or implementation is included in at least one embodiment or implementation of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or implementation. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or implementations.
Referring to fig. 1, an embodiment of the present invention provides an air-conditioning interactive interface display control method, which is applied to a vehicle, where the vehicle includes a first operating system and a second operating system, a start time of the first operating system is shorter than a start time of the second operating system, and the vehicle air-conditioning interactive interface display control method includes:
when the first operating system is started and the second operating system is not started, enabling the first operating system to generate a first air conditioner layer and sending the first air conditioner layer to a display screen of the vehicle;
when the second operating system is started, the second operating system is enabled to generate a second air conditioner layer and send the second air conditioner layer to the display screen of the vehicle, the second air conditioner layer is used for switching the first air conditioner layer at the display screen, and the first air conditioner layer and the second air conditioner layer are both used for displaying an air conditioner interaction interface at the display screen.
The air conditioner interactive interface display control method is applied to vehicles such as a service vehicle and an engineering vehicle, and specifically comprises at least two operating systems, namely a first operating system and a second operating system, wherein the first operating system and the second operating system can be respectively deployed with different vehicle function applications, the starting time of the first operating system is shorter than that of the second operating system, when the vehicle is started, the first operating system can be started before the second operating system, and the starting time needs to be described.
The first operating system may be a QNX system, a Linux system, etc., and the second operating system may be an Android system, an IOS system, etc. In this embodiment, the first operating system specifically employs a QNX system, and the second operating system specifically employs an Android system.
It can be understood that, in the present invention, the starting of the system refers to that the system is started up completely or is started to a state that can satisfy the operation of the air conditioner and the generation of the relevant image layer, and the system does not just receive the start-up instruction.
When a vehicle is started, a first operating system can be quickly started, at the moment, an air conditioner application can be quickly operated on the system layer, before a second operating system is not started, the first operating system generates a first air conditioner layer, so that an air conditioner interaction interface can be displayed on a vehicle display screen, for example, a control screen in an automobile, and it can be understood that the air conditioner interaction interface can be used for displaying related air conditioner state information, control indication information (for example, control keys) and the like, so that an operator can conveniently control and know the operation state of the air conditioner, and therefore, the quick start of the first operating system can meet the requirement of quickly starting the air conditioner when the user drives the vehicle.
The second operating system is started later than the first operating system, before the second operating system is started, the interface of the vehicle display screen is controlled by the first operating system, including but not limited to an air conditioner interactive interface, when the second operating system is started, the second operating system directly generates a second air conditioner layer and sends the second air conditioner layer to the display screen of the vehicle, so that the first air conditioner layer of the first operating system is rapidly switched at the display screen, at the moment, the display of the air conditioner interactive interface is taken over by the second operating system, the display of various interfaces of the subsequent vehicle display screen is mainly centralized on the second operating system for management, and at the moment, the control authority of the related layers is more uniform, so that the situation that the air conditioner interactive interface corresponding to the first operating system covers other interfaces displayed by the second operating system due to the fact that the interfaces are respectively displayed by the first operating system and the second operating system can be avoided.
In an optional embodiment of the present invention, when the first operating system is booted and the second operating system is not booted, the method further includes the steps of: the method comprises the steps of enabling an air conditioner application to run in the first operating system, obtaining running state data generated by the air conditioner through the first operating system, and generating first state display information according to the running state data, wherein the first state display information is used for displaying the state of the air conditioner on the air conditioner interaction interface of the display screen.
In this embodiment, when the second operating system is not started, the air conditioner application runs in the first operating system, the first operating system obtains running state data generated by the air conditioner, for example, information such as temperature in a vehicle, and the like, to generate first state display information, and in combination with the generated first air conditioner layer, an air conditioner interaction interface is constructed on the display screen together, so that the air conditioner interaction interface is displayed, and further, related air conditioner control executed by a user on the display screen is also processed and executed based on the first operating system, so that quick control of the air conditioner is realized.
In an optional embodiment of the present invention, when the second operating system is started, the method further includes running the air conditioner application on the second operating system, and the second operating system obtains the running state data generated by the air conditioner, generates second state display information according to the state data, and sends the second state display information to the second air conditioner layer on the display screen, where the second state display information is used to display the state of the air conditioner on the air conditioner interaction interface of the display screen.
When the second operating system is started, in one scheme, the air conditioner application can be enabled to stop running in the first operating system and be switched to run in the second operating system, at the moment, the second operating system can also directly acquire running state data generated by the air conditioner besides a second air conditioner layer, so that second state display information is generated, and an air conditioner interaction interface is constructed on a display screen together by combining the second air conditioner layer, so that display is carried out, related air conditioner control executed on the display screen by a user is also carried out on the basis of the second operating system, the air conditioner application is run through the second operating system, data processing and interface display are carried out, and accurate display of data can be facilitated.
