CN111125806A - House decoration information processing method, device and system - Google Patents

House decoration information processing method, device and system Download PDF

Info

Publication number
CN111125806A
CN111125806A CN201811192302.8A CN201811192302A CN111125806A CN 111125806 A CN111125806 A CN 111125806A CN 201811192302 A CN201811192302 A CN 201811192302A CN 111125806 A CN111125806 A CN 111125806A
Authority
CN
China
Prior art keywords
house
model
commodity object
information
client
Prior art date
Legal status (The legal status 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 status listed.)
Pending
Application number
CN201811192302.8A
Other languages
Chinese (zh)
Inventor
胡浪宇
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Alibaba Group Holding Ltd
Original Assignee
Alibaba Group Holding Ltd
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 Alibaba Group Holding Ltd filed Critical Alibaba Group Holding Ltd
Priority to CN201811192302.8A priority Critical patent/CN111125806A/en
Publication of CN111125806A publication Critical patent/CN111125806A/en
Pending legal-status Critical Current

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
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • G06F3/04842Selection of displayed objects or displayed text elements

Abstract

The embodiment of the application discloses a house decoration information processing method, a device and a system, wherein the system comprises: the server is used for providing a 3D commodity object model library related to house decoration; the first client side is used for providing a 3D house model of a house to be decorated, determining a selected 3D commodity object model, and matching the selected 3D commodity object model into the 3D house model for displaying. Through the embodiment of the application, the first user can check the specific effect of the specific sample plate applied to the house to be decorated, and then the user is helped to make a shopping decision.

