Installation work progress management system
The system simplifies and enhances the accuracy of inputting installation work progress by using a mobile terminal with color/shape-changing pins and a server for real-time monitoring, addressing the challenges of precise input and verification in installation work management.
Patent Information
- Application Number
- JP2021193686
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-11-29
- Publication Date
- 2025-08-07
- Estimated Expiration
- 2041-11-29
AI Technical Summary
Existing systems for managing installation work progress are cumbersome and prone to errors, particularly in cases where precise input is required, such as installation in wall openings, due to difficulties in accurately registering progress information and verifying authenticity.
A progress management system utilizing a mobile terminal with a display unit that changes color or shape based on touch input on pins corresponding to installation positions, allowing easy and accurate input of progress information, and a server that generates and manages this information for real-time monitoring.
Reduces labor required for inputting progress information, enhances accuracy by visual confirmation of touch operations, and enables real-time monitoring and reporting of construction progress.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a system for managing progress of installation work. [Background technology]
[0002] Generally, the payment of the contract fee for work carried out at a construction site by an order placed by the client to the contractor is made on a progress payment basis. Specifically, the amount of work required to determine the amount of payment for progress is determined, for example, by the construction department of the client checking the contents of the documents submitted by the contractor at the beginning of each month, and if there is no discrepancy between this and the amount of work understood by the client, payment for the progress portion is made. However, there was a problem in that it took a considerable amount of time for the contractor to prepare the documents to submit to the client, and the client had to spend a huge amount of time on the verification process.
[0003] To address these problems, a technology has been disclosed that includes a mobile terminal device, a server, and a progress management device that reads data groups such as image data representing blueprints from the server, creates a delivery file, sends it to the mobile terminal device of the work team, and aggregates the progress information registered in the mobile terminal device to manage progress, the mobile terminal device having a slave database that stores the data groups, and displays the construction location on the screen using lines that overlap with the blueprints or areas surrounded by lines, while sending the registered progress information to the progress management device by touch operation (see, for example, Patent Document 1). [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2013-206099 Summary of the Invention [Problem to be solved by the invention]
[0005] However, in the technology described in Patent Document 1, the construction location is displayed by a line segment that overlaps with the design drawing or an area surrounded by the line segment, and the progress information is registered by touching the identifier of the line segment or the area. Therefore, while this method may be applicable to construction work, interior work, equipment work, etc. that cover a relatively large area, in the case of installation work, such as installation in a wall opening, it is difficult to accurately touch the target area, making the process of inputting progress information cumbersome. Also, because there is a risk of inputting mistakes in the progress information, a separate new task is created to confirm the authenticity of the progress information, which creates the problem of increasing the burden rather than saving labor.
[0006] Furthermore, in the case of construction work, interior work, equipment work, etc., which cover a relatively large area, it is possible to grasp the overall progress by understanding the progress on an area-by-area basis. However, in the case of installation work, such as installation in wall openings, progress management is required individually for all installation targets to be installed within the installation work area, and therefore the display format described in Patent Document 1 was not able to meet such requirements, which was an issue.
[0007] Therefore, the present invention has been made in consideration of the above-mentioned problems, and aims to provide a progress management system for installation work that reduces the labor required for inputting progress information and makes it easy to grasp the progress status by allowing the input of progress information to be performed by a simple touch operation on a pin attached to the object for inputting progress information. [Means for solving the problem]
[0008] Form 1: One or more embodiments of the present invention include a mobile terminal carried by an installation contractor, a server managed and operated by a construction manager, and a construction manager's terminal for viewing and editing information in the server, wherein the mobile terminal includes a mobile terminal-side receiving unit that receives information from the server, an input unit that inputs information including progress information on the completion of the installation work on the day, a mobile terminal-side transmitting unit that transmits the input information including the progress information on the completion of the work to the server, and a display unit that displays information including a progress information input screen, and the server includes a server-side receiving unit that receives information including the progress information on the completion of the installation work input on the mobile terminal, a progress information generating unit that generates progress information on the installation work based on the received information including the progress information on the completion of the work, and a display unit that displays information including the progress information on the installation work based on the generated information including the progress information on the installation work. and a server-side transmitting unit that transmits information to the mobile terminal, wherein the completion progress information input screen displays information including drawing information corresponding to the installation area and display information that clearly shows the correspondence between the installation position of the fixture and the fixture symbol that indicates the information of the fixture, and when the installation contractor touches a pin that indicates the progress status of the installation work in a form including a visible color or shape and is displayed in a display area corresponding to at least one of the installation position of the fixture or the fixture symbol, the pin changes its form including the color or shape and is displayed on the display unit, and the mobile terminal-side transmitting unit transmits the progress status to the server as the completion progress information.
[0009] Form 2: One or more embodiments of the present invention propose a system for managing the progress of installation work, characterized in that a completion rate according to the construction stage is individually predetermined for each of the multiple building materials.
[0010] Form 3: One or more embodiments of the present invention propose an installation work progress management system, characterized in that the mobile terminal is a smartphone, the server is equipped with a display control unit that generates a display image in response to operation inputs from the installation contractor, the display control unit generates display information that displays only the installation position and fixture symbol for fixtures in the same construction stage within the installation work area, and the server-side transmission unit transmits the generated display information to the mobile terminal.
