WO2018227860A1 - 一种数据处理方法、智能终端、vr设备及存储介质 - Google Patents

一种数据处理方法、智能终端、vr设备及存储介质 Download PDF

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Publication number
WO2018227860A1
WO2018227860A1 PCT/CN2017/110067 CN2017110067W WO2018227860A1 WO 2018227860 A1 WO2018227860 A1 WO 2018227860A1 CN 2017110067 W CN2017110067 W CN 2017110067W WO 2018227860 A1 WO2018227860 A1 WO 2018227860A1
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WIPO (PCT)
Prior art keywords
console
data
glasses
identity information
preset
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PCT/CN2017/110067
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English (en)
French (fr)
Inventor
谭苗苗
龙世渚
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深圳创维数字技术有限公司
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Publication of WO2018227860A1 publication Critical patent/WO2018227860A1/zh

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    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/017Head mounted
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/41Structure of client; Structure of client peripherals
    • H04N21/4104Peripherals receiving signals from specially adapted client devices
    • H04N21/4122Peripherals receiving signals from specially adapted client devices additional display device, e.g. video projector
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/017Head mounted
    • G02B2027/0178Eyeglass type

Definitions

  • the present disclosure relates to the field of communication technologies, for example, to a data processing method, an intelligent terminal, a VR device, and a storage medium.
  • VR virtual reality
  • the technology that combines smart glasses and set-top boxes currently achieves a single function and cannot meet the individual needs of users. For example, when different users watch TV programs at the same time, the television programs and program play styles they receive are usually the same. However, the types of programs and viewing styles (ie, personalized requirements) that different users prefer may not be the same, and the user cannot personalize the information data that he or she sees through the VR glasses during the viewing process, thereby giving Users bring a bad experience.
  • the embodiment of the present invention provides a data processing method, which is applied to an intelligent terminal that can implement the function of the current technology, and realize that the different users pass the different VR devices and the same intelligent terminal to the smart terminal in the same time period.
  • the information provided is personalized to meet the individual needs of different users and enhance the user experience.
  • the embodiment of the invention provides a data processing method, which is applied to an intelligent terminal, and includes:
  • the VR Receiving identity information and data request of two or more VR devices, where the data request includes a target data format that the VR device supports to play; according to a preset console creation rule, according to the identity information, the VR is The device creates a current console; according to the data request, from at least two of the current Obtaining display data in the console; processing the display data according to a preset aliasing rule to generate target data in the target data format; and transmitting the target data to the VR device according to the identity information.
  • An embodiment of the present invention provides a data processing method, which is applied to two or more VR devices, including: receiving an operation instruction; generating a first data request according to the operation instruction, where the first data request includes the The VR device supports the target data format of the playback; the identity information of the VR device and the first data request are sent to the smart terminal, so that the smart terminal performs the data processing applied to the smart terminal according to any one of the embodiments of the present invention. Method; receiving the target data according to the identity information.
  • An embodiment of the present invention provides a data processing system, including: at least two VR devices, and an intelligent terminal, which is in communication connection with the VR device, where the smart terminal is used to perform any one of the embodiments of the present invention.
  • the data processing method of the terminal is not limited to: at least two VR devices, and an intelligent terminal, which is in communication connection with the VR device, where the smart terminal is used to perform any one of the embodiments of the present invention.
  • An embodiment of the present invention provides an intelligent terminal, including: one or more processors; a memory configured to store one or more programs; and when the one or more programs are executed by the one or more processors, The one or more processors are implemented to implement a data processing method applied to the smart terminal according to any one of the embodiments of the present invention.
  • Embodiments of the present invention provide a VR device, the VR device including: one or more processors; a memory configured to store one or more programs; and when the one or more programs are processed by the one or more The apparatus is executed such that the one or more processors implement a data processing method applied to at least two VR devices by any one of the inventive embodiments.
  • An embodiment of the present invention provides a computer readable storage medium storing computer executable instructions for performing a data processing method according to any one of the embodiments of the present invention when executed by a computer processor.
  • FIG. 1 is a schematic diagram of an application scenario provided by an embodiment
  • FIG. 2 is a flowchart of a data processing method according to an embodiment
  • FIG. 3 is a flowchart of a data processing method according to an embodiment
  • FIG. 4 is a flowchart of a data processing method according to an embodiment
  • FIG. 5 is a flowchart of a data processing method according to another embodiment
  • FIG. 6 is a schematic structural diagram of a data processing system according to an embodiment
  • FIG. 7 is a schematic structural diagram of an intelligent terminal according to an embodiment
  • FIG. 8 is a schematic structural diagram of a VR device according to an embodiment.
  • FIG. 1 is a schematic diagram of an application scenario provided by an embodiment.
  • an application scenario of an embodiment of the present invention may be: a smart terminal (such as a smart set top box, a mobile phone or a tablet computer, a portable intelligent terminal, or a media play box, etc.)
  • the smart set top box 110 can be independently interacted with multiple VR devices (such as VR glasses or VR helmets, here are three VR glasses, respectively, VR glasses A, VR glasses B, and VR glasses C), and the smart set top box 110 is communicatively coupled to VR glasses A, VR glasses B, and VR glasses C, respectively.
  • VR devices such as VR glasses or VR helmets, here are three VR glasses, respectively, VR glasses A, VR glasses B, and VR glasses C
  • the smart set top box 110 is communicatively coupled to VR glasses A, VR glasses B, and VR glasses C, respectively.
  • the smart set top box 110 can allocate an independent current console (recorded as current console a, current console b, and current console c) for the connected VR glasses A, VR glasses B, and VR glasses C, respectively, and is set to be independent. Responding to the access request of the corresponding VR glasses, and/or independently receiving and processing the information data request of the corresponding VR glasses, so that the user of each VR glasses can independently operate its corresponding console according to his own preferences, for example, VR glasses. A, VR glasses B and VR glasses C corresponding users can freely choose to watch programs and / or program play style.
  • the smart set top box 110 can respectively feed the VR glasses A, the VR glasses B, and the VR glasses C with the interaction data corresponding to the data request, so that the VR glasses A, the VR glasses B, and the VR glasses C respectively display different scene images.
  • personalized playback based on user needs is achieved.
  • information data can be exchanged based on the display scene screen of the VR glasses.
  • the user of the VR glasses A posts a personal comment or recommendation related information to the program viewed by the user of the VR glasses B based on the display scene screen of the VR glasses A.
  • a communication connection can also be made between the VR glasses A, the VR glasses B, and the VR glasses C.
  • FIG. 2 is a flowchart of a data processing method according to an embodiment. As shown in FIG. 2, the embodiment is applicable.
  • the method may be performed by a data processing device such as a smart set top box, a mobile phone or a tablet computer such as a portable smart terminal or a media play box, and the method may be implemented by software and software deployed in the data processing device. / or hardware to implement.
  • an intelligent set top box is taken as an example for description. The method includes the following steps:
  • step 210 the identity information and the data request of the at least two VR devices are received, where the data request includes a target data format that the VR device supports to play.
  • the identity information may be the identification information of the VR device, which may be the hardware configuration information of the VR device, such as the VR device identification ID, or the corresponding user information configured in the VR device, such as basic information such as gender or age. And/or user interest type information, etc.
  • the data request may be various interaction requests during the interaction between the VR device and the smart terminal, and may include a connection request, specific data content, and a data format (ie, target data format) request for the VR device to support playback.
  • the target data format may be a certain playback data format, or may be a certain playback data format, for example, it may be one or several image formats, or may be one or several audio data formats or video data. Format, etc.
  • the access request of the VR device such as the VR glasses may be detected in real time, and if yes, the identity information and the corresponding data request sent by the VR glasses are received.
  • the number of VR glasses that access the smart terminal may be one or multiple.
  • the smart terminal can simultaneously access at least two VR glasses to meet the personalized needs of the VR glasses user, for example, each VR glasses can display a richer and more personalized display scene, for example, Further personalized information interaction between the VR glasses users can be performed.
  • the console of the smart set top box receiving the information sent by the VR glasses may be a total console of the smart set top box, so that the console in the smart set top box can be uniformly controlled and controlled according to the received information; or the smart set top box can be booted.
  • the console for VR glasses interaction is started by default at startup, so as to further utilize the console and configure it for specific VR glasses, so as to effectively reduce the resource consumption of the smart set top box.
  • step 220 a rule is created according to a preset console, and a current console is created for the VR device according to the identity information.
  • the preset console creation rule may be a preset rule for creating a console, for example, at least one of a rule of creating a condition, a creation basis, a creation mode, and a creation order, which may be created by the console.
  • the current console can be a VR eye with access to the smart set-top box
  • the mirror corresponds to the console, which only interacts with the VR glasses, ie the current console is dedicated to interaction with the VR glasses and is independent of other consoles.
  • the corresponding current console is created for each VR glasses, and at least two current controls exist in the smart set top box. station.
  • the smart set top box 110 receives the identity information and corresponding data requests of the VR glasses A, VR glasses B, and VR glasses C for three VR glasses simultaneously or sequentially.
  • the rules and the identity information of each VR glasses can be created according to the preset console, and the current console is created for each VR glasses at the same time, so that there are at least three independent current controls in the smart set top box 110.
  • the station that is, the current console a, the current console b, and the current console c are respectively used to interact with the corresponding VR glasses. That is, the current console a is only used to interact with the VR glasses A, the current console b is only used to interact with the VR glasses B, and the current console c is only used to interact with the VR glasses C.
  • each VR glasses user can perform corresponding personalized operations on the smart set top box 110 according to his own personalized needs, so as to obtain personalized display on the VR glasses A, VR glasses B and VR glasses C respectively.
  • Scene screen that is, the current console a, the current console b, and the current console c are respectively used to interact with the corresponding VR glasses.
  • a current console can only interact with its corresponding VR glasses.
  • Different current consoles can exchange information.
  • the three independent current consoles can exchange information. That is, the current console a, the current console b, and the current console c can transmit information in a one-to-one, one-to-many, or many-to-one manner.
  • step 230 display data is obtained from at least two of the current consoles according to the data request.
  • the display data may be display screen data corresponding to operations performed in the current console.