Description

House decoration information processing method, device and system
Technical Field
The application relates to the technical field of home decoration household data object information processing, in particular to a house decoration information processing method, device and system.
Background
The house home decoration industry has a longer industrial chain: consumers, materials, designs, construction, furniture, etc. are all part of the industry chain, each interdependent. The traditional home decoration industry cannot get around pain points in home decoration, namely information asymmetry, and the internet has the greatest advantage of solving the problem of information asymmetry in the traditional industry, and can gradually establish an industry credit system to make the industry credit system more transparent, quicker and more convenient.
At present, various home decoration household internet products appear on the market, the respective operation modes are different, and the basic user requirements of the products are met by the products, so that the real difference is reflected in the expected type requirements and the exciting type requirements. However, for decoration, a user cares about not a mode but how to trust and guarantee, and the same home decoration household goods can bring a good decoration effect in one house type, but not necessarily in another house type, when a consumer selects a decoration style or goods, more consideration is given to whether the product is suitable for the house type, what effect can be obtained when the product is used in a room, and the like, which need to be slowly known from business links of each other. Therefore, the platform needs to deeply dig the expected function of the user's mind and the exciting function of the user from the transaction link, and the user can be effectively promoted to achieve the transaction and improve the user experience no matter the decoration effect or the commodity if the user can feel the ' what you see is what you get ' effect.
Therefore, how to provide the effect of "what you see is what you get" for the home decoration household commodity object becomes a technical problem to be solved by the technical personnel in the field.
Disclosure of Invention
The application provides a house decoration information processing method, a house decoration information processing device and a house decoration information processing system, so that a first user can check specific effects of specific sample plates when the sample plates are applied to a house to be decorated, and the user is helped to make a shopping decision.
The application provides the following scheme:
a house-finishing information processing system, comprising:
the server is used for providing a 3D commodity object model library related to house decoration;
the first client side is used for providing a 3D house model of a house to be decorated, determining a selected 3D commodity object model, and matching the selected 3D commodity object model into the 3D house model for displaying.
A house decoration information processing method comprises the following steps:
providing a 3D house model of a house to be decorated;
determining a selected 3D commodity object model related to house decoration;
and matching the selected 3D commodity object model to the 3D house model for displaying.
A house decoration information processing method comprises the following steps:
providing a 3D commodity object model information base related to house decoration;
and returning the 3D commodity object model information to the first client according to an access request of the first client, so that the first client provides a 3D house model of a house to be decorated, determines the selected 3D commodity object model, and matches the selected 3D commodity object model to the 3D house model for display.
A house finishing information processing apparatus comprising:
a house model providing unit for providing a 3D house model of a house to be decorated;
a commodity object model determining unit for determining the selected 3D commodity object model related to the house decoration;
and the matching display unit is used for matching the selected 3D commodity object model to the 3D house model for display.
A house finishing information processing apparatus comprising:
the system comprises an information providing unit, a display unit and a display unit, wherein the information providing unit is used for providing a 3D commodity object model information base related to house decoration;
and the information returning unit is used for returning the 3D commodity object model information to the first client according to the access request of the first client, so that the first client provides a 3D house model of a house to be decorated, determines a selected 3D commodity object model, and matches the selected 3D commodity object model into the 3D house model for display.
An electronic device, comprising:
one or more processors; and
a memory associated with the one or more processors for storing program instructions that, when read and executed by the one or more processors, perform operations comprising:
providing a 3D house model of a house to be decorated;
determining a selected 3D commodity object model related to house decoration;
and matching the selected 3D commodity object model to the 3D house model for displaying.
According to the specific embodiments provided herein, the present application discloses the following technical effects:
in the embodiment of the application, a plurality of selectable 3D commodity object models are provided through a server, the 3D house model of the house to be decorated is provided for a user through a first client, and the 3D commodity object model selected by the user can be matched into the 3D house model for display, so that the user can visually observe the actual effect of the specific commodity object when the commodity object is matched and used in the house to be decorated actually, the user can obtain the experience of 'what you see is what you get', and the user is helped to make a shopping decision.
In addition, during specific implementation, the first client can also provide a 3D roaming type multi-view browsing function, so that a user can better know a specific matching effect from multiple views. And various multimedia information can be displayed in a gathering way on the space dimension of the 3D house model, so that a user can obtain richer and more detailed information. Furthermore, a marking layer can be provided to realize the interaction with the 3D commodity object model. Functional layers may also be provided to perform further operations, including viewing a house chart, viewing a quotation, listing of merchandise objects, and so forth.
In a preferred embodiment, a model between sample boards and specific house type information may also be provided, a 3D house model of a house type to be specifically decorated may be created for the first user, and the model between sample boards selected by the user is migrated to the 3D house model of the user, so that the first user can view a specific effect when the specific sample boards are applied to the house of the first user, and further help the user make a shopping decision.
Of course, it is not necessary for any product to achieve all of the above-described advantages at the same time for the practice of the present application.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings needed to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
FIG. 1 is a schematic diagram of a system provided by an embodiment of the present application;
FIG. 2 is a schematic diagram illustrating an effect after migration according to an embodiment of the present application;
FIG. 3 is a schematic representation of a marking and functional layers provided by embodiments of the present application;
FIG. 4-1 is a schematic diagram of house type information provided by an embodiment of the present application;
fig. 4-2 is a schematic diagram of commodity object list information provided in the embodiment of the present application;
4-3 are schematic diagrams of quotations provided by embodiments of the present application;
FIG. 5 is a schematic interface hierarchy diagram of a first client according to an embodiment of the present disclosure;
fig. 6 is a flowchart of a method at a first client side according to an embodiment of the present application;
FIG. 7 is a flow chart of a server-side method provided by an embodiment of the present application;
fig. 8 is a schematic diagram of a first client-side device provided in an embodiment of the present application;
FIG. 9 is a schematic diagram of a server-side apparatus provided by an embodiment of the present application;
fig. 10 is a schematic diagram of an electronic device provided in an embodiment of the present application.
Detailed Description
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all of the embodiments. All other embodiments that can be derived from the embodiments given herein by a person of ordinary skill in the art are intended to be within the scope of the present disclosure.
In the embodiment of the application, in order to provide a 'what you see is what you get' experience for a user, a corresponding solution is provided. In this scheme, first, a plurality of 3D commodity object models may be provided, and such 3D commodity object models may be completely virtual models or may be 3D commodity object models created from real object simulations of commodity objects actually on sale. In addition, a 3D house model can be created according to information such as the house type of a house to be decorated, candidate 3D commodity object information can be provided for a user through a user interface, the user can select the 3D commodity object information from the candidate 3D commodity object information, and finally the 3D commodity object model selected by the user can be matched into a specific 3D house model to be displayed. Therefore, in the process of selecting the 3D commodity object model, the user can directly check the effect of the specific commodity object when the commodity object is used in the house to be decorated, and the shopping decision of the user can be helped.
In particular implementation, from the system architecture, a particular system (which may be a system of a network sales platform, etc.) may include at least a server and a first client, where the first client may specifically be a client provided for use by a first user (a consumer user, a buyer user, etc.). The server is mainly used for providing databases such as various 3D commodity object models. The first client is used for displaying the front end, including providing a 3D house model of a house to be decorated, and matching the 3D commodity object model selected by the user into the 3D house model for displaying, so that the user can browse. The first client may be specifically integrated in an existing application client (App, for example, hand panning, tianmao, etc.), and at this time, the specific target page may be an H5 page, and of course, since the functions of the mobile terminal device such as a mobile phone are limited, the specific 3D effect may be implemented in a panorama +3D manner. In the above manner, a specific application scenario may be that when a first user browses commodity object information related to home decoration home furnishing and the like through clients such as skatecat and hand panning, a corresponding entrance may be provided for the first user, or when the first user shops for an off-line physical store, a code scanning manner may be performed on a related graphic code and the like provided for the physical store through clients such as hand panning and skatecat, so as to enter a related page of the embodiment of the present application, and further, through selection of a house type and selection of sample boards, 3D browsing of a specific decoration scheme is implemented, and a specific effect of the specific decoration scheme when the specific decoration scheme is used in a home to be decorated of the first user is obtained. Alternatively, a separate client program may be provided in conjunction with an associated game level engine, such as Unity or Unreal, to enable a full 3D experience.
Specific implementations are described in detail below.
Example one
The first embodiment provides a house decoration information processing system, and referring to fig. 1, the system may specifically include:
