Information processing system, information processing device, program, and information processing method

The information processing system addresses the challenge of providing personalized space designs by using generative artificial intelligence to create a second space model based on user-specific requests, ensuring that space designs meet individual user needs.

JP2025073747APending Publication Date: 2025-05-13S-CANVAS CO LTD
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Patent Information

Application Number
JP2023184786
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2023-10-27
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

Existing systems struggle to provide space designs that meet the individual specific needs of users, requiring analysis of a large variety of information to cater to diverse user requirements.

Method used

An information processing system that accepts user information, generates a first space model based on user input, and autonomously generates a second space model using generative artificial intelligence, allowing for personalized space design according to user-specific requests.

Benefits of technology

Enables the provision of space designs that accurately meet individual user needs by generating a second space model that reflects user-specific requests, facilitating effective space redesign and creation.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide an information processing system, an information processing device, a program, and an information processing method that can provide a spatial design that responds to an individual and specific desire of each user.SOLUTION: The information processing system executes: user information receiving processing of receiving user information composed of information concerning items that a user desires for a spatial design; spatial first model receiving processing of receiving a spatial first model concerning a spatial design generated based on information included in the user information received in the user information receiving processing; and spatial second model generation processing of, based on the spatial first model received in the spatial first model receiving processing and the user information received in the user information receiving processing, autonomously generating a spatial second model concerning a spatial design to be provided for the user.SELECTED DRAWING: Figure 1
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Description

[Technical field]

[0001] The present invention relates to an information processing system, an information processing device, a program, and an information processing method, and more particularly to an information processing system, an information processing device, a program, and an information processing method that are capable of designing any space. [Background technology]

[0002] For example, due to changes in family structure or living conditions, or an increased desire for a more comfortable space, there is a demand to review and redesign the current living space, or to acquire and design a new living space that is different from the current living space.

[0003] On the other hand, in various business spaces such as office spaces, commercial spaces such as restaurants and stores, and event spaces for hosting events, the interior design of the space can be linked to sales and productivity, so there is a demand to redesign current business spaces or to arrange and design new business spaces from scratch.

[0004] Patent document 1 discloses a technology that provides one or more recommended designs for spatial design in response to input from a client, provides an interface for customizing the recommended designs, and generates a customized requested design based on the recommended designs and the client's input. [Prior art documents] [Patent documents]

[0005] [Patent Document 1] Patent Publication No. 2022-106079 Summary of the Invention [Problem to be solved by the invention]

[0006] However, in order to provide a wide variety of spaces that meet the specific individual needs of a wide range of users, such as residents and various businesses, it is expected that it will be necessary to analyze a wide range of information in order to provide spaces that meet the needs of the users.

[0007] The present invention has been made in consideration of the above-mentioned circumstances, and has an objective of providing an information processing system, an information processing device, a program, and an information processing method that can provide a spatial design that meets the individual, specific needs of each user. [Means for solving the problem]

[0008] In order to achieve the above-mentioned object, the information processing system of the present invention executes a user information reception process that receives user information composed of information regarding the user's requests for the design of the space, a space first model reception process that accepts a space first model related to the design of the space created based on information included in the user information received in the user information reception process, and a space second model generation process that autonomously generates a space second model related to the design of the space to be provided to the user based on the space first model received in the space first model reception process and the user information received in the user information reception process.

[0009] According to this, a second spatial model relating to the design of the space is autonomously generated based on the first spatial model created based on the user information input by the user and the information contained in the user information, so that a space design that meets the individual and specific needs of each user can be provided to the user.

[0010] Therefore, when designing any space, careful consideration can be made in advance based on the second spatial model, and the design can also be redesigned based on that consideration, making it possible to realize a space design that meets the user's needs.

[0011] The user information processed by this information processing system may include three-dimensional information obtained by scanning an arbitrary space, and may also include budget information regarding the budget of the amount to be spent on the design of the space.

[0012] This information processing system executes an interior proposal information generation process that autonomously generates interior proposal information that suggests interior products to be placed in a space to a user based on user information and by referencing interior information related to interior products to be placed in the space.

[0013] The spatial second model generation process of this information processing system may autonomously generate the spatial second model in cooperation with a generative artificial intelligence model, or may autonomously generate the spatial second model based on interior information regarding interior products to be placed in the space in addition to user information and the spatial first model.

[0014] In order to achieve the above-mentioned object, an information processing device according to the present invention is an information processing device having a processor and a memory in which a program is stored, and by executing the program by the processor, executes a user information reception process that receives user information composed of information regarding the user's requests for the design of the space, a space first model reception process that accepts a space first model regarding the design of the space created based on information contained in the user information received in the user information reception process, and a space second model generation process that autonomously generates a space second model regarding the design of the space to be provided to the user based on the space first model received in the space first model reception process and the user information received in the user information reception process.

[0015] In order to achieve the above-mentioned object, the program of the present invention causes an information processing device implemented by a computer to execute, by the processor, a user information reception process that receives user information composed of information regarding the user's requests for the design of the space, a space first model reception process that accepts a space first model related to the design of the space created based on information contained in the user information received in the user information reception process, and a space second model generation process that autonomously generates a space second model related to the design of the space to be provided to the user based on the space first model received in the space first model reception process and the user information received in the user information reception process.

[0016] In order to achieve the above-mentioned object, the information processing method of the present invention is an information processing device implemented by a computer, which, by executing a program by a processor, executes the following processes: a user information reception process that accepts user information composed of information regarding the user's requests for the design of the space, a space first model reception process that accepts a space 1 model regarding the design of the space created based on information contained in the user information received in the user information reception process, and a space second model generation process that autonomously generates a space second model regarding the design of the space to be provided to the user based on the space first model received in the space first model reception process and the user information received in the user information reception process. Effect of the Invention

[0017] According to the present invention, it is possible to provide a user with a space design that meets the specific individual needs of each user. [Brief description of the drawings]

[0018] [Figure 1] 1 is a block diagram illustrating an outline of a configuration of an information processing system according to an embodiment of the present invention. [Diagram 2] FIG. 1 is a block diagram illustrating an outline of the configuration of a user terminal of the information processing system according to the present embodiment. [Diagram 3] FIG. 2 is a block diagram illustrating an outline of a hardware configuration of an information processing device in the information processing system according to the present embodiment. [Figure 4] FIG. 2 is a block diagram for explaining an outline of the functions of an information processing device in the information processing system according to the present embodiment. [Diagram 5] FIG. 13 is a diagram for explaining an outline of user information processed in the information processing system according to the present embodiment. [Figure 6] FIG. 13 is a diagram for explaining an outline of user information processed in the information processing system according to the present embodiment. [Figure 7] FIG. 13 is a diagram for explaining an outline of user information processed in the information processing system according to the present embodiment. [Figure 8] FIG. 13 is a diagram for explaining an outline of interior information processed by the information processing system according to the present embodiment. [Figure 9] FIG. 2 is a block diagram for explaining an outline of processing of an information processing device of the information processing system according to the present embodiment. [Figure 10] FIG. 13 is a diagram for explaining an outline of a spatial first model processed by the information processing system according to the present embodiment. [Figure 11] FIG. 2 is a block diagram for explaining an outline of processing of an information processing device of the information processing system according to the present embodiment. [Figure 12] FIG. 13 is a diagram for explaining an outline of a spatial second model generated by the information processing system according to the present embodiment. [Figure 13] 10 is a flowchart outlining the processing of the information processing system according to the present embodiment. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0019] Next, an information processing system according to an embodiment of the present invention will be described with reference to FIGS.

[0020] <Overall system configuration> 1 is a block diagram for explaining an outline of the configuration of an information processing system according to the present embodiment. As shown in the figure, an information processing system 10 mainly comprises a plurality of user terminals 20, a generative AI 30 which is a generative artificial intelligence model, and an information processing device 40, which are connected to each other via a network N such as the Internet.

[0021] On the other hand, the information processing system 10 is configured such that the information processing device 40 can access an interior database 100 that is connected via a network N and that is disposed outside the information processing system 10 .

[0022] Furthermore, in this embodiment, the generation AI 30 and a program (to be described later) stored in the information processing device 40 cooperate (connect) with each other via an API (Application Programming Interface).

[0023] In this embodiment, the user terminal 20 is owned by multiple users 1 who use a service using an information processing system 10 provided by a provider 3 described below, the generation AI 30 is managed by a generation AI provider 2 that operates a service providing the generation AI 30, and the information processing device 40 is managed by a provider 3 that provides a service using the information processing system 10.

[0024] In this embodiment, the service using the information processing system 10 is a service that provides information regarding the design of a desired space (the "second three-dimensional model" described below) to the user terminal 20 of the user 1 in response to the request of the user 1.

[0025] Here, in this embodiment, "spatial design" refers to the concept of external design within a space, such as adjusting fixtures (e.g. built-in shelves) appropriate for the space, selecting wallpaper appropriate for the space, selecting interior products and furnishings appropriate for the space, etc.

[0026] Next, a specific configuration of each part of the information processing system 10 will be described.

[0027] <User terminal configuration> In this embodiment, the user terminal 20 is implemented by a smartphone, which is a portable information terminal, but may also be implemented by any information processing terminal, such as a tablet computer, a desktop or notebook computer, etc.

[0028] 2 is a block diagram illustrating an outline of the configuration of the user terminal 20. As shown in the figure, the user terminal 20 includes a control unit 21, a display 22, a camera 23, and sensors 24 as its main components.

[0029] In this embodiment, the control unit 21 controls each part of the user terminal 20, such as the display 22, the camera 23, and the sensors 24, and is composed of, for example, a processor, a memory, a storage, a transmission / reception unit, and the like.

[0030] In this embodiment, the control unit 21 stores an application or a browser that executes the services provided by the information processing system 10, and the services are executed in the user terminal 20 via the application or the browser based on the processing of the program in the information processing device 40.

[0031] In this embodiment, an application that grasps objects scanned by the camera 23 and the sensors 24 in cooperation with each other as a point cloud is stored.

[0032] In this embodiment, various screen interfaces of services executed on the user terminal 20 are displayed on the display 22 .

[0033] The display 22 is a so-called touch panel that accepts information input by touching the display surface, and is implemented using various technologies such as a resistive film type or a capacitive type.

[0034] In this embodiment, information for operating an application that executes a service is input via the display 22. This information is input based on an arbitrary action of the user 1 on the display 22 (for example, an action of tapping or swiping the screen, or an action of dragging and dropping an icon or the like displayed on the screen, etc.).

[0035] The camera 23 captures any arbitrary object as a subject and obtains a moving or still image. In this embodiment, the camera 23 captures an arbitrary space and obtains a moving or still image.

[0036] In this embodiment, the sensors 24 are composed of optical distance sensors, GPS sensors, gyro sensors, acceleration sensors, etc., and detect the distance between the user terminal 20 and any object, the latitude and longitude of the current location of the user terminal 20, or the orientation of the user terminal 20, etc.

[0037] <Configuration of generative AI> The generation AI 30 shown in Figure 1 is a machine learning model constructed using deep learning, and in this embodiment, by inputting various information described later, it executes a process of generating a three-dimensional second model related to a desired spatial design.

[0038] <Hardware configuration of information processing device> In this embodiment, the information processing device 40 is implemented by a computer, for example, a desktop or notebook computer.

[0039] 3 is a block diagram illustrating an outline of the hardware configuration of the information processing device 40. As shown in the figure, the information processing device 40 mainly includes a processor 41, a memory 42, a storage 43, a transmission / reception unit 44, and an input / output unit 45, which are electrically connected to each other via a bus 46.

[0040] The processor 41 is an arithmetic device that controls the operation of the information processing device 40, controls the transmission and reception of data between each element, and performs processes required for executing application programs.

[0041] In this embodiment, the processor 41 is, for example, a CPU (Central Processing Unit), and executes application programs deployed in a memory 42 (described below) to perform various processes.

[0042] The memory 42 is implemented by a main storage device that is configured as a volatile storage device such as a dynamic random access memory (DRAM).

[0043] The memory 42 is used as a working area for the processor 41, and also stores a basic input / output system (BIOS) that is executed when the information processing device 40 is started up, various setting information, and the like.

[0044] The storage 43 stores data and the like used for various processes by application programs and the like.

[0045] The transmission / reception unit 44 connects the information processing device 40 to the network N. The transmission / reception unit 44 may be compatible with a wireless communication standard such as Wi-Fi, or may be equipped with a short-range communication interface such as Bluetooth (registered trademark) or BLE (Bluetooth Low Energy).

[0046] If necessary, information input devices such as a keyboard and a mouse and output devices such as a display are connected to the input / output unit 45. In this embodiment, a keyboard, a mouse, and a display are each connected.

[0047] The bus 46 transmits, for example, address signals, data signals, and various control signals between the connected processor 41, memory 42, storage 43, transmission / reception unit 44, and input / output unit 45.

[0048] <Functions of information processing device> 4 is a block diagram illustrating an outline of functions of information processing device 40. As illustrated, information processing device 40 includes a user information receiving unit 40a, an interior information referring unit 40b, an interior proposal information generating unit 40c, an interior proposal information output unit 40d, a three-dimensional first model receiving unit 40e, a three-dimensional second model generating unit 40f, and a three-dimensional second model output unit 40g.

[0049] These user information receiving unit 40a, interior information reference unit 40b, interior proposal information generation unit 40c, interior proposal information output unit 40d, three-dimensional first model receiving unit 40e, three-dimensional second model generation unit 40f and three-dimensional second model output unit 40g are realized by processor 41 executing a program stored in memory 42.

[0050] In this embodiment, the user information receiving unit 40a executes a process of receiving user information input by the user 1 via the user terminal 20 (user information receiving process).

[0051] 5 is a diagram for explaining an outline of the configuration of user information. As shown in the figure, in this embodiment, user information D1 is configured to include various information related to items desired by user 1 for the design of space, such as three-dimensional information, budget information, text information, spatial image information, delivery date information, and floor plan information.

[0052] In this embodiment, the three-dimensional information is information consisting of three-dimensional moving or still images of any space acquired by scanning by user 1 via user terminal 20, and the space acquired as information is grasped as a point cloud, for example, as shown in Figure 6.

[0053] 7 is a diagram for explaining an outline of budget information. As shown in the figure, the budget information includes information on the total cost required to design a given space and information on the cost of purchasing individual interior products.

[0054] In this embodiment, this budget information is input by user 1 via user terminal 20, and information regarding the total cost and the cost of purchasing interior products may be input alternatively, or both may be input at the same time.

[0055] In this embodiment, the text information shown in FIG. 5 is information in which the desires of user 1 regarding the design of the space are described in text format, and is input by user 1 via user terminal 20.

[0056] In this embodiment, the spatial image information is composed of information on an image of an arbitrary space selected by user 1 from information on images of multiple arbitrary spaces prepared in advance by business operator 3, and information on an image of an arbitrary space arranged by user 1 (for example, image information of a residential space that is the subject of space design).

[0057] Furthermore, the spatial image information includes image information of interior products that user 1 is using and that are planned to be used in the space after the design, and image information of interior products that user 1 wishes to purchase.

[0058] In this embodiment, delivery date information is information regarding the delivery date desired by user 1 for the design of the space, and floor plan information in this embodiment is image information regarding the floor plan of any space arranged by user 1 (for example, image information of the floor plan of a residential space for which the space is to be designed).

[0059] When three-dimensional information is received as user information D1, it is possible to grasp the layout of the space from the three-dimensional information, so there is no need to input floor plan information again as user information D1.

[0060] In this embodiment, the interior information reference unit 40b shown in Figure 4 accesses the interior database 100 located outside the information processing system 10 shown in Figure 1, and performs a process of referring to the interior information stored in the interior database 100.

[0061] 8 is a diagram for explaining an outline of the interior information stored in the interior database 100. The interior information D2 is information about interior products arranged in a space, and as shown in the figure, is composed of product codes, product names, sales prices, sizes, images (for example, images of the interior products), etc.

[0062] In this embodiment, the interior suggestion information generation unit 40c shown in Figure 4 executes a process of autonomously generating interior suggestion information that suggests interior products to be placed in the space to the user 1, based on the user information D1, and with reference to the interior information D2 (interior suggestion information generation process).

[0063] 9 is a block diagram for explaining an outline of the process of the interior proposal information generating unit 40c. As shown in the figure, user information D1 is input to a generating AI 30 which cooperates (is connected) with the program of the information processing device 40 via an API.

[0064] When user information D1 is input, the generation AI 30 performs a process of autonomously generating interior proposal information D3 as a function of the interior proposal information generation unit 40c, while appropriately referring to interior information D2 via the information processing device 40 functioning as the interior information reference unit 40b (interior proposal information generation process).

[0065] In this embodiment, the interior proposal information output unit 40d shown in FIG. 4 executes a process of outputting the generated interior proposal information to the user terminal 20 via the transmitting / receiving unit 44 of the information processing device 40.

[0066] In this embodiment, the three-dimensional first model receiving unit 40e executes a process of receiving a three-dimensional first model relating to a three-dimensional space, which is a spatial first model input by the operator 3 (three-dimensional first model receiving process).

[0067] In this embodiment, the three-dimensional first model received by the three-dimensional first model receiving unit 40e is a model of three-dimensional space created for each user 1 based on the information contained in the user information D1, and is a model that depicts an arbitrary space that is envisioned after design, as shown in FIG. 10, for example.

[0068] In this embodiment, the three-dimensional second model generation unit 40f shown in Figure 4 executes a process of autonomously generating a three-dimensional second model relating to the design of a three-dimensional space, which is a spatial second model provided to the user 1, based on the user information D1, the three-dimensional first model and the interior information D2 (three-dimensional second model generation process).

[0069] 11 is a block diagram for explaining an outline of the process of the three-dimensional second model generating unit 40f. As shown in the figure, user information D1 and a three-dimensional first model M1 are input to a generating AI 30 that cooperates (connects) with a program of the information processing device 40 via an API.

[0070] When this information is input, the generation AI 30 performs a process of autonomously generating a three-dimensional second model M2 as a function of the three-dimensional second model generation unit 40f while appropriately referring to the interior information D2 via the information processing device 40 functioning as the interior information reference unit 40c (three-dimensional second model generation process).

[0071] 12 is a diagram showing an example of the three-dimensional second model. As shown in the figure, the three-dimensional second model is a realistic model relating to the design of a three-dimensional space provided to the user 1, and is a model that depicts a state in which the space is designed by, for example, art to be placed on a wall, a pattern made of wallpaper on the wall, or interior products such as a sofa or a table to be placed.

[0072] In this embodiment, this three-dimensional second model displays a list of interior products selected as the design in a sidebar along with images, product names, prices, etc. of the products.

[0073] In this embodiment, the three-dimensional second model output unit 40g shown in Figure 4 executes a process of outputting the generated three-dimensional second model to the user terminal 20 via the transmission / reception unit 44 of the information processing device 40.

[0074] <System processing flow> Next, an overview of the processing of the information processing system 10 according to the present embodiment will be described.

[0075] 13 is a flowchart outlining the processing of the information processing system 10. As shown in the figure, in step S1, when the user 1 inputs user information D1 via the user terminal 20, the user information D1 is accepted in the information processing device 40 (user information acceptance processing).

[0076] In this embodiment, the user information D1 received in step S1 is, for example, three-dimensional information scanned by user 1 of his / her living space, or any spatial image information arranged by user 1 himself / herself (for example, image information relating to user 1's ideal living space).

[0077] The user information reception process in step S1 may receive information arbitrarily selected and input according to information held by the user 1. For example, in a case where the user 1 is unable to obtain three-dimensional information, the reception process may receive, as the spatial image information, information on an image of an arbitrary space selected by the user 1 from information on images of a plurality of arbitrary spaces prepared in advance by the business operator 3, or information on an image of an arbitrary space arranged by the user 1.

[0078] On the other hand, in cases where the user 1 has various information as user information D1, various information such as three-dimensional information, text information, spatial image information, delivery date information, and floor plan information may be accepted as user information D1.

[0079] When the user information D1 is received, in step S2, the generation AI 30 analyzes the received user information D1 as a function of the interior proposal information generation unit 40c or the three-dimensional second model generation unit 40f. In this embodiment, the generation AI 30 recognizes the product names and the numbers of the interior products included in the spatial image information and executes a process of listing them.

[0080] In the following step S3, based on the analysis of the user information D1, the user 1 inputs budget information as user information D1 for each of the listed interior products via the user terminal 20, and the budget information is accepted as user information D1 in the information processing device 40 (user information acceptance process).

[0081] In this embodiment, if the user information D1 is analyzed and the product names and quantities of the interior products contained in the spatial image information are recognized, the budget information may include information regarding the costs of purchasing the interior products when purchasing individual interior products.

[0082] Next, in step S4, the generation AI 30, as a function of the interior proposal information generation unit 40c, autonomously generates interior proposal information D3 by referring to the interior information D2 in the interior database based on the budget information (particularly information regarding the cost of purchasing interior products) input by the user 1 via the user terminal 20 (interior proposal information generation process).

[0083] When the interior proposal information D3 is generated, a process is executed to output the generated interior proposal information D3 to the user terminal 20. Based on the interior proposal information D3, the user 1 can freely arrange interior products in, for example, an image of the living space that the user 1 considers ideal.

[0084] On the other hand, in step S5, a three-dimensional first model is created for each user 1 based on the information contained in the user information D1, and the created three-dimensional first model is input to the generation AI 30.In step S6, the three-dimensional first model is accepted as a function of the three-dimensional first model accepting unit 40b (three-dimensional first model acceptance process).

[0085] Upon receiving the user information D1 and the three-dimensional first model, in step S7, the generation AI 30 generates a three-dimensional second model as a function of the three-dimensional second model generation unit 40f (three-dimensional second model generation process).

[0086] At this time, the interior information D2 in the interior database is referenced as necessary, and a process of selecting interior products is performed based on the budget information (particularly information regarding the cost of purchasing interior products) entered by the user 1 via the user terminal 20.

[0087] When the three-dimensional second model is generated, a process of outputting the generated three-dimensional second model to the user terminal 20 is executed.

[0088] <Action and Effects> In this way, a three-dimensional second model relating to the design of the three-dimensional space is autonomously generated based on the user information D1 input by the user 1 and the three-dimensional first model created based on the information contained in the user information D1, so that a space design that meets the individual, specific needs of each user 1 can be provided to the user 1.

[0089] Therefore, when designing any space, careful consideration can be made in advance based on the three-dimensional second model, and the design can also be redesigned based on the consideration, making it possible to realize a space design that meets the needs of user 1.

[0090] Furthermore, since the user information D1 received is different for each user 1, the target spaces are not limited to residential spaces as described above, but various spaces can be designed, including business spaces such as office spaces, commercial spaces, and event spaces.

[0091] <Other embodiments> The present invention is not limited to the above-described embodiment, and various modifications are possible without departing from the spirit of the invention.

[0092] In the above embodiment, a case has been described in which the spatial first model is a three-dimensional first model relating to a three-dimensional space, and a case has been described in which the spatial second model is a three-dimensional second model relating to a three-dimensional space, but the models are not limited to three-dimensional models and may be, for example, two-dimensional models.

[0093] In the above embodiment, a case has been described in which user information D1 is input via user terminal 20, but it may also be input by business operator 3 based on a face-to-face meeting (including online meetings) with business operator 3 without involving user terminal 20.

[0094] In the above embodiment, the case where the interior database 100 is arranged outside the information processing system 10 has been described. However, the interior database 100 may be managed by the business operator 3, for example.

[0095] In the above embodiment, the information processing device 40 is implemented as a computer managed by the business operator 3. However, for example, the information processing device 40 may be a computer implemented in a cloud environment. [Explanation of symbols]

[0096] 1 User 3 Business operators 10. Information Processing Systems 20 User terminal 30 Generation AI 40 Information processing device 100 Interior Database

Claims

1. A user information receiving process for receiving user information configured by information regarding items desired by a user with respect to the design of the space; a space first model receiving process for receiving a space first model related to a design of the space created based on the information included in the user information received in the user information receiving process; a space second model generation process that autonomously generates a space second model related to a design of a space to be provided to the user, based on the space first model accepted in the space first model acceptance process and the user information accepted in the user information acceptance process; An information processing system that executes the above.

2. The user information is The information includes three-dimensional information obtained by scanning an arbitrary space. The information processing system according to claim 1 .

3. The user information is The information includes budget information regarding a budget of an amount to be spent on the design of the space.

3. The information processing system according to claim 1 or 2.

4. executing an interior proposal information generating process for autonomously generating interior proposal information that suggests to the user the interior products to be placed in the space by referring to interior information related to the interior products to be placed in the space, based on the user information; 3. The information processing system according to claim 1 or 2.

5. The spatial second model generation process includes: Autonomously generating the spatial second model in cooperation with a generative artificial intelligence model; 3. The information processing system according to claim 1 or 2.

6. The spatial second model generation process includes: autonomously generating the space second model based on the user information, the three-dimensional first model, and interior information related to interior products to be arranged in the space; 3. The information processing system according to claim 1 or 2.

7. An information processing device including a processor and a memory in which a program is stored, When the program is executed by the processor, A user information receiving process for receiving user information configured by information regarding items desired by a user with respect to the design of the space; a space first model receiving process for receiving a space first model related to a design of the space created based on the information included in the user information received in the user information receiving process; a space second model generation process that autonomously generates a space second model related to a design of a space to be provided to the user, based on the space first model accepted in the space first model acceptance process and the user information accepted in the user information acceptance process; An information processing device that executes the above.

8. An information processing device implemented by a computer, When the program is executed by the processor, A user information receiving process for receiving user information configured by information regarding items desired by a user with respect to the design of the space; a space first model receiving process for receiving a space first model related to a design of the space created based on the information included in the user information received in the user information receiving process; a space second model generation process that autonomously generates a space second model related to a design of a space to be provided to the user, based on the space first model accepted in the space first model acceptance process and the user information accepted in the user information acceptance process; A program that executes the following.

9. An information processing device implemented by a computer, When the program is executed by the processor, A user information receiving process for receiving user information configured by information regarding items desired by a user with respect to the design of the space; a space first model receiving process for receiving a space first model related to a design of the space created based on the information included in the user information received in the user information receiving process; a space second model generation process that autonomously generates a space second model related to a design of a space to be provided to the user, based on the space first model accepted in the space first model acceptance process and the user information accepted in the user information acceptance process; An information processing method for performing the above.

Citation Information

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