Verification system, verification device, and verification program

The verification system addresses errors in component verification by using a verification device to derive and compare component information, enhancing accuracy and reducing costs.

JP7823781B1Active Publication Date: 2026-03-04SEKISUI HOUSE KK
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Patent Information

Application Number
JP2025021197
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2026-03-04
Estimated Expiration
2045-02-13

AI Technical Summary

Technical Problem

Manual and computer-based methods for verifying shipping component information for building construction are prone to errors due to human mistakes and program bugs, necessitating additional manual checks.

Method used

A verification system and program that utilize a verification device to acquire, derive, and compare component information using hierarchical technical information, reducing errors by comparing derived components with shipped components.

Benefits of technology

The system reduces errors and costs by accurately verifying shipping component information, identifying discrepancies, and optimizing the component verification process.

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Abstract

To provide a verification system etc. that can verify shipping component information indicating components to be shipped for the construction of a building, leading to a reduction in errors. [Solution] The verification system uses a verification device 1 that verifies shipped component information. The verification system acquires shipped component information (S202), acquires design information related to the design of the target building (S203), determines the structure that constitutes the target building based on the acquired design information (S204), acquires technical information that indicates the determined target building structure as components to be used and the technical relationships between the components (S205), references the technical information based on the determined structure, and derives components to be used in construction as derived components (S209), and compares the derived derived components with the shipped components indicated in the shipped component information (S211).
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Description

[Technical Field]

[0001] The present application discloses a verification system for verifying shipping component information indicating shipping components to be shipped for the construction of a target building to be constructed, a verification device used in such a verification system, and a verification program for realizing such a verification device. [Background technology]

[0002] When constructing a building such as a house, the factory design and estimation department selects thousands of types of housing components (order work) and uses this information to store the components to be shipped during factory production and shipping. For example, the work method involves using a component list prepared in advance for each structural element to manually select the components required for one building and finalize the list of components to be shipped.

[0003] Furthermore, for example, Patent Document 1 discloses a housing material ordering method that creates an order list from design data. [Prior art documents] [Patent documents]

[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2001-188813 Summary of the Invention [Problem to be solved by the invention]

[0005] However, manual methods are prone to human error. Even with computer-based methods such as those disclosed in Patent Document 1, errors may occur due to bugs in the program itself, as well as input errors or other factors. Because of these circumstances, additional manual work, such as double-checking, is required.

[0006] The present application has been made in view of the above circumstances, and has as its main object to disclose a verification system for verifying shipped component information obtained by computer processing, manual work, or the like.

[0007] Another object of the present application is to disclose a verification device used in the above-mentioned verification system.

[0008] Furthermore, it is still another object of the present application to disclose a verification program for realizing the above-mentioned verification device. [Means for solving the problem]

[0009] In order to solve the above problems, the verification system disclosed in the present application is a verification system that uses a verification device to verify shipped component information that indicates shipped components to be shipped for the construction of a target building that is the subject of construction, and is characterized by comprising: a shipped component acquisition means for acquiring shipped component information; a design acquisition means for acquiring design information related to the design of the target building; a structure determination means for determining the structure that constitutes the target building based on the acquired design information; a technology acquisition means for acquiring technical information that indicates the determined structure of the target building as components to be used and the technical relationships between the components; a component derivation means that refers to the technical information based on the determined structure and derives components to be used in construction as derived components; and a comparison means for comparing the derived derived components with the shipped components indicated in the shipped component information.

[0010] In the verification system, the technology acquisition means acquires a plurality of pieces of hierarchically structured technology information based on the relevance of structures and / or components.

[0011] In addition, in the verification system, the technology acquisition means is configured to acquire a plurality of pieces of technical information, the component derivation means is configured to derive derived components based on each of the acquired plurality of pieces of technical information, and the comparison means is characterized in that it compares all derived components with shipped components.

[0012] In addition, in the verification system, the technical information acquired by the technology acquisition means is characterized in that it includes information showing the structure of the exterior wall as wall components and window frame components, and the relationship between the wall components and window frame components.

[0013] In addition, in the verification system, the technical information acquired by the technical acquisition means is characterized in that it includes information showing the structure of the protruding corner as a frame structure showing the members for the columns, the connecting members that connect the members, and the relationship between the members.

[0014] Furthermore, the verification device disclosed in the present application is a verification device that verifies shipping component information indicating shipping components to be shipped for the construction of a target building that is the subject of construction, and is characterized by comprising: a shipping component acquisition means for acquiring shipping component information; a design acquisition means for acquiring design information related to the design of the target building; a structure determination means for determining the structure that constitutes the target building based on the acquired design information; a technology acquisition means for acquiring technical information that indicates the determined structure of the target building as components to be used and the technical relationships between the components; a component derivation means that refers to the technical information based on the determined structure and derives components to be used in construction as derived components; and a comparison means for comparing the derived derived components with the shipping components indicated in the shipping component information.

[0015] Furthermore, the verification program disclosed in the present application is a verification program that causes a computer to verify shipped component information indicating shipped components to be shipped for the construction of a target building that is the subject of construction, and is characterized in that it causes the computer to execute a shipped component acquisition step that acquires shipped component information, a design acquisition step that acquires design information related to the design of the target building, a structure determination step that determines the structure that constitutes the target building based on the acquired design information, a technology acquisition step that acquires technical information that indicates the determined structure of the target building as components to be used and the technical relationships between the components, a component derivation step that refers to the technical information based on the determined structure and derives components to be used in construction as derived components, and a comparison step that compares the derived derived components with the shipped components indicated in the shipped component information. [Effects of the Invention]

[0016] The verification system disclosed in the present application has excellent effects such as reducing errors in shipped component information and reducing the amount of work by verifying shipped component information. [Brief explanation of the drawings]

[0017] [Figure 1] FIG. 1 is an explanatory diagram conceptually illustrating an embodiment of a verification system disclosed in the present application. [Figure 2] FIG. 2 is a block diagram illustrating an example of the configuration of various devices used in the verification system disclosed herein. [Figure 3] 1 is an explanatory diagram conceptually illustrating an example of technical information stored in a technical information master used in the verification system disclosed in the present application. [Figure 4] 1 is an explanatory diagram showing an example of technical information stored in a technical information master used in the verification system disclosed in the present application. [Figure 5] 1 is an explanatory diagram showing an example of technical information stored in a technical information master used in the verification system disclosed in the present application. [Figure 6] 10 is a flowchart illustrating an example of an editing process of a terminal device used in the verification system disclosed herein. [Figure 7] 10 is a flowchart illustrating an example of a verification process of a verification device used in the verification system disclosed herein. [Figure 8] FIG. 10 is an explanatory diagram conceptually illustrating an example of a comparison result in a verification process executed by the verification system disclosed in the present application. [Figure 9] FIG. 10 is an explanatory diagram conceptually illustrating an example of a comparison result in a verification process executed by the verification system disclosed in the present application. DETAILED DESCRIPTION OF THE INVENTION

[0018] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS The following describes in detail preferred embodiments of the present invention. Note that the following preferred embodiments are merely examples of the present invention and are not intended to limit the technical scope of the present invention.

[0019] <Application example> The verification system disclosed herein is applied to verifying component shipping information indicating components to be shipped for the construction of a building. More specifically, the verification system verifies the accuracy of component shipping information derived by computer processing, manual processing, or a combination of these methods by comparing the component shipping information with components derived by other methods. An application example of the verification system disclosed herein will be described below with reference to the drawings. Note that, in this application, a building to be constructed and the structure that constitutes the building are referred to as a target building and a target structure, as necessary. Also, in this application, a building and a structure that constitutes the building, for which one or more components have been set in advance, such as a component to be used, a component group that is a collection of components, or a component series indicating multiple components to be selected, are referred to as a set building and a set structure, as necessary.

[0020] <System configuration> FIG. 1 is an explanatory diagram conceptually illustrating an embodiment of the verification system disclosed herein. The verification system includes a verification device 1 that executes the main processes in the system. The verification device 1 is connected to a communication network NW, such as a local area network (LAN), a wide area network (WAN), a dedicated communication network, or the Internet. The communication network NW is connected to various devices, such as a terminal device 2 used for generating shipped component information and operating the verification device 1. The verification system also includes various databases accessible from the verification device 1, such as a specification information master DB1, an attribute information master DB2, a technical information master DB3, an order information database DB4, and an estimation information database DB5.

[0021] The cost estimator operates the terminal device 2 to generate shipping component information indicating the components to be shipped that are required for the construction of the target building, and stores the information in the cost estimation information database DB5. The verification device 1 references information stored in various databases, such as the specification information master DB1, attribute information master DB2, technical information master DB3, and order information database DB4, and verifies the shipping component information stored in the cost estimation information database DB5. After verification, an order process is executed with production and logistics facilities, such as factories, based on the shipping component information.

[0022] <Hardware configuration of each device> Next, an example of the configuration of various devices used in the verification system will be described. Fig. 2 is a block diagram that schematically shows an example of the configuration of various devices used in the verification system disclosed herein. The verification device 1 is configured using various computers such as a server computer that can communicate with each other. The verification device 1 has various components such as a control unit 10, a storage unit 11, and a communication unit 12.

[0023] The control unit 10 includes various circuits such as an information processing circuit, a clock circuit, and a register circuit, and is a processor such as a CPU (Central Processing Unit) that executes processing to control the entire device.

[0024] The storage unit 11 is a storage unit configured using nonvolatile memories such as a hard disk, a solid state drive (SSD), a redundant array of inexpensive disks (RAID), and a flash memory, and volatile memories such as various random access memories (RAMs). The storage unit 11 stores various programs such as a basic program (OS: Operating System) and application programs that run on the basic program. As application programs, various programs such as a verification program 110 for realizing the verification device 1 disclosed in the present application are stored.

[0025] The communication unit 12 is a communication device such as a LAN adapter, and is capable of connecting to a communication network NW, communicating with various devices, and accessing various databases.

[0026] A computer having the various configurations exemplified above operates as a verification device 1 by reading various programs such as the verification program 110 stored in the memory unit 11 under the control of the control unit 10 and executing various steps contained in the read programs.

[0027] The terminal device 2 includes various components such as a control unit 20, a storage unit 21, a communication unit 22, an input unit 23, and an output unit 24. The input unit 23 is a device used for inputting operations such as a keyboard or a mouse. The output unit 24 is an output device such as a liquid crystal display or a printer. The input unit 23 and the output unit 24 may be implemented with their functions integrated into a device such as a liquid crystal touch panel.

[0028] Various programs such as basic programs and application programs are stored in the storage unit 21 provided in the terminal device 2. As application programs, various programs such as an editing program 210 that executes an editing process to generate shipped component information indicating components to be shipped for the construction of a target building based on various information about the target building are stored.

[0029] The specification information master DB1 is a database that stores information such as component identification information that identifies one or more components used in the specified set building or set structure, in association with specification identification information that specifies the specifications of the set building or set structure. Note that the term "specifications" as used herein refers to information that indicates the specifications of a building or structure, such as the pattern of the exterior wall, door specifications, opening specifications, interior material specifications, exterior specifications, equipment specifications, and solar specifications, and more specifically, information that indicates specifications such as the color of the exterior wall and the type of sash.

[0030] The attribute information master DB2 is a database that stores information such as component identification information that identifies one or more components used in the specified set building or set structure, in association with attribute identification information that identifies the attributes of the set building or set structure. Note that the attributes referred to in this application are information that indicates the attributes of a building or structure, such as the shipping establishment that ships the components, the requesting department that requests the shipment, new construction, extension or renovation, model (steel frame / wooden construction), product code, etc.

[0031] The technical information master DB3 is a database that stores information such as technical information that indicates the set structure of a building as the components used and the technical relationships between the components, in association with structure identification information that specifies the set structure that makes up the building.

[0032] FIG. 3 is an explanatory diagram conceptually illustrating an example of technical information stored in the technical information master DB3 used in the verification system disclosed herein. The technical information illustrated in FIG. 3 conceptually illustrates information on the structure of an exterior wall, including wall components, window frame components, and the relationship between the wall components and the window frame components. Wall components are indicated by A1, a1, B1, b1, C, and so on, and a sash 1 is indicated as a window frame component. The relationship between the wall components and the window frame components is also illustrated as shown. FIG. 3 illustrates an exterior wall structure with a window height of 500 mm and a window height of 900 mm. Various components and their relationships corresponding to the window height and window height are stored as technical information in the technical information master DB3. Furthermore, the technical information master DB3 stores technical information in a hierarchical structure that defines the parent-child relationships of building structures or components. For example, the technical information shown in Fig. 3 is stored in a hierarchical structure, with each wall component being a lower-level component for a window frame, and window components being a lower-level component, etc. Also, for example, technical information on the structure relating to the installation of components such as a crescent, auxiliary key, etc., which are lower-level components shown as the relationship between the wall components and window frame components shown in Fig. 3, is stored.

[0033] 4 and 5 are explanatory diagrams showing an example of technical information stored in the technical information master DB3 used in the verification system disclosed herein. FIGS. 4 and 5 conceptually show information showing the structure of a projecting corner as a frame structure showing the components for the columns (projecting corner panels), connecting components for connecting the components, and the relationship between the components. FIG. 4 shows the structure of the technical information as a plan view, and FIG. 5 shows the structure of the technical information as a front view. Projecting corner panels, panels, and connectors are shown as components for the frame that make up the projecting corner. The relationships between the projecting corner panels, panels, and connectors are also shown as the illustrated arrangement. Furthermore, the technical information master DB3 hierarchically stores technical information related to higher-level and lower-level structures of the frame structure.

[0034] 3 to 5, the technical information master DB3 stores technical information that indicates the structure that constitutes a building, the components used, and the technical relationships between the components. The technical information master DB3 also stores technical information that is hierarchically organized based on the relationships between the structure and / or components.

[0035] Returning to the block diagram of Figure 2, the order information database DB4 is a database that stores information about the target building and the construction of the target building, such as the client, contract date, various specification information and attribute information about the construction of the target building, in association with the residence identification information that identifies the target building.

[0036] The cost estimation information database DB5 is a database that stores component shipment information for components ordered for shipment to business establishments such as factories and logistics offices. The cost estimation information database DB5 stores component shipment information for components for an entire building in association with information such as residence information that identifies the target building. The component shipment information stored in the cost estimation information database DB5 is derived in advance from a predetermined derivation program based on various information such as specification information and attribute information, and indicates the components and their quantities required for the target building.

[0037] In this application, various databases such as the specification information master DB1, attribute information master DB2, technical information master DB3, order information database DB4, and cost estimation information database DB5 are described as independent devices for the sake of convenience. However, when implemented, the various databases are stored as information in a memory unit of a computer such as a database server computer connected to the communication network NW. Furthermore, the various databases can be appropriately designed to be stored in the memory units 11 and 21 of the computers such as the verification device 1 and the terminal device 2, or in the memory units of hardware such as storage devices and storage media connected to the computers such as the verification device 1 and the terminal device 2.

[0038] <Device software processing> Next, the processing by the software of each device will be described. Figure 6 is a flowchart showing an example of the editing processing of the terminal device 2 used in the verification system disclosed in the present application. The editing processing is a process of acquiring shipped component information recorded in the estimation information database DB5 and editing it as necessary. The estimation person operates the terminal device 2, specifies the target building, and performs input to execute the editing processing. Under the control of the control unit 20, the terminal device 2 executes the editing program 210 stored in the memory unit 21 to execute the editing processing.

[0039] The control unit 20 of the terminal device 2 receives an input operation for designating a target building from the input unit 23 (S101), acquires shipped component information related to the received target building from the estimation information database DB5 (S102), and outputs the acquired shipped component information from the output unit 24 (S103). In step S103, the terminal device 2 displays an image based on the shipped component information on the output unit 24, which is, for example, a liquid crystal display.

[0040] The person in charge of cost estimation checks the output information on shipped materials and performs input operations such as corrections and additions to the information on shipped materials.

[0041] The control unit 20 of the terminal device 2 accepts operational input such as correction or addition from the input unit 23 (S104), corrects the shipped component information based on the accepted content, and stores the corrected shipped component information in the estimating information database DB5 (S105).

[0042] In this way, the terminal device 2 executes the editing process. Note that, although the editing process is mainly performed manually in the example described above, the shipped component information may be edited and stored in combination with the editing program 210.

[0043] 7 is a flowchart showing an example of the verification process of the verification device 1 used in the verification system disclosed herein. The verification process is a process for verifying the shipped component information edited and stored by the editing process. The control unit 10 of the verification device 1 extracts the verification program 110 stored in the memory unit 11 and executes the various steps included in the verification program 110 to perform the verification process.

[0044] The control unit 10 of the verification device 1 receives an input specifying a target building (S201). The input specifying the target building in step S201 includes receiving an input from the terminal device 2 operated by a person in charge, receiving an input of a signal as a continuous process from the terminal device 2 that executed the editing process, receiving a trigger when a predetermined condition set in advance, such as reaching a predetermined date and time, is satisfied, and the like.

[0045] The control unit 10 acquires the shipped component information associated with the residence identification information that identifies the designated target building from the estimation information database DB5 (S202). In step S202, the shipped component information to be verified is acquired.

[0046] The control unit 10 acquires design information related to the specified target building from various databases such as the order information database DB4 (S203). The design information acquired in step S203 is various information such as specification information and attribute information stored in the order information database DB4.

[0047] The control unit 10 determines the target structure that constitutes the target building from various information such as specification information and attribute information included in the extracted design information (S204), and acquires technical information related to the determined target structure of the target building from the technical information master DB3 (S205). In step S204, multiple target structures included in the target building, and further, target structures that are hierarchically associated, are determined. In step S205, technical information related to each of the determined target structures is acquired. Furthermore, if other technical information is hierarchically associated with the acquired technical information, the control unit 10 also acquires that technical information.

[0048] The control unit 10 selects a target structure from which components are to be derived from the technical information acquired in step S205 (S206), and determines whether the technical information related to the selected target structure is stored as a hierarchical structure (S207).

[0049] If it is determined in step S207 that the structure is hierarchical (S207: YES), the control unit 10 also selects the technical information of the lower structure (S208), returns to step S207, and further determines whether the technical information of the selected lower structure is also stored as a hierarchical structure (S207).

[0050] In step S207, if it is determined that the target structure is not a hierarchical structure or if it is determined that a set of technical information for a hierarchical structure has been selected (S207: NO), the control unit 10 refers to the technical information based on the determined target structure and derives the components to be used in the construction of the target building as derived components (S209). Since the technical information indicates information on the components used in the target structure, in step S209 the control unit 10 derives the components used in the determined target structure as derived components.

[0051] Furthermore, the control unit 10 determines whether or not all target structures included in the target building have been selected and derived members have been derived (S210).

[0052] In step S210, if it is determined that there is an unselected target structure (S210: NO), the control unit 10 returns to step S206, selects an unselected target structure (S206), and repeats the subsequent processes.

[0053] In step S210, when it is determined that all target structures have been selected and derived components have been derived (S210: YES), the control unit 10 compares the derived components derived in step S209 with the shipping components indicated in the shipping component information acquired from the estimation information database DB5 in step S202 (S211). In step S211, the components derived based on the technical information, etc. are compared with the components derived by a predetermined derivation program, editing process by the editing program 210, etc. In reality, the components stored in the estimation information database DB5 and the components derived based on the technical information, etc. should match, but if there is a problem such as a bug in the derivation program, a human error due to manual work, or a setting error in the technical information, some of the components will not match.

[0054] FIG. 8 is an explanatory diagram conceptually illustrating an example of a comparison result in the verification process executed by the verification system disclosed herein. FIG. 8 conceptually illustrates an example of the comparison result as a structure related to technical information. FIG. 8 conceptually illustrates an example in which there is a difference in the structure of the exterior wall exemplified as technical information in FIG. 3, in which a wall component that should have been b1 is stored as b2 in the shipped component information. Even if there is an error in the wall component stored in the estimation information database DB5, a comparison in the verification process based on the technical information, etc., will show that the components are different.

[0055] FIG. 9 is an explanatory diagram conceptually illustrating an example of a comparison result in a verification process executed by the verification system disclosed herein. FIG. 9 conceptually illustrates an example of a comparison result as a structure related to technical information. FIG. 9 conceptually illustrates an example of a case where there is a difference in the projected corner structure exemplified as technical information in FIG. 5, and shows an example in which the shipping component information stores a connector of a different length as the lowest of the six connectors connecting the projected corner panel and the panel. Even if there is an error in the components used in the projected corner structure stored in the estimation information database DB5, a comparison in a verification process based on the technical information will show that the components are different.

[0056] 7, the control unit 10 outputs the result of the comparison made in step S211 (S212). The output in step S212 is executed, for example, as a process of transmitting the comparison result to the terminal device 2 and outputting (displaying) it from the output unit 24 of the terminal device 2.

[0057] The operator of the terminal device 2 views the output comparison results and makes appropriate corrections or other processing via the input unit 23. The terminal device 2 accepts the input of corrections and stores the corrected shipped component information in the cost estimation information database DB5. Then, based on the stored shipped component information, an order is placed with a production or logistics establishment such as a factory.

[0058] In this manner, the verification device 1 executes the verification process, and the shipped component information stored in the estimation information database DB5 is updated as appropriate.

[0059] As described above in detail, the verification system disclosed herein compares the information on shipped components for a target building, which has been derived in advance by another derivation program and manually edited and stored by a person in charge, with the derived components derived based on the technical information indicating the components to be used and the technical relationships between the components. As a result, the verification system disclosed herein has excellent effects, such as being able to identify areas where there may be errors, even if there is an error in the shipped component information due to a bug in the other derivation program, human error, etc.

[0060] Furthermore, the verification system disclosed in the present application uses data that is repurposed from technical information that is created when designing a building structure and indicates the components to be used and the technical relationships between the components, and therefore has excellent effects such as being able to reduce various costs, such as expenses, time, and work, involved in preparing the technical information.

[0061] Furthermore, in the verification system disclosed in the present application, the derivation of derived components based on technical information is an application of simple pattern matching rather than a program that uses various theories as logic, which has excellent effects such as being able to reduce the costs associated with creating programs and executing processes.

[0062] The present invention is not limited to the above-described embodiments, but can be embodied in various other forms. Therefore, these embodiments are merely illustrative in all respects and should not be interpreted as limiting. The scope of the present invention is defined by the claims and is not limited in any way by the text of the specification. Furthermore, all modifications and variations that fall within the equivalent range of the claims are within the scope of the present invention.

[0063] For example, in the above embodiment, the verification device 1, the terminal device 2, and the various databases are implemented as separate devices, but the verification system disclosed herein is not limited to this and can be implemented in various system configurations. For example, the verification system disclosed herein may be configured such that the verification device 1 and the terminal device 2 are implemented as a single device, and further, some or all of the various databases may be incorporated into the verification device 1. Furthermore, when the verification system disclosed herein is implemented as a single device, it can be deployed in various forms, such as by consecutively executing the derivation process, the editing process, and the verification process as a series of processes.

[0064] The following supplementary notes are further disclosed regarding the technical contents described in the above-mentioned embodiments.

[0065] (Appendix 1) A verification system using a verification device that verifies shipping component information indicating shipping components to be shipped for the construction of a target building to be constructed, a shipping component acquisition means for acquiring shipping component information; A design acquisition means for acquiring design information relating to the design of the target building; A structure determination means for determining the structure constituting the target building based on the acquired design information; a technology acquisition means for acquiring technical information indicating the determined structure of the target building as components used and technical relationships between the components; a component deriving means for deriving components to be used in construction as derived components by referring to technical information based on the determined structure; a comparison means for comparing the derived components with the shipping components indicated in the shipping component information; A verification system comprising:

[0066] (Appendix 2) 10. The verification system of claim 1, comprising: The technology acquisition means acquires a plurality of pieces of hierarchically structured technology information based on the relevance of structures and / or components. A verification system comprising:

[0067] (Appendix 3) 1. The verification system of claim 1 or 2, comprising: the technology acquisition means acquires a plurality of pieces of technology information; the component deriving means derives a component to be derived based on each of the acquired plurality of pieces of technical information; The comparison means compares all outgoing members with the outgoing members. A verification system comprising:

[0068] (Appendix 4) 4. The verification system of claim 1, further comprising: The technical information acquired by the technical acquisition means includes information indicating the structure of the exterior wall as wall members and window frame members, and the relationship between the wall members and window frame members. A verification system comprising:

[0069] (Appendix 5) 5. The verification system of claim 1, further comprising: The technical information acquired by the technical acquisition means includes information showing the structure of the corner as a frame structure showing the members for columns, the connecting members connecting the members, and the relationship between the members. A verification system comprising:

[0070] (Appendix 6) A verification device that verifies shipping component information indicating shipping components to be shipped for the construction of a target building to be constructed, a shipping component acquisition means for acquiring shipping component information; A design acquisition means for acquiring design information relating to the design of the target building; A structure determination means for determining the structure constituting the target building based on the acquired design information; a technology acquisition means for acquiring technical information indicating the determined structure of the target building as components used and technical relationships between the components; a component deriving means for deriving components to be used in construction as derived components by referring to technical information based on the determined structure; a comparison means for comparing the derived components with the shipping components indicated in the shipping component information; A verification device comprising:

[0071] (Appendix 7) A verification program that causes a computer to verify shipping component information indicating shipping components to be shipped for the construction of a target building, On the computer, a shipping component acquisition step of acquiring shipping component information; a design acquisition step of acquiring design information regarding the design of the target building; a structure determination step of determining the structure that constitutes the target building based on the acquired design information; a technology acquisition step of acquiring technical information indicating the determined structure of the target building as components used and technical relationships between the components; a component derivation step of deriving components to be used in construction as derived components by referring to technical information based on the determined structure; a comparison step of comparing the derived derived components with the shipping components indicated in the shipping component information; A verification program characterized by executing the above. [Explanation of symbols]

[0072] 1 Verification device 10 Control Unit 11 Storage section 110 Verification Program 12 Communications Department 2. Terminal Device 20 Control Unit 21 Memory section 210 Editing Program 22 Communications Department 23 Input section 24 Output section DB1 Specification Information Master DB2 attribute information master DB3 Technical Information Master DB4 Order Information Database DB5 Estimation Information Database NW communication network

Claims

1. A verification system using a verification device that verifies shipping component information indicating shipping components to be shipped for the construction of a target building to be constructed, a shipping component acquisition means for acquiring shipping component information; A design acquisition means for acquiring design information relating to the design of the target building; A structure determination means for determining the structure constituting the target building based on the acquired design information; a technology acquisition means for acquiring technical information indicating the determined structure of the target building as components used and technical relationships between the components; a component deriving means for deriving components to be used in construction as derived components by referring to technical information based on the determined structure; a comparison means for comparing the derived components with the shipping components indicated in the shipping component information; A verification system comprising:

2. 10. The verification system of claim 1, The technology acquisition means acquires a plurality of pieces of hierarchically structured technology information based on the relevance of structures and / or components. A verification system comprising:

3. 3. The verification system according to claim 1 or claim 2, the technology acquisition means acquires a plurality of pieces of technology information; the component deriving means derives a component to be derived based on each of the acquired plurality of pieces of technical information; The comparison means compares all outgoing members with the outgoing members. A verification system comprising:

4. 3. The verification system according to claim 1 or claim 2, The technical information acquired by the technical acquisition means includes information indicating the structure of the exterior wall as wall members and window frame members, and the relationship between the wall members and window frame members. A verification system comprising:

5. 3. The verification system according to claim 1 or claim 2, The technical information acquired by the technical acquisition means includes information showing the structure of the corner as a frame structure showing the members for columns, the connecting members connecting the members, and the relationship between the members. A verification system comprising:

6. A verification device that verifies shipping component information indicating shipping components to be shipped for the construction of a target building to be constructed, a shipping component acquisition means for acquiring shipping component information; A design acquisition means for acquiring design information relating to the design of the target building; A structure determination means for determining the structure constituting the target building based on the acquired design information; a technology acquisition means for acquiring technical information indicating the determined structure of the target building as components used and technical relationships between the components; a component deriving means for deriving components to be used in construction as derived components by referring to technical information based on the determined structure; a comparison means for comparing the derived components with the shipping components indicated in the shipping component information; A verification device comprising:

7. A verification program that causes a computer to verify shipping component information indicating shipping components to be shipped for the construction of a target building, On the computer, a shipping component acquisition step of acquiring shipping component information; a design acquisition step of acquiring design information regarding the design of the target building; a structure determination step of determining the structure that constitutes the target building based on the acquired design information; a technology acquisition step of acquiring technical information indicating the determined structure of the target building as components used and technical relationships between the components; a component derivation step of deriving components to be used in construction as derived components by referring to technical information based on the determined structure; a comparison step of comparing the derived derived components with the shipping components indicated in the shipping component information; A verification program characterized by executing the above.

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