  • the display data may at least include operation screen data generated by the current console according to the data request, application software running screen data in the current console, and at least one screen data in the media playing screen. That is, after the current console receives the data request of the VR glasses, the corresponding operation may be performed according to the data request, for example, performing corresponding operations on the display interface of the smart set top box according to the data request, or selecting and operating the corresponding application software in the smart set top box. Or select the appropriate media data (such as documents, news, pictures, audio or video) for playback. These operations will produce corresponding display screens, and the combination of one or several of these display screen data may be the display data of the current console.
  • the smart set top box can be based on the corresponding VR glasses.
  • a data request that generates display data for the current console In addition to generating its own display data for the current console, the smart set-top box can also perform data interaction requests to other current consoles to obtain display data of other current consoles, thereby using the obtained multiple display data as the current The display data of the console.
  • the generation of the display data may be using a common memory space of the smart set top box to reduce the resource consumption of the smart set top box; or the independent memory space of the current console may be utilized to achieve complete independence between the current consoles.
  • the current console a, the current console b, and the current console c in step 220 may control the smart set top box to generate respective corresponding display data, which are recorded as display data Da, display data Db, and display data Dc.
  • the current console a can also control the smart set top box to make a data interaction request to the current console b and/or the current console c to obtain display data Db and/or display data Dc.
  • the display data corresponding to the current console a may include the display data Da, or the display data Da and the display data Db, or the display data Da and the display data Dc, or the display data Da, the display data Db, and the display data Dc.
  • the current console b and the current console c can also perform the data interaction request of the current console a described above, so that the display data of the current console b and the current console c can also include the display corresponding to multiple current consoles. data.
  • step 240 the display data is processed according to a preset aliasing rule, and target data of the target data format is generated.
  • the preset aliasing rule may be a preset data aliasing rule, which may include a data aliasing manner, such as a multi-window aliasing method such as a picture-in-picture or a picture-in-picture; and may also include data such as data format conversion. Conversion method, etc.
  • the smart set top box processes the display data in step 230 according to a preset aliasing rule to generate target data that matches the data content and the target data format requested in the data request of the VR glasses.
  • the step 240 includes, but is not limited to, aliasing the display data of the current console according to a preset aliasing manner to generate aliased data; and performing the aliased data according to the target data format. Transcoding, generating target data of the target data format.
  • the display data of the current console is subjected to aliasing according to a preset aliasing mode (ie, a preset aliasing mode) to generate aliased data.
  • a preset aliasing mode ie, a preset aliasing mode
  • the aliased data may be an alias result of multiple display screen data in a single display data corresponding to the current console, or may be obtained by the current console. Shows the aliasing results of the data.
  • the aliasing of the plurality of display data acquired by the current console is taken as an example, so that a certain VR glasses user can know the current VR glasses of other users while seeing the display scene screen that he needs.
  • Displaying scene pictures on the screen, etc. not only enriches the information that the user can view, but also enables better information interaction between different users, such as posting movie commentary, question answer or related information recommendation, etc. It can further enrich the amount of information that users can learn through VR glasses.
  • the aliased data is transcoded and transcoded into a target data format that the VR glasses can recognize, that is, the target data is obtained.
  • the above-mentioned aliased data is transcoded into target data of a video format supported by the VR glasses, so that the VR glasses can subsequently play the target data normally.
  • the target data format may have more than one data format.
  • the data may be transcoded by using one of the data formats. Generate target data. If the format of the aliased data is the same as the target data format, then the transcoding operation step is not required, but the aliased data is directly used as the target data.
  • step 250 the target data is sent to the VR device according to the identity information.
  • each current console in the smart set top box can send the target data obtained in step 240 to the VR glasses according to the identity information of the corresponding VR glasses, so that the VR glasses can perform corresponding according to the target data. Display operation.
  • the current console is created for the VR device according to the identity information of the VR device, so that each VR device user can customize the smart terminal according to its own personalized requirements.
  • the target data of the target data format enables a VR device user to know the display scene of other users while seeing the display scenes that they need, which not only enriches the information that the user can view, but also makes the information between different users. Information interaction can be carried out to further meet the individual needs of users and enrich the amount of information that users can learn.
  • FIG. 3 is a flowchart of a data processing method according to an embodiment.
  • a preset startup rule is preset, and the default startup is preset in the smart terminal.
  • Preset console On this basis, it is further possible to optimize the "create a current console according to the preset console and create a current console for the VR device according to the identity information".
  • This embodiment uses a smart set top box and VR glasses as an example to illustrate, including:
  • step 310 according to the preset startup rule, the preset console preset in the smart terminal is started by default.
  • the preset startup rule may be a preset startup rule of the smart set top box, which may include a preset startup console type, a preset startup console number, or a preset startup console sequence.
  • the default startup console type can be a preset console, a common console, or an idle console.
  • the preset console can be directly started, or the console can be directly used to start the console. , or start an idle console without corresponding VR glasses identity information.
  • the number of preset startup consoles may be one or multiple, and multiple of them may correspond to the number of preset consoles or less than the number of preset consoles.
  • the preset startup console sequence may be a random startup, or may be started according to the ID of the preset console, or may be started according to a preset startup sequence.
  • the preset console may be a separate console created in advance in the console, including but not limited to an independent memory space and a console identification ID.
  • the preset set VR glasses are also included. Identity information. Of course, if there is no matching VR glasses, there is usually no corresponding VR glasses identity information.
  • the number of preset consoles is a preset number, that is, the number of preset consoles can be set according to the memory and/or the number of users of the smart set-top box, for example, 1 to 5, which can save subsequent creation.
  • the console time on the other hand, can also take into account the memory consumption of the smart set-top box.
  • a preset console in the smart set top box is started by default. Reducing the resource consumption of the smart set-top box can also save the time for subsequent allocation or creation of the console for the VR glasses, and improve the response speed of the smart set-top box.
  • step 320 the identity information and the data request of the at least two VR devices are received, where the data request includes a target data format that the VR device supports to play.
  • a console list is generated according to a preset list generation rule.
  • the preset list generation rule may be a preset rule generation rule, such as a list dimension, a list capacity, or a list management rule.
  • the list dimension may be a field included in the list
  • the list capacity may be the number of console information groups that the list can accommodate
  • the list management rule may be a rule for updating the list information, such as retaining the list content within a preset time period, exceeding the pre-pre- After the time period is set, the console information in the list is cleared according to the stack, stack or console information creation time.
  • generating a rule according to a preset list to generate a console for all consoles in the smart set top box A list of at least a console identification field and an identity information field, and may include information such as a creation time field and a startup frequency field. For example, if the smart set-top box does not have any VR glasses connected, and there is no preset matching VR glasses, it only has a preset console, then only the console identifier field has actual content in the console list, and other fields are air.
  • step 340 according to the console list, it is determined whether there is a history console corresponding to the identity information.
  • the history console may be a console configured with identity information of the VR glasses, and may be a preset console with matching VR glasses, or a current console created by a preset console creation rule.
  • the identity information of the VR glasses received in step 320 is matched with the content of the identity information field in the console list created in step 330, and it is determined according to the matching result whether the VR glasses have a corresponding history console. If the matching is successful, it means that the smart set-top box has a history console corresponding to the VR glasses, and there is no need to reconfigure a new console as the current console, and step 350 is continued; if the matching is unsuccessful, the smart set-top box is The VR glasses are not assigned or created in the preset time period. That is, the VR glasses are newly connected to the smart set-top box. If there is no corresponding history console, a new console needs to be configured for the VR glasses as the current control.
  • step 360 At the table, at least one of step 360, step 370, and step 380 is continued. It should be noted that the step 360, the step 370, and the step 380 may not be all executed, and the execution order may not be limited. After the step 340, one or more of the above three steps may be optionally performed. However, in the present embodiment, the preferred execution order is step 360, step 370, and step 380, that is, after step 340, step 360 is preferentially performed; when the condition of step 360 is not satisfied, step 370 is performed; when the condition of step 370 is not satisfied At step 380, go to step 380. This can most effectively utilize the memory space of the smart set-top box, minimize the waste of resources and resource consumption of the smart set-top box, maximize the response speed of the smart set-top box, and maximize the user experience.
  • step 350 if present, the history console is configured as the current console, and the current console inherits historical operation attributes of the history console.
  • the historical operation attribute may be attribute information corresponding to the operation performed by the history console after the initial creation, such as user operation habits and/or user interest tendency, and the user interest tendency refers to a display scene of the user preference, which may It is obtained based on the user information, for example, based on the basic information of the user, the interest tendency suitable for the age group or the gender is derived, and the user's interest tendency is directly obtained according to the user interest type information.
  • the history console is directly configured as a current console of the VR glasses, so that the current console can operate according to historical operation attributes of the history console ( That is, the historical operation attribute of the history console is inherited, and the target data is directly generated for the VR glasses, and the subsequent operations of the data request of the VR glasses are no longer required, that is, step 3110 can be directly executed.
  • the same VR glasses that are accessed multiple times within a preset time period can obtain the corresponding current console and generate corresponding target data more quickly, and the smart set top box no longer repeatedly creates a console for the VR glasses. It can reduce the user's operation time, reduce the resource consumption of the smart set-top box, and improve the response speed of the smart set-top box.
  • the current console inherits the historical operation attribute of the history console, and the generated display data no longer contains content related to the user operation, that is, the display data includes the application running screen data in the current console. And at least one picture data in the media playback screen.
  • step 360 if the identity information field corresponding to the preset console in the console list is empty, the preset console is configured as the current console according to the identity information. And update the list of consoles.
  • step 340 further determining whether the identity information field corresponding to the preset console in the console list is empty, that is, determining whether the preset console has a corresponding VR. glasses. If the preset console does not have corresponding VR glasses, then the preset console is in an unused state, and the preset console can be configured as the current console of the VR glasses according to the identity information of the VR glasses, and then the update control is performed.
  • the station list sets the identity information field of the preset console to the identity information of the VR glasses, and then performs step 390. This can effectively utilize the preset console in the smart set-top box, avoiding waste of resources and excessive consumption, and further improving the response speed of the smart set-top box. If the preset console has corresponding VR glasses, step 370 or step 380 can be performed.
  • step 370 if there is no existing history console in the console list, the idle history console is configured as a current console according to the identity information, and the console list is updated.
  • the idle history console refers to a history console in an unused state, which may be a history console in which the console identifier field in the console list is not empty, but the identity information field is empty.
  • the idle history console exists in the console list because it is preferred not to clear the contents of the console identification field when the console list is managed, and only the other field contents are cleared.
