Information processing apparatus, information processing method, and program
The information processing device and method address the limitations of existing systems by generating and displaying summary and inspection result information for multi-dimensional infrastructure facilities, enhancing facility maintenance management.
Patent Information
- Application Number
- JP2024122982
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2026-02-12
AI Technical Summary
Existing infrastructure facility management systems are limited in their ability to appropriately process information related to facility maintenance, particularly for facilities arranged in multiple dimensions.
An information processing device and method that generates and outputs summary and inspection result information based on inspection procedures, allowing for the management of inspection targets at multiple hierarchical levels, including systems, equipment, and devices, and supports the registration and display of deficiency reports.
Enables effective processing and display of inspection results and progress status across multiple hierarchical levels, facilitating appropriate management of facility maintenance information.
Smart Images

Figure 2026021814000001_ABST
Abstract
Description
[Technical Field]
[0001] The present disclosure relates to an information processing device, an information processing method, and a program. [Background technology]
[0002] Patent Document 1 describes an infrastructure facility management system that aims to visualize information related to the maintenance of infrastructure facility in an easy-to-understand manner on a display screen of limited size. The infrastructure facility management system described in Patent Document 1 is an infrastructure facility management system that manages maintenance information related to the maintenance of infrastructure facility arranged one-dimensionally, and includes a display device and a display control means for displaying a first management screen on the display device. The first management screen divides the infrastructure facility into multiple sections in a one-dimensional direction and has a status display area that shows the status of the infrastructure facility in each section, arranged on the first management screen in the same positional relationship as the actual arrangement of the multiple sections. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Patent No. 6713789 Summary of the Invention [Problem to be solved by the invention]
[0004] However, the system described in Patent Document 1 has a problem in that the ability to appropriately process information related to facility maintenance and the like is limited to infrastructure facilities that are arranged one-dimensionally.
[0005] The present disclosure has been made in consideration of the above circumstances, and aims to provide an information processing device, an information processing method, and a program that can appropriately process information related to the results of inspection of an inspection target. [Means for solving the problem]
[0006] In order to solve the above problem, the information processing device according to the present disclosure includes a first information generation unit that generates first information corresponding to incomplete actions that have become necessary as a result of inspection of one or more inspection targets, and an output unit that outputs the first information.
[0007] The information processing method of the present disclosure includes a step of generating first information corresponding to incomplete actions that have become necessary as a result of inspection of one or more inspection targets, and a step of outputting the first information.
[0008] The program of the present disclosure causes a computer to execute the steps of generating first information corresponding to incomplete actions that have become necessary as a result of inspection of one or more inspection targets, and outputting the first information. [Effects of the Invention]
[0009] According to the information processing device, information processing method, and program of the present disclosure, it is possible to appropriately process information relating to the results of inspection of an inspection target. [Brief explanation of the drawings]
[0010] [Figure 1] FIG. 1 is a diagram illustrating a configuration example of an information processing system according to an embodiment of the present disclosure. [Figure 2] FIG. 2 is a block diagram illustrating a configuration example of a server according to an embodiment of the present disclosure. [Figure 3] FIG. 2 is a diagram illustrating an example of the configuration of an inspection procedure manual master according to an embodiment of the present disclosure. [Figure 4] FIG. 2 is a diagram illustrating an example of the configuration of a system / facility master according to an embodiment of the present disclosure. [Figure 5] FIG. 2 is a diagram illustrating an example of the configuration of a system / hierarchy master according to an embodiment of the present disclosure. [Figure 6] FIG. 10 is a diagram illustrating a configuration example of an inspection procedure manual type master according to an embodiment of the present disclosure. [Figure 7] FIG. 1 is a diagram illustrating an example of the configuration of an equipment inspection master according to an embodiment of the present disclosure. [Figure 8] FIG. 10 is a diagram illustrating a configuration example of an inspection status table according to an embodiment of the present disclosure. [Figure 9] FIG. 2 is a block diagram illustrating a configuration example of a client terminal according to an embodiment of the present disclosure. [Figure 10] 10 is a flowchart illustrating an example of operation of the information processing system according to an embodiment of the present disclosure. [Figure 11] 10 is a flowchart illustrating an example of operation of the information processing system according to an embodiment of the present disclosure. [Figure 12] 10 is a flowchart illustrating an example of operation of the information processing system according to an embodiment of the present disclosure. [Figure 13] FIG. 10 is a diagram illustrating a display example on a client terminal according to an embodiment of the present disclosure. [Figure 14] FIG. 10 is a diagram illustrating a display example on a client terminal according to an embodiment of the present disclosure. [Figure 15] FIG. 10 is a diagram illustrating a display example on a client terminal according to an embodiment of the present disclosure. [Figure 16] FIG. 10 is a diagram illustrating a display example on a client terminal according to an embodiment of the present disclosure. [Figure 17] FIG. 10 is a diagram illustrating a display example on a client terminal according to an embodiment of the present disclosure. [Figure 18] FIG. 10 is a diagram illustrating a display example on a client terminal according to an embodiment of the present disclosure. [Figure 19] 10 is a flowchart illustrating an example of operation of the information processing system according to an embodiment of the present disclosure. [Figure 20] FIG. 10 is a diagram illustrating a display example on a client terminal according to an embodiment of the present disclosure. [Figure 21] FIG. 10 is a diagram illustrating a display example on a client terminal according to an embodiment of the present disclosure. [Figure 22] FIG. 10 is a diagram illustrating a display example on a client terminal according to an embodiment of the present disclosure. [Figure 23] FIG. 1 is a schematic block diagram illustrating a configuration of a computer according to an embodiment of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION
[0011] An information processing device, an information processing method, and a program according to an embodiment of the present disclosure will be described below with reference to Figures 1 to 23. Note that the same or corresponding components in each figure will be denoted by the same reference numerals, and descriptions thereof will be omitted as appropriate.