[0011] Form 4: One or more embodiments of the present invention propose a progress management system for installation work, characterized in that the input form of the progress information by the input unit has a form that references order data, and when the installation contractor inputs the progress information by referring to the order data, the system has an input mode for the progress information that targets all of the fixtures at the same construction stage within the installation area that corresponds to the installation position of the fixture or the fixture symbol.
[0012] Form 5: One or more embodiments of the present invention propose a system for managing the progress of installation work, characterized in that when the server determines from the progress information that construction has been completed for a specific fixture, it transmits an input format for a self-inspection report corresponding to the specific fixture from the server-side transmitting unit to the mobile terminal. [Effects of the Invention]
[0013] According to one or more embodiments of the present invention, by inputting progress information by a simple touch operation on a pin attached to an object for inputting progress information, it is possible to achieve an effect of reducing the labor required for inputting progress information. In addition, since the display form, including the color or shape of the pin, changes depending on the progress of the installation work, it is possible to easily grasp the progress. Furthermore, since the construction manager can grasp the progress in real time using the construction manager terminal, it is possible to reduce the work of checking on site. [Brief explanation of the drawings]
[0014] [Figure 1] 1 is a diagram showing the configuration of an installation work progress management system according to an embodiment of the present invention; [Figure 2] FIG. 1 is a diagram showing functional blocks of an installation work progress management system according to an embodiment of the present invention. [Figure 3] FIG. 2 is a diagram showing the configuration of a storage unit in a server of an installation work progress management system according to an embodiment of the present invention. [Figure 4] FIG. 10 is a diagram showing an example of a key plan (drawing information) displayed on a display unit of an installation work progress management system according to an embodiment of the present invention. [Figure 5] 1 is a diagram illustrating an example of an image display of a user master of an installation work progress management system according to an embodiment of the present invention. FIG. [Figure 6] 1 is a diagram illustrating an example of an image display of a contractor master data of an installation work progress management system according to an embodiment of the present invention; [Figure 7] 1 is a diagram illustrating an example of an image display of a construction master of an installation work progress management system according to an embodiment of the present invention. FIG. [Figure 8] 1 is a diagram illustrating an example of an image display of a classification master of an installation work progress management system according to an embodiment of the present invention. FIG. [Figure 9] 1 is a diagram illustrating an example of an image display of a base master of an installation work progress management system according to an embodiment of the present invention. FIG. [Figure 10] 10 is a diagram illustrating an example of an image display related to a key plan list of the installation work progress management system according to the embodiment of the present invention. FIG. [Figure 11] 10 is a diagram illustrating an example of an image display related to key plan linking in the installation work progress management system according to the embodiment of the present invention. FIG. [Figure 12] 10 is a diagram illustrating an example of an image display related to input of results in the installation work progress management system according to the embodiment of the present invention. FIG. [Figure 13]10 is a diagram illustrating an example of an image display related to input of results using a key plan of the installation work progress management system according to the embodiment of the present invention. FIG. [Figure 14] 10 is a diagram illustrating an example of a screen display when partial display is performed in actual result input using a key plan of an installation work progress management system according to an embodiment of the present invention. FIG. [Figure 15] 1 is a diagram illustrating an example of a screen display for a progress inquiry of an installation work progress management system according to an embodiment of the present invention. FIG. [Figure 16] 10 is a diagram illustrating an example of a screen display relating to a list of self-inspection reports in an installation work progress management system according to an embodiment of the present invention. FIG. [Figure 17] 10 is a diagram illustrating a screen display relating to a daily work report of an installation work progress management system according to an embodiment of the present invention. FIG. DETAILED DESCRIPTION OF THE INVENTION
[0015] <Embodiment> The installation work progress management system 1 according to this embodiment will be described with reference to FIGS. 1 to 17. FIG.
[0016] <Configuration of installation work progress management system 1> As shown in FIG. 1, the installation work progress management system 1 according to this embodiment includes a mobile terminal 100, a server 200, and a terminal 300 for a construction manager. The mobile terminal 100 , the server 200 , and the construction manager's terminal 300 are connected via a network 400 .
[0017] The mobile terminal 100 is a mobile terminal carried by an installation contractor, and can be, for example, a smartphone. In this embodiment, the mobile terminal 100 displays information including drawing information corresponding to the installation area and display information indicating the correspondence between the installation position of the fixture and the fixture symbol indicating the fixture information, and on the display screen, it is possible to input information such as progress information on the progress of work, view the information, and perform editing processes.
[0018] The server 200 is managed and operated by a construction manager. In this embodiment, the server 200 updates, modifies, etc., user master data, installation contractor master data, construction master data, classification master data, and base master data (described later) stored in the server 200 based on information such as progress information received from the mobile terminal 100. The server 200 also provides the mobile terminal 100 with display information for inputting information, etc. Specifically, the server 200 provides display information for importing order data, importing key plans, linking key plans, inputting actual results, checking progress, creating a self-inspection report, creating a daily work report, and the like, in response to the operation of the mobile terminal 100. The server 200 also stores and manages various display information, etc. Furthermore, the server 200 is linked via a network to an external order data management system that manages and operates order data.