a server 101 for providing a 3D commodity object model library related to house decoration;
the first client 102 is configured to provide a 3D house model of a house to be decorated, determine a selected 3D commodity object model, and match the selected 3D commodity object model to the 3D house model for display.
The 3D commodity object model library provided by the server may include a plurality of 3D commodity object models, and in the specific implementation, the 3D commodity object models may be generated completely virtually, or may be obtained for better implementation, and may also be created according to appearance characteristics of commodity object real objects actually sold, so as to support operations such as directly initiating purchases in a page. The specific 3D commodity object model may be designed by a user such as a designer at the server side, or in another implementation, may be created by a second user (a merchant user, a seller user, or the like) according to appearance characteristics of an actual commodity object and submitted to the server. In this case, the server may provide the data structure standard, and the second user may generate the 3D model corresponding to the specific commodity object according to the data structure standard and publish the 3D model through the system server, so that the server may generate the model library according to the 3D model published by the second user.
The first client can provide various access entries for using the functions provided by the embodiment of the application, for example, in the case of being implemented in a client of a network sales system, the first access entry of the target page can be provided in a search result interface of the decoration type commodity object. That is, assuming that a user of a certain demander initiates a search through a search box of a first client, and a keyword is "decoration design", or "smart home", etc., it can be proved that the user of the demander has a need to purchase or know a decoration-type related commodity object, at this time, an access entry of a related page in the embodiment of the present application can be provided for the user in a search result interface, and the user is guided to enter a related function page in the embodiment of the present application through the access entry to obtain "what you see is what you get" information related to the house decoration design.
In addition, a second access entrance of the target page can be provided in the vertical channel interface of the decoration type commodity object in the first client. Similar to the way of providing an access entry in a search result page, the method is generally required in the aspect that a user at a demand side accesses a vertical channel page such as decoration design, smart home and the like, so that the user is guided at the moment, and the conversion rate of the page can be improved.
In addition, there is also a case where the second user owns the offline physical store while publishing the 3D commodity object model online, and in this case, if the first user still wants to access the online platform resource of the supplier through the first client after entering the physical store, the third access portal (for example, a two-dimensional code including online resource address information) provided by the physical store may be scanned to initiate access by using the scanning function of the first client.
After receiving a specific access request, the first client may first provide a 3D house model of the house to be decorated, and determine a selected 3D commodity object model. Specifically, when providing a 3D house model of a house to be decorated, there may be a plurality of ways, for example, in one way, if a user submits his/her house pattern information in the system in advance, the 3D house model may be created directly according to the house pattern of the user. Alternatively, if a 3D house model is created in advance for the user and saved, the 3D house model may be opened directly. Or, if the function is used for the first time, or a new house to be decorated needs to be provided, a corresponding entrance may be provided in the embodiment of the present application, so that a user may select a house type of a project to be decorated, and a specific 3D house model is created accordingly.
In a specific implementation, the scheme may further provide user with selectable house type information (for example, statistics may be performed on the hot house types in a plurality of hot cells in advance, and a multi-level index is established according to the city name, the cell name, and the like for the user to query), when the first user needs to obtain information related to decoration, the first user may first select the house type corresponding to the house to be decorated, for example, select the city where the first user is located, then select the cell where the first user is located, then select the house type corresponding to the house from the house types of the cell, and the like. The first client may then create a 3D house model based on the selected house type.
The house type information may specifically refer to a house type related to a house such as an actual house, a conference room, an office, and a working room of the first user, and in the specific implementation, information of various common house types may be collected through field investigation or acquisition from a developer, and the like. For example, for the house type information of the house type, information of hot house types and the like in a plurality of cells can be collected in advance, and a multi-level index of cities, regions, cells and the like can be established. Therefore, when a first user accesses a related page through the first client, the first client can provide the first user with an entrance for selecting a specific user type, and the first user can acquire the main user type in the cell through the city, the district, the cell and the like where the first user is located and then select the user type information of the house of the first user.
There are various ways to determine the selected 3D commodity object model. For example, in one mode, various 3D commodity object models in a model library provided by a server may be directly displayed as candidates, and a first user may view such 3D commodity object models through a first client and select a favorite 3D commodity object model from the 3D commodity object models.
However, on the one hand, since the number of 3D commodity object models in the model library may be very large, the first user may have a problem of low efficiency in selecting one by one. On the other hand, as house decoration is a system project, from the selection of hard materials, color matching, the selection of soft household products, position layout and the like, a plurality of professional problems are involved. If a first user (e.g., a consumer user, a buyer user, etc.) is allowed to pick and choose a decoration-related merchandise object by himself, although a high degree of freedom is provided to the user, most users may feel "hands-free" when faced with a large number of optional decoration products due to limitations of professional thresholds. Moreover, what effect can be obtained when a plurality of commodity objects are matched for use can only be imagined by the user, and visual feeling cannot be obtained.
Therefore, in order to better provide the user with the "what you see is what you get" decoration scheme exhibition effect, in the preferred embodiment of the present application, the model between the sample boards can also be provided in advance according to the 3D commodity object models. The model between the sample boards may be designed by a professional designer in units of rooms, for example, the model includes sample boards corresponding to a living room, sample boards corresponding to a kitchen, sample boards corresponding to a bedroom, and the like. In particular, the system may provide a number of 3D room models that may be independent of a particular household type, with room type, area, etc. information, which may include, for example, a 20-level living room, a 30-level living room, a 15-level bedroom, etc. In addition, a 3D commodity object model library (specifically, the commodity object model may be generated and published by a second user such as a merchant user using data structure criteria provided by a server) may also be provided, and a designer may select a specific 3D commodity object from the model library, and generate a model between sample plates by matching, combining, arranging, and associating with one of the 3D room models. In this way, a plurality of different styles of inter-sample models may be generated, which may be selected by the first user.
In this way, the first client may further provide selectable inter-sample model information, that is, provide a candidate 3D commodity object group in units of inter-sample, and the first user may realize batch selection of 3D commodity objects associated with the inter-sample model only by selecting an inter-sample style in which the first user is interested. Specifically, the system may also screen the selectable template models according to the details of the rooms contained in the specific room type. For example, if the area of a living room in a room to be decorated is 20, when providing a model between sample boards, a model between sample boards in the living room of about 20 may be provided as much as possible, and so on. After a particular template model is selected, the system may match the 3D commodity objects contained in the template model to the 3D house model. During specific implementation, one-click migration can be further achieved, that is, batch migration of a plurality of 3D commodity objects in the model between the sample plates can be achieved only by selecting the specific model between the sample plates, and a user does not need to select one by one. In this way, the first user can browse the specific situation between the selected sample boards in the 3D house model to determine whether each configuration between the sample boards is suitable for the user type. That is to say, the first user may select a specific commodity object piece by piece, only need to select a specific decoration scheme by taking the sample plates as units, and may migrate the model scheme between the sample plates to the 3D house model of the user for display, so that the user may be helped to determine the decoration scheme more efficiently, and the experience of the first user is improved.
In this case, the first client may provide an operation entry for selecting a model between the sample plates, in addition to an operation entry for selecting a specific house type. The number of the model between the sample boards may be many, and the rooms with different functions and areas may correspond to different model between the sample boards, and specifically, when the model between the sample boards is migrated to a specific house, the actual area of each room may be considered, and specifically, when selecting, the model between the sample boards with the same function and the similar area may be selected for migration. For example, a house type of a first user corresponds to a house, which includes a living room, two bedrooms, a kitchen, two toilets, and a restaurant, and may select a corresponding model between sample plates for each room, where the model between sample plates for each room may be selected according to their respective area sizes. For example, if the area of the living room in the house of a first user is 20, a selection can be made from the model between the living room sample boards of 20, and so on. In specific implementation, in order to facilitate selection by a user, after the user determines specific house type information, preliminary screening may be performed according to the function and area information of each room and the function and area information corresponding to each inter-sample model, and the inter-sample model with the matched function and area may be provided as a candidate for the first user, so as to avoid the first user selecting an inappropriate inter-sample model.