  • the maximum number of consoles that can be accommodated in the smart set-top box that is, the preset threshold of the number of consoles
  • the value has been created, but the contents of the identity information fields corresponding to these reserved consoles are cleared after the preset time period, so that they are in the unused state again, which is convenient for accessing other VR glasses.
  • step 340 further determining whether there is an idle history console in the console list, that is, determining whether the identity information field corresponding to the history console in the console list is empty. . If the identity information field of one or more history consoles is empty, then any one of the historical consoles or multiple history consoles may be configured according to the identity information of the VR glasses as the current state of the VR glasses. The console, after updating the console list, sets the identity information field of one of the historical consoles to the identity information of the VR glasses, and then proceeds to step 390. This can effectively utilize the history console in the smart set-top box to avoid waste of resources and excessive consumption, and further improve the response speed of the smart set-top box. If no identity information field of the history console is empty, step 360 or step 380 can be performed.
  • step 380 if there is no idle history console in the console list, and the number of the history consoles in the console list is less than a preset threshold, the VR is determined according to the identity information.
  • the device creates a current console and updates the list of consoles.
  • step 340 if it is determined in step 340 that the VR glasses do not have a corresponding history console, and further determining that there is no idle console in the console list, further determining whether the number of the history consoles in the console list is less than a preset threshold. That is, it is determined whether the number of history consoles in the console list has reached the maximum number of consoles that the smart set top box can accommodate. If the number of history consoles is less than the preset threshold, then a new console can be created for the VR glasses in the smart set top box according to the identity information of the VR glasses, as the current console, and then the console list is updated, that is, under control.
  • a new list content is added to the station list, and the console identification field and the identity information field in the content of the list are respectively set to the console identification ID of the newly created console and the identity information of the VR glasses.
  • the creation time field is set to the system time for creating the console
  • the startup frequency field is set to 1, and the like, and then step 390 is performed. If the number of history consoles is greater than or equal to the preset threshold, the VR glasses cannot be accessed again because the smart set top box has reached the memory consumption limit.
  • step 390 display data is obtained from at least two of the current consoles in accordance with the data request.
  • step 3100 the display data is processed according to a preset aliasing rule, and target data of the target data format is generated.
  • step 3110 the target data is sent to the VR device according to the identity information.
  • the technical solution of the embodiment reduces the resource consumption of the smart terminal by default by starting the preset rule according to the preset startup rule, and determining whether the existence and the presence are determined according to the console list.
  • a history console corresponding to the identity information; if yes, configuring the history console as the current console, and causing the current console to inherit the historical operation attribute of the history console, so that the preset time period is
  • the same VR device accessed multiple times can obtain the corresponding current console and generate corresponding target data more quickly, and the smart terminal no longer creates a console for the VR device repeatedly, which reduces user operation time and reduces intelligence.
  • the resource consumption of the terminal further improves the response speed of the smart terminal; if no, and the identity information field corresponding to the preset console in the console list is empty, the configuration is configured according to the identity information. Presetting the console as the current console and updating the console list; or if not, and having a free calendar in the console list In the history console, the idle history console is configured as the current console according to the identity information, and the console list is updated; or if not, and the idle history console does not exist in the console list, and When the number of the history consoles in the console list is less than the preset threshold, the current console is created for the VR device according to the identity information, and the console list is updated, which can more effectively reduce the resources of the smart terminal.
  • FIG. 4 is a flowchart of a data processing method according to an embodiment. As shown in FIG. 4, the embodiment is applicable to data processing for at least two VR devices, and the method may be processed by data such as VR glasses or VR helmets.
  • the apparatus is implemented, and the method can be implemented by software and/or hardware deployed in the data processing apparatus described above.
  • an intelligent set top box and VR glasses are taken as an example for description. The method includes the following steps:
  • step 410 an operational command is received.
  • receiving an operation instruction converted according to an operation action of the VR glasses user such as a power-on instruction, a connection instruction, or a data acquisition instruction.
  • step 420 a first data request is generated according to the operation instruction.
  • the first data request may be an interaction request for interaction between the VR glasses and the smart set top box, for example, may include a target data format that the VR glasses support for playing, and may also include a connection request and/or a requested data content.
  • the VR glasses perform corresponding operations according to the operation instructions received in S310, such as powering on, and after starting, generating a corresponding first data request according to the connection instruction or the data acquisition instruction.
  • step 430 the identity information and the first data request of the VR device are sent to the smart terminal, so that the smart terminal performs the data processing method applied to the smart terminal according to any one of the embodiments of the present invention.
  • the VR glasses send the identity information and the first data request to the smart set top box, so that the smart set top box can perform the data processing method applied to the smart set top box in the embodiment of the present invention according to the identity information and the first data request.
  • the method includes: receiving identity information and a data request of at least two VR devices, where the data request includes a target data format that the VR device supports to play; according to a preset console creation rule, creating a current console for the VR device according to the identity information; Requesting, obtaining display data from at least two current consoles; processing display data according to preset aliasing rules, generating target data in a target data format; and transmitting target data to the VR device according to the identity information.
  • the smart terminal can also implement the data processing method applied to the smart terminal provided by any embodiment of the present invention.
  • step 440 the target data is received based on the identity information.
  • each VR glasses receives target data sent by a corresponding console in the smart set top box according to its identity information.
  • the target data may be personalized, where the target data may be directly displayed, or the display operation command may be received, and the target data is received according to the display operation instruction.
  • Display For example, the target data is formed by aliasing a plurality of display data, that is, there are multiple windows corresponding to the target data, and then the action may be performed according to a user's display operation, such as an operation of zooming in, zooming out, or moving a certain window.
  • the conversion generates a corresponding display operation instruction, and further enlarges, reduces or moves the corresponding window in the display data according to the display operation instruction, and displays the finally formed personalized multi-window target data.
  • a corresponding controller is provided, by which the user can realize free adjustment of the display screen size and line of sight, as well as 3D display and the like.
  • the VR glasses can also implement corresponding functions based on other operations of the user, such as further interactive processing of the target data, to achieve more personalized personality such as barrage release and interaction with other users. User needs.
  • the data processing method provided in this embodiment is configured to: receive a first operation request, generate a first data request according to the operation instruction, and send the identity information of the VR device and the first data request to the smart terminal, so that the The smart terminal performs the data processing method applied to the smart terminal according to any one of the embodiments of the present invention; and receives the technical solution of the target data according to the identity information.
  • Solved the same A VR device that is accessed by a smart terminal at the same time can provide the same display scenario technical problem for different VR devices in the same time period. In the same time period, different users can use different VR devices and the same
  • the intelligent terminal personalizes the information data provided by the intelligent terminal to meet the personalized needs of different users and improve the technical effect of the user experience.
  • FIG. 5 is a flowchart of a data processing method according to another embodiment. As shown in FIG. 5, based on the foregoing embodiment, the embodiment adds an “interaction” step after “receiving the target data”.
  • the smart set top box and the VR glasses are used as an example.
  • the method in this embodiment includes:
  • step 510 an operational command is received.
  • step 520 a first data request is generated according to the operation instruction.
  • step 530 the identity information and the first data request of the VR device are sent to the smart terminal, so that the smart terminal performs the data processing method applied to the smart terminal according to any one of the embodiments of the present invention.
  • step 540 the target data is received according to the identity information.
  • step 550 an interaction instruction between the VR devices is received.
  • the VR glasses receive an instruction for data interaction between the VR glasses, that is, an interactive instruction, which can instruct the VR glasses to perform corresponding operations, such as acquiring interaction information and generating an interaction request, etc., so as to complete the VR glasses.
  • an instruction for data interaction between the VR glasses that is, an interactive instruction, which can instruct the VR glasses to perform corresponding operations, such as acquiring interaction information and generating an interaction request, etc., so as to complete the VR glasses.
  • an instruction for data interaction between the VR glasses that is, an interactive instruction, which can instruct the VR glasses to perform corresponding operations, such as acquiring interaction information and generating an interaction request, etc.
  • the manner of obtaining the interaction instruction may include: an interaction instruction preset in the VR device; or an interaction instruction converted according to a preset action and a preset conversion rule of the user; or according to a user input Information and the preset conversion rules, the converted interactive instructions.
  • the interactive instruction may be an interactive instruction set in advance in the VR glasses, such as a click, a preset interactive information, or the like, or may be a preset action according to a user operation and a preset action instruction conversion rule (ie, The preset conversion rule) converts the user's operation action into a corresponding interactive instruction.
  • a preset action instruction conversion rule ie, The preset conversion rule
  • the VR glasses can convert the action when the user performs the operation of opening the browser.
  • the interactive instruction of the VR glasses; or the conversion rule (ie, the preset conversion rule) according to the information input by the user and the preset information, and the user input information is converted into a corresponding interactive instruction, such as user text or voice input.
  • step 560 a second data request is generated based on the interactive instruction.
  • the second data request refers to an interaction request for interaction between different VR glasses, and may include, for example, a connection request or interaction information.
  • the interactive information may include at least one of text, a picture, an audio, a video, and a web page.
  • the VR glasses generate a second data request according to the interactive instruction.
  • the manner of generating the interaction information in the second data request may include: acquiring the preset interaction information preset in the VR device, or acquiring the network data, or acquiring the user input information.
  • a certain preset interactive information may be preset in the VR glasses for the user to select and use during the interaction, and the preset interactive information may be updated according to the user's choice, so that the user input or the acquisition may be omitted.
  • the process of interacting with information may be Alternatively, the user can use the Internet function of the VR glasses as needed to obtain the network resources that he needs from the network as interactive information, such as a video introduction or related knowledge link. Alternatively, the user inputs relevant information using the input device of the VR glasses as interactive information.
  • step 570 the second data request is sent to the VR device.
  • the VR eye sends the second data request to the VR glasses to be interacted, and the VR glasses to be interacted may be one or a plurality of VR glasses designated, or may be all VR glasses that are connected to the smart set top box.
  • optionally sending the second data request to the VR device may include: sending the second data request to the target identity information to a target VR device corresponding to the target identity information; or sending the second data request and the target identity information to the smart terminal, so that the smart terminal sends the second according to the target identity information Data is requested to the target VR device.
  • the target identity information is the identity information of the VR glasses corresponding to the target VR glasses, and the target identity information may be sent to the VR glasses while the smart set top box sends the target data, or may automatically carry the VR corresponding to each display data in the target data. Glasses identity information.
  • VR glasses A are to interact with VR glasses B and VR glasses C.
