WO2018149321A1 - 提供交互对象信息的方法及装置 - Google Patents

提供交互对象信息的方法及装置 Download PDF

Info

Publication number
WO2018149321A1
WO2018149321A1 PCT/CN2018/075374 CN2018075374W WO2018149321A1 WO 2018149321 A1 WO2018149321 A1 WO 2018149321A1 CN 2018075374 W CN2018075374 W CN 2018075374W WO 2018149321 A1 WO2018149321 A1 WO 2018149321A1
Authority
WO
WIPO (PCT)
Prior art keywords
information
celestial body
celestial
object information
target
Prior art date
Application number
PCT/CN2018/075374
Other languages
English (en)
French (fr)
Inventor
张洁
Original Assignee
阿里巴巴集团控股有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 阿里巴巴集团控股有限公司 filed Critical 阿里巴巴集团控股有限公司
Publication of WO2018149321A1 publication Critical patent/WO2018149321A1/zh

Links

Images

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/011Arrangements for interaction with the human body, e.g. for user immersion in virtual reality
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T19/00Manipulating 3D models or images for computer graphics
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T19/00Manipulating 3D models or images for computer graphics
    • G06T19/006Mixed reality

Definitions

  • the present application relates to the field of interactive object information providing technologies, and in particular, to a method and apparatus for providing interactive object information.
  • the present application provides a method and apparatus for providing interactive object information, which can enrich the interface display form and improve the information expression capability of the page.
  • a method of providing interactive object information including:
  • the first user client receives a correspondence between the celestial body information and the interaction object information, where the celestial body information includes the coordinate change information of the celestial body and the celestial body display information;
  • the celestial display information corresponding to the target celestial body and the interactive object information are provided on the collected real-life image.
  • a method of providing interactive object information including:
  • the server generates a correspondence between the celestial information and the interaction object information, where the celestial information includes the coordinate change information of the celestial body and the celestial body display information;
  • the first user client collects real-life image information in the sky, determines a range of the user's line-of-sight focus area, and performs time and coordinate matching within the area Computing, determining a corresponding target celestial body, and providing celestial display information and interactive object information corresponding to the target celestial body on the collected real-life image.
  • a method of providing interactive object information including:
  • the first user client receives a correspondence between the celestial body information and the interaction object information, where the celestial body information includes the coordinate change information of the celestial body and the celestial body display information;
  • the celestial body display information and the interactive object information corresponding to the target celestial body are provided by the virtual reality device.
  • a method of providing interactive object information including:
  • the server generates a correspondence between the celestial information and the interaction object information, where the celestial information includes the coordinate change information of the celestial body and the celestial body display information;
  • the celestial body display information and the interactive object information corresponding to the target celestial body are provided by the virtual reality device.
  • a data object information publishing method includes:
  • the server receives the data object information submitted by the second user client to participate in the preset activity
  • the gaze focus area range determines the corresponding target celestial body, and provides the celestial body display information and the data object information corresponding to the target celestial body on the collected real scene image or through the virtual reality device.
  • a data object information publishing method includes:
  • the second user client determines the data object information of the preset activity and submits it to the server;
  • the server establishes and saves a correspondence between the selected celestial information and the data object information, where the celestial information includes coordinates of the celestial body
  • the time change information and the celestial body display information are used to: determine a corresponding target celestial body according to the first user's gaze focus area range, and provide the target celestial body on the collected real scene image or through the virtual reality device Corresponding celestial display information and data object information.
  • a page includes celestial display information of the target celestial body and corresponding interactive object information, wherein the target celestial body is determined according to the user's line of sight focus range and information of each celestial body coordinate changing with time.
  • a device for providing interactive object information which is applied to a first user client, and includes:
  • a first correspondence receiving unit configured to receive a correspondence between the celestial information and the interactive object information, where the celestial information includes time-varying coordinates of the celestial body and celestial display information;
  • An image acquisition unit configured to collect real-time image information in the sky
  • a first target celestial body determining unit configured to determine a range of a line of sight focus area of the user, and perform matching operations of time and coordinates in the range of the area to determine a corresponding target celestial body
  • the first-day body information providing unit is configured to provide the celestial body display information and the interaction object information corresponding to the target celestial body on the collected real-life image.
  • a device for providing interactive object information which is applied to a server, and includes:
  • a first correspondence generating unit configured to generate a correspondence between the celestial body information and the interactive object information, where the celestial body information includes time-varying coordinates of the celestial body and celestial body display information;
  • a first correspondence providing unit configured to provide the corresponding relationship information to the first user client, where the first user client collects real-life image information in the sky, determines a range of the user's line-of-sight focus area, and The matching operation of the time and the coordinates is performed in the area, the corresponding target celestial body is determined, and the celestial body display information and the interactive object information corresponding to the target celestial body are provided on the collected real-life image.
  • a device for providing interactive object information which is applied to a first user client, and includes:
  • a second correspondence receiving unit configured to receive a correspondence between the celestial information and the interactive object information, where the celestial information includes time-varying coordinates of the celestial body and celestial display information;
  • a second target celestial body determining unit configured to determine a range of a line of sight focus area of the user, and perform matching operations of time and coordinates in the range of the area to determine a corresponding target celestial body
  • the second celestial information providing unit is configured to provide celestial display information and interactive object information corresponding to the target celestial body through the virtual reality device.
  • a device for providing interactive object information which is applied to a server, and includes:
  • a second correspondence generating unit configured to generate a correspondence between the celestial body information and the interactive object information, where the celestial body information includes time-varying coordinates of the celestial body and celestial body display information;
  • a second correspondence providing unit configured to provide the correspondence relationship information to the first user client, where the first user client determines a range of the line of sight focus area of the user, and performs time and coordinates in the area range
  • the matching operation determines the corresponding target celestial body, and provides the celestial body display information and the interactive object information corresponding to the target celestial body through the virtual reality device.
  • a data object information publishing apparatus is applied to a server, and includes:
  • a data object information receiving unit configured to receive data object information submitted by the second user client to participate in the preset activity
  • a celestial body selection result receiving unit configured to provide a list of candidate celestial information, and receive the celestial information selection result
  • a correspondence establishing unit configured to establish and save a correspondence between the selected celestial body information and the data object information, where the celestial body information includes coordinate change information of the celestial body and celestial body display information, and the corresponding relationship
  • a data object information publishing apparatus is applied to a second user client, including:
  • a data object information submitting unit configured to determine data object information participating in the preset activity, and submitting to the server;
  • a celestial information list providing unit configured to receive a list of candidate celestial information provided by the server
  • a celestial information selection result submitting unit configured to determine a celestial information selection result, and submit to the server, where the server establishes and saves a correspondence between the selected celestial information and the data object information
  • the celestial body information includes time-varying coordinate information of the celestial body and celestial body display information, and the corresponding relationship is used to: determine a corresponding target celestial body according to the range of the visual line focus area of the first user, and on the collected real-life image, or pass
  • the virtual reality device provides celestial display information and data object information corresponding to the target celestial body.
  • the present application discloses the following technical effects:
  • the celestial body display information of the target celestial body and the corresponding interactive object information may be displayed by using augmented reality or virtual reality, and the specific target celestial body may be according to the line of sight focus area of the terminal device user, and The actual coordinates of each celestial body and its time-varying information are determined, so that the interface display form can be enriched and the information expression ability of the page can be improved. Moreover, due to the unique mystery of "Starry Sky", the interface can be made more attractive to the first user, which is beneficial to increase the click rate of the interface.
  • FIG. 1 is a schematic structural diagram of a system provided by an embodiment of the present application.
  • FIG. 3 is a schematic diagram of celestial body display information provided by an embodiment of the present application.
  • FIG. 4 is a schematic diagram of another celestial display information provided by an embodiment of the present application.
  • FIG. 5 is a flowchart of a second method provided by an embodiment of the present application.
  • FIG. 6 is a flowchart of a third method provided by an embodiment of the present application.
  • FIG. 7 is a flowchart of a fourth method provided by an embodiment of the present application.
  • FIG. 9 is a flowchart of a sixth method provided by an embodiment of the present application.
  • FIG. 10 is a schematic diagram of a first device provided by an embodiment of the present application.
  • FIG. 11 is a schematic diagram of a second device provided by an embodiment of the present application.
  • FIG. 12 is a schematic diagram of a third device provided by an embodiment of the present application.
  • FIG. 13 is a schematic diagram of a fourth device provided by an embodiment of the present application.
  • FIG. 14 is a schematic diagram of a fifth device provided by an embodiment of the present application.
  • FIG. 15 is a schematic diagram of a sixth apparatus according to an embodiment of the present application.
  • a novel interface display solution is provided, and specifically, the technology such as augmented reality or virtual reality can be realized in the background of "starry sky".
  • the technology such as augmented reality or virtual reality can be realized in the background of "starry sky".
  • the corresponding target celestial body may be determined according to the focus area of the user's line of sight, and the interactive object information is displayed in the background of the information of the target celestial body.
  • the interface background is no longer a single color or a certain pattern, but a mysterious starry sky, and as the user changes the position, direction, time and other information of the terminal device, it can also be seen in the background.
  • the celestial body can be a celestial body that can be viewed theoretically when the user actually watches the sky in its position and direction. Due to the mystery of the starry sky itself, the user usually desires to know which constellation the celestial body sees when looking up at the starry sky, what name it is, and so on, and the embodiment of the present application can be in the terminal device when the user looks up at the starry sky. Providing this information and providing specific interactive object information based on the information, therefore, it can be more attractive to the user, and the interface background will not appear dull and boring, thereby improving the performance of the page and enriching the page.
  • the implementation form, and, is beneficial to improve the page hit rate.
  • it provides a more three-dimensional interface display effect, further enhancing the user's immersion.
  • the first user client and the server may be included, where the first user mainly refers to a buyer user or a consumer user in the sales platform, and the first user.
  • the client is mainly used for human-computer interaction with the user, and initiates related access requests according to the user's operation.
  • the server is mainly used to maintain the correspondence between the celestial information and the interactive object information.
  • the server can send the corresponding relationship information to the first user client in advance, so that the first user client can locally display the interactive object information in the background of the star space.
  • the corresponding relationship information may be saved only on the server, and the first user client may collect some sensor information on the terminal device and upload it to the server, where the server determines that the user enters the focus area of the user's line of sight.
  • the celestial information, and return, the first user client then performs corresponding display according to the information returned by the server, and so on.
  • the interaction object information related to the specific celestial body may be data object information (mainly may be a product object, a shop object, a promotion activity object, etc.) published in the sales platform.
  • the data object may further include a data object published by the second user (mainly referring to the merchant user, the seller user, etc.).
  • the server can also use the "investment" method to set the correspondence between the celestial body and the data object information.
  • the second user client may be further included in the system architecture. Specifically, the second user client may submit the data object information of the participating activity to the server when having the intention to participate in an activity.
  • the optional celestial body can be provided to the second user client, and the second user client selects.
  • the server establishes a matching relationship between the selected celestial body and the participating data object, and saves the relationship. That is to say, the second user client can implement customization of the celestial information.
  • the correspondence between the celestial information and the interactive object can also be specified by the technician in the platform, etc. .
  • a method for providing data object information is provided from the perspective of the first user client.
  • the method may specifically include the following steps:
  • the first user client receives a correspondence between the celestial body information and the interaction object information, where the celestial body information includes the coordinate change information of the celestial body and the celestial body display information;
  • the first user client may be a client that is provided to the buyer user, the consumer user, etc., through the client, the first user may browse various information provided by the platform, including data object information, and the like. Wait.
  • the server may provide some information to the first user client in advance, and the information mainly includes the correspondence between the celestial information and the interactive object information, according to The information enables the first user client to perform specific celestial matching operations and the like locally on the terminal device without frequent information interaction with the server.
  • the server may push to the first user client, and when the corresponding relationship information is updated, may also push an update message to the first user client, and the like.
  • the celestial information in the correspondence relationship may include information that the celestial coordinates change with time, and the celestial body display information.
  • the information of the celestial coordinates changing with time is objective and can be determined according to astronomical knowledge, etc., and the celestial body display information can be determined according to actual needs, for example, may be a three-dimensional model of some constellations, or a picture, etc. Its function is to display the specific situation of a certain celestial body more intuitively and clearly in the interface, for example, the overall shape of a constellation, the position of each star in the constellation, etc.
  • the name of the celestial body can be displayed. Therefore, on the server side, the celestial information database may be provided in advance, wherein the celestial information and the corresponding interactive object information may be saved.
  • a database established in the prior art can be used.
  • NSA National Aeronautics and Space Administration
  • the embodiment of the present application can use the NASA publicly disclosed.
  • Information such as celestial body orientation and its changes, information on celestial coordinates over time is obtained and stored in the celestial information database in the embodiment of the present application.