In specific implementation, after a specific house type and a model between sample plates are selected, a 3D house model is created, and the model between the sample plates is transferred to the specific 3D house model. For example, in a specific example, the migrated effect may be as shown in fig. 2, wherein a frame of the 3D house model may be created according to a user type specifically selected by the first user, and then a specific migration operation is performed according to a template model specifically selected for each room, so that each room exhibits respective decoration effects, including collocation, layout, and the like of various household products. Of course, in the specific implementation, the model between the sample boards can be selected according to part of rooms in the house, and the specific effect can be checked. For example, if a user wants to decorate only his/her living room, the user may select only the model between the sample boards corresponding to the living room, and migrate the model to view the decoration effect between the sample boards in the living room in the 3D house model.
Through the establishment of the 3D house model and the migration of the model between the sample plates, the first user can check the decoration effect of the specific sample plates in the room of the first user through mobile terminal equipment such as a mobile phone of the first user, so that the first user can judge whether the decoration style of the specific selected sample plates is suitable for the room of the first user more visually, and the like, and the first user is helped to make a shopping decision.
In addition, in a preferred embodiment, the first client may also provide 3D roaming multi-view browsing in the indoor scene of the 3D house model, so that the user may browse more fully from a variety of different perspectives. In particular, in order to implement smoother image transition and enable a user to obtain a 'see-while-go' experience, the multi-view browsing may be implemented in a 'panorama + 3D' manner. Specifically, after the 3D house model is created and migration between the sample boards is realized, a plurality of virtual camera point locations can be arbitrarily selected in the scene, and then, the panorama of the model between the sample boards and the 3D house model are superimposed on each virtual camera point location, so that 3D roaming-type multi-view browsing in the indoor scene is provided. That is, when one of the virtual camera points stays, the virtual camera point may be used as a viewing angle to perform panoramic photographing on the model between the sample boards, and the panoramic image is "pasted" on the inner surface of the 3D house model, and the other virtual camera points are also processed similarly, so that each virtual camera point looks like to obtain the effect of presenting the selected model between the sample boards at different angles in the room. In addition, the mode of "panorama + 3D" is also more suitable for being implemented in a page in a format such as H5, for example, a specific 3D scene and a related multi-view browsing effect can be presented by directly relying on a client such as "skatecat" or "hand panning" installed in a mobile terminal device. Of course, in other ways, the related visual effect can also be realized in a full 3D way, and in this case, it is usually necessary to realize a separate APP and use a mobile end game engine, such as Unity or unregeal.
In addition to enabling multi-view browsing of the 3D house model from within the scene, in particular implementations, the first client may also be configured to provide 3D roaming multi-view browsing of the 3D house model house body. That is, the 3D house model can be viewed from the outside of the house body in multiple perspectives, creating a "bird's eye view" visual effect.
In addition, the first client may also enable aggregation of preset multimedia information in the spatial dimension of the 3D house model. The multimedia information may specifically include text, pictures, videos, augmented reality, 3D information, live broadcasts, and the like, and the multimedia information may be information related to specific commodity objects in the currently displayed 3D house model or the model between the sample boards, and the like, for example, detailed introduction information about a certain commodity object, including introduction of text, pictures, or videos, and the like. In a specific implementation, the multimedia information may be provided based on each 3D commodity object model displayed in the 3D house model. For example, the plurality of 3D commodity object models may be provided with label information, respectively, so that the 3D commodity object models are in an interactive state, and presentation of the multimedia information is triggered by the label information. For example, as shown in fig. 3, when browsing the 3D commodity object of "three persons sofa" in the 3D house model, interactive mark information may be provided for the 3D commodity object, and the specific presentation manner of the mark information may be multiple, for example, in one manner, a "circle" mark pattern as shown at 301 in fig. 3 may be provided, and in addition, a normal line may be drawn from the "circle" to the specific 3D commodity object, so as to better illustrate that the "circle" is used for marking the 3D commodity object. Or, in other modes, the marking can be performed by a mode of a circumscribed rectangle frame of the 3D commodity object, and the like. By means of the marking information, the specific 3D commodity object is made to be in an interactive state, so that the first user can obtain more detailed information including prices of the specific commodity objects and the like through the marking information in the process of browsing the 3D house model and the 3D commodity object model.
In addition, the mark information can be used to trigger a replacement operation for a corresponding commodity object, that is, after the 3D commodity object model is matched into the 3D house model, if a user finds that a specific commodity object may appear as being uncoordinated as a whole or is not satisfied with the user himself/herself during browsing, the user can directly perform operations such as clicking on the mark information corresponding to the commodity object to trigger the replacement operation for the commodity object, and accordingly, the first client submits related information to the server, the server returns information of other commodity objects of the same kind as the commodity object, the first client displays the information, from which the first user can select, and the selected commodity object can be replaced into the specific 3D house model.
In addition to providing the display effect after the specific 3D commodity object model is matched to the 3D house model of the house to be decorated, as shown at 302 in fig. 3, the first client may further provide a user interface functional layer, where the functional layer includes a plurality of operation options for implementing interactive operation. For example, the operation options may specifically include a first operation option for viewing a house type diagram, and in this case, as shown in fig. 4-1, the first client is further configured to provide the information of the selected house type diagram after receiving an interactive operation request through the first operation option.
Or, the operation options may further include a second operation option for viewing the commodity object list information; at this time, as shown in fig. 4-2, the first client may be further configured to provide list information of currently displayed commodity objects in the 3D house model of the house to be finished after receiving the interactive operation request through the second operation option. Specifically, when providing the commodity object list information, the commodity object list information may be provided in units of rooms, for example, in fig. 4-2, list information of each commodity object included in "living room" is displayed, and commodity object list information in other rooms such as kitchen and toilet may be displayed. Of course, in addition to displaying a specific list of commodity objects, an operation option for batch purchase of the commodity objects in the list may be provided, a user may directly initiate a purchase operation, and so on.
Or, the operation options may further include a third operation option for viewing quotation information; at this time, as shown in fig. 4-3, the first client may be further configured to provide quotation information of the decoration scheme currently shown in the 3D house model after receiving the interactive operation request through the third operation option. During specific implementation, the quotation information can be divided into two parts, namely a product and a construction service, and the quotation is provided respectively, wherein the construction service mainly comprises medium sand, cement, construction cost and the like, and the product mainly comprises household products, such as sofas, various electric appliances and the like.
Still further, the operational options may further include a fourth operational option for deriving a network social propagation object; at this time, the first client may be further configured to, after receiving the interactive operation request through the fourth operation option, generate a decoration scheme according to the 3D house model and the 3D commodity object model displayed therein, and generate a social networking propagation object according to the decoration scheme, so as to propagate through a specified social networking system. That is to say, the specifically generated 3D house model and the 3D commodity object model matched into the house may be saved as the decoration scheme of the first user, and at the same time, an object propagated to the outside may be provided for the first user, so that the first user can conveniently communicate with other users. For example, sharing self-care plans, etc. The social network propagation object may specifically include a multimedia file, and the multimedia file includes a video file for demonstrating the decoration process. For example, a video file may be generated according to the building process between the sample boards, and through the video file, the process that the 3D house is added to the room from a blank to a hardcover and then to a piece of furniture can be presented. Or, in another implementation, the social networking object may further include an access link corresponding to the decoration scheme. In specific implementation, after the first client generates the decoration scheme according to the result selected by the user, the first user can check the decoration scheme stored by the first user at any time through the option named as the word of "my digital home" and the like, and can modify and update the decoration scheme at any time, and in addition, the decoration scheme can be shared by other users.
In the above, the solution of the embodiment of the present application is introduced from the perspective of specific functional modules, and from the perspective of a user interface component provided by the first client, as shown in fig. 5, a specific processing system may include: a functional layer, a viewing layer, a scene layer, and a marking layer. Assuming that the product name of the system is 'digital home', the first client creates a 3D house model according to the house type selected by the user, and after the 3D commodity object model is matched into the 3D house model, a 'digital home' entity can be created for the first user. The "functional layer" may be mainly used to provide multiple functions through specific operation options, for example, an immersion mode may be selected for browsing, a view angle may be switched, a commodity object list may be viewed, information may be shared, intelligent migration of models between sample boards may be performed, and the like. The intelligent migration process may specifically include house type selection, case selection and migration, where a case refers to a model between sample boards, and specifically includes migration of a whole house, or migration of one or more rooms may also be performed, and the like. After the specific migration or matching is completed, a "digital home" entity can be created, the first user can browse on the basis of the entity, can perform operations such as replacement of commodity objects and the like, and can also store the "my digital home", and then can view the self-stored scheme at any time through the entrance.