  • the above process can perform point-to-point interaction between the VR glasses, that is, the VR glasses A directly transmit the second data request to the VR glasses B and the VR glasses C according to the identity information of the VR glasses B and the identity information of the VR glasses C.
  • the premise of this process is that a communication connection can be established between different VR glasses.
  • the above process may also be to interact with the smart set top box as a transport intermediary, that is, the VR glasses A will request the second data request and the identity of the VR glasses B. Both the information and the identity information of the VR glasses C are sent to the smart set top box, which then indirectly sends the second data request to the VR glasses B and VR glasses C by the smart set top box.
  • optionally sending the second data request to the VR device may include: sending the second data request Up to running the VR device; or sending the second data request to the smart terminal, so that the smart terminal sends the second data request to the running VR device.
  • the process is still a point-to-point interaction between VR glasses and the interaction of the smart set-top box as a transport intermediary.
  • the interaction mode belongs to a broadcast interaction, and the VR glasses user may choose to block the interaction information.
  • the technical solution of the embodiment is: receiving an interaction instruction between the VR glasses; generating a second data request according to the interaction instruction; and sending the second data request to the VR glasses to enable different VR glasses Users interact with each other based on the display scene of their VR glasses to further enrich the amount of information that users can learn.
  • FIG. 6 is a schematic structural diagram of a data processing system according to an embodiment. As shown in FIG. 6, the data processing system includes:
  • the at least two VR devices 510 and the smart terminal 520 are in communication with the VR device 510.
  • the smart terminal 520 is configured to perform the data processing method applied to the smart terminal in the embodiment of the present invention, including: receiving at least two An identity information and a data request of the VR device 510, where the data request includes a target data format that the VR device 510 supports to play; and according to the preset console creation rule, create a current for the VR device 510 according to the identity information.
  • a console acquiring display data from at least two of the current consoles according to the data request; processing the display data according to a preset aliasing rule, generating target data of the target data format; and according to the identity information Sending the target data to the VR device 510.
  • the smart terminal 520 can also implement the data processing method applied to the smart terminal 520 according to any embodiment of the present invention.
  • the VR device 510 is further configured to perform a data processing method applied to the at least two VR devices in the embodiment of the present invention, including: receiving an operation instruction; and generating a first data request according to the operation instruction.
  • the first data request includes a target data format that the VR device supports to play; and the identity information of the VR device and the first data request are sent to the smart terminal, so that the smart terminal performs the embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of an intelligent terminal according to an embodiment. As shown in FIG.
  • an intelligent terminal 700 provided in this embodiment includes: one or more processors 70; and a memory 71 for storing one or more The program, when one or more programs are executed by one or more processors 70, such that the one or more processors 70 implement the data processing method applied to the smart terminal provided by the embodiments of the present invention, including: receiving at least two The identity information and data request of the VR device, the data request includes the target data format that the VR device supports to play; according to the preset console creation rule, the current console is created for the VR device according to the identity information; according to the data request, at least two The display data is obtained in the current console; the display data is processed according to the preset aliasing rule, and the target data in the target data format is generated; and the target data is sent to the VR device according to the identity information.
  • the processor 70 may also implement a data processing method applied to the smart terminal provided by any embodiment of the present invention.
  • the smart terminal 700 includes a processor 70, a memory 71, an input device 72, and an output device 73.
  • the number of processors 70 in the smart terminal 700 may be one or more, and one processor 70 is shown in FIG.
  • the processor 70, the memory 71, the input device 72, and the output device 73 in the smart terminal 700 can be connected by a bus or other means.
  • the memory 71 is used as a computer readable storage medium, and can be used to store a software program, a computer executable program, and a module, such as a program instruction corresponding to a data processing method applied to the smart terminal in the embodiment of the present invention.