  • the number of celestial bodies is large, and in the specific implementation, it can be associated with specific interactive objects only for some well-known celestial bodies. Therefore, when celestial information is stored in the celestial information database, only these The celestial body saves information such as coordinates.
  • it can be some well-known constellations, some representative planets, stars, and so on.
  • information such as celestial coordinates in the known celestial information database
  • coordinate conversion algorithm and the like refer to the implementation in the prior art, which will not be described in detail herein.
  • the celestial body display information corresponding to each celestial body may be stored in the celestial information database, and the specific celestial body display information may be a three-dimensional model or a picture established in advance for the celestial body, and may also be The identification information such as the name of the celestial body is provided on the basis of the three-dimensional model or the picture.
  • This celestial display information can be created by a background technician and saved to the celestial information database, for example, as shown in FIG.
  • the celestial body display information can be superimposed and provided on the upper layer of the actually collected starry sky real image, so that the current focus of the user can be made.
  • the celestial information within the range is more intuitive.
  • the correspondence relationship between the celestial body and the interactive object information is used to store the correspondence between the celestial body and the interactive object information.
  • the interactive object information corresponding to the celestial body can be provided.
  • specific interactive object information can be various, for example:
  • the interactive object information may refer to data object information published by the server, for example, a product object, a shop object, a promotion activity object, and the like, and is displayed by displaying information such as a product object and a shop object in the background of the starry sky.
  • the data object information so that the user can change the orientation of the terminal device to change the aligned object, and then change the displayed data object information, thereby realizing the browsing of the data object information, and can also be viewed continuously.
  • the changing celestial information, and the celestial information is the celestial body whose terminal device is aligning, therefore, the process of interaction can be made more attractive.
  • the data object corresponding to the specific celestial body can also be set in various ways.
  • the developer of the server can specify, that is, bind the celestial body to the data object.
  • the data object published in the server may also include the data object published by the second user, it may also be specified by the second user.
  • the server can publish specific event information, and the second user can sign up for the initiative, or can also sign up after receiving the invitation from the server. After the registration is successful, information such as a list of data objects participating in the activity may be submitted, and then the server may provide an optional list of celestial information to the second user client, where the second user client may select and receive from the server.
  • the same celestial body can only correspond to the same second user, that is, when the user aligns his terminal device with a certain celestial body, the data object information provided can be the same second user.
  • the data object information includes the store object information of the second user, or specific product object information in the store, and the like.
  • the data object information corresponding to the celestial body can be further determined and provided to the first user client for display. After the first user client displays the celestial information and the data object information, the first user can also operate the data object information, including viewing the specific product object details, or entering a store object home page, and the like.
  • the target celestial body may be selected from the candidate celestial body list. Delete to prevent other second users from selecting the object again.
  • an activity is usually an attribute with a validity period, that is, an activity is usually held only for a certain period of time. Therefore, if the second user selects a certain celestial body after signing up for an activity, the celestial body and the celestial body
  • the correspondence between the data objects of the two users may also have a validity period attribute, and the specific effective time may be the same as the effective time of the activity.
  • the correspondence between the celestial body and the data object of the second user may be deleted, and the celestial body is newly added to the candidate celestial body list for selection by other second users. In other words, the correspondence between celestial bodies and data object information may be constantly changing.
  • the interaction object corresponding to the celestial body may also be the resource collection operation object information, that is, it may be a commonly known "red envelope", “coupon”, etc., that is, when the user points his terminal device to a certain celestial body,
  • the related information of the celestial body can be displayed on the terminal device, and the resource information of the "red envelope", "coupon” and the like associated with the celestial body can be provided.
  • the first user may perform operations on the resource collection operation object, and collect the related resources, and correspondingly, the server may also save the resource information to be collected to the account associated with the first user, and the like.
  • the celestial body in the case that the celestial body is associated with the resource receiving operation object, it can also be designed as a "red envelope meteor shower" for some special celestial bodies.
  • the Leonid meteor shower is more famous, it can provide a corresponding meteor shower model for the "Leo" object.
  • the meteor material has a The dynamic display effect of the screen in the preset direction. That is to say, when the "Leo" is displayed on the first user client, the above-mentioned meteor shower model can be displayed.
  • the celestial body has a resource to collect the operation object, the celestial body can also cross the screen in the meteor material.
  • the resource is provided to receive a dynamic display effect of the operation object across the screen. That is to say, in the process of multiple meteors crossing the screen, some "red envelopes" can be mixed, and the user can collect the corresponding resources by clicking "red envelopes".
  • this method of resource collection makes the interface display effect more visually impactful, and because it is a celestial association with its terminal device, it will enhance the user experience.
  • the specific interactive object may also include the first operation option associated with the meteor material, that is, when displaying the information of each celestial body, the meteor material and its corresponding first operation option may be additionally provided, the meteor material. It may not belong to the currently displayed celestial body, but another celestial body that temporarily traverses the screen. In this way, you can simulate the actual sky and sky, and occasionally there are meteors.
  • the client can also notify the server, and the server provides an optional wish option, so that the first user can select from the server, and the server serves the first user.
  • the selected wish option is saved, and the subsequent determination can be made according to the specific rules corresponding to each wish option, etc., and the like. In this way, you can simulate a scenario that makes a wish against a meteor, so it is more attractive to users.
  • the specific wish option, and the setting of the extraction rule under the specific wish option, etc. may be set in advance by the server.
  • the wish option may include: the qualification of the net red meeting, the drawer and the net red to participate in the live broadcast; donate 1 yuan to send the lottery, so that both public welfare, chance to win, and so on. Subsequent in the specific implementation, if the wishes are drawn, it means that the first user is fulfilled, and so on.
  • the specific interactive object information may also be a second operation option associated with the virtual item information.
  • the virtual item may be “fireworks”, “spaceship”, etc., and the specific second operation may be “purchase” or the like.
  • a preset interface change may be triggered. For example, after purchasing the "fireworks”, you can watch the display effect of the "fireworks” in the current starry sky. Another example is that after purchasing a "spaceship”, you can conduct "space travel", that is, you can "traverse” to other screens on the screen without the user having to change the geographic location, direction, etc. of the terminal equipment. The location of the celestial body, view information about other celestial bodies, and so on.
  • the specific interactive object information may further include a third operation option for receiving the user's message information, that is, after the user points the terminal device to a certain celestial body, the information about the celestial body is displayed in the interface.
  • a third operation option for inputting message information can also be provided.
  • the user can edit related message information, for example, "I have been there", and the like.
  • the client may submit to the server for saving, so that the server provides the target celestial body and its associated interactive object information to other users, that is, When another first user points the terminal device to the target object, the first user may also be provided with the message information of the first user, and so on.
  • the above describes the situation of some specific interactive object information. In practical applications, there may be other specific manners, which are not detailed here.
  • the above various interactive objects may exist independently or may be simultaneously displayed in the first user client interface with the same celestial body. For example, when displaying a celestial body, you can display the data object information associated with the celestial body. At the same time, you can also provide the first operation option associated with the meteor material, the third operation option for receiving the user's message information, and so on.
  • the saved information can be as shown in Table 1 below:
  • the celestial coordinate information as described above, is usually changed with time. Therefore, the coordinate information in Table 1 is merely illustrative and does not represent the information actually stored in the database.
  • information such as the position where the interactive object information appears in the picture may be saved, for example, a certain data object is associated with a specific star in a certain constellation, and the like, which is also not shown in Table 1 above.
  • the foregoing information saved in the server may be provided to the first user client in advance, so that the first user client avoids frequent information interaction with the server in the process of implementing the augmented reality.
  • the server may also perform information push by region and season according to the region, the season, and the like of the first user. For example, in different seasons, the objects that users can see in the sky may be different; in addition, in the summer, the objects that the northern users can see in the sky, and the objects that the southern users can see in the sky may It's different, and so on. Therefore, the server can also store information such as seasons and regions corresponding to each celestial body in the celestial information database. In this way, when information is pushed, it is also possible to push targeted information according to seasons and regions, thereby avoiding excessive useless information occupying transmission and storage resources.
  • the first user client may appear directly as an application or a website homepage, that is, when the first user is accessing a certain
  • the background of the home page can be directly displayed as augmented reality or virtual reality starry sky, and some interactive object information is displayed on the starry sky.
  • the image capturing device such as the camera on the terminal device can be directly activated under the triggering operation of opening the home page to perform image capturing, and the user can be prompted to point the camera at the sky.
  • the first user may be provided with an operation entry in a specific page.
  • This function can be activated through the operation portal.
  • an operation option such as "Star Mall" is provided on the client homepage, and the like, when the user performs a trigger operation by such an operation option, an image capturing device such as a camera on the terminal device is activated to collect the real-time image of the sky.
  • the solution provided in the embodiment of the present application may exist as a special presentation manner, and may be associated with a specific activity or the like.
  • a specific activity or the like For example, in the "Double 11" event, it is possible to provide information on the products participating in the event in such a manner as a background in the sky, and the like.
  • an operation option for initiating the presentation in the manner of the embodiment of the present application may be provided in a specific page of the first user client, for example, the operation option may be located at the top right of the client homepage.
  • the interface can be displayed in the traditional manner. If the user has the corresponding requirement, the user can initiate the switch to the presentation mode provided by the embodiment of the present application.
  • S203 Determine a range of a line of sight focus area of the user, and perform a matching operation of time and coordinates in the range of the area to determine a corresponding target object;
  • the client can acquire some sensor data of the terminal device, including positioning data in the terminal device, gravity sensing data, image acquisition data, and the like.
  • the terminal device may refer to a smart mobile terminal device, which usually has various sensors and a positioning system, wherein the sensor may include an acceleration sensor, a gyroscope, a gravity sensor, and the like. Through the data of various sensors and positioning systems, the user's line of sight focus area information can be determined.
  • information such as a geographical location, an observation direction, and the like of the terminal device may be first determined according to the sensor data, and then coordinate conversion may be performed according to the geographic location and the observation direction information.
  • coordinate conversion may be performed according to the geographic location and the observation direction information.
  • the image matching may be directly performed according to the starry sky real image acquired by the image capturing device. If the captured real image matches the image of a certain area in the database, the area may be determined as the user. Sight focus area, and more.
  • the time and celestial coordinates can be matched in the area to determine the corresponding target object.
  • the first user client has saved the correspondence information between the celestial information and the interaction object, wherein the celestial information includes coordinate information of each celestial body. Therefore, after determining the user's visual focus area, It is possible to match the time and coordinates in the area to determine which celestial body or celestial bodies appear in the area at the current moment, and then the celestial body can be determined as the target celestial body.
  • S204 Provide celestial display information and interactive object information corresponding to the target celestial body on the collected real-life image.
  • the celestial body display information corresponding to the target celestial body and the interactive object information can be determined.
  • the celestial body display information may be a three-dimensional model or a picture of the celestial body. Therefore, when the information is provided, the identification information and the target celestial body may be displayed on the basis of the three-dimensional model or the picture information of the target celestial body.
  • the target interactive object information For example, the picture information of a target celestial body may be as shown in FIG. 4, and further, the name of the celestial body, such as "Lynx" and the like, and related interactive object information, including the foregoing data, may be displayed on the upper layer of the above picture.
  • Object information, resource collection operation object information, and the like specifically, an entrance link of a certain store, or a resource such as "red envelope", "coupon", etc., and the like.
  • the augmented reality technology may be used for display.
  • the celestial body presentation information of the target celestial body and the interactive object information may be provided on the collected real-life image. That is to say, the picture actually captured by the camera actually includes only the picture of the sky, but through the embodiment of the present application, more information can be displayed on the upper layer of the captured picture, including the display information of the celestial body, and the interactive object information. Etc., the "real" shooting content has been enhanced, so it shows the effect of augmented reality.
  • the celestial display information of the target celestial body and the corresponding interactive object information may be displayed in an augmented reality manner, and the specific target celestial body may be according to the line of sight focus area of the terminal device user, and each The actual coordinates of the celestial body and its time-varying information are determined, so that the interface display form can be enriched and the information expression ability of the page can be improved.
  • the interface can be made more attractive to the first user, which is beneficial to increase the click rate of the interface.
  • the second embodiment is corresponding to the first embodiment. From the perspective of the server, a method for providing interactive object information is provided. Referring to FIG. 5, the method may include the following steps:
  • the server generates a correspondence between the celestial body information and the interaction object information, where the celestial body information includes the coordinate change information of the celestial body and the celestial body display information.
  • the corresponding relationship information is provided to the first user client, where the first user client collects real-life image information in the sky, determines a range of the user's line-of-sight focus area, and performs time and coordinates in the area range. a matching operation, determining a corresponding target celestial body, and providing celestial display information and interactive object information corresponding to the target celestial body on the collected real-life image.
  • the second embodiment is corresponding to the first embodiment. Therefore, the related implementation may refer to the introduction in the first embodiment, and details are not described herein again.
  • the display of the specific interface can also be implemented through the virtual reality.