The "viewing angle layer" is mainly used for realizing multi-view browsing of a digital home, and specifically may include panoramic roaming, 3D bird's-eye view, 3D overlooking and the like. When the panoramic roaming is carried out, a plurality of specific roaming modes such as a small map, a navigation map and the like can be provided.
The scene layer is mainly used for providing specific scene information including a panoramic image, a 3D commodity model, a 3D scene model and the like.
The marking layer is mainly used for supporting aggregation of various multimedia information in a spatial dimension, and specifically can include marking of a commodity object, and such marking can be used for performing operations such as detail viewing and commodity object replacement on information of the commodity object. In addition, the mark can be used for triggering the display of various multimedia information such as videos, pictures and texts and the like.
In summary, in the embodiment of the application, a plurality of selectable 3D commodity object models are provided through a server, a 3D house model of a house to be decorated is provided to a user through a first client, and the 3D commodity object model selected by the user can be matched with the 3D house model for display, so that the user can visually observe the actual effect of a specific commodity object when the commodity object is matched and used in the house to be decorated actually, the user can obtain experience of 'what you see is what you get', and the user is helped to make a shopping decision.
In addition, during specific implementation, the first client can also provide a 3D roaming type multi-view browsing function, so that a user can better know a specific matching effect from multiple views. And various multimedia information can be displayed in a gathering way on the space dimension of the 3D house model, so that a user can obtain richer and more detailed information. Furthermore, a marking layer can be provided to realize the interaction with the 3D commodity object model. Functional layers may also be provided to perform further operations, including viewing a house chart, viewing a quotation, listing of merchandise objects, and so forth.
In a preferred embodiment, a model between sample boards and specific house type information may also be provided, a 3D house model of a house type to be specifically decorated may be created for the first user, and the model between sample boards selected by the user is migrated to the 3D house model of the user, so that the first user can view a specific effect when the specific sample boards are applied to the house of the first user, and further help the user make a shopping decision.
Example two
The second embodiment corresponds to the second embodiment, and provides a house decoration information processing method from the perspective of the first client, and referring to fig. 6, the method may specifically include:
s601: providing a 3D house model of a house to be decorated;
s602: determining a selected 3D commodity object model;
s603: and matching the selected 3D commodity object model to the 3D house model for displaying.
In specific implementation, the selectable house type information provided by the server can be displayed, and then the 3D house model is created according to the selected house type of the house to be decorated.
Specifically, when the selected 3D commodity object model is determined, selectable 3D commodity object model information provided by the server may be displayed, and the selected 3D commodity object model is determined therefrom.
Or, selectable model information between sample plates provided by the server may also be displayed, where the model between sample plates includes a plurality of 3D commodity object models and layout mode information thereof in a preset 3D room model. And then, determining the selected commodity object model according to the selected target sample plate model. Wherein each 3D commodity object included in the target template model may be migrated to the 3D house model in one-click.
In particular implementations, the first client may also provide 3D roaming multi-view browsing in an indoor scene of the 3D house model. Specifically, a plurality of virtual camera point locations may be selected in the 3D house model, and then, a panorama of the model between the sample plates is superimposed on the inner surface of the 3D house model at each virtual camera point location, so as to provide 3D roaming-type multi-view browsing in an indoor scene.
In addition, the first client can also perform aggregation display on preset multimedia information in the spatial dimension of the 3D house model.
Specifically, the marking information may be provided for the plurality of 3D commodity object models, respectively, so that the 3D commodity object models are in an interactive state, and the presentation of the multimedia information is triggered by the marking information. In addition, the marking information is also used for triggering the replacement operation of the corresponding commodity object. The multimedia information comprises characters, pictures, videos, augmented reality, 3D information or live broadcast.
Moreover, the first client may further provide a user interface functional layer, where the functional layer includes a plurality of operation options for implementing an interactive operation. Specifically, the operation options comprise a first operation option for viewing a user type graph; at this time, the first client may further provide the floor plan information of the selected floor plan after receiving the interactive operation request through the first operation option. Or, the operation options include a second operation option for viewing commodity object list information, and at this time, the first client may further provide the commodity object list information currently displayed in the 3D house model after receiving an interactive operation request through the second operation option. Wherein the commodity object list information may be provided in units of respective rooms in the 3D house model. Or, the operation options include a third operation option for viewing quotation information, and at this time, the first client may further provide the currently displayed quotation information of the decoration scheme in the 3D house model of the house to be decorated after receiving the interactive operation request through the third operation option. Specifically, a hard-cover construction service type quotation and a commodity object type quotation can be provided respectively. In addition, the operation options include a fourth operation option for deriving the social network propagation object, and at this time, after receiving the interactive operation request through the fourth operation option, the first client may further generate a decoration scheme according to the 3D house model and the 3D commodity object model displayed therein, and generate the social network propagation object according to the decoration scheme, so as to perform propagation through the specified social network system. Wherein the social networking propagation object comprises a multimedia file comprising a video file for demonstrating finishing processes. Or, the network social propagation object may further include an access link corresponding to the target page.
EXAMPLE III
The third embodiment is also corresponding to the third embodiment, and the method for processing the house decoration information provided from the perspective of the server, referring to fig. 7, may specifically include:
s701: providing a 3D commodity object model information base related to house decoration;
s702: and returning the 3D commodity object model information to the first client according to an access request of the first client, so that the first client provides a 3D house model of a house to be decorated, determines the selected 3D commodity object model, and matches the selected 3D commodity object model to the 3D house model for display.
For the parts that are not described in detail in the second and third embodiments, reference may be made to the description in the first embodiment, and details are not repeated here.
Corresponding to the second embodiment, the embodiment of the present application further provides a house decoration information processing apparatus, and referring to fig. 8, the apparatus may specifically include:
a house model providing unit 801 for providing a 3D house model of a house to be finished;
a commodity object model determining unit 802 for determining a selected 3D commodity object model related to house decoration;
a matching and displaying unit 803, configured to match the selected 3D commodity object model to the 3D house model for displaying.
Wherein the house model providing unit may specifically be configured to: displaying the selectable house type information provided by the server; and establishing the 3D house model according to the selected house type of the house to be decorated.
The commodity object model determining unit may be specifically configured to display the selectable 3D commodity object model information related to house decoration provided by the server, and determine the selected 3D commodity object model therefrom.
Or, the commodity object model determining unit may be specifically configured to display selectable model information between sample plates provided by the server, where the model between sample plates includes a plurality of 3D commodity object models and layout mode information of the 3D commodity object models in a preset 3D room model; and determining the selected commodity object model according to the selected target sample plate model.
At this time, the matching display unit may be specifically configured to migrate each 3D commodity object included in the target template model to the 3D house model in one-click manner.
In a specific implementation, the apparatus may further include:
a tour unit to provide 3D tour multi-perspective browsing in an indoor scene of a 3D house model. Specifically, the roaming tour unit may be specifically configured to: and selecting a plurality of virtual camera point locations in the 3D house model, and then respectively overlaying a panoramic image of the model between the sample plates to the inner surface of the 3D house model at each virtual camera point location so as to provide 3D roaming type multi-view browsing in an indoor scene.
In addition, the apparatus may further include:
and the aggregation display unit is used for performing aggregation display on preset multimedia information on the space dimension of the 3D house model.
In particular, the polymeric display unit may be used in particular to: and respectively providing mark information for the plurality of 3D commodity object models to enable the 3D commodity object models to be in an interactive state, and triggering the display of the multimedia information through the mark information. In addition, the marking information is also used for triggering the replacement operation of the corresponding commodity object. The multimedia information comprises characters, pictures, videos, augmented reality, 3D information or live broadcast.
Furthermore, the apparatus may further include:
the functional layer providing unit is used for providing a user interface functional layer, and the functional layer comprises a plurality of operation options and is used for realizing interactive operation. Specifically, the operation options comprise a first operation option for viewing a user type graph; at this time, the functional layer providing unit may be specifically configured to provide the user type graph information of the selected user type after receiving the interactive operation request through the first operation option. Or, the operation options include a second operation option for viewing commodity object list information, and at this time, the functional layer providing unit may be specifically configured to provide the commodity object list information currently displayed in the 3D house model after receiving an interactive operation request through the second operation option. Or, the operation options include a third operation option for viewing quotation information, and at this time, the functional layer providing unit may be specifically configured to provide the currently displayed quotation information of the decoration scheme in the 3D house model after receiving the interactive operation request through the third operation option. In addition, the operation options include a fourth operation option for deriving a social network propagation object, and in this case, the functional layer providing unit may be specifically configured to, after receiving the interactive operation request through the fourth operation option, generate a decoration scheme according to the 3D house model and the 3D commodity object model displayed therein, and generate the social network propagation object according to the decoration scheme, so as to propagate through a specified social network system. Wherein the social networking propagation object comprises a multimedia file comprising a video file for demonstrating the finishing process. Or, the network social propagation object may further include an access link corresponding to the target page.
