Facility Management Device, Drawing Data Generation Device, and Program
The facility management device and program streamline the process of reporting defects during facility inspections by enabling real-time data entry and display, thereby reducing worker workload and improving data management efficiency.
Patent Information
- Application Number
- JP2022156030
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-09-29
- Publication Date
- 2025-06-19
- Estimated Expiration
- 2042-09-29
AI Technical Summary
Existing facility management systems require workers to manually update defect information after completing inspections, leading to increased workload and potential delays in data reflection.
A facility management device and program that allow workers to input and display defect information in real-time using area drawing data, enabling immediate updates and reducing the need for post-inspection data entry.
This solution reduces the workload for facility inspection workers by allowing them to manage and update defect information on the spot, enhancing efficiency and data accuracy.
Smart Images

Figure 0007695921000001 
Figure 0007695921000002 
Figure 0007695921000003
Abstract
Description
Technical Field
[0001] The present invention relates to a facility management device, a drawing data generation device, and a program.
Background Art
[0002] Conventionally, in various facilities such as factories and office buildings, facility inspections and management of defect information detected through contacts from facility managers and tenants are carried out. Management of facility defect information is, for example, defects discovered during daily inspections conducted by a facility management company, or in the case of a property under construction, defects discovered during inspections at the construction stage and at the time of completion. During facility inspections, workers walk around each floor and inspection work is carried out for each area. Management of defect information during inspection work may be carried out, for example, by workers holding drawings of the facility such as a floor plan and directly writing the locations where defects are found on the drawing.
[0003] In recent years, with the advancement of IT technology, various technologies for reducing the work burden of workers have been proposed. For example, an information processing system has been disclosed in which the position of an object to be confirmed is specified in advance, a confirmation point indicating the position is displayed on a tablet device, and an operator performs a confirmation operation with reference to the mark (see, for example, Patent Document 1 below).
Prior Art Documents
Patent Documents
[0004]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0005] However, in the prior art, even if a defect such as equipment failure is newly discovered in the area of each floor during the inspection work, it may not be possible to reflect the defect in the management data on the spot. For this reason, there has been a problem that the worker who has completed the inspection work returns to the office or the like and needs to perform an update operation such as updating the management data with a dedicated device or the like afterwards, which may result in a work load.
[0006] In view of the above circumstances, an object of the present invention is to provide a technology capable of reducing the work load of workers who perform facility inspections and respond to malfunctions.
Means for Solving the Problems
[0007] A facility management device according to an aspect of the present invention includes: Is the object of maintenance management an acquisition unit that acquires area drawing data in which areas are set in the drawing data of a facility and which is generated in a file format of an electronic document; and the For each area , a reception unit that receives an input of defect information including a display position of an object image indicating a position of a defect target in the area and input information indicating a defect content about the defect target from a worker; an output unit that outputs the defect information; and a display control unit that displays the object image on a display unit and displays the input information when the object image is designated, and the display control unit Relating to makes the defect information displayable At the same time, the object image is displayed in a display mode corresponding to each work stage of the defect target , which is a facility management device.
[0008] A drawing data generation device according to an aspect of the present invention includes: Is the object of maintenance management an acquisition unit that acquires drawing data of a facility and which is generated in a file format of an electronic document; a setting unit that sets areas in the drawing data; a display position of an object image indicating a position of a defect target in the area; and input information indicating a defect content about the defect target, and the facility management device inputs defect information including For each of the areasA generation unit that generates area drawing data for reception, an output unit that outputs the area drawing data, a storage control unit that stores the defect information received by the facility management device in a storage unit, and when deleting the area set by the setting unit, the area Relating to A holding unit that causes the storage unit to hold the defect information, and the output unit is capable of outputting the defect information for the deleted area Relating to And the setting unit sets the area by receiving an input of the number of divisions of the area drawing data It is a drawing data generation device.
[0009] A program according to an aspect of the present invention causes a computer of a facility management device to Is the object of maintenance management An acquisition unit that acquires area drawing data in which areas are set in the drawing data of the facility and the drawing data is generated in the file format of an electronic document, the For each area A reception unit that receives input of defect information including a display position of an object image indicating a position of a defect target in the area and input information indicating a defect content about the defect target from a worker, an output unit that outputs the defect information, and a display control unit that displays the object image on a display unit and displays the input information when the object image is designated. The display control unit is capable of displaying the defect information for the deleted area Relating to At the same time, the object image is displayed in a display mode corresponding to each work stage of the defect target It is a program.
[0010] A program according to an aspect of the present invention causes a computer of a drawing data generation device to Is the object of maintenance management An acquisition unit that acquires the drawing data of the facility and the drawing data is generated in the file format of an electronic document, a setting unit that sets an area in the drawing data, a display position of an object image indicating a position of a defect target in the area, and input information indicating a defect content about the defect target. The facility management device receives input of defect information including For each of the areas A generation unit that generates area drawing data for reception, an output unit that outputs the area drawing data, a storage control unit that stores the defect information received by the facility management device in a storage unit, and when deleting the area set by the setting unit, the area Relating to Function as a holding unit that causes the storage unit to hold the defect information, and the output unit is the deleted area Relating to Enable the output of the defect information And the setting unit sets the area by receiving an input of the number of divisions of the area drawing data It is a program.
Effect of the Invention
[0011] According to the present invention, the work load of workers who perform facility inspections and defect handling can be reduced.
Brief Description of the Drawings
[0012]
Figure 1
Figure 2
Figure 3
Figure 4
Figure 5
Figure 6
Figure 7
Figure 8
Figure 9
Figure 10
Mode for Carrying Out the Invention
[0013] (Embodiment) (Network Configuration of Facility Management System 1) FIG. 1 is an explanatory diagram showing the network configuration of the facility management system 1 according to the embodiment. As shown in FIG. 1, the facility management system 1 includes a facility management server 100, an office terminal device 110, and a mobile terminal device 120. Each device is communicably connected by a network 140 (for example, a network based on TCP / IP, a mobile network, etc.). Further, each device is a computer device including a CPU (Central Processing Unit), a ROM (Read Only Memory), a RAM (Random Access Memory), a communication unit, and the like.
[0014] (Facility Management Server 100) The facility management server 100 manages various data handled by a facility management company that conducts facility inspections and the like. The facility is a facility managed by a facility management company, and examples thereof include an office building, a factory, a school, a hospital, a commercial facility, an apartment, and the like. Further, the inspection includes a daily inspection conducted by the facility management company, and in the case of a property under construction, an inspection at the construction stage and an inspection at the time of completion. The facility management company is, for example, a building management company or a construction company. The various data includes data showing the drawings of the facility and defect information for each floor of the facility. The various data is stored in the facility management DB 101. Note that the details of the data stored in the facility management DB 101 will be described later with reference to FIG. 7.
[0015] (Office Terminal Device 110) The office terminal device 110 is arranged in the office of the facility management company. The office terminal device 110 is an example of a drawing data generation device. The office terminal device 110 is, for example, a personal computer. However, the office terminal device 110 may be a tablet terminal. The office terminal device 110 starts a pre-installed drawing data generation program to generate predetermined drawing data (hereinafter referred to as "area drawing data"). The office terminal device 110 transmits the generated area drawing data to the facility management server 100. The facility management server 100 stores the area drawing data received from the office terminal device 110 in the facility management DB 101. Also, the office terminal device 110 can display the defect handling result input on the screen of the area drawing data according to the operation of the operator. The office terminal device 110 performs, for example, the generation of area drawing data and the display of various data to be transmitted and received using a web browser.
[0016] (Portable terminal device 120) The portable terminal device 120 is a portable terminal device carried by a worker. The portable terminal device 120 is an example of a facility management device. The portable terminal device 120 is, for example, a smartphone or a tablet terminal. The portable terminal device 120 starts a pre-installed facility management application (application software) to receive and display area drawing data from the facility management server 100. The portable terminal device 120 receives the input of defect information from the worker who manages the facility on the drawing screen of the area drawing data and displays the handling result. The defect information is transmitted to the facility management server 100. The facility management server 100 reflects the defect information in the area drawing data.
[0017] (Hardware configuration of the facility management server 100) Next, the hardware configuration of the facility management server 100 will be described. The facility management server 100 includes a CPU, a memory, and a communication I / F (interface). Each part is connected by a bus.
[0018] The CPU controls the overall operation of the facility management server 100. The memory includes, for example, a ROM and a RAM. For example, the ROM stores various programs. The RAM is used as the working area of the CPU. The programs stored in the memory 2 are loaded into the CPU to cause the CPU to execute the coded processes.
[0019] The communication I / F is connected to a network 140 such as the Internet through a communication line and is connected to other devices (e.g., the office terminal device 110 and the mobile terminal device 120) via the network 140. Also, the communication I / F serves as an interface between the network 140 and the internal device and controls the input and output of data from other devices.
[0020] (Hardware configurations of the office terminal device 110 and the mobile terminal device 120) Next, it is a block diagram showing an example of the hardware configurations of the office terminal device 110 and the mobile terminal device 120. The office terminal device 110 and the mobile terminal device 120 each include a CPU, a memory, a communication I / F, an input device, an output device, and a storage medium I / F. Each part is connected by a bus.
[0021] The CPU controls the overall operation of the office terminal device 110 and the mobile terminal device 120. The memory includes, for example, a ROM and a RAM, etc. For example, the ROM stores various programs. The RAM is used as the working area of the CPU. The programs stored in the memory are loaded into the CPU to cause the CPU to execute the coded processes. Note that the memory includes a USB (Universal Serial Bus) flash memory, an SSD (Solid State Drive), a magnetic disk, and an optical disk.
[0022] The communication I / F is connected to a network 140 such as the Internet through a communication line and is connected to other devices (for example, the facility management server 100) via the network 140. Further, the communication I / F manages the interface between the network 140 and the inside of the own device and controls the input / output of data from / to other devices.
[0023] The input device includes a touch panel, operation buttons, a keyboard, a mouse, a microphone, a camera, etc. Further, the input device includes a camera and a scanner. The output device includes a display, a printer, a speaker, etc. The display displays an image. The display includes a touch panel type display unit. The memory medium I / F controls the reading and writing of data to / from various memory media such as a USB flash memory according to the control of the CPU.
[0024] (Regarding the functional configurations of the office terminal device 110 and the mobile terminal device 120) Next, the functional configurations of the office terminal device 110 and the mobile terminal device 120 according to the present embodiment will be described. The office terminal device 110 includes an acquisition unit, a setting unit, a generation unit, and an output unit. Each functional unit is realized by the CPU included in the office terminal device 110. That is, the CPU included in the office terminal device 110 realizes each functional unit by executing a drawing data generation program stored in the memory.
[0025] Further, the mobile terminal device 120 includes an acquisition unit, a reception unit, an output unit, and a display control unit. Each functional unit is realized by the CPU included in the mobile terminal device. That is, the CPU included in the mobile terminal device 120 realizes each functional unit by executing a facility management application stored in the memory. Hereinafter, each functional unit of the office terminal device 110 and the mobile terminal device 120 will be described together with a series of steps performed by the facility management system 1.
[0026] (Regarding the outline of a series of steps performed by the facility management system 1) FIG. 2 is a flowchart showing an overview of a series of processes performed by the facility management system 1. In FIG. 2, first, the acquisition unit of the office terminal device 110 acquires the drawing data of the facility generated in the file format of an electronic document (step S201).
[0027] The file format of the electronic document is a format in which digital data can be viewed, edited, and saved in the same state as when printed on paper or the like. For example, the drawing data is data obtained by converting a CAD drawing created by CAD (Computer Aided Design) into the file format of an electronic document, and does not include information related to the material and editing of the CAD data. In the present embodiment, the file format of the electronic document is, for example, the PDF (Portable Document Format). The drawing data is, for example, data in which a floor plan showing each floor of the facility is in the PDF format (hereinafter referred to as "PDF drawing data"). Note that the PDF drawing data may be drawings created by various computer devices or data obtained by scanning handwritten drawings.
[0028] Next, the setting unit of the office terminal device 110 sets a region in the PDF drawing data (step S202). Then, the generation unit of the office terminal device 110 generates region drawing data (step S203). The region drawing data is data capable of displaying a drawing screen for the mobile terminal device 120 to receive defect information. The defect information includes the display position of the object image and input information indicating the defect content for the defect target. The display position of the object image is the position of the defect target within the region set on the PDF drawing data by the setting unit. The object image may be any image indicating the position of the defect target. In the present embodiment, the object image is a pin icon, but it is not limited thereto, and other images such as a predetermined mark or character are also possible.
[0029] Then, the output unit of the office terminal device 110 outputs (uploads) the area drawing data generated by the generation unit to the facility management server 100 (step S204). When the facility management server 100 receives the area drawing data from the office terminal device 110, it stores the received area drawing data in the facility management DB 101. In this way, the generation of the area drawing data by the office terminal device 110 is completed.
[0030] Next, the process performed by the mobile terminal device 120 will be described. The acquisition unit of the mobile terminal device 120 receives (downloads) the area drawing data from the facility management server 100 (step S205). The area drawing data to be received includes the defect information received in the past (refer to the defect information DB 101h in FIG. 7). Then, the display control unit of the mobile terminal device 120 displays the drawing screen of the area drawing data on the display (step S206). Note that when the mobile terminal device 120 receives the area drawing data, it turns off the communication and performs subsequent processing.
[0031] Next, the reception unit of the mobile terminal device 120 receives, on the drawing screen of the area drawing data, the designation of the position of the defect target having a defect in facilities, fixtures, etc. during the inspection of the facility by the worker (step S207). Then, the reception unit of the mobile terminal device 120 receives the input information indicating the defect content about the defect target (step S208).
[0032] Next, the display control unit of the mobile terminal device 120 displays a pin icon (an example of an object image) at the position of the defect target (step S209). Then, the output unit of the mobile terminal device 120 transmits the defect information including the display position of the pin icon and the input information to the facility management server 100 (step S210). Note that the data transmitted to the facility management server 100 is only the defect information and does not include the drawing part.
[0033] When the facility management server 100 receives the defect information from the mobile terminal device 120, it updates the area drawing data stored in the facility management DB 101 based on the defect information.
[0034] (Regarding generation of area drawing data) FIG. 3 is an explanatory diagram showing an example of area drawing data generated by the office terminal device 110. FIG. 3(A) shows the PDF drawing data 301 acquired by the office terminal device 110. The PDF drawing data 301 shows a floor plan (e.g., the first floor) of a certain facility (e.g., an office building). The PDF drawing data 301 is displayed on the display of the office terminal device 110.
[0035] FIG. 3(B) shows an enlarged view 301a of the PDF drawing data 301. The office terminal device 110 receives a designation of an area on the PDF drawing data 301 from an operator. Specifically, the office terminal device 110 sequentially receives designations of two points, i.e., a first designated point 305 and a second designated point 306, in the enlarged view 301a.
[0036] FIG. 3(C) shows the area of the parent location 310 in the area drawing data 300. Specifically, as shown in FIG. 3(B), when designations of two points, i.e., the first designated point 305 and the second designated point 306, are received, the office terminal device 110 sets a rectangle (e.g., a rectangle) with a straight line connecting the first designated point 305 and the second designated point 306 as a diagonal line as the parent location 310. Thus, in this embodiment, the area of the parent location 310 can be set only by receiving designations of two points. Further, the office terminal device 110 receives an input of a parent location name 311 for the set parent location 310 and attaches the received name to the parent location 310.
[0037] FIG. 3(D) shows the child locations 320 in the area drawing data 300. As shown in FIG. 3(C), when the parent location 310 is set, the office terminal device 110 receives an input of the number of divisions for dividing the parent location 310. The number of divisions includes the number of divisions in the X direction (horizontal direction) and the number of divisions in the Y direction (vertical direction). For example, if an input of "3" in the X direction and "2" in the Y direction is received, six child locations 320 (320a to 320f) are set as shown in FIG. 3(D). By such an operation, the child locations 320 can be easily set.
[0038] Also, the office terminal device 110 attaches a sub-location name 321 to the set sub-location 320. By default, the sub-location name 321 is automatically assigned a name corresponding to each division number in the X direction and the Y direction, such as "X0Y0" and "X1Y0". Thereby, utilization can be easily started. Also, the office terminal device 110 can change the sub-location name 321 to the received name 322 (for example, "near the entrance") by accepting the input of the sub-location name 321. Note that the sub-location 320 and the sub-location name 321 can also be switched between display and non-display according to the setting.
[0039] Also, as will be described later, the defect information includes information on the sub-location 320. In other words, defect information is accumulated for each sub-location 320. Therefore, even if the sub-location name 321 is changed, the defect history can be kept as it is. Also, the office terminal device 110 can delete the sub-location 320 by its editing function. Even if the sub-location 320 is deleted, the originally accumulated defect history is associated with the deleted sub-location 320 and saved as it is. Thereby, even if the sub-location 320 is deleted due to renovation or the like, it can be utilized as a judgment material such as whether the location is a trouble-prone location from the past defect history.
[0040] (Regarding the editing of the area drawing data 300) FIG. 4 is a diagram showing an example of the editing of the area drawing data 300. First, an example of including lower-level drawing data in the area drawing data 300 will be described. For example, in a large facility such as a factory, there may be a case where it is desired to further subdivide the set parent location 310 to manage the area. Therefore, in the present embodiment, the area drawing data 300 can be a plurality of hierarchical data associated with lower-level detailed drawing data.
[0041] FIG. 4(A) shows an example of associating detailed drawing data 400 with area drawing data 300. The detailed drawing data 400 is data in PDF format and is drawing data obtained by enlarging a part of the PDF drawing data 301. The part corresponds to the insertion location of the area drawing data 300 (higher-level drawing data). The detailed drawing data 400 is associated with the parent location 310. The detailed drawing data 400 is stored as lower-level (second-level) data (second-level data) of the area drawing data 300 (first-level data), which is the higher level (first level).
[0042] Also, an example of associating lower-level detailed drawing data (third-level data) with the detailed drawing data 400 (second-level data) is shown. The third-level data is drawing data obtained by enlarging a part of the second-level data. The part corresponds to the insertion location of the second-level data. The third-level data is also associated with the parent location 310 and is stored as third-level data of the lower level (third level) of the second-level data.
[0043] Also, it is possible to associate lower-level detailed drawing data (fourth-level data) with the third-level data, that is, it is possible to infinitely associate lower-level drawing data by nesting. Specifically, it is possible to associate the lower-level (n + 1)-th level data with the n-th level data. The (n + 1)-th level data is drawing data obtained by enlarging a part of the n-th level data. The part corresponds to the insertion location of the n-th level data. The (n + 1)-th level data is also associated with the parent location 310 and is stored as (n + 1)-th level data of the lower level ((n + 1) level) of the n-th level data.
[0044] (Regarding the area change of the child location 320) FIG. 4(B) shows an example when accepting an area change of the child location 320. As shown in FIG. 4(B), the office terminal device 110 can accept the designation of the area line 323 of the child location 320 and further accept the movement of the designated area line 323 within the area of the parent location 310. Figure 4(C) shows an example after the area of the sub-location 320 is changed. As shown in Figure 4(C), as the area line 323 moves to the left in the figure, the sub-location 320a shrinks and the sub-location 320b expands. Note that although the illustration shows the change in the area (expansion / contraction change) in the X direction, it is also possible to change the area in the Y direction.
[0045] As shown in FIGS. 3 and 4, by setting area information in the PDF drawing data 301, the area drawing data 300 is generated. The area information includes the position information (coordinates) of the parent location 310, the parent location name 311, the position information (coordinates) of the sub-locations, and the sub-location names 321. In this way, the area drawing data 300 is generated as simplified data with only the area information added to the PDF drawing data 301.
[0046] (Example of the screen of the mobile terminal device 120) FIG. 5 is a diagram showing an example of the screen of the mobile terminal device 120. FIG. 5(A) shows the drawing selection screen 510. The drawing selection screen 510 is, for example, a screen that has transitioned when the drawing button 511 is pressed from the home screen (not shown) and then a facility (e.g., "Facility XX") is selected by a facility selection screen (not shown) that is subsequently displayed. The drawing selection screen 510 includes a facility column 512 and a drawing selection column 513. The facility column 512 shows "Facility XX" selected on the previous page's facility selection screen (not shown). The drawing selection column 513 shows that it is possible to select the data of the first floor and the data of the second floor among the area drawing data 300 of "Facility XX". If the data of the first floor is selected in the drawing selection column 513, the mobile terminal device 120 downloads the area drawing data 300 including the past defect history for the first floor from the facility management server 100 and transitions to the area drawing screen 520 shown in FIG. 5(B).
[0047] The area drawing screen 520 shown in FIG. 5(B) is a drawing screen of the area drawing data 300. The area drawing screen 520 includes a parent location 310 and child locations 320. In the illustration, it is assumed that the child locations 320 (320a, 320b) are divided into two. The child locations 320 are, for example, displayed with a red solid line and are displayed separately from other parts on the drawing. The parent location 310 is assigned a parent location name 311, and the child locations 320 are assigned child location names. Although the parent location name 311 is displayed above the parent location 310 for convenience, it is displayed at the center of the parent location 310.
[0048] The area drawing screen 520 includes a toggle 521, a pin icon 522, and a detail button 523. The toggle 521 accepts setting switches for display or non-display of the parent location 310 and the child locations 320. In the illustration, the case where the settings for displaying the parent location 310 and the child locations 320 are shown is illustrated, but by operating the toggle 521, it is also possible to make the parent location 310 and the child locations 320 non-displayed.
[0049] It should be noted that it may be possible to switch the display or non-display settings for each location. Specifically, for example, it may be possible to switch the display or non-display only for the parent location 310, or only for the child locations 320. Also, it may be possible to switch the display or non-display only for the child location name 321, or only for the frame line of the child locations 320. Further, it may be possible to switch to display some of the child locations 320 and non-display other parts of the child locations 320.
[0050] The pin icon 522 indicates the position that was the target of past defects. Specifically, it indicates the position where there were defects in equipment and fittings in past defects. The pin icon 522 is displayed for each operation by the worker (each time accepting the designation of the position of the defect target). That is, if there are a plurality of operations, the number corresponding to that number will be displayed.
[0051] Also, in the present embodiment, when the area drawing data 300 includes a plurality of hierarchical data, it is also possible to receive defect information for the hierarchical data of the lower layer. Therefore, the pin icon 522 may be included in both the area drawing data 300 of the upper layer and the detailed drawing data 400 of the lower layer. The mobile terminal device 120 enables the pin icon 522 in the hierarchical data of the upper layer and the pin icon 522 in the hierarchical data of the lower layer to be displayed on the drawing screen of the hierarchical data of the upper layer.
[0052] The detail button 523 is a button that accepts switching to the detailed drawing data 400 of the lower layer. Note that the switching to the detailed drawing data 400 is not limited to being performed by accepting the pressing of the detail button 523. For example, it may be performed by operating the area where the detailed drawing data 400 is inserted, or it may be performed by accepting the pressing of a predetermined button displayed on a screen different from the area drawing screen 520.
[0053] The mobile terminal device 120 can accept the generation of a new pin icon 522 on the area drawing screen 520. For example, as shown by the pointer 524, when an arbitrary position (the position of the defect target) on the display is designated (e.g., long-pressed) by the operator, the mobile terminal device 120 transitions to the input information reception screen 530 shown in FIG. 5(C).
[0054] The input information reception screen 530 shown in FIG. 5(C) includes reception information 531, designated position information 532, and a defect item column 533. The reception information 531 and the designated position information 532 are automatically input. The reception information includes a reception number that is automatically numbered and a reception date and time automatically obtained from the clock function of the mobile terminal device 120.
[0055] The specified position information 532 is obtained based on the area information (information on the parent location and child locations) included in the area drawing data 300 and the information on the position (the position of the defect target) specified by the operator on the display. In this embodiment, since area information is set in the area drawing data 300, the portable terminal device 120 can automatically input up to the information on the child location 320 as the specified position information 532 by identifying the area (for example, the child location 320) where the position of the defect target is included.
[0056] Note that there may be a case where area information is not set for the position of the defect target specified by the operator. In this case, for the parent location 310 and the child location 320 in the specified position information 532, they will be blank. That is, for the facility, building, and floor in the specified position information 532, they will be automatically input. Note that when the parent location 310 and the child location 320 are blank, the operator may input information for specifying the location in the memo column 533b as needed. Also, in this case, the portable terminal device 120 may issue a notification prompting the operator to input the location into the memo column 533b.
[0057] The defect item column 533 is an area for receiving input information. The defect item column 533 includes, for example, a selection item 533a that receives one item from a plurality of items displayed by a pull-down menu, and a memo column 533b that is appropriately input (operation input, voice input) by the operator. In this embodiment, the defect targets include, for example, facility equipment and fixtures. Facility equipment are the equipment provided in the facility and include, for example, target devices such as air conditioners, lighting, boilers, toilets, and water heaters. Fixtures include, for example, target devices such as doors, windows, and ceilings. The defect item column 533 allows any one of the target devices such as air conditioners, lighting, doors, windows, etc. to be selected by pressing the illustrated facility equipment button. Also, the defect item column 533 includes a status display 533c indicating a series of work steps for defect handling work. Although details will be described later, in this embodiment, the display mode of the pin icon 522 changes according to the work step (status) of the defect target.
[0058] On the input information reception screen 530, when various information is input and the confirmation button 534 is pressed, the defect information is sent to the facility management server 100, and the system transitions to the area drawing screen 540 in Fig. 5(D). Note that the facility management server 100 updates the area drawing data 300 based on the defect information.
[0059] The area drawing screen 540 shown in Fig. 5(D) has a pin icon 522a added compared to the area drawing screen 520 shown in Fig. 5(B). The pin icon 522a is displayed centered on the position specified by the operator (the position specified by the pointer 524). Note that the pin icon 522a may be displayed at the center position of the sub-location 320 to which the specified position belongs.
[0060] In this embodiment, when the area drawing data 300 includes a plurality of hierarchical data, it is possible to receive defect information for the hierarchical data of the lower layer as well. In this case, the mobile terminal device 120 can receive defect information for each hierarchical data on the drawing screen of each hierarchical data, and further, can display a pin icon 522 for each hierarchical data on the drawing screen of each hierarchical data.
[0061] Specifically, when the detail button 523 is pressed, a screen of the detailed drawing data 400 is displayed. On the screen of the detailed drawing data 400, when an arbitrary position (the position of the defect target) on the display is specified (for example, long-pressed) by the operator, the system transitions to a screen corresponding to the input information reception screen 530. Then, on the transitioned screen, when input information is input, a pin icon 522 is added. Even when a pin icon 522 is added to the detailed drawing data 400, the mobile terminal device 120 sends the defect information of the detailed drawing data 400 to the facility management server 100.
[0062] In this way, in this embodiment, by the operator long-pressing the display, the position of the defect target can be specified, and further, the input of the input information at that position can be received, and a new pin icon 522a can be displayed.
[0063] (Display example of pin icon 522) FIG. 6 is a diagram showing an example of a display related to the pin icon 522. In the present embodiment, since the position of the defect target is designated at an arbitrary position received from the worker, in some cases, a plurality of pin icons 522 may overlap at substantially the same position. Further, the pin icon 522 may be attached to the hierarchical data (area drawing data 300) of the upper hierarchy and the hierarchical data (detailed drawing data 400) of the lower hierarchy, respectively. In this case, also when simultaneously displaying the pin icons 522 attached to each hierarchical data on the screen of the hierarchical data of the upper hierarchy, a plurality of pin icons 522 may overlap at substantially the same position. Therefore, in the present embodiment, it is possible to move and display the pin icon 522.
[0064] FIG. 6(A) shows a moving display 610 in the case where the pin icons 522 overlap. For example, when the pin icons 522c and 522d are displayed overlapping, as shown in the moving display 610, one of the pin icons 522d is shifted and displayed from the other pin icon 522c that overlaps. Note that the moving display 610 only needs that the pin icons 522c and 522d do not overlap, and is not limited to shifting and displaying only one of them, and both of them may be shifted and displayed. Further, when three or more pin icons 522 overlap, it is only necessary to prevent the three pin icons 522 from overlapping. Thereby, the worker can visually grasp the area with many troubles according to the number of the pin icons 522. Further, the worker can easily grasp the degree of trouble occurring in each area without displaying the screen of the detailed drawing data 400.
[0065] In the case where a plurality of pin icons 522 overlap, it is also possible to set it to an overlapping display instead of the moving display 610. Further, the mobile terminal device 120 displays a switching button for switching between the moving display 610 and the overlapping display, and it is also possible to set it to the overlapping display according to the operation of the switching button. By setting it to the overlapping display, the operator can grasp the exact position of the pin icon 522. When the operator performs a zoom-in operation (pinch-out) on the drawing screen, the drawing is enlarged, and each pin icon 522 is displayed at a more accurate position. In this case, the pin icons 522 that were overlapping may be displaced and displayed.
[0066] (Regarding the display of input information by operating the pin icon 522) Next, an explanation will be given regarding the display of input information when the pin icon 522 is operated. FIG. 6(B) shows the input information displayed when the pin icon 522 receives a predetermined operation (for example, a single tap). In the illustration, the input information is the defect summary 620. The defect summary 620 shows the summary of the defect information indicated by the pin icon 522, and shows, for example, symptoms, causes, and treatment contents. Thereby, the operator can easily grasp the summary of the defect information indicated by the pin icon 522 with a simple operation. Further, in the present embodiment, even if the treatment for the deficiencies of various devices indicated by the pin icon 522 is completed, the pin icon 522 is not deleted and is left as a defect history. Thereby, the operator can visually grasp or analyze the locations in the facility where there are many troubles.
[0067] When the pin icon 522 receives an operation different from the predetermined operation (for example, a double tap), it transitions to the input information reception screen 530 (FIG. 5(C)) to display the input information and enables the editing of the input information. Also, it is possible to display the defect history on the screen.
[0068] In addition, when the pin icon 522 is not moved and displayed as the overlapping display 610 (Fig. 6(A)), even if a double-tap is received, the input information can be edited. However, in this case, there will be editing screens (screens corresponding to the input information reception screen 530) corresponding to the number of overlapping pin icons 522. In this embodiment, only one editing screen is displayed at a time. Therefore, a button (for example, "Next" button) for switching the editing screen is displayed on each editing screen, and the editing screen can be switched by accepting the operation of the button.
[0069] (Regarding the facility equipment mark) Fig. 6(C) shows the facility equipment mark 600 attached to the pin icon 522 and the screen when the facility equipment mark 600 is pressed. Here, there are various deficiencies in the facility management, and the defect history (failure history) of the facility equipment is important information, so the information of the facility equipment is accumulated. In particular, regarding the display of the facility equipment, the facility equipment mark 600 is attached to the pin icon 522.
[0070] In this embodiment, when a defect target (for example, air conditioning) belonging to the facility equipment is input in the defect item column 533 (Fig. 5(C)), the facility equipment mark 600 is attached to the pin icon 522. Thereby, the operator can easily grasp that the defect target indicated by the pin icon 522 is the facility equipment. In this embodiment, the pin icon 522 without the facility equipment mark 600 indicates the target classification belonging to the fittings or other attention points arbitrarily selected by the operator. When the facility equipment mark 600 is tapped, the detailed screen 630 shown in Fig. 6(C) is displayed.
[0071] The detailed screen 630 shown in Fig. 6(C) includes the detailed information 631 of the facility equipment and the history display button 632. The detailed information 631 indicates the information about the facility equipment. When the history display button 632 is pressed, the screen transitions to the screen showing the defect history (failure history, repair history, etc.).
[0072] (Regarding the display mode of the pin icon 522) In this embodiment, the pin icon 522 is displayed in a display mode according to the status of the work. The status includes statuses such as in progress, confirmation of completion, and completed. The status of being in progress indicates that the operator has confirmed the deficiencies of various devices and represents the stage of being in work or unprocessed. The status of confirmation of completion indicates the stage of requesting confirmation by the administrator (for example, the supervisor). The status of completed indicates the stage where the confirmation by the administrator has been completed.
[0073] The pin icon 522 is, for example, displayed in red in the status of being in progress, in yellow in the status of confirmation of completion, and in blue in the status of completed. Note that the display mode according to the status is not limited to the difference in color, and may also be differences such as size, blinking, thickness, and addition of characters. Also, the operation related to the change of the completed status is received by the office terminal device 110. Specifically, the office terminal device 110 changes the status by receiving an operation related to the change of the status from an authorized operator.
[0074] (Regarding the display of the pin icon 522 according to the search conditions) In this embodiment, the area drawing screen 520 can display the pin icon 522 according to the search conditions. The search conditions are, for example, conditions such as date, defect target (equipment or fixtures), and whether to include the pin icon 522 included in the detailed drawing data 400. Thereby, for example, only the pin icon 522 of the defect information generated most recently can be displayed on the drawing screen of the area drawing data 300 (higher-level hierarchical data).
[0075] (Regarding the input of photo data) In this embodiment, it is also possible to include photo data in the defect information. For example, on the input information reception screen 530 in FIG. 5(C), a predetermined button (photo capture button) may be displayed, and when the button is pressed, photo data may be captured. Alternatively, when the button is pressed, the camera may be activated to acquire the captured photo data. By including photo data in the defect information in this way, the defect information can be used for creating various documents such as reports.
[0076] (An example of the information stored in the facility management DB101) FIG. 7 is a diagram showing an example of the facility management DB101. As shown in FIG. 7, the facility management DB101 includes each of the DBs 101a to 101h. In the following descriptions of each of the DBs 101a to 101h, descriptions of overlapping items will be omitted as appropriate.
[0077] The facility DB 101a includes items of "facility ID" and "facility name". The "facility ID" is information for identifying the facility. The "facility name" is the name of the facility. When information is input into each item, the facility information is stored as a record.
[0078] The building DB 101b includes items of "building ID", "building name", and "facility ID". The "building ID" is information for identifying the building. The "building name" is the name of the building. When information is input into each item, the building information is stored as a record.
[0079] The floor DB 101c includes items of "floor ID", "floor name", and "building ID". The "floor ID" is information for identifying the floor. The "floor name" indicates the floor number. When information is input into each item, the floor information is stored as a record.
[0080] The parent location DB 101d includes items of "parent location ID", "parent location name", and "floor ID". The "parent location ID" is information for identifying the parent location. The "parent location name" is the name of the parent location. When information is input into each item, the parent location information is stored as a record.
[0081] The child location DB 101e includes items of "child location ID", "child location name", and "parent location ID". The "child location ID" is information for identifying the child location. The "child location name" is the name of the child location. When information is input into each item, the child location information is stored as a record.
[0082] The document management DB 101f includes items of "drawing ID", "PDF file name", and "floor ID". The "drawing ID" is information for identifying the drawing. The "PDF file name" is the name of the PDF file. When information is input into each item, the document information is stored as a record.
[0083] The location area DB 101g includes items of "location area ID", "drawing ID", "X coordinate 1", "Y coordinate 1", "X coordinate 2", "Y coordinate 2", "parent location ID", "child location ID", and "linked drawing ID". The "location area ID" is information for identifying the location area. "X coordinate 1" and "Y coordinate 1" indicate the coordinates of the first designated point 305 (see Figure 3). "X coordinate 2" and "Y coordinate 2" indicate the coordinates of the second designated point 306 (see Figure 3). The "linked drawing ID" is information for identifying any drawing stored in the document management DB 101f. When information is input into each item, the location area information is stored as a record.
[0084] The defect information DB 101h includes items such as "receiving number", "facility name", "building name", "floor name", "parent location ID", "child location ID", "target category", "target device", "symptom", "cause", "treatment", "drawing ID", "X coordinate", and "Y coordinate". The "receiving number" is an identification number automatically assigned when receiving work. The "target category" indicates either facility equipment or fixtures. The "target device" indicates any one of target devices such as air conditioners, lighting, doors, windows, etc. The "symptom" indicates a defect of the target device. The "cause" indicates the cause of the defect. The "treatment" indicates the treatment for the defect. The "X coordinate" and "Y coordinate" respectively indicate the coordinates of the position of the defect target specified by the operator on the display of the portable terminal device 120. When information is input into each item, the defect information is stored as a record.
[0085] Note that the items of "defect target", "target device", "symptom", "cause", and "treatment" are included in the input information. Since the defect information includes, for example, information on the target device, it is possible to obtain each input information from the information on the target device. In other words, by specifying the target device, it is possible to extract the defect history based on each input information.
[0086] (Generation process of area drawing data performed by the office terminal device 110) FIG. 8 is a flowchart showing the generation process of area drawing data performed by the office terminal device 110. In FIG. 8, the office terminal device 110 acquires PDF drawing data (step S801). Next, the office terminal device 110 receives the facility name, building name, and floor name (step S802). Then, the office terminal device 110 receives the designation of the parent location 310 (see FIG. 3) on the PDF drawing data 301 (step S803). Next, the office terminal device 110 receives the parent location name (step S804). Then, it is determined whether there is an insertion of detailed drawing data 400 of the lower layer (see FIG. 4) (step S805).
[0087] When there is an insertion of detailed drawing data 400 (step S805: YES), the office terminal device 110 sets the inserted detailed drawing data 400 as the drawing data to be edited (step S806). Note that it is also possible to insert hierarchical data of a lower hierarchy with respect to the detailed drawing data 400. In this case, the processes of steps S803 to S806 are repeated for the number of times of nesting. In step S805, when there is no insertion of the detailed drawing data 400 (step S805: NO), the office terminal device 110 determines whether to set the sub-location 320 by receiving a predetermined operation (step S807).
[0088] When the sub-location 320 is not set (step S807: NO), the office terminal device 110 proceeds to the process of step S814. On the other hand, when the sub-location 320 is set (step S807: YES), the office terminal device 110 receives an input of the number of divisions for dividing the parent location 310 (step S808) and generates the sub-location 320 (step S809).
[0089] Next, the office terminal device 110 determines whether it has received an instruction to change the sub-location name (step S810). When it has not received an instruction to change the sub-location name (step S810: NO), the office terminal device 110 proceeds to the process of step S812. On the other hand, when it has received an instruction to change the sub-location name (step S810: YES), the office terminal device 110 changes the sub-location name (step S811). Then, the office terminal device 110 determines whether it has received an instruction to change (scale change) the area of the sub-location 320 (step S812).
[0090] When the change of the area of the sub-location 320 is not accepted (step S812: NO), the office terminal device 110 proceeds to the process of step S814. On the other hand, when the change of the area of the sub-location 320 is accepted (step S812: YES), the office terminal device 110 changes the area of the sub-location 320 (step S813). Then, when a predetermined confirmation button is selected, the office terminal device 110 determines whether the registration is completed (step S814). When the registration is not completed (step S814: NO), the office terminal device 110 determines whether to set the parent location 310 by accepting a predetermined operation (step S815).
[0091] When the setting of the parent location 310 is not performed (step S815: NO), the office terminal device 110 returns to the process of step S814. On the other hand, when the setting of the parent location 310 is performed (step S815: YES), the office terminal device 110 returns to the process of step S803. In step S814, when the registration is completed (step S814: YES), the office terminal device 110 uploads the area drawing data to the facility management server 100 (step S816) and ends a series of processes.
[0092] (Facility management process performed by the mobile terminal device 120) FIG. 9 is a flowchart showing a facility management process performed by the mobile terminal device 120. As shown in FIG. 9, the mobile terminal device 120 waits until the selection of the area drawing data 300 is accepted in the drawing selection column 513 of the drawing selection screen 510 (FIG. 5(A)) (step S901: NO). When the selection of the area drawing data 300 is accepted (step S901: YES), the mobile terminal device 120 downloads the area drawing data 300 from the facility management server 100 (step S902).
[0093] Note that the downloaded data is deleted after a predetermined period has elapsed. In other words, if the predetermined period has not elapsed, the mobile terminal device 120 stores the downloaded data in the memory. Therefore, if the predetermined period has not elapsed, the mobile terminal device 120 only needs to receive the latest defect information without downloading the area drawing data 300 itself. Also, in this case, the mobile terminal device 120 may reflect the received latest defect information in the area drawing data 300 stored in the memory and display it.
[0094] Next, the mobile terminal device 120 determines whether the area drawing data 300 to be displayed contains defect information (step S903). If the area drawing data 300 does not contain defect information (step S903: NO), the mobile terminal device 120 displays the area drawing data 300 that does not include the pin icon 522 (step S904), and proceeds to the process of step S913. On the other hand, if the area drawing data 300 contains defect information (step S903: YES), the mobile terminal device 120 generates a pin icon 522 for each defect information (step S905). Note that the defect information also includes information indicating the defect summary 620 (FIG. 6(B)) and information indicating the status of the work.
[0095] Then, the mobile terminal device 120 determines whether the area drawing data 300 includes hierarchical data of a lower layer (step S906). If the hierarchical data of the lower layer is included (step S906: YES), the mobile terminal device 120 sets the hierarchical data of the lower layer as the drawing data of the target of attention (step S907), and returns to the process of step S905. Note that in this case, the processes of steps S905 to S907 are performed for the hierarchical data of the lower layer. Also, if the hierarchical data of the lower layer further includes the hierarchical data of a lower layer, the mobile terminal device 120 repeats the processes of steps S905 to S907 until the hierarchical data of the lower layer disappears.
[0096] In step S906, if the hierarchical data of the lower layer is not inserted (step S906: NO), the mobile terminal device 120 determines whether there are overlapping pin icons 522 on the area drawing data 300 (step S908). If there are no overlapping pin icons 522 (step S908: NO), the mobile terminal device 120 proceeds to the process of step S910. If there are overlapping pin icons 522 (step S908: YES), the mobile terminal device 120 performs control to set the pin icon 522 to the moving display 610 (Fig. 6(A)) (step S909).
[0097] Then, the mobile terminal device 120 determines whether the target category is facility equipment (step S910). If the target category is not facility equipment (step S910: NO), the mobile terminal device 120 proceeds to the process of step S912. On the other hand, if the target category is facility equipment (step S911: YES), the mobile terminal device 120 adds a facility equipment mark 600 (see Fig. 6(C)) to the pin icon 522 to be displayed (step S911). Then, the mobile terminal device 120 adds the pin icon 522 to the area drawing data 300 (step S912) and proceeds to the process of step S904.
[0098] Then, in step S913, the mobile terminal device 120 performs an operation reception process (see Fig. 10) (step S913) and determines whether there is a display change in the pin icon 522 (step S914). The display change of the pin icon 522 is performed when a change in the search condition is received, when a new pin icon 522 is added, when a screen switch to the detailed drawing data 400 is received, etc. If there is a display change in the pin icon 522 (step S914: YES), the process returns to step S903.
[0099] On the other hand, when there is no display change in the pin icon 522 (step S914: NO), the mobile terminal device 120 determines whether the work is finished (step S915). The end of work means, for example, receiving an operation to switch the drawing to be displayed to another drawing, or ending the facility management application. When the work is not ended (step S915: NO), the mobile terminal device 120 returns to the process of step S913. On the other hand, when the work is ended (step S915: YES), the mobile terminal device 120 uploads the defect information to the facility management server 100 (step S916) and ends the series of processes.
[0100] (Operation reception process performed by the mobile terminal device 120) FIG. 10 is a flowchart showing an operation reception process performed by the mobile terminal device 120. In FIG. 10, the mobile terminal device 120 determines whether it has received an operation related to the generation of the pin icon 522 (designation of the position of the defect target: long press operation) (step S1001). When the operation is not received (step S1001: NO), the mobile terminal device 120 proceeds to the process of step S1007. On the other hand, when the operation is received (step S1001: YES), the mobile terminal device 120 determines whether area information is set at the position received in the operation (step S1002).
[0101] When the area information is set (step S1002: YES), the mobile terminal device 120 displays an input information reception screen 530 in which all the designated position information 532 shown in FIG. 5(C) is input (step S1003) and proceeds to the process of step S1005. On the other hand, when the area information is not set (step S1002: NO), the mobile terminal device 120 displays an input screen with a part of the designated position information 532 (parent location 310 and child location 320) left blank (step S1004).
[0102] Then, the mobile terminal device 120 determines whether the input in the defect item column 533 (Fig. 5(C)) is completed (step S1005). The mobile terminal device 120 waits until the input is completed (step S1005: NO). When the input is completed (step S1005: YES) and the confirmation button 534 is pressed, the defect information is saved (step S1006).
[0103] Then, the mobile terminal device 120 determines whether the displayed pin icon 522 is single-tapped (step S1007). If the pin icon 522 is not single-tapped (step S1007: NO), the mobile terminal device 120 proceeds to the process of step S1009. On the other hand, if the pin icon 522 is single-tapped (step S1007: YES), the mobile terminal device 120 displays the defect summary 620 (Fig. 6(B)) (step S1008).
[0104] Then, the mobile terminal device 120 determines whether the displayed pin icon 522 is double-tapped (step S1009). If the pin icon 522 is not double-tapped (step S1009: NO), the mobile terminal device 120 proceeds to the process of step S1013. On the other hand, if the pin icon 522 is double-tapped (step S1009: YES), the mobile terminal device 120 displays the input information reception screen 530 (Fig. 5(C)) (step S1010), and it becomes possible to edit the input information.
[0105] Then, the mobile terminal device 120 waits until the editing of the input information is completed (step S1011: NO). When the editing is completed (step S1011: YES), specifically, when the confirmation button 534 is pressed, the updated data (inspection result) is saved (step S1012).
[0106] Next, the mobile terminal device 120 determines whether or not the facility equipment mark 600 (FIG. 6(C)) attached to the pin icon 522 has been tapped (step S1013). If the facility equipment mark 600 is not tapped (step S1013: NO), the mobile terminal device 120 proceeds to the process of step S1015. If the facility equipment mark 600 is tapped (step S1013: YES), the mobile terminal device 120 displays the detailed screen 630 shown in FIG. 6(C), that is, displays the detailed information 631 corresponding to the facility equipment that is the target of the defect (step S1014).
[0107] Next, the mobile terminal device 120 determines whether or not it has received a switch to the hierarchical data of the lower layer (detailed drawing data 400) (for example, pressing the detailed button 523 in FIG. 5(B)) (step S1015). If it has not received the switch (step S1015: NO), the mobile terminal device 120 proceeds to the process of step S914 in FIG. 9. On the other hand, if it has received the switch (step S1015: YES), the mobile terminal device 120 displays the hierarchical data of the lower layer (detailed drawing data 400) (step S1016) and proceeds to the process of step S914.
[0108] As described above, the mobile terminal device 120 according to the present embodiment displays the area drawing data 300 in which an area is set, receives a defect result (display of the pin icon 522 and input information indicating the defect content), and outputs defect information. Thereby, as shown in the input information reception screen 530 of FIG. 5(C), the mobile terminal device 120 can automatically input the designated position information 532 indicating the position of the defect target, and display the pin icon 522 when the defect content is input. Therefore, the mobile terminal device 120 can obtain defect information by performing a simple operation such as the operator long-pressing the position of the defect target during work to input the defect content. Thereby, the work load of the operator can be reduced.
[0109] Conventionally, depending on the worker, even if a new defect is discovered, there are some who report roughly regarding the location identification and some who report in detail, resulting in variations in the reported content. Also, there are cases where the update of management data is forgotten, and it may not be possible to obtain uniform defect information. For this reason, it was not possible to share defect information with a certain standard among each worker, and there were variations in the defect content for each worker.
[0110] On the other hand, according to the present embodiment, it is possible to suppress variations among workers regarding location identification, and it is also possible to suppress forgetting to update management data, and it is possible to obtain uniform defect information. As a result, it is possible to share defect information with a certain standard among each worker, so it is possible to suppress variations in the defect content for each worker. Therefore, according to the present embodiment, work efficiency can be improved.
[0111] In addition, the mobile terminal device 120 according to the present embodiment displays input information when the pin icon 522 displayed on the display is designated. As a result, the worker can view and edit the input information at the position of each defect target, so the progress, situation, and outline of the defect target can be easily grasped with a simple operation.
[0112] Further, in the present embodiment, the area drawing data 300 includes a plurality of hierarchical data associated with the detailed drawing data 400 of the lower layer, and the mobile terminal device 120 receives and outputs defect information for each hierarchical data. As a result, the mobile terminal device 120 can also automatically input the designated position information 532 indicating the position of the defect target for the detailed drawing data 400, and display the pin icon 522 when the defect content is input. Therefore, the mobile terminal device 120 can obtain defect information for the detailed drawing data 400 as well by performing a simple operation such as long-pressing the position of the defect target during work by the worker to input the defect content. This can reduce the work load related to the update of the detailed drawing data 400 by the worker.
[0113] Also, in the present embodiment, the pin icon 522 in the hierarchical data of the upper layer and the pin icon 522 in the hierarchical data of the lower layer are made displayable on the drawing screen of the hierarchical data of the upper layer. Thereby, even without displaying the screen of the detailed drawing data 400, the operator can easily visually grasp the degree of trouble occurring in each area.
[0114] Also, the office terminal device 110 according to the present embodiment generates and outputs area drawing data 300 which is area drawing data in which the portable terminal device 120 receives input of defect information (display position of the pin icon 522 and input information indicating the defect content), and areas are set in the PDF drawing data 301. Thereby, the area drawing data 300 can be made into simplified data with only area information added to the PDF drawing data 301. As a result, the data communication volume can also be suppressed, so that a decrease in the processing speed and communication speed of various devices can be suppressed. Therefore, the operator can perform various operations without stress and can improve work efficiency.
[0115] Also, by using the area drawing data 300 generated by the office terminal device 110, the portable terminal device 120 can display the area drawing data 300, receive defect information (display of the pin icon 522 and input information indicating the defect content), and output the defect information. Therefore, the portable terminal device 120 can obtain defect information by performing a simple operation such as the operator long-pressing the position of the defect target during work to input the defect content. Thereby, the work load of the operator can be reduced.
[0116] In the above-described embodiment, the input and editing of defect information are performed by the mobile terminal device 120. However, it is also possible to perform them by the office terminal device 110. Further, although the above-described facility management system 1 is provided with the facility management server 100, it is not limited thereto, and the facility management server 100 may not be provided. In this case, the office terminal device 110 may be provided with the facility management DB 101, and the office terminal device 110 may manage various data handled by the facility management company. Further, the office terminal device 110 and the mobile terminal device 120 may directly communicate with each other.
[0117] Note that all or part of each function (input / output, storage, processing) in the facility management system 1 described above may be realized in another device different from the device described as the execution entity of the function. Specifically, in the above description, an example has been described in which the office terminal device 110 includes functional units such as an acquisition unit, a setting unit, a generation unit, and an output unit, and the mobile terminal device 120 includes functional units such as an acquisition unit, a reception unit, an output unit, and a display control unit. However, all or part of these functional units may be provided in other computer devices. Specifically, for example, all or part of these functional units may be provided in the facility management server 100, or may be provided in other computer devices. Further, the computer devices in which these functional units are provided may be multiple, or may be one.
[0118] Although the embodiment has been described, the specific configuration is not limited to the above-described embodiment, and designs and the like within a range not departing from the gist of the present invention are also included.
[0119] A computer may read and store in a computer-readable storage medium a program for realizing the functions of the apparatus and the like (for example, the office terminal device 110 and the mobile terminal device 120) according to the embodiments described above, and cause the computer system to read and execute the program stored in this storage medium to perform processing. Here, the “computer system” may include an operating system (OS: Operating System) or hardware such as peripheral devices. Further, the “computer-readable storage medium” refers to a writable non-volatile memory such as a USB (Universal Serial Bus) flash memory, an SSD (Solid State Drive), a flexible disk, a magneto-optical disk, a ROM (Read Only Memory), a flash memory, a portable medium such as a DVD (Digital Versatile Disc), or a storage device such as a hard disk built into the computer system.
[0120] Furthermore, the “computer-readable storage medium” shall also include those that hold a program for a certain period of time, such as a volatile memory (for example, DRAM (Dynamic Random Access Memory)) inside an information processing device or a computer system that becomes a client when a program is transmitted via a network such as the Internet or a communication line such as a telephone line. Also, the above program may be transmitted from a computer system storing the program in a storage device or the like to another computer system via a transmission medium or by a transmission wave in the transmission medium. Here, the “transmission medium” for transmitting the program refers to a medium having a function of transmitting information, such as a network (communication network) such as the Internet or a communication line (communication line) such as a telephone line. Also, the above program may be for realizing a part of the functions described above. Furthermore, the above program may be a so-called difference file (difference program) that can be realized in combination with a program already stored in the computer system.
Explanation of Reference Numerals
[0121] 1... Facility management system, 100... Facility management server, 101... Facility management DB, 110... Office terminal device, 120... Mobile terminal device, 300... Area drawing data, 400... Detailed drawing data, 522... Pin icon, 600... Equipment mark
Claims
Claim 1. An acquisition unit that acquires area drawing data in which areas are set in the drawing data of a facility to be maintained and managed and that is generated in the file format of an electronic document; A reception unit that, for each area, receives an input of defect information including a display position of an object image indicating a position of a defect target within the area and input information indicating a defect content regarding the defect target from a worker; An output unit that outputs the defect information; A display control unit that causes the object image to be displayed on a display unit and causes the input information to be displayed when the object image is specified; comprising: The display control unit is capable of displaying the defect information related to the deleted area and displays the object image in a display mode corresponding to each work stage of the defect target. A facility management device.
2. The area drawing data includes a plurality of hierarchical data to which detailed drawing data of a lower layer is associated. The reception unit receives an input of the defect information on the drawing screen of each hierarchical data, respectively. The output unit outputs the defect information for each hierarchical data. The facility management device according to claim 1.
3. The display control unit is capable of displaying the object image in the hierarchical data of the upper layer and the object image in the hierarchical data of the lower layer on the drawing screen of the hierarchical data of the upper layer. The facility management device according to claim 2. Claim 4. An acquisition unit that acquires drawing data of a facility to be maintained and managed and that is generated in the file format of an electronic document; A setting unit that sets areas in the drawing data; A generation unit that generates area drawing data for a facility management device to receive input of defect information including a display position of an object image indicating a position of a defect target within the area and input information indicating a defect content regarding the defect target for each area; An output unit that outputs the area drawing data; A storage control unit that causes a storage unit to store the defect information received by the facility management device; A holding unit that causes the storage unit to hold the defect information related to the area when the area set by the setting unit is deleted; Comprising; The output unit enables output of the defect information related to the deleted area, The setting unit sets the area by receiving input of the number of divisions of the area drawing data; A drawing data generation device.
5. A computer of a facility management device, An acquisition unit that acquires area drawing data in which areas are set in the drawing data of a facility that is a target of maintenance management and that is generated in a file format of an electronic document, A reception unit that receives, for each area, input of defect information including a display position of an object image indicating a position of a defect target within the area and input information indicating a defect content regarding the defect target from a worker, An output unit that outputs the defect information, A display control unit that causes the display unit to display the object image and causes the input information to be displayed when the object image is specified, Functioning as, The display control unit enables display of the defect information related to the deleted area and displays the object image in a display mode corresponding to each work stage of the defect target. A program.
6. A computer of a drawing data generation device, An acquisition unit that acquires drawing data of a facility to be maintained and managed, the drawing data being generated in a file format of an electronic document. A setting unit that sets an area in the drawing data. A generation unit that generates area drawing data for the facility management device to receive input of defect information including a display position of an object image indicating a position of a defect target within the area and input information indicating a defect content about the defect target for each area. An output unit that outputs the area drawing data. A storage control unit that causes the storage unit to store the defect information received by the facility management device. A holding unit that causes the storage unit to hold the defect information related to the area when the area set by the setting unit is deleted. Function as The output unit enables output of the defect information related to the deleted area. The setting unit sets the area by receiving input of the number of divisions of the area drawing data. Program.
Citation Information
Patent Citations
Equipment inspection management method and system
CN110070639A
Information managing method and device, program for making computer implement information managing method, recording medium recording the program, safety patrol support device and system
JP2004005380A
Inspection system, mobile terminal, inspection method, and program
JP2011070632A
Construction information management system and construction information management method
JP2015118535A
Construction inspection system and method
JP2017130004A