  • the third embodiment provides a method for providing interactive object information, including:
  • the first user client receives a correspondence between the celestial body information and the interaction object information, where the celestial body information includes the coordinate change information of the celestial body and the celestial body display information;
  • S602 Determine a range of a line of sight focus area of the user, and perform matching operations of time and coordinates in the range of the area to determine a corresponding target object;
  • S603 Provide celestial display information and interactive object information corresponding to the target celestial body through the virtual reality device.
  • the celestial display information of the target celestial body and the interactive object information may be provided by a virtual reality display device.
  • a virtual reality device may be an "integrated" virtual reality device that integrates functions such as storage, computing, and screen display, or may be an "external" or “mobile” virtual device having only a display function.
  • Realistic device since the integrated virtual reality device, since it has functions such as storage and calculation, the related program of the first user client can be directly installed or built into the virtual reality device, so that the first After the user client determines the target object, it can directly display the celestial display information and the interactive object information through the display screen.
  • the first user client program can be installed in the PC, and then externally connected.
  • the virtual reality device is connected to the PC to realize the virtual reality space environment and interaction.
  • a smart mobile terminal device such as a mobile phone, for example, a "VR glasses box", etc.
  • a smart mobile terminal device such as a mobile phone can be placed.
  • the specific functions of storage and calculation are completed by the intelligent mobile terminal device, and the “VR glasses box” is only used to implement the related functions of the screen display.
  • the first user client may be running in the smart mobile terminal device, and after determining the target celestial body, the celestial body display information of the target celestial body and the corresponding interactive object information may be sent to the external “VR glasses box”. Show.
  • the virtual reality differs only in the form of presentation, and the related implementation of the determination of the target object may be the same as in the first embodiment. Therefore, refer to the first embodiment. Record it, no longer repeat it here.
  • the celestial body display information and the interactive object information can be displayed by means of virtual reality, and the target celestial body can be displayed according to the user's line of sight focus area, and the interactive object information can be combined with The celestial body corresponds, so that the interface display form can be enriched, and because of the unique mystery of "Starry Sky", the interface can be made more attractive to the first user, which is beneficial to improve the click rate of the interface and enrich The form of the page enhances the information expression ability of the page.
  • the fourth embodiment is corresponding to the three-phase of the embodiment. From the perspective of the server, a method for providing data object information is provided. Referring to FIG. 7, the method may specifically include the following steps:
  • the server generates a correspondence between the celestial information and the interaction object information, where the celestial information includes the coordinate change information of the celestial body and the celestial body display information;
  • the corresponding relationship information is provided to the first user client, where the first user client determines the range of the line of sight focus area of the user, and performs time and coordinate matching operations in the area to determine the corresponding target.
  • the celestial body provides the celestial body display information and the interactive object information corresponding to the target celestial body through the virtual reality device.
  • the fourth embodiment is corresponding to the three-phase of the embodiment. Therefore, the related specific implementation can be referred to the description in the third embodiment, and details are not described herein again.
  • the specific interaction object may be a data object published in the server, and may specifically be data published by the second user (business, seller user, etc.) in the server.
  • Object in this case, there may be a second user to "customize" the specific celestial body, and the server can save specific customized information.
  • the third embodiment is to introduce the process.
  • the fifth embodiment first provides a data object information publishing method from a server side, and the method may include the following steps:
  • S801 The server receives the data object information submitted by the second user client to participate in the preset activity.
  • S802 provide a list of candidate celestial information, and receive a celestial information selection result
  • S803 Establish and save a correspondence between the selected celestial body information and the data object information, where the celestial body information includes celestial body coordinate time change information and celestial body display information, and the corresponding relationship is used according to: A range of the line of sight of the user determines the corresponding target object, and provides the celestial display information and the data object information corresponding to the target celestial body on the collected real-life image or through the virtual reality device.
  • the selected celestial information may also be deleted from the candidate celestial information list.
  • the validity period of the correspondence between the celestial information and the data object information may be determined according to the validity period information of the preset activity; when the validity period ends, the corresponding relationship is deleted, and the corresponding Celestial information is added to the list of candidate celestial information.
  • the sixth embodiment is corresponding to the fifth embodiment. From the perspective of the second user client, a data object information publishing method is provided. Specifically, referring to FIG. 9, the method may specifically include the following steps:
  • S901 The second user client determines the data object information of the preset activity, and submits the information to the server.
  • S902 Receive a list of candidate celestial information provided by the server.
  • S903 Determine a result of the celestial information selection, and submit the result to the server, where the server establishes and saves a correspondence between the selected celestial information and the data object information, where the celestial information includes a celestial body And the celestial body display information, wherein the corresponding relationship is used to: determine a corresponding target celestial body according to the first user's gaze focus area range, and provide the same on the collected real scene image or through a virtual reality device The celestial body display information and data object information corresponding to the target celestial body.
  • the seventh embodiment is also corresponding to the foregoing various embodiments, and provides a page.
  • the page includes celestial display information of the target celestial body and corresponding interactive object information, and the target celestial body information is according to the user's line of sight.
  • the range of focus, as well as the information of each celestial coordinate as a function of time, is determined.
  • the target celestial information may include a three-dimensional model or picture information of the target celestial body.
  • the embodiment of the present application further provides an apparatus for providing interactive object information.
  • the apparatus is applied to a first user client, including:
  • the first correspondence receiving unit 1001 is configured to receive a correspondence between the celestial information and the interaction object information, where the celestial information includes the coordinate change information of the celestial body and the celestial body display information;
  • the image acquisition unit 1002 is configured to collect real-time image information in the sky;
  • the first target celestial body determining unit 1003 is configured to determine a range of the line of sight focus area of the user, and perform matching operations of time and coordinates in the range of the area to determine a corresponding target celestial body;
  • the first-day body information providing unit 1004 is configured to provide the celestial body display information and the interaction object information corresponding to the target celestial body on the collected real-life image.
  • the interaction object information includes data object information published in the server;
  • the first celestial information providing unit is specifically configured to:
  • the data object information includes data object information that is published by the second user client on the server, where the same celestial body corresponds to multiple data object information associated with the same first user.
  • the interaction object information includes resource collection operation object information, and the resource collection operation object is used for resource collection;
  • the first celestial information providing unit is specifically configured to:
  • the celestial body display information corresponding to the target celestial body and the resource collection operation object information are provided on the collected live image.
  • the celestial body display information includes: a meteor shower display model for the target celestial body, the display model includes a plurality of meteor materials, and the meteor material has a dynamic display effect of slid across the screen along a preset direction;
  • the first celestial information providing unit is specifically configured to:
  • the resource is provided to receive the dynamic display effect of the operation object across the screen.
  • the interaction object information includes a first operation option associated with the meteor material
  • the first celestial information providing unit is specifically configured to:
  • the interactive object information includes a second operational option associated with the virtual item information
  • the first celestial information providing unit is specifically configured to:
  • the device may further include:
  • a triggering unit configured to trigger a preset interface change when receiving an operation performed on the virtual item by using the second operation option.
  • the interactive object information includes a third operation option for receiving user message information
  • the first celestial information providing unit is specifically configured to:
  • the device also includes:
  • a message submitting unit configured to submit to the server for saving when receiving the message information by using the third operation option, so that the server provides the message when providing the target celestial body and its associated interactive object information to other users information.
  • the celestial body display information includes: celestial body identification information displayed on the basis of the three-dimensional model or picture information of the celestial body.
  • the first target celestial determining unit may specifically include:
  • a location and direction information determining subunit configured to determine a geographical location of the terminal device and an observation direction information
  • a coordinate conversion subunit configured to perform coordinate conversion according to the geographic location and the observation direction information to determine a range of regions in the starry sky coordinate system.
  • the first target celestial determining unit may specifically include:
  • An image matching subunit configured to perform image matching according to the live image information in the collected sky
  • the determining subunit is configured to determine a range of the user's line of sight focus area according to the image matching result.
  • the embodiment of the present application further provides an apparatus for providing interactive object information.
  • the apparatus is applied to a server, and includes:
  • the first correspondence relationship generating unit 1101 is configured to generate a correspondence relationship between the celestial body information and the interaction object information, where the celestial body information includes the coordinate change information of the celestial body and the celestial body display information;
  • the first correspondence relationship providing unit 1102 is configured to provide the correspondence relationship information to the first user client, where the first user client collects real-life image information in the sky, determines a range of the user's line-of-sight focus area, and The matching operation of the time and the coordinates is performed in the region, and the corresponding target celestial body is determined, and the celestial body display information and the interactive object information corresponding to the target celestial body are provided on the collected real-life image.
  • the embodiment of the present application further provides an apparatus for providing interactive object information.
  • the apparatus is applied to a first user client, including:
  • the second correspondence receiving unit 1201 is configured to receive a correspondence between the celestial information and the interaction object information, where the celestial information includes the coordinate change information of the celestial body and the celestial body display information;
  • the second target celestial body determining unit 1202 is configured to determine a range of the line of sight focus area of the user, and perform matching operations of time and coordinates in the range of the area to determine a corresponding target celestial body;
  • the second celestial body information providing unit 1203 is configured to provide celestial body display information and interactive object information corresponding to the target celestial body through the virtual reality device.
  • the embodiment of the present application further provides an apparatus for providing interactive object information.
  • the apparatus is applied to a server, including:
  • the second correspondence relationship generating unit 1301 is configured to generate a correspondence relationship between the celestial body information and the interaction object information, where the celestial body information includes the coordinate change information of the celestial body and the celestial body display information;
  • the second correspondence relationship providing unit 1302 is configured to provide the correspondence relationship information to the first user client, where the first user client determines the range of the line of sight focus area of the user, and performs time and coordinates in the area range.
  • the matching operation determines the corresponding target celestial body, and provides the celestial body display information and the interactive object information corresponding to the target celestial body through the virtual reality device.
  • the embodiment of the present application further provides a data object information publishing apparatus.
  • the apparatus is applied to the server, and includes:
  • the data object information receiving unit 1401 is configured to receive data object information submitted by the second user client to participate in the preset activity
  • the celestial body selection result receiving unit 1402 is configured to provide a candidate celestial information list, and receive the celestial information selection result;
  • the correspondence relationship establishing unit 1403 is configured to establish and save a correspondence between the selected celestial body information and the data object information, where the celestial body information includes coordinate change information of the celestial body and celestial body display information, and the corresponding The relationship is used to: determine a corresponding target celestial body according to the range of the line of sight of the first user, and provide celestial display information and data object information corresponding to the target celestial body on the collected real-life image or through the virtual reality device.
  • the device may further include:
  • a deleting unit configured to delete the selected celestial information from the candidate celestial information list.
  • the device may further include:
  • a validity period determining unit configured to determine, according to the validity period information of the preset activity, an expiration date of a correspondence between the celestial body information and the data object information;
  • the correspondence deletion unit is configured to delete the correspondence when the validity period ends, and add corresponding celestial information to the candidate celestial information list.
  • the embodiment of the present application further provides a data object information publishing apparatus.
  • the apparatus is applied to a second user client, including:
  • the data object information submitting unit 1501 is configured to determine data object information participating in the preset activity, and submit the data object information to the server;
  • the celestial information list providing unit 1502 is configured to receive a list of candidate celestial information provided by the server;
  • the celestial information selection result submitting unit 1503 is configured to determine a celestial information selection result, and submit the result to the server, where the server establishes and saves a correspondence between the selected celestial information and the data object information.
  • the celestial body information includes time-varying coordinate information of the celestial body and celestial body display information, and the corresponding relationship is used to: determine a corresponding target celestial body according to the range of the visual focus area of the first user, and on the collected real-life image, or
  • the celestial display information and the data object information corresponding to the target celestial body are provided by the virtual reality device.
  • the present application can be implemented by means of software plus a necessary general hardware platform. Based on such understanding, the technical solution of the present application may be embodied in the form of a software product in essence or in the form of a software product, which may be stored in a storage medium such as a ROM/RAM or a disk. , an optical disk, etc., includes instructions for causing a computer device (which may be a personal computer, server, or network device, etc.) to perform the methods described in various embodiments of the present application or portions of the embodiments.
  • a computer device which may be a personal computer, server, or network device, etc.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Graphics (AREA)
  • Computer Hardware Design (AREA)
  • Software Systems (AREA)
  • Human Computer Interaction (AREA)
  • User Interface Of Digital Computer (AREA)
  • Processing Or Creating Images (AREA)