[0012] FIG. 1 is a diagram illustrating an example configuration of an information processing system according to an embodiment of the present disclosure. The information processing system 1 illustrated in FIG. 1 is configured as a system for managing the health of equipment, such as an equipment maintenance system, and is used as a system for supporting equipment maintenance in one or more plants. In the present embodiment, the information processing system 1 is, for example, a system for managing the progress of inspections of equipment, etc., using inspection procedures to confirm the health of multiple power plants, etc. In the present embodiment, the inspection targets that are the targets of inspection work include three levels: systems, equipment, and devices (i.e., are divided into three levels). The systems, equipment, and devices are all inspection targets. Here, the systems are the highest level and include one or more pieces of equipment. The equipment is the next higher level and includes one or more pieces of equipment. The equipment is the lowest level. The equipment may include machinery, parts, etc. (hereinafter, collectively referred to as equipment, etc.). The number of levels of inspection targets may be less than three or may be four or more. For example, the systems, equipment, devices, etc. may be further divided into multiple levels. Furthermore, instead of (or in addition to) systems, equipment, devices, etc., facilities, buildings, etc. may be included as inspection targets.
[0013] The information processing system 1 shown in FIG. 1 includes a server 2, multiple client terminals 3, and a network 4. The network 4 provides a communication connection between the server 2 and the multiple client terminals 3. The server 2 is one example of the configuration of an "information processing device" of the present disclosure. In the example shown in FIG. 1, the client terminal 3 is configured as a client terminal 3a or a client terminal 3b. The client terminal 3a is, for example, a desktop personal computer or a laptop personal computer, and is used by an administrator to check the inspection status, etc., and by an inspection worker to register, in the server 2, measures to be taken for devices, etc., for which defects, etc., have been found. The client terminal 3b is, for example, a portable terminal such as a tablet terminal or a smartphone, and is used by an inspection worker to input inspection results, etc. However, the type and use of the client terminal 3 are not limited to this example. Hereinafter, the client terminals 3a and 3b will be collectively referred to as client terminals 3.
[0014] Fig. 2 is a block diagram showing an example configuration of a server according to an embodiment of the present disclosure. As shown in Fig. 2, the server 2 includes the following functional blocks configured by a combination of hardware such as a computer and software such as a program executed by the computer. That is, the server 2 includes, as functional blocks, server transmitting means 21, server receiving means 22, storage means 23, inspection status registration means 24, deficiency report registration means 25, inspection status acquisition means 26, and inspection status aggregation means 27.
[0015] 2, inspection status aggregation means 27 constitutes first information generation unit 201. Furthermore, a configuration in which inspection status registration means 24, deficiency report registration means 25, and inspection status acquisition means 26 are combined constitutes second information generation unit 202. Furthermore, server transmission means 21 is an example configuration of an "output unit" according to the present disclosure.
[0016] In this embodiment, when an inspection of one or more inspection targets indicates that some action is required for the inspection targets, the first information generation unit 201 generates summary information SU (corresponding to "first information" in the present disclosure) which is information corresponding to incomplete actions among the required actions. Furthermore, the server transmission means 21 (output unit) outputs (transmits) the summary information SU to the client terminal 3. The summary information SU is then displayed on the client terminal 3. The incomplete actions are determined manually or automatically after the inspection, and are in an incomplete state when determined, and are then completed (completed) when the action is performed.