  • the memory 71 includes, but is not limited to, a memory program area that can store an operating system, an application required for one or more functions, and a storage data area that can store data created according to the use of the terminal, and the like. Further, the memory 71 may include a high speed random access memory, and may also include a nonvolatile memory such as one or more magnetic disk storage devices, flash memory devices, or other nonvolatile solid state storage devices. Alternatively, the memory 71 may further include a memory remotely disposed with respect to the processor 70, which may be connected to the smart terminal 700 through a network. Examples of such networks include, but are not limited to, the Internet, intranets, local area networks, mobile communication networks, and combinations thereof. Input device 72 can be configured to receive input numeric or character information and to generate key signal inputs related to user settings and function control of smart terminal 700. The output device 73 may include a display device such as a display screen.
  • FIG. 8 is a schematic structural diagram of a VR device according to an embodiment. As shown in FIG. 8, the VR device 800 provided by the embodiment of the present invention includes:
  • One or more processors 80 ; a memory 81 arranged to store one or more programs; when one or more programs are executed by one or more processors, such that one or more processors implement the applications provided by the above embodiments
  • the data processing method of the at least two VR devices includes: receiving an operation instruction; generating a first data request according to the operation instruction, where the first data request includes a target data format supported by the VR device, and transmitting the identity information of the VR device to the smart terminal. And the first data request, so that the smart terminal performs the data processing method applied to the smart terminal provided by any embodiment of the present invention; and receives the target data according to the identity information.
  • the processor 80 may further implement a data processing method applied to at least two VR devices according to any embodiment of the present invention.
  • the VR device 800 includes a processor 80, a memory 81, an input device 82, and an output device 83.
  • the number of processors 80 may be one or more, and one processor 80 is taken as an example here.
  • the memory 81 is a computer readable storage medium, and stores a software program, a computer executable program, and a module, such as a program instruction corresponding to a data processing method applied to at least two VR devices in the embodiment of the present invention.
  • a module such as a program instruction corresponding to a data processing method applied to at least two VR devices in the embodiment of the present invention.
  • the embodiment further provides a computer readable storage medium storing stored computer executable instructions for executing the data processing method when executed by a computer processor.
  • the embodiments of the present invention can be implemented by using software and necessary general hardware, and can also be implemented by hardware.
  • the embodiment of the present invention may be embodied in the form of a software product, which may be stored in a computer readable storage medium, such as a computer floppy disk, a read-only memory (ROM), a random access memory (Random). Access Memory (RAM), flash memory (FLASH), hard disk or optical disk, etc., including instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) to execute the embodiments of the present invention for use in an intelligent terminal Data processing method.
  • a computer device which may be a personal computer, a server, or a network device, etc.
  • different users can personalize the information data provided by the smart terminal through different VR devices and the same intelligent terminal to meet the personalized needs of different users and improve the user experience.
  • Technical effect

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Abstract

一种数据处理方法,应用于智能终端,包括:接收至少两个VR设备的身份信息和数据请求,数据请求中包含VR设备支持播放的目标数据格式;按照预设控制台创建规则,根据身份信息,为VR设备创建当前控制台;根据数据请求,从至少两个当前控制台中获取显示数据;按照预设混叠规则,处理显示数据,生成目标数据格式的目标数据;根据身份信息,发送目标数据至VR设备。

Description

一种数据处理方法、智能终端、VR设备及存储介质 技术领域
本公开涉及通信技术领域,例如涉及一种数据处理方法、智能终端、VR设备及存储介质。
背景技术
随着智能眼镜技术的发展,已经出现将智能眼镜与电视机顶盒进行结合的虚拟现实(Virtual Reality,VR)显示设备,使得用户可以通过该VR显示设备直接观看电视节目。例如,在家庭使用环境中,不同的用户可以使用不同的VR显示设备,如VR眼镜,在同一时间段收看电视节目。
但是,目前将智能眼镜与机顶盒结合的技术所实现的功能单一,无法满足用户的个性化需求。例如,不同的用户在同一时间段收看电视节目时,其收看到的电视节目及节目播放风格通常是相同的。然而,不同用户所喜好的节目类型及观影风格(即个性化需求)等可能并不相同,而用户无法在观看过程中,对自己通过VR眼镜观看到的信息数据进行个性化设置,从而给用户带来不良的使用体验。
发明内容
本发明实施例提供一种数据处理方法,应用于智能终端能够在当前技术所实现的功能的基础上,实现在同一时间段内,不同的用户通过不同的VR设备和同一智能终端对该智能终端所提供的信息数据进行个性化处理,满足不同用户的个性化需求,提升用户的使用体验。
本发明实施例提供了一种数据处理方法,应用于智能终端,包括:
接收两个或多个VR设备的身份信息和数据请求,所述数据请求中包含所述VR设备支持播放的目标数据格式;按照预设控制台创建规则,根据所述身份信息,为所述VR设备创建当前控制台;根据所述数据请求,从至少两个所述当前 控制台中获取显示数据;按照预设混叠规则,处理所述显示数据,生成所述目标数据格式的目标数据;根据所述身份信息,发送所述目标数据至所述VR设备。
本发明实施例提供了一种数据处理方法,应用于两个或多个VR设备,包括:接收操作指令;根据所述操作指令,生成第一数据请求,所述第一数据请求中包含所述VR设备支持播放的目标数据格式;向智能终端发送所述VR设备的身份信息和所述第一数据请求,以使所述智能终端执行本发明实施例中任一项应用于智能终端的数据处理方法;根据所述身份信息,接收所述目标数据。
本发明实施例提供了一种数据处理系统,包括:至少两个VR设备,以及智能终端,与所述VR设备通信连接,所述智能终端用于执行本发明实施例中任一项应用于智能终端的数据处理方法。
本发明实施例提供了一种智能终端,包括:一个或多个处理器;存储器,设置为存储一个或多个程序;当所述一个或多个程序被所述一个或多个处理器执行,使得所述一个或多个处理器实现本发明实施例中任一项应用于智能终端的数据处理方法。
本发明实施例提供了一种VR设备,该VR设备包括:一个或多个处理器;存储器,设置为存储一个或多个程序;当所述一个或多个程序被所述一个或多个处理器执行,使得所述一个或多个处理器实现发明实施例中任一项应用于至少两个VR设备的数据处理方法。
本发明实施例提供了一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令在由计算机处理器执行时用于执行本发明实施例中任一项数据处理方法。