Abstract

一种提供交互对象信息的方法及装置,其中,所述方法包括:第一用户客户端接收天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息(S201);采集天空中的实景图像信息(S202);确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体(S203);在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息(S204)。上述方法可以使得界面展示形式变得丰富,提高页面的信息表达能力。

Description

提供交互对象信息的方法及装置
本申请要求2017年02月17日递交的申请号为201710087497.9、发明名称为“提供交互对象信息的方法及装置”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及交互对象信息提供技术领域,特别是涉及提供交互对象信息的方法及装置。
背景技术
在传统的网络平台中,多以排版固定的图片进行商品、商铺、活动等信息展示,在相关的移动版的应用中,多数也是采用类似的信息展示形式。虽然设计师也在界面展现形式上不断创新,包括对版头banner的特殊设计、对页面“电梯楼层”的特殊设计,等等,但是,相对于其他类型的各种移动应用中各种炫酷的界面展现形式而言,现有的界面展现形式具有表现能力差等缺点。另外有一些页面可以采用增强现实的方式来进行展现,例如在用户用手机摄像头扫描某实体店铺时,在界面上提供该实体店铺关联的线上虚拟店铺的相关信息,等等。这种方式有利于提高页面表现能力,但是,在具体的表现形式上仍然不够丰富。
发明内容
本申请提供了提供交互对象信息的方法及装置,可以使得界面展示形式变得丰富,提高页面的信息表达能力。
本申请提供了如下方案:
一种提供交互对象信息的方法,包括:
第一用户客户端接收天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
采集天空中的实景图像信息;
确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体;
在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信 息。
一种提供交互对象信息的方法,包括:
服务端生成天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
将所述对应关系信息提供给第一用户客户端,由所述第一用户客户端采集天空中的实景图像信息,确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体,并在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息。
一种提供交互对象信息的方法,包括:
第一用户客户端接收天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体;
通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及交互对象信息。
一种提供交互对象信息的方法,包括:
服务端生成天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
将所述对应关系信息提供给第一用户客户端,由所述第一用户客户端确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体,通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及交互对象信息。
一种数据对象信息发布方法,包括:
服务端接收第二用户客户端提交的参加预置活动的数据对象信息;
提供候选天体信息列表,并接收天体信息选择结果;
建立并保存所述被选中的天体信息与所述数据对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息,所述对应关系用于:根据第一用户的视线焦点区域范围确定对应的目标天体,并在采集到的实景图像上,或者通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及数据对象信息。
一种数据对象信息发布方法,包括:
第二用户客户端确定参加预置活动的数据对象信息,并提交到服务端;
接收所述服务端提供的候选天体信息列表;
确定天体信息选择结果,并提交到所述服务端,由所述服务端建立并保存所述被选中的天体信息与所述数据对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息,所述对应关系用于:根据第一用户的视线焦点区域范围确定对应的目标天体,并在采集到的实景图像上,或者通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及数据对象信息。
一种页面,所述页面中包括目标天体的天体展示信息以及对应的交互对象信息,所述目标天体根据用户的视线焦点范围,以及各天体坐标随时间变化的信息而确定。
一种提供交互对象信息的装置,应用于第一用户客户端,包括:
第一对应关系接收单元,用于接收天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
图像采集单元,用于采集天空中的实景图像信息;
第一目标天体确定单元,用于确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体;
第一天体信息提供单元,用于在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息。
一种提供交互对象信息的装置,应用于服务端,包括:
第一对应关系生成单元,用于生成天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
第一对应关系提供单元,用于将所述对应关系信息提供给第一用户客户端,由所述第一用户客户端采集天空中的实景图像信息,确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体,并在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息。
一种提供交互对象信息的装置,应用于第一用户客户端,包括:
第二对应关系接收单元,用于接收天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
第二目标天体确定单元,用于确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体;
第二天体信息提供单元,用于通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及交互对象信息。
一种提供交互对象信息的装置,应用于服务端,包括:
第二对应关系生成单元,用于生成天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
第二对应关系提供单元,用于将所述对应关系信息提供给第一用户客户端,由所述第一用户客户端确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体,通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及交互对象信息。
一种数据对象信息发布装置,应用于服务端,包括:
数据对象信息接收单元,用于接收第二用户客户端提交的参加预置活动的数据对象信息;
天体选择结果接收单元,用于提供候选天体信息列表,并接收天体信息选择结果;
对应关系建立单元,用于建立并保存所述被选中的天体信息与所述数据对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息,所述对应关系用于:根据第一用户的视线焦点区域范围确定对应的目标天体,并在采集到的实景图像上,或者通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及数据对象信息。
一种数据对象信息发布装置,应用于第二用户客户端,包括:
数据对象信息提交单元,用于确定参加预置活动的数据对象信息,并提交到服务端;
天体信息列表提供单元,用于接收所述服务端提供的候选天体信息列表;
天体信息选择结果提交单元,用于确定天体信息选择结果,并提交到所述服务端,由所述服务端建立并保存所述被选中的天体信息与所述数据对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息,所述对应关系用于:根据第一用户的视线焦点区域范围确定对应的目标天体,并在采集到的实景图像上,或者通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及数据对象信息。
根据本申请提供的具体实施例,本申请公开了以下技术效果:
通过本申请实施例,可以采用增强现实或者虚拟现实的方式,对目标天体的天体展示信息以及对应的交互对象信息进行展示,并且,具体的目标天体可以是根据终端设备用户的视线焦点区域,以及各天体实际的坐标及其随时间变化信息而确定的,这样,可以使得界面展示形式变得丰富,提高页面的信息表达能力。并且,由于“星空”特有的神秘性,也可以使得界面对第一用户而言更具有吸引力,有利于提升界面的点击率。
当然,实施本申请的任一产品并不一定需要同时达到以上所述的所有优点。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请实施例提供的***架构示意图;
图2是本申请实施例提供的第一方法的流程图;
图3是本申请实施例提供的天体展示信息示意图;
图4是本申请实施例提供的另一天体展示信息示意图;
图5是本申请实施例提供的第二方法的流程图;
图6是本申请实施例提供的第三方法的流程图;
图7是本申请实施例提供的第四方法的流程图;
图8是本申请实施例提供的第五方法的流程图;
图9是本申请实施例提供的第六方法的流程图;
图10是本申请实施例提供的第一装置的示意图;
图11是本申请实施例提供的第二装置的示意图;
图12是本申请实施例提供的第三装置的示意图;
图13是本申请实施例提供的第四装置的示意图;
图14是本申请实施例提供的第五装置的示意图;
图15是本申请实施例提供的第六装置的示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员所获得的所有其他实施例,都属于本申请保护的范围。
在本申请实施例中,为了避免现有技术中页面展示过程过于呆板枯燥,提供了新型的界面展示方案,具体的,可以通过增强现实或者虚拟现实等技术,实现在以“星空”为背景的状态下,展示各种相关的交互对象信息。并且,具体在确定星空背景时,可以 是根据用户的视线焦点区域,确定出对应的目标天体,在以该目标天体的信息为背景进行交互对象信息的展示。这样,由于界面背景不再是单一的某种颜色或者某种图案,而是神秘的星空,并且,随着用户改变终端设备的位置、方向、时间等信息的变化,还可以在背景中看到不同的天体信息,该天体就可以是用户实际在其所在的位置、方向观看天空时,理论上能够观看到的天体。由于星空本身的神秘性,用户通常会渴望知晓在仰望星空时,看到的天体属于哪个星座,叫什么名字,等等,而本申请实施例则可以在用户仰望星空时,在其终端设备中提供这些信息,并在这些信息的基础上提供具体的交互对象信息,因此,可以对用户产生比较强的吸引力,界面背景也不会再显得呆板枯燥,从而提高页面的表现能力,丰富页面的实现形式,并且,有利于提高页面的点击率。另外,通过与增强现实、虚拟现实等技术相结合,提供更为立体的界面展示效果,进一步提升用户的沉浸感。