In an optional embodiment of the present invention, when the second operating system is started, the method further includes acquiring, by the second operating system, the first state display information sent by the first operating system, and sending the first state display information to the second air conditioner layer at the display screen.
In another scheme, when the second operating system is started, the air conditioner application is still kept running in the first operating system, at the moment, the second operating system is used for obtaining first state display information sent by the first operating system, and an air conditioner interaction interface at the display screen is built by combining the second air conditioner layer, so that the air conditioner runs in the first operating system all the time, the running stability of the vehicle air conditioner is ensured, and the air conditioner is prevented from stopping running due to the fact that the second operating system is turned off or in standby mode.
Specifically, taking the second operating system as an Android system, taking the first operating system as a QNX system as an example, after the Android system is started, notifying the QNX system side that the operation is completed, replying confirmation by the QNX system, receiving air conditioner data from the QNX system side after the Android second air conditioner layer is started, feeding back that the QNX system data link is established, and after the QNX system side receives the air conditioner data link, closing the first air conditioner layer display at the QNX system side, pushing the second air conditioner layer by the Android system to display an air conditioner interaction interface at a display screen, and subsequently displaying the air conditioner interaction interface on the Android system layer according to the Android system window priority to realize seamless docking.
In an optional embodiment of the present invention, the air conditioner interactive interface display control method further includes the steps of:
when the air conditioner application is started up and finished by the second operating system and the drawing of the second air conditioner layer is finished, judging whether the air conditioner application of the first operating system is in an enabled state or not;
if not, switching the first air conditioner layer to the second air conditioner layer at the display screen;
and if so, identifying the operation state of a user, and switching the first air conditioner layer to the second air conditioner layer at the display screen when the operation state of the user accords with a preset operation state.
When the air conditioner is applied to the second operating system to start, the second operating system can perform drawing of the second air conditioner layer, and the drawing can enter a subsequent stage of switching the first air conditioner layer.
When the judgment is made, if the air conditioner application of the first operating system is not in the starting state, the user is determined that the relevant operation of the air conditioner is not performed at the central control screen at the moment, and therefore the first air conditioner layer is directly switched, so that the air conditioner interaction interface corresponding to the second air conditioner layer is displayed, and quick and timely switching is achieved.
If the air conditioner application of the first operating system is in the starting state, the user is determined to be likely to execute the control operation related to the air conditioner at the moment, therefore, the operation state of the user is identified at the moment, and when the operation state of the user accords with the preset operation state, the current switching is determined to have smaller influence on the user or not to cause influence, therefore, the first air conditioner layer is switched at the moment, so that an air conditioner interaction interface corresponding to the second air conditioner layer is displayed, and the coating switching is performed to bring better experience to the user.
For example, in an optional embodiment of the present invention, the method for controlling the display of the air conditioner interactive interface further includes: and when receiving prompt information of completing operation and quitting the air conditioner interaction interface sent by the display screen, judging that the operation state of the user accords with the preset operation state, wherein the prompt information is generated by the display screen according to the touch condition of the user. In this case, a specific determination condition may be set to determine whether the user has completed the operation, for example, the user does not perform a touch operation for a certain period of time, or the user touches or presses a specific key.
In other embodiments, the determination of the user operation state may be performed by other vehicle components besides the display screen, for example, the vehicle-mounted camera may detect the line of sight of the user to determine whether the user focuses on the display screen, so as to determine whether the user still performs an air conditioning operation, and the like.
In an optional embodiment of the present invention, a form of the second air-conditioning layer is the same as that of the first air-conditioning layer, and before the first air-conditioning layer is switched to the second air-conditioning layer at the display screen, the second air-conditioning layer is located at a lower layer of the first air-conditioning layer; the switching the first air conditioner layer to the second air conditioner layer at the display screen comprises:
and closing the first air conditioner layer to display the second air conditioner layer on the display screen.
In this embodiment, the interface forms displayed at the display screen by the second air-conditioner layer and the first air-conditioner layer are the same, before the first air-conditioner layer is switched to the second air-conditioner layer, for example, when a user operation is determined, the second air-conditioner layer is located at a lower layer of the first air-conditioner layer, when the second air-conditioner layer needs to be switched, the first air-conditioner layer is directly closed, or an air-conditioner application of the first operating system directly exits, and at this time, the second air-conditioner layer is directly displayed while displaying, and an air-conditioner interactive interface is formed at the display screen.