本发明实施例在同一时间段内,不同的用户可以通过不同的VR设备和同一智能终端对该智能终端所提供的信息数据进行个性化处理,从而满足不同用户的个性化需求,提升用户的使用体验的技术效果。
附图说明
图1是一实施例提供的应用场景示意图;
图2是一实施例提供的数据处理方法的流程图;
图3是一实施例提供的数据处理方法的流程图;
图4是一实施例提供的数据处理方法的流程图;
图5是另一实施例提供的数据处理方法的流程图;
图6是一实施例提供的数据处理系统的结构示意图;
图7是一实施例提供的智能终端的结构示意图;
图8是一实施例提供的VR设备的结构示意图。
具体实施方式
以下描述的实施例仅仅用于解释本发明,而非对本发明的限定。另外,为了便于描述,附图中仅示出了与本发明相关的部分而非全部结构。在不冲突的情况下,本发明实施例和实施例中的特征可以相互组合。
图1为一实施例提供的应用场景示意图,如图1所示,本发明实施例的应用场景可以是,智能终端(如智能机顶盒、手机或平板电脑等便携式智能终端或媒体播放盒等,以智能机顶盒110为例)可以与多个VR设备(如VR眼镜或VR头盔等,此处以3个VR眼镜为例,分别为VR眼镜A、VR眼镜B和VR眼镜C)进行独立交互,智能机顶盒110分别与VR眼镜A、VR眼镜B和VR眼镜C通信连接。智能机顶盒110能够为已接入的VR眼镜A、VR眼镜B和VR眼镜C分别分配一个独立的当前控制台(记为当前控制台a、当前控制台b和当前控制台c),设置为独立响应对应的VR眼镜的接入请求,和/或独立接收并处理相应的VR眼镜的信息数据请求,使得每一个VR眼镜的用户可以根据自己的喜好独立操作其对应的控制台,比如,VR眼镜A、VR眼镜B和VR眼镜C对应的用户均可以自由选择观看节目和/或节目播放风格等。这样,智能机顶盒110就能够为VR眼镜A、VR眼镜B和VR眼镜C分别反馈与其数据请求对应的交互数据,使得VR眼镜A、VR眼镜B和VR眼镜C上分别呈现出不同的场景画面,以此实现基于用户需求的个性化播放。进一步地,VR眼镜A、VR眼镜B和VR眼镜C对应的3个用户之间,可以基于其VR眼镜的显示场景画面,进行信息数据的交互。比如,VR眼镜A的用户基于VR眼镜A的显示场景画面,对VR眼镜B的用户所观看的节目发表个人评论或者推荐相关资讯等。这种情况下,VR眼镜A、VR眼镜B和VR眼镜C之间也可以进行通信连接。
图2为一实施例提供的数据处理方法的流程图,如图2所示,本实施例可适 用于针对智能终端的数据处理,该方法可以由如智能机顶盒、手机或平板电脑等便携式智能终端或媒体播放盒等数据处理装置来执行,该方法可以由部署在上述数据处理装置中的软件和/或硬件来实施。本实施例中以智能机顶盒为例进行说明,该方法包括如下步骤:
在步骤210中,接收至少两个VR设备的身份信息和数据请求,所述数据请求中包含所述VR设备支持播放的目标数据格式。
其中,身份信息可以是VR设备的标识信息,其可以是VR设备的硬件配置信息,比如VR设备标识ID;也可以是在VR设备中配置的对应的用户信息,比如性别或年龄等基本信息,和/或用户兴趣类型信息等。数据请求可以是VR设备与智能终端之间进行交互过程中的各种交互请求,其可以包含连接请求、具体的数据内容和VR设备支持播放的数据格式(即目标数据格式)请求等。该目标数据格式可以是某一种播放数据格式,也可以是某几种播放数据格式,比如,其可以是一种或几种图片格式,也可以是一种或几种音频数据格式或视频数据格式等。
可选地,智能机顶盒启动后,可以实时检测是否有如VR眼镜的VR设备的接入请求,如果有,那么接收该VR眼镜发送的身份信息和对应的数据请求。可选地,接入智能终端的VR眼镜的数量可以是一个,也可以是多个。本实施例中,智能终端可同时接入至少两个VR眼镜,以便满足VR眼镜用户的个性化需求,比如使得每一个VR眼镜中可以呈现出更加丰富、更加个性化的显示场景,又比如使得不同的VR眼镜用户之间能够进行进一步地个性化信息交互等。
智能机顶盒上接收上述VR眼镜发送的信息的控制台,可以是智能机顶盒的总控制台,以便后续可以根据接收的信息更加合理、高效地统一管控智能机顶盒中的控制台;也可以是智能机顶盒开机启动时默认启动的用于VR眼镜交互的控制台,以便后续进一步利用该控制台,将其配置给特定的VR眼镜专用,以有效减少智能机顶盒的资源消耗。
在步骤220中,按照预设控制台创建规则,根据所述身份信息,为所述VR设备创建当前控制台。
其中,预设控制台创建规则可以是预先设置的用于进行控制台创建的规则,比如可以至少包括控制台创建的创建条件、创建依据、创建方式及创建顺序等规则中的任一个或任几个。当前控制台可以是与接入智能机顶盒的某一个VR眼 镜对应的控制台,其仅与该VR眼镜交互,即当前控制台专用于与该VR眼镜的交互,而且独立于其他控制台。
可选地,按照预设控制台创建规则,根据步骤210中接收的至少两个VR眼镜的身份信息,为每一个VR眼镜创建其对应的当前控制台,则智能机顶盒中存在至少两个当前控制台。比如,在步骤210中,智能机顶盒110同时或先后接收到VR眼镜A、VR眼镜B和VR眼镜C共3个VR眼镜的身份信息和对应的数据请求。此时,就可以按照预设控制台创建规则及每一个VR眼镜的身份信息,同时或先后为每一个VR眼镜创建当前控制台,这样,智能机顶盒110中就至少存在有3个独立的当前控制台,即当前控制台a、当前控制台b和当前控制台c,分别用于与对应的VR眼镜进行交互。也就是说,当前控制台a仅用于与VR眼镜A交互,当前控制台b仅用于与VR眼镜B交互,而当前控制台c仅用于与VR眼镜C交互。这样,就能够使得每一个VR眼镜用户可以根据自己的个性化需求,对智能机顶盒110进行相应的个性化操作,以便后续在VR眼镜A、VR眼镜B和VR眼镜C上分别得到个性化的显示场景画面。
可选地,某一个当前控制台只能与其对应的VR眼镜交互,不同的当前控制台之间是可以进行信息交互的,比如上述3个独立的当前控制台之间是可以进行信息交互的,即当前控制台a、当前控制台b和当前控制台c之间可以采用一对一、一对多或多对一的方式进行信息的传输。
在步骤230中,根据所述数据请求,从至少两个所述当前控制台中获取显示数据。
其中,显示数据可以是当前控制台中所进行的操作对应的显示画面数据。示例性地,显示数据至少可以包括当前控制台依据数据请求生成的操作画面数据、当前控制台中的应用软件运行画面数据、及媒体播放画面中的至少一幅画面数据。即当前控制台接收VR眼镜的数据请求后,可以根据该数据请求进行相应的操作,比如根据数据请求在智能机顶盒的显示界面上进行相应的操作,或者选择并操作智能机顶盒中相应的应用软件,或者选择相应的媒体数据(如文档、新闻、图片、音频或视频等)进行播放等。这些操作都会产生对应的显示画面,那么这些显示画面数据中的一种或几种的组合就可以是当前控制台的显示数据。
可选地,对于某一个当前控制台,智能机顶盒都可以根据相应的VR眼镜的 数据请求,生成该当前控制台的显示数据。智能机顶盒除了为当前控制台生成自身的显示数据之外,还可以向其他的当前控制台进行数据交互请求,以获得其他的当前控制台的显示数据,从而将获得的多个显示数据作为该当前控制台的显示数据。可选地,显示数据的生成可以是利用智能机顶盒的公共内存空间,以便减少智能机顶盒的资源消耗;也可以是利用当前控制台的独立内存空间,以便实现各当前控制台之间的完全独立。
可选地,步骤220中的当前控制台a、当前控制台b和当前控制台c可以控制智能机顶盒生成各自对应的显示数据,记为显示数据Da、显示数据Db和显示数据Dc。此外,当前控制台a还可以控制智能机顶盒向当前控制台b和/或当前控制台c进行数据交互请求,以获得显示数据Db和/或显示数据Dc。这样,当前控制台a对应的显示数据就可以包括显示数据Da,或者显示数据Da和显示数据Db,或者显示数据Da和显示数据Dc,或者显示数据Da、显示数据Db和显示数据Dc。相应地,当前控制台b和当前控制台c也可以执行上述当前控制台a的数据交互请求,以使得当前控制台b和当前控制台c的显示数据也能够包含多个当前控制台对应的显示数据。
在步骤240中,按照预设混叠规则,处理所述显示数据,生成所述目标数据格式的目标数据。
其中,预设混叠规则可以是预先设置的数据混叠规则,其可以包括数据混叠方式,比如画中画或画外画等的多窗口混叠方式;还可以包括诸如数据格式转换的数据转换方式等。
可选地,智能机顶盒按照预设混叠规则,对步骤230中的显示数据进行处理,以生成与VR眼镜的数据请求中所请求的数据内容及目标数据格式均相符的目标数据。
可选地,步骤240包括但不限于:按照预设混叠方式,混叠所述当前控制台的所述显示数据,生成混叠数据;依据所述目标数据格式,对所述混叠数据进行转码,生成所述目标数据格式的目标数据。
可选地,按照预先设置的混叠方式(即预设混叠方式)对当前控制台的显示数据进行混叠处理,生成混叠数据。按照步骤230中当前控制台获取的显示数据的说明可知,该混叠数据可以是当前控制台对应的单个显示数据中的多种显示画面数据的混叠结果,也可以是当前控制台获得的多个显示数据的混叠结果。 在本实施例中,以当前控制台获取的多个显示数据的混叠为例,这样可以使得某一个VR眼镜用户在看到自己所需要的显示场景画面的同时,可以获知其他用户当前VR眼镜上的显示场景画面等,这不仅丰富了该用户所能观看到的信息,也使得不同用户之间可以进行更好的信息交互,比如相互之间发布观影评论、疑问解答或相关信息推荐等,能够进一步丰富用户通过VR眼镜所能获知的信息量。
然后,根据VR眼镜的目标数据格式,对该混叠数据进行转码,转码成该VR眼镜能够识别的目标数据格式,即获得目标数据。比如,将上述混叠数据转码成VR眼镜支持的视频格式的目标数据,以使得该VR眼镜后续能够正常播放该目标数据。应当理解的是,按照步骤210的说明可知,目标数据格式可能不止一种数据格式,当混叠数据的格式与目标数据格式不同时,可以任选一种数据格式对混叠数据进行转码,生成目标数据。如果混叠数据的格式与目标数据格式相同,那么就不需要再执行转码操作步骤,而是直接将该混叠数据作为目标数据。
在步骤250中,根据所述身份信息,发送所述目标数据至所述VR设备。
可选地,智能机顶盒中的每一个当前控制台,可以依据对应的VR眼镜的身份信息,将步骤240中获得的目标数据发送至该VR眼镜,以使得该VR眼镜可以根据该目标数据进行相应的显示操作。
本实施例的技术方案,通过按照预设控制台创建规则,根据接收到VR设备的身份信息,为VR设备创建当前控制台,使得每一个VR设备用户能够根据自己的个性化需求,对智能终端进行相应的个性化操作,以便后续得到个性化的显示场景;通过根据接收到VR设备的数据请求,从至少两个当前控制台中获取显示数据,并按照预设混叠规则,处理显示数据,生成目标数据格式的目标数据,使得某一个VR设备用户在看到自己所需要的显示场景的同时,获知其他用户的显示场景,不仅丰富了该用户所能观看到的信息,也使得不同用户之间可以进行信息交互,进一步满足用户的个性化需求,丰富用户所能获知的信息量。
图3为一实施例提供的数据处理方法的流程图,如图3所示,在上述各实施例的基础上,增加了“按照预设启动规则,默认启动预置于所述智能终端中的预置控制台”。在此基础上,还可以进一步对“按照预设控制台创建规则,根据所述身份信息,为所述VR设备创建当前控制台”进行优化。本实施例以智能机顶盒和VR眼镜为例进行说明,包括:
在步骤310中,按照预设启动规则,默认启动预置于所述智能终端中的预置控制台。
其中,预设启动规则可以是预先设置的智能机顶盒的启动规则,其可以包括预设启动控制台类型、预设启动控制台个数或预设启动控制台顺序等。预设启动控制台类型可以是预置控制台、常用控制台或空闲控制台等,比如智能机顶盒在开启时,可以直接启动预置控制台,或者直接启动控制台使用频率较高的常用控制台,或者启动没有对应VR眼镜身份信息的空闲控制台等。预设启动控制台个数可以是一个,也可以是多个,这里的多个可以对应预置控制台的个数,也可以少于预置控制台的个数。预设启动控制台顺序可以是随机启动,也可以是按照预置控制台的ID进行启动,还可以是按照预设的启动顺序进行启动等。
预置控制台可以是预先在控制台中创建的独立的控制台,其包含但不限于独立的内存空间及控制台标识ID等,在智能机顶盒本身有配套的VR眼镜时,还包含对应配套VR眼镜的身份信息。当然,如果没有配套的VR眼镜,则通常没有对应的VR眼镜的身份信息。预置控制台的个数是预设数量的,即可以根据智能机顶盒的内存和/或使用人数自行设定预置控制台的个数,比如设置为1~5个,一方面能够节省后续创建控制台的时间,另一方面也能够顾及智能机顶盒的内存消耗。
本实施例中,以智能机顶盒开机时为例,按照预设启动规则,默认启动智能机顶盒中的一个预置控制台。减少智能机顶盒的资源消耗,也能够节省后续为VR眼镜分配或创建控制台的时间,提高智能机顶盒的响应速度。
在步骤320中,接收至少两个VR设备的身份信息和数据请求,所述数据请求中包含所述VR设备支持播放的目标数据格式。
在步骤330中,按照预设列表生成规则,生成控制台列表。
其中,预设列表生成规则可以是预先设定的列表生成的规则,比如可以是列表维度、列表容量或列表管理规则等。列表维度可以是列表所包含的字段,列表容量可以是列表所能容纳的控制台信息组数,列表管理规则可以是列表信息更新的规则,比如在预设时间段内,保留列表内容,超过预设时间段之后,则按照堆、栈或者控制台信息创建时间等方式进行列表中控制台信息的清除等。