[0017] Furthermore, when an inspection of an inspection target is performed based on one or more inspection procedure manuals (corresponding to "procedure information" in the present disclosure) that indicate the procedures for inspection work on the inspection target, the second information generation unit 202 generates inspection result information IN (corresponding to "second information" in the present disclosure), which is information that indicates the results of the inspection in association with the inspection procedure manuals. Furthermore, the server transmission means 21 (output unit) outputs (transmits) the inspection result information IN to the client terminal 3. The inspection result information IN is then displayed on the client terminal 3. Here, the inspection procedure manual is a procedure manual for inspection work, and is information that indicates, using documents, images, photographs, videos, etc., the intervals and number of inspections to be performed, and the contents, order, precautions, etc. for one or more inspection items. Furthermore, the inspection result information IN is information that indicates, using documents, images, photographs, videos, etc., the inspection results for each inspection item included in the inspection procedure manual. The inspection results indicated in documents included in the inspection result information IN include, for example, qualitative information and quantitative information indicating the inspection results. The information indicating the inspection results includes information such as pass / fail (suitability) judgment results, and information specifying the details in the case of failure, non-compliance, or deficiency. Information specifying the details is, for example, cracks, external leakage, corrosion, etc. In addition, if rust was found but could be treated on the spot, information indicating that there was no problem with the rust is included.
[0018] The summary information SU is information that summarizes the inspection result information IN, for example, information that quantitatively summarizes the inspection result information IN. As described above, the summary information SU can be, for example, information corresponding to incomplete actions among actions that became necessary based on the results of inspection of one or more inspection targets (hereinafter, this information is also referred to as the inspection status). For example, the summary information SU can be information that represents a fraction with the number of actions that became necessary as a result of the inspection as the denominator and the number of incomplete actions as the numerator. Note that in this embodiment, if a defect is found as a result of the inspection, the inspection worker selects the relevant location and registers a report regarding the defect in the server 2. This report (hereinafter, referred to as a defect report) can include, for example, a work procedure manual, inspection items, inspection results, impressions from the inspection results, temporary actions, and permanent action proposals. In the following example, one deficiency report corresponds to one required action, and the status of actions taken on deficiencies discovered during inspections is managed by using the number of registered deficiency reports as the denominator and the number of deficiencies indicated by the deficiency report as the numerator in a fraction representing summary information SU. In this case, if a file containing (information representing) a deficiency report contains one deficiency report, the number of required actions can be the number of files containing the deficiency report. Note that a deficiency report is one example of the configuration of "deficiency report information" according to the present disclosure. However, a deficiency report may be composed of multiple files. In this case, the number of required actions can be the number of files containing the multiple files representing one deficiency report. Furthermore, this example is not limiting; for example, one deficiency report may correspond to multiple required actions.
[0019] The server transmitting means 21 transmits predetermined information to the client terminal 3. The server receiving means 22 receives predetermined information from the client terminal 3.
[0020] The storage means 23 stores an inspection procedure manual master 231, a system / equipment master 232, a system / hierarchy master 233, an inspection procedure manual type master 234, an equipment inspection master 235, an inspection status table 236, etc. Figures 3 to 8 are diagrams illustrating configuration examples of the inspection procedure manual master, the system / equipment master, the system / hierarchy master, the inspection procedure manual type master, the equipment inspection master, and the inspection status table according to the embodiment of the present disclosure.
[0021] As shown in FIG. 3, the inspection procedure manual master 231 is master data that associates an inspection procedure manual number, an inspection procedure manual type, an inspection procedure manual name, and one or more inspection items (inspection item 1, inspection item 2, inspection item 3, ...). In the example shown in FIG. 3, for example, the inspection procedure manual number "0001", the inspection procedure manual type "01", the inspection procedure manual name "rotating machine inspection", and each inspection item (inspection item 1 ("*****"), inspection item 2 ("*****"), inspection item 3 ("*****"), etc.) are associated. The inspection procedure manual type is a code (number) that indicates the type of inspection procedure manual (details will be described later).
[0022] As shown in FIG. 4, the system / facility master 232 is master data that associates system / facility numbers with system / facility names. In the example shown in FIG. 4, the system / facility number "001S" corresponds to the system / facility name "XX system." The system / facility number "002S" corresponds to the system / facility name "XY system." The system / facility number "001E" corresponds to the system / facility name "AA facility." The system / facility number "002E" corresponds to the system / facility name "AB facility." The system / facility number "001M" corresponds to the system / facility name "generator." The system / facility number "002M" corresponds to the system / facility name "turbine." In this example, "XX system" and "XY system" belong to the system hierarchy of the inspection target, "AA facility" and "AB facility" belong to the facility hierarchy, and "generator" and "turbine" belong to the equipment hierarchy.