Corresponding to the embodiment, the embodiment of the present application further provides a house decoration information processing apparatus, and referring to fig. 9, the apparatus may specifically include:
an information providing unit 901 for providing a 3D commodity object model information base related to house decoration;
an information returning unit 902, configured to return the 3D commodity object model information to a first client according to an access request of the first client, so that the first client provides a 3D house model of a house to be decorated, determines a selected 3D commodity object model, and matches the selected 3D commodity object model to the 3D house model for display.
In addition, corresponding to the second embodiment, an embodiment of the present application further provides an electronic device, including:
one or more processors; and
a memory associated with the one or more processors for storing program instructions that, when read and executed by the one or more processors, perform operations comprising:
providing a 3D house model of a house to be decorated;
determining a selected 3D commodity object model related to house decoration;
and matching the selected 3D commodity object model to the 3D house model for displaying.
Where fig. 10 illustrates an architecture of an electronic device, for example, device 1000 may be a mobile phone, a computer, a digital broadcast terminal, a messaging device, a game console, a tablet device, a medical device, a fitness device, a personal digital assistant, an aircraft, and so forth.
Referring to fig. 10, device 1000 may include one or more of the following components: processing component 1002, memory 1004, power component 1006, multimedia component 1008, audio component 1010, input/output (I/O) interface 1012, sensor component 1014, and communications component 1016.
The processing component 1002 generally controls the overall operation of the device 1000, such as operations associated with display, telephone calls, data communications, camera operations, and recording operations. The processing element 1002 may include one or more processors 1020 to execute instructions to complete generating a traffic compression request when a preset condition is met in the video playing method provided in the technical scheme of the present disclosure, and sending the traffic compression request to the server, where the traffic compression request records information for triggering the server to acquire a target attention area, and the traffic compression request is used to request the server to preferentially ensure a bitrate of video content in the target attention area; and playing the video content corresponding to the code stream file according to the code stream file returned by the server, wherein the code stream file is all or part of the video file obtained by carrying out code rate compression processing on the video content outside the target attention area by the server according to the flow compression request. Further, processing component 1002 may include one or more modules that facilitate interaction between processing component 1002 and other components. For example, the processing component 1002 can include a multimedia module to facilitate interaction between the multimedia component 1008 and the processing component 1002.
The memory 1004 is configured to store various types of data to support operation at the device 1000. Examples of such data include instructions for any application or method operating on device 1000, contact data, phonebook data, messages, pictures, videos, and so forth. The memory 1004 may be implemented by any type or combination of volatile or non-volatile memory devices such as Static Random Access Memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic memory, flash memory, magnetic or optical disks.
The power supply component 1006 provides power to the various components of the device 1000. The power components 1006 may include a power management system, one or more power supplies, and other components associated with generating, managing, and distributing power for the device 1000.
The multimedia component 1008 includes a screen that provides an output interface between the device 1000 and a user. In some embodiments, the screen may include a Liquid Crystal Display (LCD) and a Touch Panel (TP). If the screen includes a touch panel, the screen may be implemented as a touch screen to receive an input signal from a user. The touch panel includes one or more touch sensors to sense touch, slide, and gestures on the touch panel. The touch sensor may not only sense the boundary of a touch or slide action, but also detect the duration and pressure associated with the touch or slide operation. In some embodiments, the multimedia component 1008 includes a front facing camera and/or a rear facing camera. The front camera and/or the rear camera may receive external multimedia data when the device 1000 is in an operating mode, such as a shooting mode or a video mode. Each front camera and rear camera may be a fixed optical lens system or have a focal length and optical zoom capability.
The audio component 1010 is configured to output and/or input audio signals. For example, the audio component 1010 may include a Microphone (MIC) configured to receive external audio signals when the device 1000 is in an operational mode, such as a call mode, a recording mode, and a voice recognition mode. The received audio signal may further be stored in the memory 1004 or transmitted via the communication component 1016. In some embodiments, audio component 1010 also includes a speaker for outputting audio signals.
I/O interface 1012 provides an interface between processing component 1002 and peripheral interface modules, which may be keyboards, click wheels, buttons, etc. These buttons may include, but are not limited to: a home button, a volume button, a start button, and a lock button.
The sensor assembly 1014 includes one or more sensors for providing status assessment of various aspects of the device 1000. For example, sensor assembly 1014 may detect the open/closed status of device 1000, the relative positioning of components, such as a display and keypad of device 1000, the change in position of device 1000 or a component of device 1000, the presence or absence of user contact with device 1000, the orientation or acceleration/deceleration of device 1000, and the change in temperature of device 1000. The sensor assembly 1014 may include a proximity sensor configured to detect the presence of a nearby object without any physical contact. The sensor assembly 1014 may also include a light sensor, such as a CMOS or CCD image sensor, for use in imaging applications. In some embodiments, the sensor assembly 1014 may also include an acceleration sensor, a gyroscope sensor, a magnetic sensor, a pressure sensor, or a temperature sensor.
Communications component 1016 is configured to facilitate communications between device 1000 and other devices in a wired or wireless manner. The device 1000 may access a wireless network based on a communication standard, such as WiFi, 2G or 3G, or a combination thereof. In an exemplary embodiment, the communication component 1016 receives a broadcast signal or broadcast associated information from an external broadcast management system via a broadcast channel. In an exemplary embodiment, the communications component 1016 further includes a Near Field Communication (NFC) module to facilitate short-range communications. For example, the NFC module may be implemented based on Radio Frequency Identification (RFID) technology, infrared data association (IrDA) technology, Ultra Wideband (UWB) technology, Bluetooth (BT) technology, and other technologies.
In an exemplary embodiment, the device 1000 may be implemented by one or more Application Specific Integrated Circuits (ASICs), Digital Signal Processors (DSPs), Digital Signal Processing Devices (DSPDs), Programmable Logic Devices (PLDs), Field Programmable Gate Arrays (FPGAs), controllers, micro-controllers, microprocessors or other electronic components for performing the above-described methods.
In an exemplary embodiment, a non-transitory computer-readable storage medium including instructions, for example, a memory 1004 including instructions, which is executable by a processor 1020 of the device 1000 to perform generating a traffic compression request when a preset condition is met in a video playing method provided in the technical solution of the present disclosure, and sending the traffic compression request to a server, where the traffic compression request records information for triggering the server to obtain a target attention area, and the traffic compression request is used to request the server to preferentially guarantee a bitrate of video content in the target attention area; and playing the video content corresponding to the code stream file according to the code stream file returned by the server, wherein the code stream file is obtained by performing code rate compression processing on the video content outside the target attention area by the server according to the flow compression request. For example, the non-transitory computer readable storage medium may be a ROM, a Random Access Memory (RAM), a CD-ROM, a magnetic tape, a floppy disk, an optical data storage device, and the like.
From the above description of the embodiments, it is clear to those skilled in the art that the present application can be implemented by software plus necessary general hardware platform. Based on such understanding, the technical solutions of the present application may be essentially or partially implemented in the form of a software product, which may be stored in a storage medium, such as a ROM/RAM, a magnetic disk, an optical disk, etc., and includes several instructions for enabling a computer device (which may be a personal computer, a server, or a network device, etc.) to execute the method according to the embodiments or some parts of the embodiments of the present application.
The embodiments in the present specification are described in a progressive manner, and the same and similar parts among the embodiments are referred to each other, and each embodiment focuses on the differences from the other embodiments. In particular, the system or system embodiments are substantially similar to the method embodiments and therefore are described in a relatively simple manner, and reference may be made to some of the descriptions of the method embodiments for related points. The above-described system and system embodiments are only illustrative, wherein the units described as separate parts may or may not be physically separate, and the parts displayed as units may or may not be physical units, may be located in one place, or may be distributed on a plurality of network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the solution of the present embodiment. One of ordinary skill in the art can understand and implement it without inventive effort.
The house decoration information processing method, the house decoration information processing device and the house decoration information processing system provided by the application are introduced in detail, specific examples are applied in the description to explain the principle and the implementation mode of the application, and the description of the embodiments is only used for helping to understand the method and the core idea of the application; meanwhile, for a person skilled in the art, according to the idea of the present application, the specific embodiments and the application range may be changed. In view of the above, the description should not be taken as limiting the application.