具体实现时,从***架构上而言,参见图1,可以包括第一用户客户端以及服务端,其中,第一用户主要是指销售平台中的买家用户或者消费者用户等,第一用户客户端主要用于与用户之间进行人机交互,并根据用户的操作,发起相关的访问请求。而服务端则主要用于维护对天体信息与交互对象信息之间的对应关系。具体实现时,服务端可以预先将这种对应关系信息下发给第一用户客户端,这样,第一用户客户端就可以在终端设备本地进行以星空为背景的交互对象信息的展示。或者,也可以仅将上述对应关系信息保存在服务端,第一用户客户端可以采集终端设备上的一些传感器信息,并上传给服务端,由服务端确定出具体进入到用户视线焦点区域范围内的天体信息,并返回,第一用户客户端再根据服务端返回的信息进行相应的展示,等等。其中,具体实现时,与具体天体相关的交互对象信息,可以是销售平台中发布的数据对象信息(主要可以是商品对象、店铺对象、促销活动对象等等)。其中,数据对象还可以包括第二用户(主要是指商家用户、卖家用户等)客户端发布的数据对象。在这种情况下,天体与具体数据对象之间的对应关系,服务端还可以采用“招商”等方式来设置天体与数据对象信息之间的对应关系。因此,在***架构中还可以包括第二用户客户端,具体的,第二用户客户端可以在具有参加某活动的意图时,向服务端提交参加活动的数据对象信息,此时,服务端就可以将可选的天体提供给第二用户客户端,由第二用户客户端进行选择,最后,服务端再将选择的天体与参加活动的数据对象之间建立起对因关系,并进行保存。也就是说,第二用户客户端可以实现对天体信息的定制,当然,在实际应用中,关于天体信息与交互对象之间的对应关系,也可以是由平台中的技术人员自行指定,等等。
下面对具体的实现方式进行详细介绍。
实施例一
首先,在该实施例一中,从第一用户客户端的角度提供了一种提供数据对象信息的方法,参见图2,该方法具体可以包括以下步骤:
S201:第一用户客户端接收天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
具体的,第一用户客户端可以是提供给买家用户、消费者用户等使用的客户端,通过这种客户端,第一用户可以对平台提供的各种信息进行浏览,包括数据对象信息等等。在本申请实施例中,为了便于进行以星空为背景的信息展现,服务端可以预先将一些信息提供给第一用户客户端,这些信息主要包括天体信息与交互对象信息之间的对应关系,根据这些信息,使得第一用户客户端可以在终端设备本地进行具体的天体的匹配等操作,而不需要频繁的与服务端进行信息交互。具体实现时,服务端可以在生成上述对应关系信息后,就向第一用户客户端进行推送,在上述对应关系信息发生更新时,还可以向第一用户客户端推送更新消息,等等。
其中,对应关系中的天体信息可以包括天体坐标随时间变化的信息,以及天体展示信息。其中,天体坐标随时间变化的信息是客观的,可以根据天文知识等进行确定,天体展示信息则可以是按照实际需要进行确定,例如,可以是一些星座的三维模型,或者,图片,等等,其作用是可以在界面中更为直观清晰的展示出某个天体的具体情况,例如,某星座的整体形状、星座中各星体的位置等等,另外,还可以展示出天体的名称等等。因此,在服务端,可以预先提供天体信息数据库,其中可以保存有天体信息以及,对应的交互对象信息。
具体实现时,关于天体坐标随时间变化的信息,可以使用已有技术中建立的数据库,例如,美国国家航空航天局(NASA)通常会公开一些数据,本申请实施例就可以使用NASA公开的与天体方位及其变化等信息,获得天体坐标随时间变化信息,并保存到本申请实施例中的天体信息数据库中。需要说明的是,天体数量众多,而在具体实现时,可以仅针对一些知名度较高的天体,与具体的交互对象进行关联,因此,在天体信息数据库中保存天体信息时,也可以仅针对这些天体进行坐标等信息的保存。例如,可以是一些知名的星座、一些具有代表性的行星、恒星等等。在具有已知的天体信息数据库中天体坐标等信息的情况下,就可以根据终端设备中采集到的一些传感器信息,进行坐标转换等运算,转换成天体坐标系中的坐标,并进而定位出具体的天体。其中,关于具体 的坐标转换算法等,可以参见已有技术中的实现,这里不再详述。
另外,除了天体坐标随时间变化信息,还可以在天体信息数据库中保存各天体对应的天体展示信息,具体的天体展示信息可以是预先为天体建立的三维模型或图片等信息,另外,还可以在三维模型或者图片的基础上提供天体的名称等标识信息。这种天体展示信息可以是由后台技术人员建立,并保存到天体信息数据库中,例如,可以如图3所示。通过保存这种天体展示信息,可以在通过增强现实的方式提供天体信息的过程中,在实际采集到的星空实景图像的上层,叠加提供这种天体展示信息,这样,可以使得当前位于用户视线焦点范围内的天体信息更为直观。
关于天体与交互对象信息之间的对应关系信息,用于保存天体与交互对象信息之间的对应关系。也就时候,当具体对准某个天体时,可以提供与该天体对应的交互对象信息。
其中,具体的交互对象信息可以有多种,例如:
(1)交互对象信息可以是指服务端发布的数据对象信息,例如,商品对象、店铺对象、促销活动对象,等等,通过以星空为背景进行的商品对象、店铺对象等信息的展示,得到“星空商城”的展示效果。也就是说,在用户将其终端设备对准某天体时,可以在其终端设备上展现该天体的相关信息(包括该天体的名称、贴图、介绍等),并且,还可以提供该天体对应的数据对象信息,这样,用户可以通过改变其终端设备的方位,来改变对准的天体,进而,改变展示出的数据对象信息,以此实现对数据对象信息进行浏览的同时,还可以观看到不断变化的天体信息,并且,这种天体信息就是其终端设备正在对准的天体,因此,可以使得交互的过程变得更具有吸引力。
其中,关于具体的天体对应何种数据对象,也可以通过多种方式进行设定,例如,可以是服务端的开发人员进行指定,也即,将天体与数据对象进行绑定。或者,由于服务端中发布的数据对象还可能包括第二用户发布的数据对象,因此,还可以由第二用户进行指定。具体实现时,服务端可以发布具体的活动信息,第二用户可以主动报名参加,或者,也可以在收到服务端的邀约后,报名参加。在报名成功后,可以提交参加活动的数据对象名单等信息,之后,服务端就可以向第二用户客户端提供可选的天体信息列表,第二用户客户端可以从中进行选择,由服务端接收到之后,就可以建立其天体信息与数据对象之间的对应关系,并进行保存。在这种情况下,同一个天体可以仅与同一个第二用户对应,也就是说,在用户将其终端设备对准某个天体时,提供的数据对象信息,可以是同一个第二用户的数据对象信息,包括该第二用户的店铺对象信息,或者店铺内具 体的商品对象信息,等等。在根据终端设备的地理位置以及方向等信息确定出对应的天体之后,就可以进而确定出该天体对应的数据对象信息,并提供给第一用户客户端进行展示。第一用户客户端在展示出天体信息以及数据对象信息之后,第一用户还可以对这种数据对象信息进行操作,包括查看具体商品对象详情,或者,进入到某店铺对象首页,等等。
需要说明的是,在具体实现时,为了实现同一个天体与同一个第二用户相对应,在某个第二用户客户端选择了某个目标天体后,可以将该目标天体从候选天体列表中删除,避免其他第二用户再选择到该天体。
另外,一次活动通常是具有有效期的属性,也就是说,通常只在一段时间内举行某活动,因此,第二用户如果是在报名参加某活动后,选择了某天体,则该天体与该第二用户的数据对象之间的对应关系也可以具有有效期属性,具体的有效时间可以与活动的有效时间相同。在有效期结束时,可以将该天体与该第二用户的数据对象之间的对应关系删除,并且,将该天体重新添加到候选天体列表中,供其他第二用户进行选择。也就是说,天体与数据对象信息之间的对应关系可能会是在不断更新变化的。
(2)天体对应的交互对象也可以是资源领取操作对象信息,也即,可以是俗称的“红包”、“优惠券”等,也就是说,在用户将其终端设备对准某天体时,可以在其终端设备上展现该天体的相关信息,并且,还可以提供该天体关联的“红包”、“优惠券”等资源领取操作对象信息。第一用户可以对这种资源领取操作对象进行操作,对其中关联的资源进行领取,相应的,服务端还可以对将领取到的资源信息保存到第一用户关联的账户,等等。
其中,在天体与资源领取操作对象相关联的情况下,还可以针对一些特殊天体,设计成“红包流星雨”的形式。例如,狮子座流星雨比较著名,则可以针对“狮子座”这一天体提供对应的流星雨模型,在该模型中,可以包括多个流星素材(可以是图片等形式),并且,所述流星素材带有沿着预置方向划过屏幕的动态展示效果。也就是说,在第一用户客户端展示该“狮子座”时,可以通过上述流星雨模型进行展示,同时,该天体如果关联有资源领取操作对象,则还可以在在所述流星素材划过屏幕的过程中,提供所述资源领取操作对象划过屏幕的动态展示效果。也就是说,在多颗流星划过屏幕的过程中,可以夹杂一些“红包”,用户可以通过点击“红包”的方式领取相应的资源。这种资源领取方式相对于现有技术而言,会使得界面展示效果更有视觉冲击力,并且,由于是与其终端设备对准的天体关联,因此,会提升用户体验。
(3)具体的交互对象还可以包括流星素材关联的第一操作选项,也就是说,在展示每个天体的信息时,都可以另外提供流星素材及其对应的第一操作选项,该流星素材可能并不属于当前展示的天体,而是临时划过屏幕的另一天体。通过这种方式,可以模拟实际的星空中,偶尔有流星划过的情况。并且,在第一用户对这种流星素材进行操作时,客户端还可以通知给服务端,由服务端提供可选的愿望选项,这样,第一用户可以从中进行选择,服务端对第一用户选择的愿望选项进行保存,后续可以根据各个愿望选项对应的具体规则等,确定第一用户的愿望是否实现,等等。通过这种方式,可以模拟出对着流星许愿的场景,因此,对于用户会更具有吸引力。
其中,关于具体的愿望选项,以及具体的愿望选项下抽取规则的设定,等等,可以是由服务端预先进行设置。例如,愿望选项可以包括:抽网红见面会的资格,抽中者与网红一起参加直播;捐1元送彩票,这样既做了公益,又有机会中奖,等等。后续在具体的实现中,如果许下的愿望被抽中,则意味着帮第一用户实现了愿望,等等。
(4)具体的交互对象信息还可以是虚拟物品信息关联的第二操作选项,这种虚拟物品可以是“礼花”、“飞船”等等,具体的第二操作可以是“购买”等等。在通过所述第二操作选项接收到对所述虚拟物品执行的操作时,可以触发预置的界面变化。例如,在购买“礼花”后,可以在当前的星空中观看到燃放“礼花”的展示效果。又如,在购买“飞船”后,则可以进行“太空旅行”,也就是说,在无需用户改变其终端设备地理位置、方向等信息的情况下,就可以在屏幕中“穿越”到其他的天体所在位置,查看到关于其他天体的信息,等等。
(5)具体的交互对象信息还可以包括用于接收用户留言信息的第三操作选项,也就是说,在用户将终端设备对准某个天体后,在界面中展示出关于该天体的信息的同时,还可以提供用于输入留言信息的第三操作选项,此时,用户可以编辑相关的留言信息,例如,“我来过”,等等。客户端在通过所述第三操作选项接收到留言信息时,可以提交到服务端进行保存,这样,服务端在向其他用户提供所述目标天体及其关联的交互对象信息时,也就是说,后续有其他第一用户将终端设备对准该目标天体时,还可以向其他第一用户提供该第一用户的留言信息,等等。