In an optional embodiment of the present invention, the second operating system includes multiple layers, where the layers include the second air conditioner layer, and the air conditioner interactive interface display control method further includes:
and after the second operating system is started, distributing the layer to the display screen for displaying according to a preset priority distribution method.
In this embodiment, the second operating system includes multiple layers, the second air-conditioner layer is one of the multiple layers, and after the second operating system is started, the second operating system allocates the layers at the display screen by using a preset priority allocation method set by the system, and displays interfaces corresponding to different layers at the display screen according to different priorities.
Taking an Android system as an example, the Android system may include layers of 1 to 18 levels, which are an SOS layer, a parking layer, an incoming call popup layer, a keyboard layer, a system popup layer, a startup animation layer, a startup guidance layer (containing an activation service), a nap mode layer, a negative screen layer, a voice avatar layer, a voice interface layer, a bubble floating window layer, a Dock bar layer, an application popup layer, a status bar layer, a window level application layer, an application layer, a desktop layer, and the like according to priority order, so that the layers are displayed according to a scene and a preset priority allocation method.
The second air-conditioning layer may be correspondingly allocated with multiple levels, such as an application layer, a window-level application layer, and the like.
For the parking layer, when displayed, it is displayed in full screen, and no Dock bar and status bar appear.
For the incoming telegram popup window layer, when a card exists, the default display is in the card area, and no card is in the ceiling display.
For the system popup layer, which has a color (e.g. black) mask, the status bar is masked, but the Dock bar is not masked, the application Toast, the system volume class, the driving mode popup class are in this level, and when the Dock bar is operated, the system popup layer is covered.
For a nap mode layer, it is displayed full screen, with no status bar and no Dock bar displayed.
For the negative one-screen layer, which has a color (e.g., white) mask, the Dock bar is occluded.
For the voice virtual image layer, the voice virtual image layer is a voice image actively awakened by a user, the main driving awakening is displayed at the lower left corner, the auxiliary driving awakening is displayed at the lower right corner, and the voice can break the image layer across layers except for parking and Bluetooth telephones.
To bubble floating window layer, the user pops open when clicking, clicks its surrounding screen area and closes, and automatic packing up when the user does not operate, bubble floating window generally includes: the lower left corner status bar operates the invoked bubble floating window, the bubble floating window at the notification center, the front and back defrosting and volume adjusting or air conditioner temperature adjusting bubble floating window of the Dock bar, and the like.
For the application popup layer, which has a color (e.g., black) mask, the status bar is occluded, the Dock bar is not occluded, and the Dock bar popup is operated to exit.
For the window-level application layer, the window-level application layer can comprise half-screen air conditioner layer display, APP panel and the like, and the Dock bar cannot be shielded.
For the application layer, it may be a native application layer of a second operating system, for example, an Android native APP level, including applications opened by APP panel and applications opened by desktop card magnification, and navigation, setting, and the like belong to this level.
As shown in fig. 2, an air conditioning interactive interface display control device according to another embodiment of the present invention is applied to a vehicle, where the vehicle includes a first operating system and a second operating system, and a start time of the first operating system is shorter than a start time of the second operating system, and the vehicle air conditioning interactive interface display control device includes:
and the first system processing module is used for enabling the first operating system to generate a first air conditioner layer and sending the first air conditioner layer to a display screen of the vehicle when the first operating system is started and the second operating system is not started.
And the second system processing module is used for enabling the second operating system to generate a second air conditioner layer when the second operating system is started, and sending the second air conditioner layer to the display screen of the vehicle, wherein the second air conditioner layer is used for switching the first air conditioner layer at the display screen, and the first air conditioner layer and the second air conditioner layer are both used for displaying an air conditioner interaction interface at the display screen.
The air conditioner interactive interface display control device has the similar technical effect of the air conditioner interactive interface display control method, and is not described again.
A vehicle according to another embodiment of the present invention includes a memory, a processor, and a computer program stored in the memory and executable on the processor, and when the processor executes the computer program, the air conditioner interactive interface display control method is implemented.
The vehicles, such as passenger vehicles and engineering vehicles, in the present invention have similar technical effects to the air conditioner interactive interface display control method, and are not described herein again.
Although the present disclosure has been described above, the scope of the present disclosure is not limited thereto. Various changes and modifications may be made by those skilled in the art without departing from the spirit and scope of the disclosure, and these changes and modifications are intended to fall within the scope of the invention.

Claims (10)

1. The air conditioner interactive interface display control method is applied to a vehicle and is characterized in that the vehicle comprises a first operating system and a second operating system, the starting time of the first operating system is shorter than that of the second operating system, and the vehicle air conditioner interactive interface display control method comprises the following steps:
when the first operating system is started and the second operating system is not started, enabling the first operating system to generate a first air conditioner layer and sending the first air conditioner layer to a display screen of the vehicle;
when the second operating system is started, the second operating system is enabled to generate a second air conditioner layer and send the second air conditioner layer to the display screen of the vehicle, the second air conditioner layer is used for switching the first air conditioner layer at the display screen, and the first air conditioner layer and the second air conditioner layer are both used for displaying an air conditioner interaction interface at the display screen.
2. The air conditioner interactive interface display control method as claimed in claim 1, wherein when the first operating system is started and the second operating system is not started, further comprising: the method comprises the steps of enabling an air conditioner application to run in the first operating system, obtaining running state data generated by the air conditioner through the first operating system, and generating first state display information according to the running state data, wherein the first state display information is used for displaying the state of the air conditioner on the air conditioner interaction interface of the display screen.
3. The air conditioner interactive interface display control method according to claim 2, when the second operating system is started, further comprising: and enabling the air conditioner application to run in the second operating system, acquiring the running state data generated by the air conditioner through the second operating system, generating second state display information according to the running state data, and sending the state display information to the second air conditioner layer at the display screen, wherein the second state display information is used for displaying the state of the air conditioner at the air conditioner interaction interface of the display screen.
4. The air conditioner interactive interface display control method according to claim 2, when the second operating system is started, further comprising obtaining the first state display information sent by the first operating system through the second operating system, and sending the first state display information to the second air conditioner layer at the display screen.
5. The air conditioner interactive interface display control method of claim 1, further comprising:
when the air conditioner application is started up and finished by the second operating system and the drawing of the second air conditioner layer is finished, judging whether the air conditioner application of the first operating system is in an enabled state or not;
if not, switching the first air conditioner layer to the second air conditioner layer at the display screen;
and if so, identifying the operation state of the user, and switching the first air conditioner layer to the second air conditioner layer at the display screen when the operation state of the user accords with a preset operation state.
6. The air conditioner interactive interface display control method according to claim 5, wherein the second air conditioner layer has the same form as the first air conditioner layer, and the second air conditioner layer is located at a lower layer of the first air conditioner layer before the first air conditioner layer is switched to the second air conditioner layer at the display screen; the switching the first air conditioner layer to the second air conditioner layer at the display screen comprises:
and closing the first air conditioner layer to display the second air conditioner layer on the display screen.
7. The air conditioner interactive interface display control method as claimed in claim 5, further comprising: and when receiving prompt information of completing operation and quitting the air conditioner interaction interface sent by the display screen, judging that the operation state of the user accords with the preset operation state, wherein the prompt information is generated by the display screen according to the touch condition of the user.
8. The air conditioner interactive interface display control method according to any one of claims 1-7, wherein the second operating system includes a plurality of layers, the layers include the second air conditioner layer, and the air conditioner interactive interface display control method further includes:
and after the second operating system is started, distributing the layer to the display screen for displaying according to a preset priority distribution method.
9. The utility model provides a vehicle air conditioner interactive interface display control device, is applied to the vehicle, its characterized in that, the vehicle is including first operating system and second operating system, the activation time of first operating system is less than the second operating system, vehicle air conditioner interactive interface display control device includes:
the first system processing module is used for enabling the first operating system to generate a first air conditioner layer and sending the first air conditioner layer to a display screen of the vehicle when the first operating system is started and the second operating system is not started;
and the second system processing module is used for enabling the second operating system to generate a second air conditioner layer and sending the second air conditioner layer to the display screen of the vehicle when the second operating system is started, wherein the second air conditioner layer is used for switching the first air conditioner layer at the display screen, and the first air conditioner layer and the second air conditioner layer are both used for displaying an air conditioner interaction interface at the display screen.
10. A vehicle comprising a memory, a processor, and a computer program stored on the memory and executable on the processor, the computer program when executed by the processor implementing the air conditioner interface display control method according to any one of claims 1 to 8.
CN202211050798.1A 2022-08-30 2022-08-30 Air conditioner interaction interface display control method and device and vehicle Pending CN115339288A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115934405A (en) * 2023-01-29 2023-04-07 蔚来汽车科技(安徽)有限公司 Detecting display synchronicity of multiple systems on a display device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115934405A (en) * 2023-01-29 2023-04-07 蔚来汽车科技(安徽)有限公司 Detecting display synchronicity of multiple systems on a display device
CN115934405B (en) * 2023-01-29 2023-07-21 蔚来汽车科技(安徽)有限公司 Detecting multi-system display synchronicity on a display device

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