Claims (33)

1. A house finishing information processing system, comprising:
the server is used for providing a 3D commodity object model library related to house decoration;
the first client side is used for providing a 3D house model of a house to be decorated, determining a selected 3D commodity object model, and matching the selected 3D commodity object model into the 3D house model for displaying.
2. The system of claim 1,
the server is also used for providing optional house type information;
the first client is specifically used for displaying the selectable house type information provided by the server and creating the 3D house model according to the selected house type of the house to be decorated.
3. The system of claim 1,
the first client is specifically configured to display the selectable 3D commodity object model information provided by the server, and determine the selected 3D commodity object model.
4. The system of claim 1,
the server is further used for providing a model between the sample plates, and the model between the sample plates comprises a plurality of 3D commodity object models and layout mode information of the 3D commodity object models in a preset 3D room model;
the first client is specifically configured to display the selectable model information between the sample plates provided by the server, and determine the selected commodity object model according to the selected target model between the sample plates.
5. The system of claim 4,
the first client is specifically configured to migrate each 3D commodity object included in the target inter-sample model to the 3D house model in one-click manner.
6. The system of claim 1,
the first client is further configured to provide 3D roaming multi-view browsing in an indoor scene of the 3D house model.
7. The system of claim 1,
the first client is further used for providing 3D roaming type multi-view browsing of the 3D house model house body.
8. The system of claim 1,
the first client is further used for performing aggregation display on preset multimedia information on the space dimension of the 3D house model.
9. The system of claim 8,
the first client is specifically configured to provide marking information for the plurality of 3D commodity object models respectively, so that the 3D commodity object models are in an interactive state, and to trigger the presentation of the multimedia information through the marking information.
10. The system of claim 1,
the first client is further configured to provide a user interface functional layer, where the functional layer includes a plurality of operation options for implementing an interactive operation.
11. The system of any one of claims 1 to 10, further comprising:
the second client is used for creating a 3D commodity object model for the entity commodity object according to the data structure standard provided by the server and issuing the 3D commodity object model;
the server is further used for generating a model library according to the 3D commodity object model issued by the second client.
12. A house decoration information processing method is characterized by comprising the following steps:
providing a 3D house model of a house to be decorated;
determining a selected 3D commodity object model related to house decoration;
and matching the selected 3D commodity object model to the 3D house model for displaying.
13. The method of claim 12,
the 3D house model of house that provides treating fitment includes:
displaying the selectable house type information provided by the server;
and establishing the 3D house model according to the selected house type of the house to be decorated.
14. The method of claim 12,
the determining of the selected 3D commodity object model related to house decoration comprises the following steps:
and displaying the optional 3D commodity object model information related to house decoration provided by the server, and determining the selected 3D commodity object model.
15. The method of claim 12,
the determining of the selected 3D commodity object model related to house decoration comprises the following steps:
displaying selectable model information between sample plates provided by a server, wherein the model between the sample plates comprises a plurality of 3D commodity object models and layout mode information of the 3D commodity object models in a preset 3D room model;
and determining the selected commodity object model according to the selected target sample plate model.
16. The method of claim 15,
the matching of the selected 3D commodity object model to the 3D house model for display includes:
and migrating each 3D commodity object included in the target sample board model into the 3D house model in a one-click mode.
17. The method of claim 12, further comprising:
3D roaming multi-view browsing in an indoor scene of a 3D house model is provided.
18. The method of claim 17,
the 3D roaming-type multi-view browsing provided in an indoor scene of a 3D house model includes:
and selecting a plurality of virtual camera point locations in the 3D house model, and respectively overlaying a panoramic image of the model between the sample plates to the inner surface of the 3D house model on each virtual camera point location so as to provide 3D roaming type multi-view browsing in an indoor scene.
19. The method of claim 12, further comprising:
and performing aggregation display on preset multimedia information on the spatial dimension of the 3D house model.
20. The method of claim 19,
performing aggregation display on preset multimedia information on the spatial dimension of the 3D house model, wherein the aggregation display includes:
and respectively providing mark information for the plurality of 3D commodity object models to enable the 3D commodity object models to be in an interactive state, and triggering the display of the multimedia information through the mark information.
21. The method of claim 12, further comprising:
and providing a user interface functional layer, wherein the functional layer comprises a plurality of operation options and is used for realizing interactive operation.
22. The method of claim 21,
the operation options comprise a first operation option for viewing a user type graph;
the method further comprises the following steps:
and after receiving an interactive operation request through the first operation option, providing the information of the selected house type pattern.
23. The method of claim 21,
the operation options comprise a second operation option for viewing commodity object list information;
the method further comprises the following steps:
and after receiving an interactive operation request through the second operation option, providing list information of the current display commodity object in the 3D house model.
24. The method of claim 23,
the providing of the list information of the currently displayed commodity object in the 3D house model includes:
providing commodity object list information in units of respective rooms in the 3D house model.
25. The method of claim 21,
the operation options comprise a third operation option for viewing quotation information;
the method further comprises the following steps:
and after receiving an interactive operation request through the third operation option, providing the currently displayed decoration scheme quotation information in the 3D house model.
26. The method of claim 25,
the quotation information of the decoration scheme currently displayed in the 3D house model specifically comprises:
and respectively providing a hard-ware construction service type quotation and a commodity object type quotation.
27. The method of claim 21,
the operation options comprise a fourth operation option for deriving the network social propagation object;
the method further comprises the following steps:
and after receiving an interactive operation request through the fourth operation option, generating a decoration scheme according to the 3D house model and the 3D commodity object model displayed in the 3D house model, and generating a network social communication object according to the decoration scheme so as to communicate through a specified network social communication system.
28. The method of claim 27,
the network social communication object comprises a multimedia file comprising a video file for demonstrating the finishing process.
29. The method of claim 27,
the network social communication object comprises an access link corresponding to the target page.
30. A house decoration information processing method is characterized by comprising the following steps:
providing a 3D commodity object model information base related to house decoration;
and returning the 3D commodity object model information to the first client according to an access request of the first client, so that the first client provides a 3D house model of a house to be decorated, determines the selected 3D commodity object model, and matches the selected 3D commodity object model to the 3D house model for display.
31. A house finishing information processing apparatus, characterized by comprising:
a house model providing unit for providing a 3D house model of a house to be decorated;
a commodity object model determining unit for determining the selected 3D commodity object model related to the house decoration;
and the matching display unit is used for matching the selected 3D commodity object model to the 3D house model for display.
32. A house finishing information processing apparatus, characterized by comprising:
the system comprises an information providing unit, a display unit and a display unit, wherein the information providing unit is used for providing a 3D commodity object model information base related to house decoration;
and the information returning unit is used for returning the 3D commodity object model information to the first client according to the access request of the first client, so that the first client provides a 3D house model of a house to be decorated, determines a selected 3D commodity object model, and matches the selected 3D commodity object model into the 3D house model for display.
33. An electronic device, comprising:
one or more processors; and
a memory associated with the one or more processors for storing program instructions that, when read and executed by the one or more processors, perform operations comprising:
providing a 3D house model of a house to be decorated;
determining a selected 3D commodity object model related to house decoration;
and matching the selected 3D commodity object model to the 3D house model for displaying.
CN201811192302.8A 2018-10-12 2018-10-12 House decoration information processing method, device and system Pending CN111125806A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201811192302.8A CN111125806A (en) 2018-10-12 2018-10-12 House decoration information processing method, device and system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201811192302.8A CN111125806A (en) 2018-10-12 2018-10-12 House decoration information processing method, device and system