需要说明的是,以上对一些具体交互对象信息的情况进行了简单介绍,在实际应用中,还可以有其他的具体方式,这里不再一一详述。另外,上述各种交互对象可以是独立存在,或者,也可以与同一个天体同时展现在第一用户客户端界面中。例如,在展示某天体时,可以展示该天体关联的数据对象信息,同时,还可以提供流星素材关联的第 一操作选项、用于接收用户留言信息的第三操作选项,等等。
通过以上所述可见,在天体信息数据库中,保存的信息可以如以下表1所示:
表1
Figure PCTCN2018075374-appb-000001
其中,关于天体坐标信息,如前文所述,通常是在随时间变化的,因此,表1中的坐标信息仅作为示意,并不代表数据库中实际保存的信息。另外,还可以保存交互对象信息在图片中出现的位置等信息,例如,某数据对象与某星座中具体某颗星体关联,等等,上述表1中同样未示出。
在本申请实施例中,服务端中保存的上述信息可以预先提供给第一用户客户端,使得第一用户客户端在实现增强现实的过程中,避免与服务端频繁的进行信息交互。其中,服务端在向第一用户客户端提供上述天体信息数据库的信息时,还可以结合第一用户所处的地域、季节等因素,进行分地域、分季节的信息推送。例如,在不同的季节,用户能够在天空中看到的天体可能会不同;另外,同样是夏季,北方用户能够在天空中看到的天体,与南方用户能够在天空中看到的天体可能会有所不同,等等。因此,服务端在天体信息数据库中还可以保存各个天体对应的季节、地域等信息。这样,在进行信息推送时,还可以根据季节、地域进行定向的信息推送,避免过多的无用信息占用传输以及存储资源。
S202:采集天空中的实景图像信息;
从第一用户客户端的产品实现角度而言,可以有多种具体的实现方式,例如,一种方式下,可以直接作为某应用或者某网站首页出现,也即,当第一用户在访问某第一用户客户端的首页时,可以直接将该首页的背景展示为增强现实或者虚拟现实的星空,并在星空基础上展示出一些交互对象信息。在这种情况下,可以将打开首页的触发操作下,直接启动终端设备上的摄像头等图像摄取装置,进行图像采集,并且可以提示用户将摄像头对准天空。
或者,在另一种实现方式下,还可以是在一些特定页面中为第一用户提供操作入口, 在第一用户浏览这种特定页面的过程中,如果需要使用本申请实施例提供的功能,则可以通过该操作入口启动该功能。例如,在客户端首页提供“星空商城”等操作选项,等等,在用户通过这种操作选项执行触发操作时,再启动终端设备上的摄像头等图像摄取装置,进行天空实景图像的采集。
具体实现时,在上述第二种实现方式下,本申请实施例中提供的方案可以作为一种特殊的展现方式存在,并且,可以与具体的活动等相关联。例如,在“双11”活动中,可以通过这种以星空为背景的方式,提供参加活动的商品信息,等等。但同时,为了避免对常规展现方式造成影响,可以在第一用户客户端的特定页面中提供用于发起通过本申请实施例的方式进行展现的操作选项,例如,该操作选项可以位于客户端首页右上角等位置,在默认状态下,仍然可以采用传统的方式进行界面展现,如果用户具有相应的需求,再通过这种操作选项发起切换到本申请实施例提供的展现方式中。
S203:确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体;
在确定需要以星空为背景进行展示的情况下,客户端就可以获取终端设备的一些传感器数据,包括终端设备中的定位数据、重力感应数据、图像采集数据等等。具体实现时,终端设备可以是指智能移动终端设备,这种设备中通常会带有多种传感器以及定位***,其中,传感器可以包括加速度传感器、陀螺仪、重力传感器,等等。通过各种传感器以及定位***的数据,即可确定出用户的视线焦点区域范围信息。
其中,具体实现时,一种实现方式下,可以首先根据传感器数据确定出终端设备所在的地理位置、观测方向等信息,然后,可以根据所述地理位置以及所述观测方向信息进行坐标转换,确定在星空坐标系中的区域范围。或者,在另一种方式下,可以直接根据图像采集装置采集到的星空实景图像进行图像匹配,如果采集到的实景图像与数据库中某一区域的图像匹配成功,则可以将该区域确定为用户视线焦点区域,等等。
在确定出用户的视线焦点区域后,就可以在该区域范围内进行时间以及天体坐标的匹配运算,确定对应的目标天体。具体实现时,由于第一用户客户端已经保存了天体信息与交互对象之间的对应关系信息,其中,天体信息中包括了各天体的坐标信息,因此,在确定出用户的视线焦点区域之后,就可以在该区域内进行时间以及坐标的匹配,从而确定出当前时刻哪个或者那几个天体出现在该区域内,进而就可以将该天体确定为目标天体。
S204:在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互 对象信息。
在确定出目标天体之后,就可以确定出该目标天体对应的天体展示信息,以及交互对象信息。其中,由于天体展示信息通常可以是天体的三维模型或者图片等,因此,具体在提供上述信息时,可以是在所述目标天体的三维模型或图片信息的基础上展示目标天体的标识信息以及所述目标交互对象信息。例如,某目标天体的图片信息可以如图4所示,进而,可以在上述图片的上层,展示出该天体的名称,例如“天猫座”等,以及相关联的交互对象信息,包括前述数据对象信息、资源领取操作对象信息,等等,具体如,某店铺的入口链接,或者,“红包”、“优惠券”等资源领取操作对象,等等。
另外,第一客户端具体在提供目标天体以及交互对象信息时,为了进一步提高界面展示效果,在本申请实施例一中,可以结合增强现实技术进行展示。
具体的,第一用户客户端在确定出目标天体之后,就可以在采集到的实景图像上提供所述目标天体的天体展现信息以及所述交互对象信息。也就是说,摄像头实际捕捉到的画面中其实只包括天空的画面,但通过本申请实施例,还可以在捕捉到的画面上层,展示出更多的信息,包括天体的展现信息,交互对象信息等,对“现实”的拍摄内容进行了增强,因此,呈现出增强现实的效果。
需要说明的是,在增强现实的情况下,由于摄像头能够捕捉到天空中的画面,因此,理论上讲,在展示目标天体信息时,可以仅提供目标天体的名称等标识信息,而不必展示天体的三维模型、贴图等等。但是,在实际应用中,考虑到一些夜空不是很晴朗的情况,以及大城市中由于灯光等因素,导致的很难从摄像头中观察到具体天体的情况,在通过增强现实的方式实现时,在提供目标天体信息时,同样可以提供该目标天体的三维模型、贴图等信息,使得具体的天体信息更形象更突出。
总之,通过该实施例一,可以采用增强现实的方式,对目标天体的天体展示信息以及对应的交互对象信息进行展示,并且,具体的目标天体可以是根据终端设备用户的视线焦点区域,以及各天体实际的坐标及其随时间变化信息而确定的,这样,可以使得界面展示形式变得丰富,提高页面的信息表达能力。并且,由于“星空”特有的神秘性,也可以使得界面对第一用户而言更具有吸引力,有利于提升界面的点击率。
实施例二
该实施例二是与实施例一相对应的,从服务端的角度,提供了一种提供交互对象信息的方法,参见图5,该方法可以包括以下步骤:
S501:服务端生成天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
S502:将所述对应关系信息提供给第一用户客户端,由所述第一用户客户端采集天空中的实景图像信息,确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体,并在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息。
该实施例二是与实施例一相对应的,因此,相关的具体实现可以参见实施例一中的介绍,这里不再赘述。
实施例三
以上实施例一以及实施例二对增强现实技术下的实现方案进行了介绍,而在该实施例三中,还可以通过虚拟现实的方式来实现具体界面的展示。具体的,参见图6,该实施例三提供了一种提供交互对象信息的方法,包括:
S601:第一用户客户端接收天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
S602:确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体;
S603:通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及交互对象信息。
可见,在虚拟现实的实现方式下,则可以与具体的虚拟现实显示设备相结合。也即,可以通过虚拟现实显示设备,提供所述目标天体的天体展示信息以及所述交互对象信息。
具体的,由于虚拟现实设备有多种具体的形式,因此,具体的实现方式也可以略有不同。例如,一种虚拟现实设备可以是集存储、计算、屏显等功能为一体的“一体式”虚拟现实设备,或者,还可以是仅具有屏显功能的“外接式”或者“移动式”虚拟现实设备。其中,对于一体式虚拟现实设备而言,由于其本身带有存储、计算等功能,因此,可以直接将前述第一用户客户端的相关程序安装或者内置于这种虚拟现实设备中,这样,第一用户客户端在确定出目标天体之后,就可以直接通过显示屏进行天体展示信息以及交互对象信息的展示。而对于“外接式”虚拟现实设备而言,由于在实现时依赖于外接的PC(个人计算机)机等设备,因此,可以将第一用户客户端程序安装于这种PC机中,再将外接式虚拟现实设备连接到该PC机上,实现虚拟现实空间环境及互动。另外,对 于“移动式”虚拟现实设备而言,在实现时可以与手机等智能移动终端设备配合使用,例如,“VR眼镜盒子”等,在使用时,可以将手机等智能移动终端设备放入眼镜盒子中,具体的存储、计算等功能由智能移动终端设备完成,“VR眼镜盒子”仅用于实现屏显的相关功能。此时,第一用户客户端可以是运行在智能移动终端设备中,在确定出目标天体后,可以将该目标天体的天体展示信息以及对应的交互对象信息发送给外接的“VR眼镜盒子”进行展示。
需要说明的是,由于虚拟现实与增强现实相比,仅在展现形式上有所差别,关于目标天体的确定等相关实现,与实施例一中可以是相同的,因此,参见实施例一中的记载即可,这里不再赘述。
总之,通过本申请实施例,可以通过虚拟现实的方式,进行天体展现信息以及交互对象信息的展示,并且,具体展示的目标天体可以是根据用户的视线焦点区域而定,交互对象信息又可以与天体相对应,这样,可以使得界面展示形式变得丰富,并且,由于“星空”特有的神秘性,也可以使得界面对第一用户而言更具有吸引力,有利于提升界面的点击率,丰富页面形式,提升页面的信息表达能力。
实施例四
该实施例四是与实施例三相对应的,从服务端的角度,提供了一种提供数据对象信息的方法,参见图7,该方法具体可以包括以下步骤:
S701:服务端生成天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
S702:将所述对应关系信息提供给第一用户客户端,由所述第一用户客户端确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体,通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及交互对象信息。
该实施例四是与实施例三相对应的,因此,相关的具体实现可以参见实施例三中的记载,这里不再赘述。
实施例五
如前述实施例一中所述,在一种情况下,具体的交互对象可以是服务端中发布的数据对象,并且具体可以是第二用户(商家、卖家用户等)在服务端中发布的数据对象, 在这种情况下,可以有第二用户对具体的天体进行“定制”,服务端可以保存具体的定制信息。该实施例三就是对该过程进行介绍。
具体的,参见图8,该实施例五首先从服务端的角度提供了一种数据对象信息发布方法,该方法可以包括以下步骤:
S801:服务端接收第二用户客户端提交的参加预置活动的数据对象信息;
S802:提供候选天体信息列表,并接收天体信息选择结果;
S803:建立并保存所述被选中的天体信息与所述数据对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息,所述对应关系用于:根据第一用户的视线焦点区域范围确定对应的目标天体,并在采集到的实景图像上,或者通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及数据对象信息。
具体实现时,还可以将所述被选中的天体信息从所述候选天体信息列表中删除。
另外,还可以根据所述预置活动的有效期信息,确定所述天体信息与所述数据对象信息之间的对应关系的有效期;在所述有效期结束时,删除所述对应关系,并将对应的天体信息添加到所述候选天体信息列表中。
实施例六
该实施例六是与实施例五相对应的,从第二用户客户端的角度,提供了一种数据对象信息发布方法,具体的,参见图9,该方法具体可以包括以下步骤:
S901:第二用户客户端确定参加预置活动的数据对象信息,并提交到服务端;
S902:接收所述服务端提供的候选天体信息列表;
S903:确定天体信息选择结果,并提交到所述服务端,由所述服务端建立并保存所述被选中的天体信息与所述数据对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息,所述对应关系用于:根据第一用户的视线焦点区域范围确定对应的目标天体,并在采集到的实景图像上,或者通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及数据对象信息。
关于上述实施例六中各步骤的具体实现,在前述各实施例中均有记载,因此,未详述部分可以参照前述实施例的记载执行,这里不再赘述。
实施例七
该实施例七也是与前述各个实施例相对应的,提供了一种页面,具体的,所述页面 中包括目标天体的天体展示信息以及对应的交互对象信息,所述目标天体信息根据用户的视线焦点范围,以及各天体坐标随时间变化的信息而确定。
其中,具体实现时,所述目标天体信息可以包括目标天体的三维模型或图片信息。
与实施例一相对应,本申请实施例还提供了一种提供交互对象信息的装置,参见图10,该装置应用于第一用户客户端,包括:
第一对应关系接收单元1001,用于接收天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
图像采集单元1002,用于采集天空中的实景图像信息;
第一目标天体确定单元1003,用于确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体;
第一天体信息提供单元1004,用于在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息。
具体实现时,所述交互对象信息包括所述服务端中发布的数据对象信息;
所述第一天体信息提供单元具体用于:
在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及所述数据对象信息。
其中,所述数据对象信息包括第二用户客户端在所述服务端发布的数据对象信息,其中,同一天体与同一第一用户关联的多个数据对象信息相对应。
在另一种实现方式下,所述交互对象信息包括资源领取操作对象信息,所述资源领取操作对象用于进行资源领取;
所述第一天体信息提供单元具体用于:
在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及资源领取操作对象信息。
其中所述天体展示信息包括:关于所述目标天体的流星雨展示模型,所述展示模型中包括多个流星素材,所述流星素材带有沿着预置方向划过屏幕的动态展示效果;
所述第一天体信息提供单元具体用于:
在所述流星素材划过屏幕的过程中,提供所述资源领取操作对象划过屏幕的动态展示效果。
另外一种实现方式下,所述交互对象信息包括流星素材关联的第一操作选项;
所述第一天体信息提供单元具体用于:
在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及流星素材关联的第一操作选项,以便在通过所述第一操作选项接收到对所述流星素材的操作时,提供可选的愿望选项,并由服务端保存被选中的目标愿望选项。
另外,所述交互对象信息包括虚拟物品信息关联的第二操作选项;
所述第一天体信息提供单元具体用于:
在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及虚拟物品信息关联的第二操作选项;
所述装置还可以包括:
触发单元,用于通过所述第二操作选项接收到对所述虚拟物品执行的操作时,触发预置的界面变化。
再者,所述交互对象信息包括用于接收用户留言信息的第三操作选项;
所述第一天体信息提供单元具体用于:
在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及所述第三操作选项;
所述装置还包括:
留言提交单元,用于通过所述第三操作选项接收到留言信息时提交到服务端进行保存,以便服务端在向其他用户提供所述目标天体及其关联的交互对象信息时,提供所述留言信息。
其中,所述天体展示信息,包括:在天体的三维模型或图片信息基础上展示的天体标识信息。
具体实现时,所述第一目标天体确定单元具体可以包括:
位置以及方向信息确定子单元,用于确定所在终端设备的所处的地理位置以及观测方向信息;
坐标转换子单元,用于根据所述地理位置以及所述观测方向信息进行坐标转换,确定在星空坐标系中的区域范围。
在另一种实现方式下,所述第一目标天体确定单元具体可以包括:
图像匹配子单元,用于根据所述采集到的天空中的实景图像信息,进行图像匹配;
确定子单元,用于根据图像匹配结果确定用户的视线焦点区域范围。
与实施例二相对应,本申请实施例还提供了一种提供交互对象信息的装置,参见图11,该装置应用于服务端,包括:
第一对应关系生成单元1101,用于生成天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
第一对应关系提供单元1102,用于将所述对应关系信息提供给第一用户客户端,由所述第一用户客户端采集天空中的实景图像信息,确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体,并在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息。
与实施例三相对应,本申请实施例还提供了一种提供交互对象信息的装置,参见图12,该装置应用于第一用户客户端,包括:
第二对应关系接收单元1201,用于接收天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
第二目标天体确定单元1202,用于确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体;
第二天体信息提供单元1203,用于通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及交互对象信息。
与实施例四相对应,本申请实施例还提供了一种提供交互对象信息的装置,参见图13,该装置应用于服务端,包括:
第二对应关系生成单元1301,用于生成天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
第二对应关系提供单元1302,用于将所述对应关系信息提供给第一用户客户端,由所述第一用户客户端确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体,通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及交互对象信息。
与实施例五相对应,本申请实施例还提供了一种数据对象信息发布装置,参见图14,该装置应用于服务端,包括:
数据对象信息接收单元1401,用于接收第二用户客户端提交的参加预置活动的数据 对象信息;
天体选择结果接收单元1402,用于提供候选天体信息列表,并接收天体信息选择结果;
对应关系建立单元1403,用于建立并保存所述被选中的天体信息与所述数据对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息,所述对应关系用于:根据第一用户的视线焦点区域范围确定对应的目标天体,并在采集到的实景图像上,或者通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及数据对象信息。
具体实现时,该装置还可以包括:
删除单元,用于将所述被选中的天体信息从所述候选天体信息列表中删除。
另外,该装置还可以包括:
有效期确定单元,用于根据所述预置活动的有效期信息,确定所述天体信息与所述数据对象信息之间的对应关系的有效期;
对应关系删除单元,用于在所述有效期结束时,删除所述对应关系,并将对应的天体信息添加到所述候选天体信息列表中。
与实施例六相对应,本申请实施例还提供了一种数据对象信息发布装置,参见图15,该装置应用于第二用户客户端,包括:
数据对象信息提交单元1501,用于确定参加预置活动的数据对象信息,并提交到服务端;
天体信息列表提供单元1502,用于接收所述服务端提供的候选天体信息列表;
天体信息选择结果提交单元1503,用于确定天体信息选择结果,并提交到所述服务端,由所述服务端建立并保存所述被选中的天体信息与所述数据对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息,所述对应关系用于:根据第一用户的视线焦点区域范围确定对应的目标天体,并在采集到的实景图像上,或者通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及数据对象信息。
通过以上的实施方式的描述可知,本领域的技术人员可以清楚地了解到本申请可借助软件加必需的通用硬件平台的方式来实现。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产 品可以存储在存储介质中,如ROM/RAM、磁碟、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)执行本申请各个实施例或者实施例的某些部分所述的方法。
本说明书中的各个实施例均采用递进的方式描述,各个实施例之间相同相似的部分互相参见即可,每个实施例重点说明的都是与其他实施例的不同之处。尤其,对于***或***实施例而言,由于其基本相似于方法实施例,所以描述得比较简单,相关之处参见方法实施例的部分说明即可。以上所描述的***及***实施例仅仅是示意性的,其中所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部模块来实现本实施例方案的目的。本领域普通技术人员在不付出创造性劳动的情况下,即可以理解并实施。
以上对本申请所提供的提供交互对象信息的方法及装置,进行了详细介绍,本文中应用了具体个例对本申请的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本申请的方法及其核心思想;同时,对于本领域的一般技术人员,依据本申请的思想,在具体实施方式及应用范围上均会有改变之处。综上所述,本说明书内容不应理解为对本申请的限制。

Claims (26)

  1. 一种提供交互对象信息的方法,其特征在于,包括:
    第一用户客户端接收天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
    采集天空中的实景图像信息;
    确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体;
    在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息。
  2. 根据权利要求1所述的方法,其特征在于,所述交互对象信息包括服务端中发布的数据对象信息;
    所述在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息,包括:
    在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及所述数据对象信息。
  3. 根据权利要求2所述的方法,其特征在于,所述数据对象信息包括第二用户客户端在所述服务端发布的数据对象信息,其中,同一天体与同一第一用户关联的多个数据对象信息相对应。
  4. 根据权利要求1所述的方法,其特征在于,所述交互对象信息包括资源领取操作对象信息,所述资源领取操作对象用于进行资源领取;
    所述在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息,包括:
    在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及资源领取操作对象信息。
  5. 根据权利要求4所述的方法,其特征在于,所述天体展示信息包括:关于所述目标天体的流星雨展示模型,所述展示模型中包括多个流星素材,所述流星素材带有沿着预置方向划过屏幕的动态展示效果;
    所述在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及资源领取操作对象信息,包括:
    在所述流星素材划过屏幕的过程中,提供所述资源领取操作对象划过屏幕的动态展 示效果。
  6. 根据权利要求1所述的方法,其特征在于,所述交互对象信息包括流星素材关联的第一操作选项;
    所述在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息,包括:
    在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及流星素材关联的第一操作选项,以便在通过所述第一操作选项接收到对所述流星素材的操作时,提供可选的愿望选项,并由服务端保存被选中的目标愿望选项。
  7. 根据权利要求1所述的方法,其特征在于,所述交互对象信息包括虚拟物品信息关联的第二操作选项;
    所述在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息,包括:
    在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及虚拟物品信息关联的第二操作选项;
    所述方法还包括:
    通过所述第二操作选项接收到对所述虚拟物品执行的操作时,触发预置的界面变化。
  8. 根据权利要求1所述的方法,其特征在于,所述交互对象信息包括用于接收用户留言信息的第三操作选项;
    所述在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息,包括:
    在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及所述第三操作选项;
    所述方法还包括:
    通过所述第三操作选项接收到留言信息时提交到服务端进行保存,以便服务端在向其他用户提供所述目标天体及其关联的交互对象信息时,提供所述留言信息。
  9. 根据权利要求1至8任一项所述的方法,其特征在于,所述天体展示信息,包括:在天体的三维模型或图片信息基础上展示的天体标识信息。
  10. 根据权利要求1至8任一项所述的方法,其特征在于,所述确定用户的视线焦点区域范围,包括:
    确定所在终端设备的所处的地理位置以及观测方向信息;
    根据所述地理位置以及所述观测方向信息进行坐标转换,确定在星空坐标系中的区域范围。
  11. 根据权利要求1至8任一项所述的方法,其特征在于,所述确定用户的视线焦点区域范围,包括:
    根据所述采集到的天空中的实景图像信息,进行图像匹配;
    根据图像匹配结果确定用户的视线焦点区域范围。
  12. 一种提供交互对象信息的方法,其特征在于,包括:
    服务端生成天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
    将所述对应关系信息提供给第一用户客户端,由所述第一用户客户端采集天空中的实景图像信息,确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体,并在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息。
  13. 一种提供交互对象信息的方法,其特征在于,包括:
    第一用户客户端接收天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
    确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体;
    通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及交互对象信息。
  14. 一种提供交互对象信息的方法,其特征在于,包括:
    服务端生成天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
    将所述对应关系信息提供给第一用户客户端,由所述第一用户客户端确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体,通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及交互对象信息。
  15. 一种数据对象信息发布方法,其特征在于,包括:
    服务端接收第二用户客户端提交的参加预置活动的数据对象信息;
    提供候选天体信息列表,并接收天体信息选择结果;
    建立并保存被选中的天体信息与所述数据对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息,所述对应关系用于:根据第一用户的视线焦点区域范围确定对应的目标天体,并在采集到的实景图像上,或者通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及数据对象信息。
  16. 根据权利要求15所述的方法,其特征在于,还包括:
    将所述被选中的天体信息从所述候选天体信息列表中删除。
  17. 根据权利要求15所述的方法,其特征在于,还包括:
    根据所述预置活动的有效期信息,确定所述天体信息与所述数据对象信息之间的对应关系的有效期;
    在所述有效期结束时,删除所述对应关系,并将对应的天体信息添加到所述候选天体信息列表中。
  18. 一种数据对象信息发布方法,其特征在于,包括:
    第二用户客户端确定参加预置活动的数据对象信息,并提交到服务端;
    接收所述服务端提供的候选天体信息列表;
    确定天体信息选择结果,并提交到所述服务端,由所述服务端建立并保存被选中的天体信息与所述数据对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息,所述对应关系用于:根据第一用户的视线焦点区域范围确定对应的目标天体,并在采集到的实景图像上,或者通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及数据对象信息。
  19. 一种页面,其特征在于,所述页面中包括目标天体的天体展示信息以及对应的交互对象信息,所述目标天体根据用户的视线焦点范围,以及各天体坐标随时间变化的信息而确定。
  20. 根据权利要求19所述的页面,其特征在于,所述天体展示信息,包括目标天体的三维模型或图片信息。
  21. 一种提供交互对象信息的装置,其特征在于,应用于第一用户客户端,包括:
    第一对应关系接收单元,用于接收天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
    图像采集单元,用于采集天空中的实景图像信息;
    第一目标天体确定单元,用于确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体;
    第一天体信息提供单元,用于在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息。
  22. 一种提供交互对象信息的装置,其特征在于,应用于服务端,包括:
    第一对应关系生成单元,用于生成天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
    第一对应关系提供单元,用于将所述对应关系信息提供给第一用户客户端,由所述第一用户客户端采集天空中的实景图像信息,确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体,并在所述采集到的实景图像上提供所述目标天体对应的天体展示信息以及交互对象信息。
  23. 一种提供交互对象信息的装置,其特征在于,应用于第一用户客户端,包括:
    第二对应关系接收单元,用于接收天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
    第二目标天体确定单元,用于确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的匹配运算,确定对应的目标天体;
    第二天体信息提供单元,用于通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及交互对象信息。
  24. 一种提供交互对象信息的装置,其特征在于,应用于服务端,包括:
    第二对应关系生成单元,用于生成天体信息与交互对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息;
    第二对应关系提供单元,用于将所述对应关系信息提供给第一用户客户端,由所述第一用户客户端确定用户的视线焦点区域范围,并在该区域范围内进行时间以及坐标的 匹配运算,确定对应的目标天体,通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及交互对象信息。
  25. 一种数据对象信息发布装置,其特征在于,应用于服务端,包括:
    数据对象信息接收单元,用于接收第二用户客户端提交的参加预置活动的数据对象信息;
    天体选择结果接收单元,用于提供候选天体信息列表,并接收天体信息选择结果;
    对应关系建立单元,用于建立并保存被选中的天体信息与所述数据对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息,所述对应关系用于:根据第一用户的视线焦点区域范围确定对应的目标天体,并在采集到的实景图像上,或者通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及数据对象信息。
  26. 一种数据对象信息发布装置,其特征在于,应用于第二用户客户端,包括:
    数据对象信息提交单元,用于确定参加预置活动的数据对象信息,并提交到服务端;
    天体信息列表提供单元,用于接收所述服务端提供的候选天体信息列表;
    天体信息选择结果提交单元,用于确定天体信息选择结果,并提交到所述服务端,由所述服务端建立并保存被选中的天体信息与所述数据对象信息之间的对应关系,所述天体信息包括天体的坐标随时间变化信息以及天体展示信息,所述对应关系用于:根据第一用户的视线焦点区域范围确定对应的目标天体,并在采集到的实景图像上,或者通过虚拟现实设备,提供所述目标天体对应的天体展示信息以及数据对象信息。
PCT/CN2018/075374 2017-02-17 2018-02-06 提供交互对象信息的方法及装置 WO2018149321A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201710087497.9 2017-02-17
CN201710087497.9A CN108459700A (zh) 2017-02-17 2017-02-17 提供交互对象信息的方法及装置

Publications (1)

Publication Number Publication Date
WO2018149321A1 true WO2018149321A1 (zh) 2018-08-23

Family

ID=63169711

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/075374 WO2018149321A1 (zh) 2017-02-17 2018-02-06 提供交互对象信息的方法及装置

Country Status (2)

Country Link
CN (1) CN108459700A (zh)
WO (1) WO2018149321A1 (zh)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4221182A4 (en) * 2020-10-21 2024-03-27 Vivo Mobile Communication Co., Ltd. PHOTOGRAPHY METHOD AND APPARATUS, AND ELECTRONIC DEVICE

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110047115B (zh) * 2019-03-26 2021-11-16 珠海格力电器股份有限公司 星辰图像拍摄方法、装置、计算机设备和存储介质
CN111163264B (zh) * 2019-12-31 2022-02-01 维沃移动通信有限公司 一种信息显示方法及电子设备
CN111093033B (zh) * 2019-12-31 2021-08-06 维沃移动通信有限公司 一种信息处理方法及设备

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102970404A (zh) * 2012-11-26 2013-03-13 上海量明科技发展有限公司 星空联系人对象的实现方法、客户端及***
CN104092948A (zh) * 2014-07-29 2014-10-08 小米科技有限责任公司 处理图像的方法及装置
CN104321681A (zh) * 2012-06-29 2015-01-28 英特尔公司 使用透明显示装置的增强的信息递送
CN105892062A (zh) * 2016-06-24 2016-08-24 北京邮电大学 天文观测设备
CN106371613A (zh) * 2016-10-12 2017-02-01 大连文森特软件科技有限公司 协同可视化编程的vr星空制作与观测***

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6388657B1 (en) * 1997-12-31 2002-05-14 Anthony James Francis Natoli Virtual reality keyboard system and method

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104321681A (zh) * 2012-06-29 2015-01-28 英特尔公司 使用透明显示装置的增强的信息递送
CN102970404A (zh) * 2012-11-26 2013-03-13 上海量明科技发展有限公司 星空联系人对象的实现方法、客户端及***
CN104092948A (zh) * 2014-07-29 2014-10-08 小米科技有限责任公司 处理图像的方法及装置
CN105892062A (zh) * 2016-06-24 2016-08-24 北京邮电大学 天文观测设备
CN106371613A (zh) * 2016-10-12 2017-02-01 大连文森特软件科技有限公司 协同可视化编程的vr星空制作与观测***

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4221182A4 (en) * 2020-10-21 2024-03-27 Vivo Mobile Communication Co., Ltd. PHOTOGRAPHY METHOD AND APPARATUS, AND ELECTRONIC DEVICE

Also Published As

Publication number Publication date
CN108459700A (zh) 2018-08-28

Similar Documents

Publication Publication Date Title
Chen et al. An overview of augmented reality technology
CN108446310B (zh) 虚拟街景地图生成方法、装置和客户端设备
WO2018149321A1 (zh) 提供交互对象信息的方法及装置
US20180174369A1 (en) Method, apparatus and system for triggering interactive operation with virtual object
CN108144294B (zh) 互动操作实现方法、装置及客户端设备
US20080033641A1 (en) Method of generating a three-dimensional interactive tour of a geographic location
US20020081020A1 (en) Infromation providing server, client, information providing system processing method, recording medium recording a program, and advertisement providing method
WO2017124993A1 (zh) 信息的显示方法和装置
CN110379010A (zh) 基于视频融合的三维地理信息可视化方法及***
US20140015858A1 (en) Augmented reality system
CN112330819B (zh) 基于虚拟物品的交互方法、装置及存储介质
US20180239514A1 (en) Interactive 3d map with vibrant street view
CN108352086A (zh) 确定并呈现太阳能通量信息
CN108521587A (zh) 短视频处理方法、装置及移动终端
Hayashi et al. Automatic generation of personal virtual museum
KR102022902B1 (ko) 가상현실 콘텐츠 생성방법 및 프로그램
CN112381955A (zh) 一种基于三维空间的活动与展览展示***
CN108958945A (zh) 一种基于云计算环境下的ar教学资源处理方法及***
US20240212031A1 (en) Information flow advertisement-based interaction method and apparatus, device, and medium
JP2023075879A (ja) 情報処理システム、情報処理方法、情報処理プログラム
JP2016200884A (ja) 観光誘客システム、観光誘客方法、観光誘客用データベース、情報処理装置、通信端末装置およびそれらの制御方法と制御プログラム
JP7245890B1 (ja) 情報処理システム、情報処理方法、情報処理プログラム
De Luca et al. A user experience analysis for a mobile Mixed Reality application for cultural heritage
CN111125806A (zh) 房屋装修信息处理方法、装置及***
CN114511671A (zh) 展品展示方法、导览方法、装置、电子设备与存储介质

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 18754004

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 18754004

Country of ref document: EP

Kind code of ref document: A1