[0019] The construction manager terminal 300 is a terminal used by the construction manager to view and edit information stored in the server 200, and may be, for example, a desktop personal computer or a notebook computer. Specifically, the construction manager terminal 300 is used to view and edit the user master that stores and manages user master data, the installation contractor master that stores and manages installation contractor master data, the construction master that stores and manages construction master data, the classification master that stores and manages classification master data, and the base master that stores and manages base master data, all of which are stored in the server 200. Furthermore, the construction manager terminal 300 allows the construction manager to view the progress status and completed volume information of the construction work at any time.
[0020] <Configuration of mobile terminal 100> As shown in FIG. 2, the mobile terminal 100 according to this embodiment includes a mobile terminal side receiving section 110, an input section 120, a mobile terminal side transmitting section 130, and a display section 140.
[0021] The mobile terminal side receiving unit 110 receives various information from the server 200. The information received by the mobile terminal side receiving unit 110 includes display information etc. The information received by the mobile terminal side receiving unit 110 is output to, for example, a display unit 140 etc., which will be described later.
[0022] The input unit 120 inputs information including progress information on the installation work volume for the day, for example, through operations by the installation contractor. The input unit 120 is configured, for example, with a touch panel, and the installation contractor inputs information through touch operations. The information input in the input unit 120 is output to the mobile terminal side transmission unit 130, which will be described later.
[0023] The mobile terminal side transmitting unit 130 transmits information including the progress information of the completed work input from the input unit 120 to the server 200 .
[0024] The display unit 140 is, for example, a display device in which a liquid crystal panel and a touch panel are stacked, and in this embodiment, for example, displays information including a progress output information input screen. Information including the progress information input screen for the volume of work is transmitted from the server 200 via the mobile terminal side receiving unit 110. The progress information input screen consists of information including drawing information (key plan) corresponding to the installation work area and display information that clearly shows the correspondence between the installation position of the fixture and the fixture symbol that indicates the fixture information. Specifically, as shown in Figure 4, display information is added to the drawing information (key plan) that clearly shows the correspondence between the installation position of the fixtures and the fixture symbols that indicate the information about the fixtures, and the correspondence is made clear by displaying a straight line connecting the installation position of the fixtures and the fixture symbols that indicate the information about the fixtures. In addition, a large circle is drawn at the end of the straight line extending from the fixture's installation position, and the upper part of the semicircle displays the fixture symbol for the corresponding fixture, while the lower semicircle displays, for example, a serial number. Above the large circle, a graphic indicating the progress is displayed, as shown in the lower right of Figure 4. For example, the circular graphic (A) indicates an uninstalled state, the graphic (B) with a white square inside indicates that the frame has been installed, the graphic (C) with the sides of a square and a white small circle inside indicates that the door has been installed, and the graphic (D) with a filled-in square indicates that the hardware has been installed. In this way, the progress of the drawing display format on the key plan from (A) to (D) indicates greater progress. In the following, the shapes (A) to (D) will be referred to as "pins." In addition, when the installation contractor touches a pin that indicates the progress of the installation work in a form including a visible color or shape, which is displayed in a display area corresponding to at least one of the installation position of the fixture or the fixture symbol, the pin changes its form including the color or shape and is displayed on the display unit 140. In other words, when the installation contractor touches the pin that indicates the progress of the installation work in a form including a visible color or shape displayed in a display area corresponding to at least one of the installation position of the fixture or the fixture symbol, not only does the shape of the pin change, but the color also changes. In addition to the fixture symbol, the pins can also be selectively displayed at the installation location. In this case, when the installer touches one of the pins, the appearance, including the color or shape, of the other pin also changes in the same way.
[0025] <Configuration of Server 200> As shown in FIG. 2, the server 200 according to this embodiment includes a server-side transmitting unit 210, a progress information generating unit 220, a server-side receiving unit 230, a calculating unit 240, a display control unit 250, and a memory unit 260.
[0026] The server-side transmitting unit 210 transmits information including display information to the mobile terminal 100.
[0027] The progress information generating unit 220 generates installation work progress information based on information including completed progress information received by the server-side receiving unit 230, which will be described later. The progress information generated by the progress information generating section 220 is output to the calculating section 240, which will be described later.
[0028] The server-side receiving unit 230 receives information including the progress information of completed work input by the installation contractor using the mobile terminal 100. The information including the progress information of completed work received by the server-side receiving unit 230 is output to the progress information generating unit 220 and the display control unit 250.
[0029] The calculation unit 240 calculates the payment amount to the installation contractor based on information including the installation progress information generated by the progress information generation unit 220.
[0030] The display control unit 250 generates a display image in response to a touch operation input by the installation contractor on the mobile terminal 100. Specifically, the display control unit 250 generates a display image in response to a touch operation input by the installation contractor on the mobile terminal 100 on a display screen stored in the server 200. Information on the display screen generated by the display control unit 250 is transmitted to the mobile terminal 100 via the server-side transmission unit 210.
[0031] 3, the storage unit 260 stores and preserves, for example, a user master, an installation contractor master, a construction master, a classification master, a base master, etc. The storage unit 260 also stores and preserves various types of information including display information.
[0032] <Various processes in the installation work progress management system 1> Various processes of the installation work progress management system 1 according to this embodiment will be described with reference to FIGS. 5 to 17. FIG.
[0033] <Registering and editing user information> FIG. 5 shows an example of a screen display for editing user registration. If you select "User Master" from the menu, you will be taken to the screen shown in Figure 5. First, for users who are already registered, enter their name in the "Name" field and touch the "Search" key. The registration information will be displayed at the bottom, and you can view it. In the example of Figure 5, if you enter "Yamada Taro" in the "Name" field, you can view information such as "Employee Code: 0001," "Name: Yamada Taro," "Furigana: Yamada Taro," "Email Address: Aa@bb.co.jp," and "Authority: Administrator." You can also edit the registration information by touching the pencil button on the bottom left.
[0034] To register a new user, touch the "New Registration" button in the upper right corner of the screen, and the display screen will change to the image below. Here, enter information such as "Employee Code," "Name," "Email Address," "Password," "Affiliated Location," "Authority," and "Login Permission," and then touch the "Execute" button to complete the new user registration.
[0035] <Register and edit installation contractors> 6 shows an example of a screen display relating to the registration and editing of an installation contractor. The installation contractor registration and editing process is a process that is executed by the installation manager using the installation manager terminal 300. When you select "Contractor (Craftsman) Master" from the menu, the screen shown in Figure 6 will appear. First, for installation contractors who are already registered, enter the contractor's name in the "Contractor Name" field, enter the "Viewable Project Name," and touch the "Search" button.The registered information will then be displayed at the bottom, and you can view it. In the example of Figure 6, if you enter "Yamada Kogyo" in the "Company Name" field, you can view information such as "ID: A001," "Company Name: Yamada Kogyo," and "Email Address: yamada@ind.co.jp." You can also edit the registered information by touching the pencil button on the bottom left.
[0036] If you want to register a new installation contractor, touch the "New Registration" button in the top right corner of the screen and the display will change to the image below. Here, enter information such as "ID," "location name," "contractor name," "email address," "mobile phone number," "telephone number," "fax number," "password," "login permission," "job type (check door or shutter job)," "president code," "permission to view progress inquiries," and "viewable project names," and touch the "Execute" button to complete registration as a new installation contractor. Regarding "permission to view progress inquiries," the construction manager can set whether or not to allow viewing using the construction manager's terminal, based on a request from the installation contractor's president. In other words, security can be ensured because viewing permissions can be managed based on the request of the installation contractor's president. Furthermore, by having the construction manager set the "viewable project names," the details of projects handled by other installation contractors cannot be viewed.
[0037] <Construction registration and editing> FIG. 7 shows an example of a screen display related to registering and editing construction work. When you select "Construction Master" from the menu, the screen shown in Figure 7 will appear. Enter the "Type of work (use the selection button to select door work or shutter work)", "Order number", "Project name", "Constructor name", "Contractor", "Sales representative", "Designer", "Construction unit price", etc. on the display screen, and touch the "Search" button. Information about the registered project will be displayed at the bottom, and you can view the registered information. In the example of Figure 7, when you enter the above specified information, you can view the construction information below. Note that although door information is shown here as an example, if you set the work type to shutters, you can view information about shutters. You can also edit registered information by touching the pencil button on the bottom left. To register new construction information, touch the "New Registration" button on the top right of the screen and enter the necessary information on the screen that appears.
[0038] The bottom of Figure 7 shows the construction information editing screen. On this display screen, enter information such as "job type," "order number," "project name," "section," "section manager," "person in charge (construction manager)," "sales representative," "design representative," "construction representative," "construction worker name," "construction date," and "contractor," and then touch the "Execute" button to reflect the edited content. Furthermore, construction information can be registered automatically by importing information from the order data management system without having to go through these steps, so using this method can help reduce the workload.
[0039] <Classification registration and editing> 8 shows an example of a screen display related to registering and editing a classification. Here, a "classification" is, for example, a product classification of fittings. When you select "Classification Master" from the menu, the screen shown in Figure 8 will appear. Enter the "Business Type (use the selection button to select door business or shutter business)," "Classification Number," "Classification Name," "Product Code," etc. on the display screen, and touch the "Search" button. Information about the registered classification will be displayed at the bottom, and you can view the registered information. Although door information is shown as an example here, if the business type is set to shutter, information about shutters can be viewed.
[0040] Touching the pencil button on the bottom left takes you to the classification editing screen shown at the bottom of Figure 8, where you can also edit the registered information. To edit, enter information such as "Type of Work (use the selection button to select door or shutter work)," "Classification Number," "Classification Name," "Product Code," "Estimated Unit Price for Construction," "Display Order," and "Percentage," then touch the "Execute" button to reflect the edited information. The "Estimated Unit Price for Construction" is generally the unit price per square meter, and the completed work is determined by multiplying the estimated unit price by the number of square meters installed, determined by the width (W) and height (H) of the installation location, and the completed work percentage (%) corresponding to the construction stage predefined for each individual fixture. The "Unit Price per Location" displayed next to the "Estimated Unit Price for Construction" is used when entering the unit price per location, rather than the unit price per square meter, in the "Estimated Unit Price for Construction." The "Manually Input Unit Price" is used for shutters, etc., where the unit price varies by location. In this way, since the unit price is determined in advance, compared to when the installation contractor determines and manually inputs the completed amount, it is possible to save time and maintain the reliability of the completed progress information. Also, a unique self-inspection report format is linked to each classification (product name). Therefore, even for the self-inspection report created to report the results of the self-inspection conducted after the installation of the product is completed, a unique input format for the self-inspection report can be provided to the mobile terminal 100.
[0041] <Register and edit bases> FIG. 9 shows an example of a screen display related to registering and editing a location. When you select "Location Master" from the menu, the screen shown in Figure 9 will appear. Enter the "Business Type (use the selection button to select door or shutter business)," "Location Code," "Location Name," etc. on the display screen, and touch the "Search" button. Information about the registered classification will be displayed at the bottom, and you can view the registered information. You can also edit your registration information by touching the pencil button on the bottom left. Although door information is shown as an example here, if the business type is set to shutter, information about shutters can be viewed.
[0042] To register a new location, touch the "New Registration" button in the top right corner of the screen, and the display will change to the image below. Here, enter information such as "Business Type (use the selection button to select door business or shutter business)," "Base Code," "Base Name," and "Display Order," and touch the "Execute" button to complete the new base registration. Note that by entering a small number in "Display Order," you can have the base displayed in the current display order.
[0043] <Importing order data> Order data can be imported from the order data management system by simply touching a button. If you want to enter the data manually, you can touch the "New Registration" button, enter the required information, and then touch the "Execute" button to register the new information.
[0044] <Import Key Plan> FIG. 10 shows an example of a screen display for importing a key plan. If you select "Import Key Plan" from the menu, the screen shown in Figure 10 will appear. Select the "Order Number," "Project Name," enter the "Floor Level," etc. on the display screen, and touch the "Search" button. Information about the registered key plan will be displayed at the bottom, and you can view the registered information. You can also link a key plan by touching the pencil button on the bottom left. You can also delete the link to a key plan by touching the link button on the bottom right, and you can delete a key plan by touching the key plan button.
[0045] In the upper diagram of Fig. 10, touching the key plan import button in the upper right will take you to the lower diagram of Fig. 10, where you can enter the "order number" and "floor level," select and enter the "construction name," select the import file, and touch the "execute" button to import the image data of the key plan. Specifically, you can obtain image data such as that shown in Fig. 4.
[0046] <Linking key plans> FIG. 11 shows an example of a screen display related to linking key plans. At the bottom of Figure 10, if you touch the pencil button located to the left of the object to which you want to link the key plan, the image displayed will change to Figure 11.In Figure 11, if you enter a code in the "Construction Drawing Code" field, the image displayed will change to the one shown in Figure 4.
[0047] In the transitioned display image, place a pin by touching the fitting that corresponds to the selected construction drawing symbol. After placing the pin, touch the "Execute" button. At this time, the color of the corresponding fitting symbol at the bottom of Figure 11 will change. After placing all pins, touch the "Update" button to reflect the operation details in the server 200.
[0048] <Actual data entry from order data> FIG. 12 shows an example of a screen display for inputting actual results from order data. When you select "Enter actual results (from order data)" from the menu, the screen shown in Figure 12 will appear. Enter information such as "base name," "order number," "project name," and "floor level" in the upper part of Figure 12, and touch the "Search" button to display the corresponding information at the bottom of the figure. If you wish to delete information, touch the "Delete" button corresponding to the information and the information will be deleted.
[0049] Touching the "Input" button in the lower left corner of the figure transitions to the screen shown in the lower diagram of Figure 12. Entering information such as "Type" and "Working Drawing Code" here displays information like that shown in the lower diagram. If a frame is selected as the "Type," a list of uninstalled product categories is displayed. If a door is selected as the "Type," a list of product categories with the frame installed is displayed. If hardware is selected as the "Type," a list of product categories with the door installed is displayed. Check the box to the left of the displayed information, enter information such as "Contractor" and "Installation Date and Time," and touch the "Execute" button. The input information is updated on the server 200. The screen shown in the lower diagram of Figure 12 also includes check boxes for "Bulk Input of Frame / Door" and "Bulk Input of Frame / Door / Hardware." Checking these boxes allows you to perform bulk input of the frame / door or frame / door / hardware. Furthermore, in order to encourage installers to make effective use of this bulk input function, when an installer refers to the order data and inputs progress information, a pop-up screen may be displayed requesting the installer to indicate whether or not to input all of the same fixtures within the installation area corresponding to the fixture's installation position or fixture symbol.
[0050] <Enter results from Key Plan> FIG. 13 shows an example of a screen display for inputting results from a key plan. When you select "Enter actual results (from key plan)" from the menu, the screen shown in Figure 13 will appear. Enter information such as "base name," "order number," "project name," and "floor level" in the upper part of Figure 13, and touch the "Search" button to display the corresponding information at the bottom of the same figure. If you wish to delete information, touch the "Delete" button corresponding to the information and the information will be deleted.
[0051] Here, touching the "All" button in the lower left corner of the figure transitions to the screen display shown in the lower diagram of Figure 13. Here, if "All" is selected for "Type" in the lower diagram of Figure 13, the display screen shown in the lower diagram of Figure 13 and the display screen shown in Figure 4 are displayed together on the display unit 140 of the mobile terminal 100. Then, after entering information such as the "Contractor Name" and "Installation Date and Time" and entering the progress status by touch operation, touching the "Execute" button causes the input information to be reflected in the server 200. Note that if "All" is selected for "Type" in the lower diagram of Figure 13, the display screen shown in the lower diagram of Figure 13 and the display screen shown in Figure 4 are displayed together on the display unit 140 of the mobile terminal 100. For "Type" in the lower diagram of Figure 13, "All," "Frame," "Door," and "Hardware" can be selected. For example, if "Frame" is selected, only uninstalled fixtures are displayed as pins. Furthermore, if "Door" is selected, only fixtures with frames installed are displayed as pins. If "Hardware" is selected, only fixtures with doors installed are displayed as pins, as shown in Figure 14. The color and shape of the pin change depending on the number of times the pin is touched. Specifically, the default color of the pin is light blue (unattached state), and when the pin is touched in this state, the color of the pin changes to green (frame-attached state), and when the pin is touched again, the color of the pin changes to orange (door-attached state), and when the pin is touched again, the color of the pin changes to pink (metal fittings-attached state), for example.
[0052] <Production volume inquiry> FIG. 15 shows an example of a screen display related to a production volume inquiry. When you select "Inquiry on completed work volume" from the menu, the screen shown in Figure 15 will appear. When you enter information such as "base name," "contractor name," "date," and "project name" in the upper part of Figure 15 and touch the "Search" button, information about the contractor's completed work volume will be displayed in the lower part of the same figure. Also below that, a list of the work that the contractor has installed and performed will be displayed. Furthermore, when you touch the "Details" button, details of each individual work will be displayed, as shown in the lower part of Figure 15.
[0053] <List of self-inspection reports> FIG. 16 shows an example of a screen display relating to a list of self-inspection reports. When you select Self-inspection report from the menu, the screen shown in Figure 16 will appear. Enter information such as "base name," "order number," "project name," "floor level," "contractor name," "construction engineer name," "inspection date," and "construction drawing code" in the upper part of Figure 16, and touch the "search" button to display construction information by floor in the lower part of the same figure.
[0054] Touching the pencil button in the lower left corner of the upper diagram of Figure 16 displays the key plan shown in Figure 4. Touching the pin further changes the screen display to the lower diagram of Figure 16. The lower diagram of Figure 16 displays the self-inspection report input format corresponding to the construction drawing number. Entering the required information for each field completes the self-inspection report. Once completed, touching the "Output self-inspection report" button in the upper right corner of the upper diagram of Figure 16 outputs the self-inspection report in an Excel file. In other words, each classification (product) is pre-assigned a self-inspection report format. When the installer touches a pin on the key plan, the self-inspection report format associated with the fixture corresponding to the pin is displayed on the display 140 of the mobile device 100, allowing the installer to enter the required information.
[0055] <Daily Work Report> FIG. 17 shows an example of a screen display relating to a daily work report. When you select Daily Work Report from the menu, the screen shown in Figure 17 will appear. Enter information such as "Contractor Name," "Project Name," and "Work Date" in the upper part of Figure 17, and touch the "Search" button to display the contractor's information in the lower part of the same figure.
[0056] When you touch the pencil button in the bottom left corner of the top image of Figure 17, the screen will change to the one shown in the bottom image of Figure 17. The input format for the daily work report is displayed in the bottom image of Figure 17, and you can complete the creation of the daily work report by entering the required information in each field. Once complete, touch the "Output daily report" button in the top right corner of the top image of Figure 17 to output the daily work report in an Excel file. Also, touch the "Output work certificate" button in the top right corner of the top image of Figure 17 to output a work certificate in an Excel file.
[0057] <Actions and Effects> As described above, the installation work progress management system 1 according to this embodiment includes the mobile terminal 100, the server 200, and the construction manager terminal 300. The mobile terminal 100 includes a mobile terminal-side receiving unit 110 that receives information from the server 200, an input unit 120 that inputs information including the installation work progress information for the day, a mobile terminal-side transmitting unit 130 that transmits information including the inputted completion progress information to the server 200, and a display unit 140 that displays information including the completion progress information input screen. The server 200 includes a server-side receiving unit 230 that receives information including the completion progress information inputted on the mobile terminal 100, a progress information generating unit 220 that generates installation work progress information based on the information including the received completion progress information, and a display unit 140 that displays information including the installation work progress information input screen. The system comprises a calculation unit 240 that calculates the amount to be paid to the installation contractor based on information including information on the installation progress, and a server-side transmission unit 210 that transmits information to the mobile terminal 100. The completion progress information input screen displayed on the display unit 140 of the mobile terminal 100 displays information including drawing information corresponding to the installation area and display information that clearly shows the correspondence between the installation position of the fixture and the fixture symbol that indicates the information on the fixture. When the installation contractor touches a pin that shows the progress status of the installation work in a form including a visible color or shape and is displayed in a display location corresponding to at least one of the installation position of the fixture or the fixture symbol, the pin changes its form including the color or shape and is displayed on the display unit 140, and the mobile terminal-side transmission unit 130 transmits the progress status to the server 200 as completion progress information. In other words, the completion progress information input screen displays information including drawing information corresponding to the installation construction area, and display information that links the installation position of the fixture and a fixture symbol indicating information about the fixture. Therefore, the installation contractor can input progress information by using the installation position of the fixture as a key, and can also input progress information by using the fixture symbol as a key for the installation position, which makes the input operation of progress information more flexible and simplified. In addition, when the installation contractor touches the display area corresponding to at least one of the fixture installation position or fixture symbol, a pin indicating the progress of the installation work in a form including a visible color or shape is displayed on the display unit 140 at the display area corresponding to at least one of the fixture installation position or fixture symbol. Therefore, the installation contractor can visually determine whether the touch operation has been performed correctly, thereby preventing input errors in the progress information of completed work. Therefore, since the object for inputting the output information can be easily specified by touch operation, the input work of the output information can be reduced and input errors can be prevented. Furthermore, when the installer touches the display area corresponding to either the fixture installation position or the fixture symbol, it is possible to display a pin on the display unit 140 in the display area corresponding to both the fixture installation position and the fixture symbol, which indicates the progress of the installation work in a form that includes a visible color or shape. Using such a display form makes it possible to visually and accurately determine whether the touch operation was performed correctly, and furthermore, it is possible to improve the effectiveness of preventing input errors. Furthermore, the appearance of the pin, including its color or shape, changes depending on the progress, making it easy to visually grasp the progress of the entire construction site. Furthermore, the construction manager can use the construction manager terminal 300 to view the progress of the construction work and information on the completed amount at any time. Furthermore, with the above configuration, it is not necessary to check the output (progress) at the actual installation site, and daily progress management can be performed in real time. In addition, since progress can be visually checked on the Key Plan, accurate progress can be easily reported to the construction company (general contractor) and the client.
[0058] Furthermore, in the installation work progress management system 1 according to this embodiment, a progress rate according to the construction stage is individually set in advance for each of a plurality of fittings. In other words, compared to when the installation contractor independently determines and manually inputs the completed amount, this saves time and effort and also maintains the reliability of the completed amount progress information. This prevents unnecessary trouble between the construction manager and the installation contractor, and also simplifies the process of determining the authenticity of progress information, thereby reducing labor overall.
[0059] In addition, in the installation work progress management system 1 of this embodiment, the mobile terminal 100 is a smartphone, and the server 200 is equipped with a display control unit 250 that generates a display image in response to operation inputs from the installation contractor, and the display control unit 250 generates display information that displays only the installation position and fitting symbol for fittings at the same construction stage within the installation work area, and the server-side transmission unit 210 transmits the generated display information to the mobile terminal 100. In other words, when an installation contractor uses a smartphone as the mobile terminal 100 to specify and display only the installation position and fixture symbol for fixtures at the same construction stage within the installation area, only the drawing information and information about the specified fixture will be displayed on the display screen of the smartphone as the mobile terminal 100. Therefore, for example, an installation contractor can input progress information by sequentially specifying only the fixtures and fittings at the same construction stage within the installation area where the installation work was carried out on the day, and can input progress information efficiently in a short amount of time with simple operations. Furthermore, progress information on the amount of work completed can be input by touching the pins attached to the displayed fixtures, so progress information on the amount of work completed for the day can be input accurately without making any mistakes. Furthermore, since the mobile terminal 100 is a smartphone, it is not easy to find the desired installation position or fixture symbol in the small display area when the construction site is large. However, as described above, if only the drawing information and information about fixtures at the same construction stage within the installation construction area are displayed, the desired installation position and fixture symbol can be found in a short time before inputting the progress information, thereby further reducing the labor required to input progress information.
[0060] Furthermore, in the installation work progress management system 1 according to this embodiment, the input form of the progress information by the input unit 120 has a form that refers to the order data, and when the installation contractor inputs the progress information by referring to the order data, it has an input mode of progress information that inputs all the fixtures at the same construction stage within the installation area corresponding to the fixture installation position or fixture symbol. In other words, if the installation contractor selects an input mode that refers to the order data, when the installation contractor inputs the progress information, all fixtures at the same construction stage within the installation area corresponding to the fixture installation position or fixture symbol can be input. For example, when the installation process of fixtures and fittings is a multi-stage process, in order to improve the efficiency of the construction work, a work procedure is often adopted in which the same step is completed for all identical fixtures and fittings in the installation area on that day, in accordance with the order of the fixture and fitting installation steps, and only after completing the same step for all identical fixtures, proceed to the next step. In such cases, if the progress information for the day can be input all at once for all fixtures at the same construction stage, rather than inputting it individually for each fixture, the labor required for inputting progress information can be further reduced. It can also reduce input errors in progress information.
[0061] In addition, in the installation work progress management system 1 of this embodiment, when the server 200 determines from the progress information that construction has been completed for a specific fixture, it transmits an input format for the self-inspection report corresponding to the specific fixture from the server-side transmission unit 210 to the mobile terminal 100. In other words, when it is determined from the progress information that construction of a specific fixture has been completed, the input format for the self-inspection report corresponding to the specific fixture can be displayed on the display unit 140 of the mobile terminal 100. Therefore, different self-inspection items can be displayed on the display unit 140 of the mobile terminal 100 for each fixture linked to the performance progress management system 1, so that the input of self-inspection items can be performed using the mobile terminal 100. Therefore, since the self-inspection report can be easily created, not only is the input work of progress information of completed work saved, but also the work load of the installation contractor can be reduced.
[0062] The installation work progress management system 1 of the present invention can be realized by recording the processing of the installation work progress management system 1 according to this embodiment in a recording medium that can be read by a computer system, and reading and executing the program recorded on this recording medium into the installation work progress management system 1. The computer system here includes hardware such as an OS and peripheral devices.
[0063] Furthermore, if a WWW (World Wide Web) system is used, the "computer system" also includes the homepage provision environment (or display environment). The above program may be transmitted from a computer system that stores the program in a storage device or the like to another computer system via a transmission medium or by transmission waves in the transmission medium. Here, the "transmission medium" that transmits the program refers to a medium that has the function of transmitting information, such as a network (communication network) like the Internet or a communication line (communication line) like a telephone line.
[0064] The program may also be a program for implementing some of the functions described above, or may be a so-called differential file (differential program) that can implement the functions described above in combination with a program already stored in the computer system.
[0065] Although the embodiments of the present invention have been described above in detail with reference to the drawings, the specific configuration is not limited to this embodiment and includes designs within the scope of the gist of the present invention. For example, in this embodiment, a pin indicating the progress of the installation work in a form including a visible color or shape at a display location corresponding to either the installation position of the fixture or the fixture symbol is displayed on the display unit 140. However, pins indicating the progress of the installation work in a form including a visible color or shape at display locations corresponding to both the installation position of the fixture and the fixture symbol may be displayed on the display unit 140. Furthermore, the pin may change only the color, only the shape, or both the color and the shape in response to a touch operation by the installer.
[0066] Furthermore, for example, in this embodiment, the completed volume is determined by multiplying the estimated construction cost by the number of square meters to be installed, which is determined from the width dimension (W) and height dimension (H) of the installation location, and the completed volume percentage (%) corresponding to the construction stage that has been determined in advance for each individual fixture, but the completed volume may also be determined by multiplying the construction cost per location by the completed volume percentage (%) corresponding to the construction stage that has been determined in advance for each individual fixture. [Explanation of symbols]
[0067] 1. Installation work progress management system 100;Mobile devices 110: Mobile terminal receiving section 120; Input section 130: Mobile terminal side transmitter 140;Display section 200;Server 210; Server side sending unit 220; Progress information generation unit 230; Server side receiving unit 240; Calculation section 250: Display control unit 260;Memory part 300: Construction manager terminal 400;Network
Claims
1. The system includes a mobile terminal carried by an installation contractor, a server managed and operated by a construction manager, and a terminal for the construction manager to view and edit information in the server, The mobile terminal a mobile terminal side receiving unit that receives information from the server; an input unit for inputting information including progress information of the installation work on the day; a mobile terminal side transmitting unit that transmits information including the input progress information to the server; a display unit that displays information including a progress information input screen; Equipped with The server a server-side receiving unit that receives information including the progress information of the production volume inputted on the mobile terminal; a progress information generating unit that generates progress information of the installation work based on information including the received progress information of the completed work; A calculation unit that calculates the payment amount to the installation contractor based on the generated information including the progress information of the installation work; a server-side transmitting unit that transmits information to the mobile terminal; Equipped with The completion progress information input screen displays information including drawing information corresponding to the installation work area and display information that clearly shows the correspondence between the installation position of the fixture and the fixture symbol that indicates the information about the fixture, and when the installation contractor touches a pin that indicates the progress status of the installation work in a form including a visible color or shape displayed in a display area corresponding to at least one of the installation position of the fixture or the fixture symbol, the pin changes its form including the color or shape and is displayed on the display unit, and the mobile terminal side transmission unit transmits the progress status to the server as the completion progress information, This is a management system for managing completion progress of installation work.
2. 2. The installation work progress management system according to claim 1, wherein a completion rate according to a construction stage is individually and pre-determined for each of the plurality of fittings.
3. the mobile terminal is a smartphone, The server includes a display control unit that generates a display image in response to an operation input by the installation contractor, The installation work progress management system described in claim 2, characterized in that the display control unit generates display information that displays only the installation position and fixture symbol for fixtures at the same construction stage within the installation construction area, and the server-side transmission unit transmits the generated display information to the mobile terminal.
4. The installation work progress management system according to claim 2, characterized in that the input form of the progress information by the input unit has a form that refers to order data, and when the installation contractor inputs the progress information by referring to the order data, the installation work progress information input mode is provided in which all of the fixtures at the same construction stage within the installation work area that correspond to the installation position of the fixture or the fixture symbol are input.
5. The installation work progress management system described in claim 1, characterized in that when the server determines from the progress information that construction has been completed for a specific fixture, it sends an input format for a self-inspection report corresponding to the specific fixture from the server-side transmission unit to the mobile terminal.
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