可选地,按照预设列表生成规则,生成智能机顶盒中所有控制台的控制台 列表,该控制台列表中至少包括控制台标识字段和身份信息字段,还可以包括创建时间字段及启动频率字段等信息。比如,智能机顶盒在未接入任何的VR眼镜,且没有预置的配套VR眼镜时,其只有预置控制台,那么该控制台列表中只有控制台标识字段有实际内容,而其他字段均为空。
在步骤340中,依据所述控制台列表,判断是否存在与所述身份信息对应的历史控制台。
其中,历史控制台可以是配置有VR眼镜的身份信息的控制台,其可以是有配套VR眼镜的预置控制台,也可以是预设控制台创建规则创建的当前控制台等。
可选地,将步骤320中接收到的VR眼镜的身份信息与步骤330中创建的控制台列表中的身份信息字段的内容进行匹配,根据匹配结果判断VR眼镜是否有对应的历史控制台。如果匹配成功,则表示智能机顶盒中有与该VR眼镜对应的历史控制台,不需要为其再配置新的控制台作为当前控制台,继续执行步骤350;如果匹配不成功,则表示智能机顶盒在预设时间段内没有为该VR眼镜分配或者创建过控制台,即该VR眼镜是新接入智能机顶盒的,没有对应的历史控制台,就需要为该VR眼镜配置新的控制台作为当前控制台,则继续执行步骤360、步骤370和步骤380中的至少一个。需要说明的是,可以不限定步骤360、步骤370和步骤380是否全部执行,也可以不限定执行顺序,即在步骤340之后,可以任选上述三个步骤中的一个或多个执行。但是,本实施例中优选执行顺序为步骤360、步骤370和步骤380,即步骤340之后,优先执行步骤360;当步骤360的条件不满足时,执行步骤370;当步骤370的条件也不满足时,执行步骤380。这样能够最为有效地利用智能机顶盒的内存空间,最小程度地减少智能机顶盒的资源浪费与资源消耗,最大程度提高智能机顶盒的响应速度,最大程度提升用户使用体验。
在步骤350中,若存在,则配置所述历史控制台为所述当前控制台,并使所述当前控制台继承所述历史控制台的历史操作属性。
其中,历史操作属性可以是历史控制台在初始创建之后所进行的操作对应的属性信息,比如用户操作习惯和/或用户兴趣倾向等,该用户兴趣倾向指的是用户喜好的显示场景,其可以是根据用户信息得到,比如根据用户的基本信息,推算出适合年龄段或性别的兴趣倾向,又比如根据用户兴趣类型信息直接获得用户的兴趣倾向等。
可选地,如果步骤340中判断VR眼镜有对应的历史控制台,那么直接将该历史控制台配置为该VR眼镜的当前控制台,使得该当前控制台能够根据历史控制台的历史操作属性(即继承历史控制台的历史操作属性),直接为该VR眼镜生成目标数据,而不再需要根据该VR眼镜的数据请求进行后续操作,即可以直接执行步骤3110。这样可以使得在预设时间段内多次接入的同一个VR眼镜能够更加快速地获得相应的当前控制台及生成相应的目标数据,而智能机顶盒也不再为该VR眼镜反复创建控制台,既能够减少用户操作时间,又能够减少智能机顶盒的资源消耗,提高智能机顶盒的响应速度。
当前控制台继承了历史控制台的历史操作属性,那么其生成的显示数据中就不再包含与用户操作相关的内容,即示例性地,显示数据包括所述当前控制台中的应用软件运行画面数据及媒体播放画面中的至少一幅画面数据。
在步骤360中,若不存在,且所述控制台列表中的所述预置控制台对应的身份信息字段为空时,则依据所述身份信息,配置所述预置控制台为当前控制台,并更新所述控制台列表。
可选地,如果步骤340中判断VR眼镜没有对应的历史控制台,那么进一步判断控制台列表中的预置控制台对应的身份信息字段是否为空,即判断预置控制台是否有对应的VR眼镜。如果预置控制台没有对应的VR眼镜,那么该预置控制台就处于未利用状态,就可以根据VR眼镜的身份信息,将预置控制台配置为该VR眼镜的当前控制台,之后更新控制台列表,将该预置控制台的身份信息字段设置为该VR眼镜的身份信息,之后执行步骤390。这样可以有效利用智能机顶盒中的预置控制台,避免资源浪费与过度消耗,进一步提高智能机顶盒的响应速度。如果预置控制台有对应的VR眼镜,则可以执行步骤370或步骤380。
在步骤370中,若不存在,且所述控制台列表中存在空闲历史控制台时,则依据所述身份信息,配置所述空闲历史控制台为当前控制台,并更新所述控制台列表。
其中,空闲历史控制台指的是处于未利用状态的历史控制台,其可以是控制台列表中控制台标识字段不为空,但是身份信息字段为空的历史控制台。可选地,控制台列表中之所以会存在空闲历史控制台,是因为在进行控制台列表的管理时,优选不清除控制台标识字段内容,只清除其他字段内容。也就是说,智能机顶盒中可以保留其所能容纳的最大控制台个数(即控制台数量的预设阈 值)以内的、已经创建的控制台,但是这些保留的控制台对应的身份信息字段内容会在预设时间段后进行清除,使其重新处于未利用状态,便于其他VR眼镜的接入。
可选地,如果步骤340中判断VR眼镜没有对应的历史控制台,则进一步判断控制台列表中是否存在空闲历史控制台,即判断控制台列表中的历史控制台对应的身份信息字段是否为空。如果有一个或多个历史控制台的身份信息字段为空,那么就可以根据VR眼镜的身份信息,配置该一个历史控制台或多个历史控制台中的任一个历史控制台为该VR眼镜的当前控制台,之后更新控制台列表,将上述一个历史控制台的身份信息字段设置为该VR眼镜的身份信息,之后执行步骤390。这样可以有效利用智能机顶盒中的历史控制台,避免资源浪费与过度消耗,进一步提高智能机顶盒的响应速度。如果没有历史控制台的身份信息字段为空,则可以执行步骤360或步骤380。
在步骤380中,若不存在,且控制台列表中不存在空闲历史控制台,且所述控制台列表中历史控制台的数量小于预设阈值时,则依据所述身份信息,为所述VR设备创建当前控制台,并更新所述控制台列表。
可选地,如果步骤340中判断VR眼镜没有对应的历史控制台,且进一步判断控制台列表中不存在空闲控制台,那么再进一步判断控制台列表中历史控制台的数量是否小于预设阈值,即判断控制台列表中的历史控制台数量是否已经达到智能机顶盒所能容纳的最大控制台个数。如果历史控制台的数量小于预设阈值,那么就可以根据VR眼镜的身份信息,在智能机顶盒中为该VR眼镜创建一个新的控制台,作为当前控制台,之后更新控制台列表,即在控制台列表中增加一项新的列表内容,该列表内容中的控制台标识字段和身份信息字段分别设置为上述新创建的控制台的控制台标识ID及该VR眼镜的身份信息。当然,也可以相应设置其他字段,比如创建时间字段设置为创建控制台的系统时间,启动频率字段设置为1等,之后执行步骤390。如果历史控制台的数量大于或等于预设阈值,由于智能机顶盒已经达到内存消耗极限,该VR眼镜不能够再接入。
在步骤390中,根据所述数据请求,从至少两个所述当前控制台中获取显示数据。
在步骤3100中,按照预设混叠规则,处理所述显示数据,生成所述目标数据格式的目标数据。
在步骤3110中,根据所述身份信息,发送所述目标数据至所述VR设备。
本实施例的技术方案,通过按照预设启动规则,默认启动预置于所述智能终端中的预置控制台,减少智能终端的资源消耗;通过依据所述控制台列表,判断是否存在与所述身份信息对应的历史控制台;若是,则配置所述历史控制台为所述当前控制台,并使所述当前控制台继承所述历史控制台的历史操作属性,使得在预设时间段内多次接入的同一个VR设备能够更加快速地获得相应的当前控制台及生成相应的目标数据,而智能终端也不再为该VR设备反复创建控制台,既减少用户操作时间,又减少智能终端的资源消耗,进一步提高智能终端的响应速度;通过若否,且所述控制台列表中的所述预置控制台对应的身份信息字段为空时,则依据所述身份信息,配置所述预置控制台为当前控制台,并更新所述控制台列表;或者若否,且所述控制台列表中存在空闲历史控制台时,则依据所述身份信息,配置所述空闲历史控制台为当前控制台,并更新所述控制台列表;或者若否,且控制台列表中不存在空闲历史控制台,且所述控制台列表中历史控制台的数量小于预设阈值时,则依据所述身份信息,为所述VR设备创建当前控制台,并更新所述控制台列表,能够更加有效地减少智能终端的资源浪费与资源消耗,更进一步提高智能终端的响应速度,提升用户使用体验。图4为一实施例提供的数据处理方法的流程图,如图4所述,本实施例可适用于针对至少两个VR设备的数据处理,该方法可以由如VR眼镜或VR头盔等数据处理装置来执行,该方法可以由部署在上述数据处理装置中的软件和/或硬件来实施。本实施例中以智能机顶盒及VR眼镜为例进行说明,该方法包括如下步骤:
在步骤410中,接收操作指令。
可选地,接收根据VR眼镜用户的操作动作转换而成的操作指令,比如开机指令、连接指令或数据获取指令等。
在步骤420中,根据所述操作指令,生成第一数据请求。
其中,第一数据请求可以是VR眼镜与智能机顶盒之间进行交互的交互请求,比如可以包括VR眼镜支持播放的目标数据格式,还可以包括连接请求和/或请求的数据内容等。
可选地,VR眼镜根据S310中接收的操作指令,执行相应的操作,比如开机,以及开机之后,根据连接指令或数据获取指令等生成相应的第一数据请求。
在步骤430中,向智能终端发送所述VR设备的身份信息和第一数据请求,以使所述智能终端执行本发明实施例中任一所述的应用于智能终端的数据处理方法。
可选地,VR眼镜将其身份信息及第一数据请求发送至智能机顶盒,以便该智能机顶盒能够根据该身份信息和第一数据请求执行本发明实施例中的应用于智能机顶盒的数据处理方法,包括:接收至少两个VR设备的身份信息和数据请求,数据请求中包含VR设备支持播放的目标数据格式;按照预设控制台创建规则,根据身份信息,为VR设备创建当前控制台;根据数据请求,从至少两个当前控制台中获取显示数据;按照预设混叠规则,处理显示数据,生成目标数据格式的目标数据;根据身份信息,发送目标数据至VR设备。
可选地,智能终端还可以实现本发明任一实施例所提供的应用于智能终端的数据处理方法。
在步骤440中,根据所述身份信息,接收所述目标数据。
可选地,每一个VR眼镜,根据其身份信息,接收智能机顶盒中对应的控制台发送的目标数据。
可选地,在VR眼镜接收目标数据之后,可以对该目标数据进行个性化显示,其可以是直接显示目标数据,还可以是接收显示操作指令,并依据所述显示操作指令对所述目标数据进行显示。比如,目标数据是多个显示数据混叠而成的,即该目标数据中就对应有多个窗口,那么可以根据用户的显示操作动作,比如对某个窗口的放大、缩小或移动等操作动作,转换生成相应的显示操作指令,进而依据该显示操作指令实现对显示数据中相应的窗口进行放大、缩小或移动等,并将最终形成的个性化的多窗口目标数据进行显示。例如,对于VR眼镜,其设置有相应的控制器,用户可以通过该控制器来实现显示画面大小及视距的自由调整,以及3D显示等。当然,除了对目标数据进行显示之外,VR眼镜还能够基于用户的其他操作,来实现相应的功能,比如对目标数据进行进一步的交互处理,以实现弹幕发布以及与其他用户互动等更加个性化的用户需求。
本实施例提供的数据处理方法,通过采用接收操作指令;根据所述操作指令,生成第一数据请求;向智能终端发送所述VR设备的身份信息和所述第一数据请求,以使所述智能终端执行本发明实施例中任一所述的应用于智能终端的数据处理方法;根据所述身份信息,接收所述目标数据的技术方案。解决了同 一智能终端同时接入的多个VR设备,在同一时间段内不同VR设备只能呈现同样的显示场景的技术问题,达到了在同一时间段内,不同的用户可以通过不同的VR设备和同一智能终端对该智能终端所提供的信息数据进行个性化处理,从而满足不同用户的个性化需求,提升用户的使用体验的技术效果。图5为另一实施例提供的数据处理方法的流程图,如图5所示,本实施例在上述实施例基础上,在“接收所述目标数据”之后增加了“互动”步骤。可选地本实施例以智能机顶盒及VR眼镜为例,本实施例的方法包括:
在步骤510中,接收操作指令。
在步骤520中,根据所述操作指令,生成第一数据请求。
在步骤530中,向智能终端发送所述VR设备的身份信息和第一数据请求,以使所述智能终端执行本发明实施例中任一所述的应用于智能终端的数据处理方法。
在步骤540中,根据所述身份信息,接收所述目标数据。
在步骤550中,接收所述VR设备之间的互动指令。
可选地,VR眼镜接收用于VR眼镜之间进行数据交互的指令,即互动指令,该互动指令能够指示VR眼镜进行相应的操作,比如获取互动信息及生成交互请求等,以便完成VR眼镜之间的数据交互。
可选地,所述互动指令的获取方式可以包括:预置在所述VR设备中的互动指令;或者根据用户的预设动作和预设转换规则,转换出的互动指令;或者根据用户的输入信息和所述预设转换规则,转换出的互动指令。
可选地,互动指令可以是预先在VR眼镜中设置好的互动指令,比如点赞、发送预置互动信息等;也可以是根据用户操作的预设动作和预设的动作指令转换规则(即预设转换规则),将用户的操作动作转换为相应的互动指令,比如,用户预设动作为打开浏览器搜索信息,那么当用户进行打开浏览器的操作时,VR眼镜就能够将该动作转换为VR眼镜的互动指令;还可以是根据用户输入的信息以及预设的信息指令转换规则(即预设转换规则),将用户输入信息转换为相应的互动指令,比如用户文字或语音输入“向VR眼镜A发送‘复仇者联盟’更值得看”的输入信息,那么就可以根据预设转换规R,将其转换为互动信息为“‘复仇者联盟’更值得看”以及互动目标为“VR眼镜A”的互动指令。