Publications (1)

Publication Number Publication Date
CN111125806A true CN111125806A (en) 2020-05-08

Family

ID=70483943

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201811192302.8A Pending CN111125806A (en) 2018-10-12 2018-10-12 House decoration information processing method, device and system

Country Status (1)

Country Link
CN (1) CN111125806A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112106052A (en) * 2020-07-22 2020-12-18 上海亦我信息技术有限公司 Design method, device and system, and data processing method and device
CN114595501A (en) * 2022-03-02 2022-06-07 深圳市宝晟建设集团有限公司 Indoor decoration method, system and storage medium

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20160188153A1 (en) * 2014-12-30 2016-06-30 PIQPIQ, Inc. Social messaging system for real-time selection and sorting of photo and video content
CN105931098A (en) * 2016-04-18 2016-09-07 厦门汇利伟业科技有限公司 Method and system for online sales of houses based on virtual reality technology
GB2548323A (en) * 2016-02-08 2017-09-20 Tommytrinder Com Ltd A user interface mechanism
CN107770233A (en) * 2016-08-23 2018-03-06 周振华 A kind of fitment process management-control method and device
CN108460840A (en) * 2018-01-17 2018-08-28 链家网(北京)科技有限公司 The methods of exhibiting and displaying device of virtual house decoration

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20160188153A1 (en) * 2014-12-30 2016-06-30 PIQPIQ, Inc. Social messaging system for real-time selection and sorting of photo and video content
GB2548323A (en) * 2016-02-08 2017-09-20 Tommytrinder Com Ltd A user interface mechanism
CN105931098A (en) * 2016-04-18 2016-09-07 厦门汇利伟业科技有限公司 Method and system for online sales of houses based on virtual reality technology
CN107770233A (en) * 2016-08-23 2018-03-06 周振华 A kind of fitment process management-control method and device
CN108460840A (en) * 2018-01-17 2018-08-28 链家网(北京)科技有限公司 The methods of exhibiting and displaying device of virtual house decoration

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
王威: "X商城――虚拟现实技术实现电子商务网络互动", 《信息系统工程》 *
王威: "X商城――虚拟现实技术实现电子商务网络互动", 《信息系统工程》, no. 05, 8 May 2008 (2008-05-08) *

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112106052A (en) * 2020-07-22 2020-12-18 上海亦我信息技术有限公司 Design method, device and system, and data processing method and device
CN112106052B (en) * 2020-07-22 2022-03-18 上海亦我信息技术有限公司 Design method, device and system, and data processing method and device
CN114595501A (en) * 2022-03-02 2022-06-07 深圳市宝晟建设集团有限公司 Indoor decoration method, system and storage medium

Similar Documents

Publication Publication Date Title
US10846937B2 (en) Three-dimensional virtual environment
CN111047379A (en) House decoration information processing method, device and system
US11348315B2 (en) Generating and presenting a 3D virtual shopping environment
KR102193933B1 (en) Apparatus for providing interior business matching service based on 3d vr portfolio and method thereof
CN102012784A (en) Method and system for displaying commodities on network exhibition
TW201706928A (en) Picture displaying method and device for commercial object information providing a better and satisfactory commercial object meeting the user's needs in matching
JP6302602B2 (en) Ticket information display method, apparatus, program, and recording medium
CN111626807A (en) Commodity object information processing method and device and electronic equipment
KR20180122572A (en) User terminal device for installing and executing application for 3d interior plan and furniture market
CN109002338A (en) Page rendering, page finishing information processing method and device
CN113298585A (en) Method and device for providing commodity object information and electronic equipment
GB2622261A (en) System and method for providing a relational terrain for social worlds
CN107743262A (en) A kind of barrage display methods and device
KR20180121175A (en) Application for 3D interior plan and furniture market
CN109074680A (en) Realtime graphic and signal processing method and system in augmented reality based on communication
CN106062793B (en) The retrieval for the Enterprise content being presented
CN111047339B (en) House decoration information processing method, device and system
CN111125806A (en) House decoration information processing method, device and system
KR101454445B1 (en) System for exhibiting and dealing be made three dimensions galley
CN109933389B (en) Data object information processing and page display method and device
CN111475013A (en) Commodity object information processing method and device and electronic equipment
CN111047378A (en) House decoration information processing method, device and system
CN111898058A (en) Personal homepage information processing method and device and electronic equipment
CN114935994A (en) Article data processing method, device and storage medium
CN117010965A (en) Interaction method, device, equipment and medium based on information stream advertisement

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination