Method for outputting design drawing of block object

JP2024014674A5Active Publication Date: 2025-07-28G-ANT CO LTD
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Patent Information

Application Number
JP2022206087
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2022-12-22
Publication Date
2025-07-28
Estimated Expiration
2042-07-21

AI Technical Summary

Technical Problem

Existing methods for assembling block objects using block parts do not allow for visualization of the assembly process from the user's perspective, making it difficult for users to easily assemble these objects.

Method used

A method involving a server terminal connected to a user terminal via a network, which acquires and processes information about block parts to determine an assembleable block object, updates blueprint information, and displays it on the user's terminal, allowing for the visualization of the assembly process and identification of necessary special block parts.

Benefits of technology

Enables users to easily assemble block objects by providing a visual blueprint and facilitating the acquisition of necessary parts, enhancing the assembly experience.

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Abstract

To provide a method for facilitating a user composing a block object using block parts.SOLUTION: In a method for outputting a design drawing of a composable block object which is composed of multiple types of block parts, the method being executed by a processing unit of a server terminal connected to a user terminal over a network, the processing unit of the server terminal acquires information on the block object from the user terminals, determines, based on design drawing information of the block object, whether the block object can be composed only of basic block parts included in block parts information stored in a storage unit of the server terminal, generates, when special block parts are determined, information on the shape, color and quantity of the special block parts, and displays the information for purchasing the special block parts.SELECTED DRAWING: Figure 6
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Description

[Technical field]

[0001] The present invention relates to a method for outputting a design drawing of a block object. [Background technology]

[0002] 2. Description of the Related Art Toys that allow a user to assemble block object models, such as animals, buildings, vehicles, etc., using block parts such as Lego bricks, are becoming popular.

[0003] For example, Patent Document 1 discloses a method for improving the efficiency of designing block parts that constitute a block object. [Prior art documents] [Patent documents]

[0004] [Patent Document 1] Patent No. 5665872 Summary of the Invention [Problem to be solved by the invention]

[0005] However, while the technology disclosed in Patent Document 1 above makes it possible to realize efficient design and visualization of block parts, it does not disclose a method for visualizing an image of assembling block objects from a user's perspective.

[0006] Therefore, an object of the present invention is to provide a method that makes it easy for a user to assemble block objects using block parts. [Means for solving the problem]

[0007] In one aspect of the present invention, there is provided a method for outputting a design drawing of a block object that is composed of multiple types of block parts and that can be assembled, which is executed by a processing unit of a server terminal connected to a user terminal via a network, in which the processing unit of the server terminal obtains information about the block parts from the user terminal, determines block objects that can be assembled based on the information about the block parts, displays design drawing information of the block objects and information about the block parts, updates the design drawing information of the block objects, updates information about the block parts based on the updated design drawing information, and displays the information about the updated block parts. Effect of the Invention

[0008] According to the present invention, it is possible to provide a method that makes it easy for a user to assemble a block object using block parts. [Brief description of the drawings]

[0009] [Figure 1] 1 is a block diagram showing a system for providing a method for recommending a block object according to a first embodiment of the present invention; [Diagram 2] 2 is a functional block diagram showing the server terminal 100 of FIG. 1. [Diagram 3] 2 is a functional block diagram showing a user terminal 200 of FIG. 1. [Figure 4] FIG. 2 is a diagram showing an example of object model information stored in the server 100. [Diagram 5] FIG. 2 is a diagram showing an example of block part information stored in the server 100. [Figure 6] 10 is an example of a flowchart illustrating details of a method for outputting a design drawing of a block object according to the first embodiment of the present invention. [Figure 7] 4 is an example of a block object displayed on a user terminal according to the first embodiment of the present invention. [Figure 8]FIG. 2 is a diagram illustrating an example of a basic block part according to the first embodiment of the present invention. [Figure 9] 1 is a diagram illustrating an example of a special block part according to the first embodiment of the present invention. FIG. [Figure 10] 11A to 11C are diagrams illustrating an example of determination of special block parts according to the first embodiment of the present invention. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0010] Hereinafter, an embodiment of the present invention will be described with reference to the drawings. Note that the embodiment described below does not unduly limit the contents of the present invention described in the claims. Furthermore, not all of the components shown in the embodiment are necessarily essential components of the present invention.

[0011] <Configuration> 1 is a block diagram showing a system for providing a method for recommending block objects according to a first embodiment of the present invention. The system 1 includes a server terminal 100 that generates design drawing information for block objects based on coordinate information of block parts acquired from a user terminal 200 or a sensor device 300, and user terminals 200A and 200B associated with each user who assembles the block objects. For ease of explanation, the user terminals 200A and 200B will be collectively referred to as user terminal 200 below.

[0012] Here, in this embodiment, an animal object will be described as an example of a block object composed of multiple block parts, but other examples include people, robots, vehicles, buildings, etc., and the block object is not limited to this one example.

[0013] The server terminal 100 and the user terminal 200 are connected to each other via a network NW. The network NW is configured by the Internet, an intranet, a wireless LAN (Local Area Network), a WAN (Wide Area Network), or the like.

[0014] The server terminal 100 may be, for example, a general-purpose computer such as a workstation or a personal computer, or may be logically realized by cloud computing. In this embodiment, for convenience of explanation, one server terminal is illustrated, but the present invention is not limited to this and may be multiple servers.

[0015] The user terminal 200 is, for example, an information processing device such as a personal computer or a tablet terminal, but may also be configured as a smartphone, a mobile phone, a PDA, or the like.

[0016] In this embodiment, the system 1 is described as having a server terminal 100 and a user terminal 200, and a configuration in which a user uses the user terminal 200 to perform operations on the server terminal 100; however, the server terminal 100 may be configured as a stand-alone system, and the server terminal itself may have a function for each user to directly perform operations.

[0017] Fig. 2 is a functional block configuration diagram of the server terminal 100 of Fig. 1. The server terminal 100 includes a communication unit 110, a storage unit 120, and a control unit .

[0018] The communication unit 110 is a communication interface for communicating with the user terminal 200 via the network NW, and communication is performed according to a communication protocol such as TCP / IP (Transmission Control Protocol / Internet Protocol).

[0019] The storage unit 120 stores programs for executing various control processes and functions in the control unit 130, input data, etc., and is composed of a RAM (Random Access Memory), a ROM (Read Only Memory), etc. The storage unit 120 also has an object model information storage unit 121 that stores information related to the object model, etc., and a block part information storage unit 122 that stores information on block parts generated based on the object model, etc. A database (not shown) storing various data may be constructed outside the storage unit 120 or the server terminal 100.

[0020] The control unit 130 controls the overall operation of the server terminal 100 by executing a program stored in the storage unit 120, and is composed of a CPU (Central Processing Unit), a GPU (Graphics Processing Unit), etc. Functions of the control unit 130 include an information receiving unit 131 that receives information such as instructions from the user terminal 200, an object model information processing unit 132 that refers to and processes various information related to the object model, a block part information processing unit 133 that refers to and processes various information related to the block parts, and an output processing unit 134 that performs processing to transmit design drawing information related to the block object to be output to the user terminal. The information receiving unit 131, the object model information processing unit 132, the block part information processing unit 133, and the output processing unit 134 are started by a program stored in the storage unit 120 and executed by the server terminal 100, which is a computer (electronic calculator).

[0021] The information receiving unit 131 receives information from the user terminal 200 when a user makes a specified request (by entering text, pressing an icon, etc.) via a user interface such as a screen provided by the server terminal 100 and displayed on the user terminal 200 via a web browser or application, or receives coordinate information of block parts generated by the sensor device 300 via the user terminal 200 and the communication unit 110.

[0022] The object model processing unit 132 stores information related to the object model in the object model information storage unit 121 and performs processing for referring to the stored object model information.

[0023] The block parts information processing unit 133 stores information relating to block parts in the block parts information storage unit 122 and performs processing to refer to the stored block parts information.

[0024] The output processing unit 134 performs a process of transmitting necessary information to the user terminal 200 in order to display design drawing information related to the block object on the user terminal 200. At this time, the output processing unit 134 uses the image and text data stored in the storage unit 120 as material, and arranges various images and text in a predetermined area of ​​the user interface based on a predetermined layout rule, thereby generating screen information required to be displayed on the interface of the user terminal 200. This screen information generation process can also be executed by a GPU (Graphics Processing Unit).

[0025] Fig. 3 is a functional block diagram showing the user terminal 200 of Fig. 1. The user terminal 200 includes a communication unit 210, a display operation unit 220, a storage unit 230, and a control unit 240.

[0026] The communication unit 210 is a communication interface for communicating with the server terminal 100 via the network NW, and communication is performed according to a communication protocol such as TCP / IP. The communication unit 210 can also include a communication interface for communicating with the sensor device 300 via short-range wireless communication or the like.

[0027] The display operation unit 220 is a user interface used for inputting instructions by the user and displaying text, images, etc. according to input data from the control unit 240, and is composed of a display, a keyboard, and a mouse when the user terminal 200 is configured as a personal computer, and is composed of a touch panel, etc. when the user terminal 200 is configured as a smartphone or tablet terminal. This display operation unit 220 is started up by a control program stored in the storage unit 230 and executed by the user terminal 200, which is a computer (electronic calculator).

[0028] The storage unit 230 stores programs for executing various control processes and functions in the control unit 240, input data, etc., and is composed of a RAM, a ROM, etc. The storage unit 230 also temporarily stores the contents of communication with the server terminal 100.

[0029] The control unit 240 controls the overall operation of the user terminal 200 by executing the programs stored in the storage unit 230, and is composed of a CPU, a GPU, and the like.

[0030] The server terminal 100 may have the function of a display operation unit, in which case the user terminal 200 may not be included.

[0031] FIG. 4 is a diagram showing an example of the object model information stored in the server 100. As shown in FIG.

[0032] The object model information 1000 shown in FIG. 4 stores information related to an object model generated by a service manager related to the server terminal 100 or a user related to the user terminal 200. In FIG. 4, for convenience of explanation, an example of one object model (a user identified by an object ID "10001") is shown, but information of a plurality of object models can be stored. Various data related to the object model can include 3D model data of the object model, cross-sectional data of the object model, data related to one or more types of block parts and the number of pieces required to assemble the object model, design drawing information related to block parts arranged in each layer of the cross section, and other information. Here, the 3D model data can also be stored as 2D model data converted into a 3D model by a predetermined process.

[0033] FIG. 5 is a diagram showing an example of block parts information stored in the server 100. As shown in FIG.

[0034] Block part information 2000 shown in FIG. 5 stores information related to the shape, size, color, and weight of a block part. For convenience of explanation, FIG. 5 shows an example of one block part (a block part identified by ID "20001"), but information related to multiple block parts can be stored. The various data related to the block parts can include, for example, data related to block parts corresponding to components for assembling a block object (consisting of the shape, size, color of the block parts, the number of each block part, etc.). Here, each of the multiple types of block parts can be associated with a unique color, but is not limited to this.

[0035] FIG. 6 is an example of a flowchart showing a method for outputting a design drawing of a block object according to the first embodiment of the present invention.

[0036] As a preliminary process, the user accesses the server terminal 100 using a web browser of the user terminal 200 or an application (if an application is installed). A predetermined screen is displayed on a user interface via a website or application. The user has basic block parts (described later) at hand in advance, and information about the basic block parts is stored in the block part information storage unit 122 of the memory unit 120 of the server terminal 100.

[0037] Then, in the process of step S101, the information receiving unit 131 of the control unit 130 of the server terminal 100 receives information about the block object that the user wants to assemble from the user terminal 200 via the network and communication unit 110. Here, the user can select a desired block object from among multiple block objects on a user interface screen displayed on the user terminal 200. In this example, when the user wants to assemble a frog block object as shown in Fig. 7 and performs an input operation to the effect that he or she wants to assemble the frog block object on the user interface screen displayed on the user terminal 200, the server terminal 100 receives information about the block object corresponding to the frog.

[0038] Next, in the process of step S102, the object model information processing unit 132 and the block parts information processing unit 133 of the control unit 130 of the server terminal 100 refer to the object model information storage unit 121 and the block parts information storage unit 122 of the storage unit 120, respectively, based on the received information on the block object model, and refer to the design drawing information and the information on the block parts related to the block object selected by the user. Here, in this example, the object model information processing unit 132 refers to the design drawing data related to the object model corresponding to the frog in the object model information 1000, and the block parts information processing unit 133 refers to the data related to the basic block parts in the block parts information 2000. For example, FIG. 10 shows an example of the design drawing data of the object model of a frog. The design drawing data indicates the arrangement area of ​​the block parts necessary for constructing the object model in each layer by color together with the coordinate information.

[0039] Next, in the process of step S103, the block part information processing unit 133 of the control unit 130 of the server terminal 100 judges whether or not there is a special block part. Here, first, in the previous step S102, the object model information processing unit 132 determines the block parts constituting the object model based on the design drawing data and the block part data. For example, when focusing on the block parts surrounded by a red frame among the block parts constituting the frog block object in FIG. 9(a), as shown in FIG. 9(b), in the coordinates of each layer of the block object in the design drawing data, the area in which the block part marked with "1" in the first layer is placed overlaps with the area in which the block part marked with "1" in the second layer is placed, and the overlapping portion is one block part unit (a unit defined by "1x1" in coordinates), so that it is determined that the structure is such that the block part in the first layer cannot be combined with the block part in the second layer without a reverse convex type block part in the first layer. Next, the block part information processing unit 132 refers to information on basic block parts applicable to assembling a plurality of block objects as shown in Fig. 8, refers to the shape of each basic block part, and determines that there are no reverse convex block parts. In this way, block parts not included in the information on basic block parts (in this example, reverse convex block parts) are determined to be special block parts that are not normally owned by users. Alternatively, the special block part data can be stored in advance as information separate from the basic block part data, and the block part information processing unit 132 can determine special block parts by referring to the special block part data.

[0040] Next, in the process of step S104, the output processing unit 134 of the control unit 130 of the server terminal 100 generates information on the shape, color, number, etc. of the block parts and performs output processing in order to display the information on the special block parts determined in the previous step on the user terminal 200. In this example, information on the inverted convex block parts is displayed on the user terminal 200.

[0041] Next, in the process of step S105, the output processing unit 134 of the control unit 130 of the server terminal 100 can display information for purchasing a special block part on the user terminal 200 as necessary, and can also execute the purchase process of the special block part in response to a purchase request from the user. When the user purchases a special block part (in this example, an inverted convex block part), the block part information processing unit 133 can store information on the corresponding block part in the block part information storage unit 122 as block part information 2000.

[0042] As described above, according to this embodiment, when a user assembles a block object, it is possible to automatically determine whether or not there are special block parts that the user does not possess but that are necessary for assembling the block object, and the user can easily assemble the block object.

[0043] Although the embodiments of the present invention have been described above, they can be embodied in various other forms and can be implemented with various omissions, substitutions, and modifications. These embodiments and modifications, as well as omissions, substitutions, and modifications, are included in the technical scope of the claims and their equivalents. [Explanation of symbols]

[0044] 1 System 100 Server terminal, 110 Communication unit, 120 Storage unit, 130 Control unit, 200 User terminal, NW network

Claims

1. A method for outputting a design drawing of a block object composed of a plurality of types of block parts that can be assembled, which is executed by a processing unit of a server terminal connected via a network to a user terminal, wherein: the processing unit of the server terminal: obtains information about the block object from the user terminal; determines whether it can be assembled by the basic block parts included in the block part information stored in the storage unit of the server terminal based on the design drawing information of the block object.

2. The method according to claim 1, wherein block parts other than the basic block parts included in the block part information are displayed as special block parts.

3. The method according to claim 1, wherein it is determined whether it can be assembled only by the basic block parts based on information regarding the arrangement area of the block parts in the design drawing information.

4. The method according to claim 2, further executing a process of purchasing the special block parts.

5. A program for causing a computer to execute a process of outputting a design drawing of a block object composed of a plurality of types of block parts that can be assembled, which is executed by a processing unit of a server terminal connected via a network to a user terminal, wherein: it causes the information about the block object to be obtained from the user terminal; it causes a determination to be made as to whether it can be assembled by the basic block parts included in the block part information stored in the storage unit of the server terminal based on the design drawing information of the block object.