在步骤560中,根据所述互动指令,生成第二数据请求。
其中,第二数据请求指的是不同的VR眼镜之间进行交互的交互请求,比如可以包括连接请求或互动信息等。可选地,互动信息至少可以包括文字、图片、音频、视频和网页中的至少一种。
可选地,VR眼镜根据互动指令,生成第二数据请求。根据互动指令的不同获取方式,示例性地,生成第二数据请求中互动信息的方式至少可以包括:获取预置于VR设备中的预置互动信息,或者获取网络数据,或者获取用户输入信息。可选地,VR眼镜中可以预置一定的预置互动信息,以供用户在互动时进行选择使用,且该预置互动信息可以根据用户选择自行连网更新,这样能够省去用户输入或获取互动信息的操作过程。或者,用户可以根据需要,利用VR眼镜的互联网功能,从网络端获取自己需要的网络资源作为交互信息,比如影片简介或相关知识链接等。又或者,用户利用VR眼镜的输入装置输入相关的信息,作为互动信息。
在步骤570中,、发送所述第二数据请求至所述VR设备。
具体地,VR眼将第二数据请求发送至待交互的VR眼镜,该待交互的VR眼镜可以是指定的某一个或某几个VR眼镜,也可以是所有接入智能机顶盒的VR眼镜。
如果待交互的VR设备是指定的VR设备(即目标VR设备),可选地,发送所述第二数据请求至所述VR设备可以包括:依据目标身份信息,发送所述第二数据请求至与所述目标身份信息对应的目标VR设备;或者发送所述第二数据请求及所述目标身份信息至所述智能终端,以使所述智能终端依据所述目标身份信息,发送所述第二数据请求至所述目标VR设备。
其中,目标身份信息是与目标VR眼镜对应的VR眼镜的身份信息,该目标身份信息可以是智能机顶盒发送目标数据的同时发送至VR眼镜,也可以是目标数据中自动携带各个显示数据对应的VR眼镜身份信息。
可选地,VR眼镜A要与VR眼镜B和VR眼镜C进行交互。那么上述过程可以为VR眼镜之间进行点对点的交互,即VR眼镜A依据VR眼镜B的身份信息和VR眼镜C的身份信息,将第二数据请求直接发送至VR眼镜B和VR眼镜C。该过程的前提是不同的VR眼镜之间能够建立通信连接。另外,上述过程还可以为将智能机顶盒作为传输中介进行交互,即VR眼镜A将第二数据请求、VR眼镜B的身份 信息和VR眼镜C的身份信息都发送至智能机顶盒,然后由智能机顶盒将该第二数据请求间接发送至VR眼镜B和VR眼镜C。
如果待交互的VR设备是所有接入智能终端的VR设备(即运行VR设备),那么,可选地,发送所述第二数据请求至所述VR设备可以包括:发送所述第二数据请求至运行VR设备;或者发送所述第二数据请求至所述智能终端,以使所述智能终端将所述第二数据请求发送至所述运行VR设备。
该过程依然VR眼镜之间进行点对点的交互以及将智能机顶盒作为传输中介进行交互两种方式。可选地,这种交互方式属于广播式交互,VR眼镜用户可以选择屏蔽交互信息。
本实施例的技术方案,通过接收所述VR眼镜之间的互动指令;根据所述互动指令,生成第二数据请求;发送所述第二数据请求至所述VR眼镜,能够使得不同的VR眼镜用户之间基于其VR眼镜的显示场景,进行信息的交互,进一步丰富用户所能获知的信息量。
图6为一实施例提供的数据处理系统的结构示意图,如图6所示,该数据处理系统包括:
至少两个VR设备510,以及智能终端520,与所述VR设备510通信连接,所述智能终端520设置为执行本发明实施例中的应用于智能终端的数据处理方法,包括:接收至少两个VR设备510的身份信息和数据请求,所述数据请求中包含所述VR设备510支持播放的目标数据格式;按照预设控制台创建规则,根据所述身份信息,为所述VR设备510创建当前控制台;根据所述数据请求,从至少两个所述当前控制台中获取显示数据;按照预设混叠规则,处理所述显示数据,生成所述目标数据格式的目标数据;根据所述身份信息,发送所述目标数据至所述VR设备510。可选地,智能终端520还可以实现本发明任一实施例提供的应用于智能终端520的数据处理方法。
可选地,上述系统中,VR设备510还用于执行本发明实施例中的应用于至少两个VR设备的数据处理方法,包括:接收操作指令;根据所述操作指令,生成第一数据请求,所述第一数据请求中包含所述VR设备支持播放的目标数据格式;向智能终端发送所述VR设备的身份信息和所述第一数据请求,以使所述智能终端执行本发明实施例中的任一应用于智能终端的数据处理方法;根据所述身份信息,接收所述目标数据;接收所述VR设备之间的互动指令;根据所述互动指 令,生成第二数据请求,所述第二数据请求包括互动信息;发送所述第二数据请求至所述VR设备。
通过本发明实施例五的一种数据处理系统,解决了同一时间段内不同VR设备只能呈现同样的显示场景的技术问题,达到了在同一时间段内,不同的用户通过不同的VR设备和同一智能终端对该智能终端所提供的数据进行个性化处理,从而满足不同用户的个性化需求,提升用户的使用体验的技术效果。图7为一实施例提供的智能终端的结构示意图,如图7所示,本实施例提供的一种智能终端700,包括:一个或多个处理器70;存储器71,用于存储一个或多个程序,当一个或多个程序被一个或多个处理器70执行,使得一个或多个处理器70实现本发明实施例所提供的应用于智能终端的数据处理方法,包括:接收至少两个VR设备的身份信息和数据请求,数据请求中包含VR设备支持播放的目标数据格式;按照预设控制台创建规则,根据身份信息,为VR设备创建当前控制台;根据数据请求,从至少两个当前控制台中获取显示数据;按照预设混叠规则,处理显示数据,生成目标数据格式的目标数据;根据身份信息,发送目标数据至VR设备。可选地,处理器70还可以实现本发明任一实施例所提供的应用于智能终端的数据处理方法。
如图7所示,该智能终端700包括处理器70、存储器71、输入装置72和输出装置73;智能终端700中处理器70的数量可以是一个或多个,图7中以一个处理器70为例;智能终端700中的处理器70、存储器71、输入装置72和输出装置73可以通过总线或其他方式连接。存储器71作为一种计算机可读存储介质,可用于存储软件程序、计算机可执行程序以及模块,如本发明实施例中的应用于智能终端的数据处理方法对应的程序指令。存储器71包括但不限于存储程序区和存储数据区,其中,存储程序区可存储操作系统、一个或多个功能所需的应用程序;存储数据区可存储根据终端的使用所创建的数据等。此外,存储器71可以包括高速随机存取存储器,还可以包括非易失性存储器,例如一个或多个磁盘存储器件、闪存器件、或其他非易失性固态存储器件。可选地,存储器71可进一步包括相对于处理器70远程设置的存储器,这些远程存储器可以通过网络连接至智能终端700。上述网络的实例包括但不限于互联网、企业内部网、局域网、移动通信网及其组合。输入装置72可设置为接收输入的数字或字符信息,以及产生与智能终端700的用户设置以及功能控制有关的键信号输入。输出装置73可包括显示屏等显示设备。
图8为一实施例提供的VR设备的结构示意图,如图8所示,本发明实施例提供的VR设备800,包括:
一个或多个处理器80;存储器81,设置为存储一个或多个程序;当一个或多个程序被一个或多个处理器执行,使得一个或多个处理器实现上述实施例提供的应用于至少两个VR设备的数据处理方法,包括:接收操作指令;根据操作指令,生成第一数据请求,第一数据请求中包含VR设备支持播放的目标数据格式;向智能终端发送VR设备的身份信息和第一数据请求,以使智能终端执行本发明任一实施例所提供的应用于智能终端的数据处理方法;根据身份信息,接收目标数据。可选地,处理器80还可以实现本发明任一实施例提供的应用于至少两个VR设备的数据处理方法。
如图8所示,该VR设备800包括处理器80、存储器81、输入装置82和输出装置83;处理器80的数量可以是一个或多个,此处以一个处理器80为例。其中,存储器81作为一种计算机可读存储介质,存储有软件程序、计算机可执行程序以及模块,如本发明实施例中的应用于至少两个VR设备的数据处理方法对应的程序指令。对处理器80、存储器81、输入装置82和输出装置83等硬件结构及其功能的介绍可参见上述实施例。
本实施例还提供一种一种计算机可读存储介质,存储有存储计算机可执行指令,计算机可执行指令在由计算机处理器执行时用于执行上述数据处理方法。
本发明实施例可借助软件及必需的通用硬件来实现,当然也可以通过硬件实现。本发明实施例可以以软件产品的形式体现出来,该计算机软件产品可以存储在计算机可读存储介质中,如计算机的软盘、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、闪存(FLASH)、硬盘或光盘等,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本发明各个实施例的应用于智能终端的数据处理方法。
工业实用性
本发明实施例在同一时间段内,不同的用户可以通过不同的VR设备和同一智能终端对该智能终端所提供的信息数据进行个性化处理,满足不同用户的个性化需求,提升用户的使用体验的技术效果。

Claims (10)

  1. 一种数据处理方法,应用于智能终端,包括:
    接收至少两个VR设备的身份信息和数据请求,所述数据请求中包含所述VR设备支持播放的目标数据格式;
    按照预设控制台创建规则,根据所述身份信息,为所述VR设备创建当前控制台;
    根据所述数据请求,从至少两个所述当前控制台中获取显示数据;
    按照预设混叠规则,处理所述显示数据,生成所述目标数据格式的目标数据;
    根据所述身份信息,发送所述目标数据至所述VR设备。
  2. 根据权利要求1所述的方法,在所述接收至少两个VR设备的身份信息和数据请求的步骤之前,还包括:
    按照预设启动规则,默认启动预置于所述智能终端中的预置控制台。
  3. 根据权利要求2所述的方法,其中,所述按照预设控制台创建规则,根据所述身份信息,为所述VR设备创建当前控制台包括:
    按照预设列表生成规则,生成控制台列表,其中,所述控制台列表包括身份信息字段;
    依据所述控制台列表,判断是否存在与所述身份信息对应的历史控制台;
    若是,则配置所述历史控制台为所述当前控制台,并使所述当前控制台继承所述历史控制台的历史操作属性。
  4. 根据权利要求3所述的方法,其中,所述按照预设控制台创建规则,根据所述身份信息,为所述VR设备创建当前控制台还包括:
    若不存在,且所述控制台列表中的所述预置控制台对应的身份信息字段为空时,则依据所述身份信息,配置所述预置控制台为当前控制台,并更新所述控制台列表;或者
    若不存在,且所述控制台列表中存在空闲历史控制台时,则依据所述身份信息,配置所述空闲历史控制台为当前控制台,并更新所述控制台列表;或者
    若不存在,且控制台列表中不存在空闲历史控制台,且所述控制台列表中历史控制台的数量小于预设阈值时,则依据所述身份信息,为所述VR设备创建当前控制台,并更新所述控制台列表。
  5. 一种数据处理方法,应用于至少两个VR设备,包括:
    接收操作指令;
    根据所述操作指令,生成第一数据请求,所述第一数据请求中包含所述VR设备支持播放的目标数据格式;
    向智能终端发送所述VR设备的身份信息和所述第一数据请求,以使所述智能终端执行如权利要求1~4任一项所述的数据处理方法;
    根据所述身份信息,接收所述目标数据。
  6. 根据权利要求5所述的方法,其中,在所述接收所述目标数据的步骤之后,还包括:
    接收所述VR设备之间的互动指令;
    根据所述互动指令,生成第二数据请求,所述第二数据请求包括互动信息;
    发送所述第二数据请求至所述VR设备。
  7. 一种智能终端,包括:
    一个或多个处理器;
    存储器,设置为存储一个或多个程序;
    当所述一个或多个程序被所述一个或多个处理器执行,使得所述一个或多个处理器实现如权利要求1~4中任一所述的数据处理方法。
  8. 一种VR设备,包括:
    一个或多个处理器;
    存储器,设置为存储一个或多个程序;
    当所述一个或多个程序被所述一个或多个处理器执行,使得所述一个或多个处理器实现如权利要求5或6所述的数据处理方法。
  9. 一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令在由计算机处理器执行时用于执行如权利要求1~6中任一所述的数据处理方法。
  10. 一种数据处理系统,应用于智能终端,包括:
    两个或多个VR设备,以及智能终端,与所述VR设备通信连接,所述智能终端用于执行权利要求1~4任一项的数据处理方法。
PCT/CN2017/110067 2017-06-16 2017-11-09 一种数据处理方法、智能终端、vr设备及存储介质 WO2018227860A1 (zh)

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