[0023] 5, the system / hierarchy master 233 is master data that indicates the correspondence between systems 1, 2, and 3 using the system equipment numbers included in the system / equipment master 232. In this embodiment, system 1 corresponds to the "system" level of the inspection target, system 2 corresponds to the "equipment" level of the inspection target, and system 3 corresponds to the "device" level of the inspection target. In the example shown in FIG. 5, for example, system equipment number "001S" (XX system), system equipment number "001E" (AA equipment), and system equipment number "001M" (generator) are associated with each other.
[0024] As shown in FIG. 6 , the inspection procedure manual type master 234 is master data that associates inspection procedure manual types with inspection procedure manual type names. In the example shown in FIG. 6 , the inspection procedure manual type "01" corresponds to the inspection procedure manual type name "Inspection Type 1." The inspection procedure manual type "02" corresponds to the inspection procedure manual type name "Inspection Type 2." The inspection procedure manual type "03" corresponds to the inspection procedure manual type name "Inspection Type 3." In this embodiment, a type is assigned to each inspection procedure manual. For example, a type such as an inspection cycle is established, and inspection types such as daily inspections, monthly inspections, and yearly inspections are assigned. However, the type can be set according to the operation, such as to make it easier to grasp the inspection status. For example, "Inspection Type 1" can be an annual inspection, "Inspection Type 2" can be a monthly inspection, and "Inspection Type 3" can be a daily inspection.
[0025] 7, the equipment inspection master 235 is master data that indicates the correspondence between a system equipment number and one or more inspection procedure manual numbers that indicate the inspection procedure manual to be performed for the device, etc., indicated by the system equipment number, using the system equipment number included in the system / equipment master 232 and the inspection procedure manual number included in the inspection procedure manual master 231. In the example shown in FIG. 7, the system equipment number "001M" (generator), the inspection procedure manual number "0001" (rotating machine inspection), the inspection procedure manual number "0011" (legal inspection), and the inspection procedure manual number "0022" (daily inspection) are associated with each other.
[0026] The inspection status table 236 is a table in which each record includes fields such as system equipment number, inspection procedure manual number, inspection item, person in charge, inspection date, inspection status 1, deficiency report storage location 1, treatment status 1, inspection status 2, deficiency report storage location 2, treatment status 2, etc. The system equipment number is data included in the system / equipment master 232. The inspection procedure manual number and inspection item are data included in the inspection procedure manual master 231. The person in charge is the name of the person in charge (or person identification information). The inspection status (inspection status 1, 2, etc.) is information indicating the content of the deficiency (including those that have been treated) confirmed by inspection. The deficiency report storage location (deficiency report storage location 1, 2, etc.) is information indicating, for example, the storage location of a file representing the deficiency report in the storage means 23. The treatment status (treatment status 1, 2, etc.) is information indicating whether the deficiency report is untreated or has been treated. In the example shown in Fig. 8, for example, the system equipment number "001M", the inspection procedure manual number "0001", the inspection item "*****", the person in charge "AA", the inspection date "2021 / 4 / 5", and the inspection status 1 "Rust" are associated and registered in the inspection status table 236. Note that for the inspection status 1 "Rust", a deficiency report and a treatment status are not registered. For example, the system equipment number "001M", inspection procedure number "0001", inspection item "*****", person in charge "AA", inspection date "2021 / 4 / 5", inspection status 1 "Crack", defect report storage location 1 "C:¥ppp¥qqq¥...", treatment status 1 "Untreated", inspection status 2 "Corrosion", defect report storage location 2 "C:¥ppp¥qq¥...", and treatment status 2 "Treatment completed" are associated and registered in the inspection status table 236.
[0027] In addition, the inspection status registration means 24 registers data such as the system equipment number, inspection procedure manual number, inspection item, person in charge, inspection date, inspection status, treatment status, etc. shown in Figure 8 in the inspection status table 236 based on the information received from the client terminal 3 via the server receiving means 22.
[0028] In addition, the deficiency report registration means 25 stores a file containing information representing the deficiency report received from the client terminal 3 via the server receiving means 22, for example, in the storage means 23, and registers data indicating the storage location in the inspection status table 236.
[0029] Furthermore, the inspection status acquisition means 26 acquires information designated by, for example, the user from the inspection status table 236, generates inspection result information IN in association with the inspection procedure manual number, and transmits it to the client terminal 3 via the server transmission means 21. The inspection status acquisition means 26 extracts, for example, information indicating the inspection status, treatment status, and storage location of the defect report, which are included in the inspection status table 236, using the inspection procedure manual number designated by the user as a key, and generates the inspection result information IN as information that can be classified, for example, by inspection procedure manual, by inspection item, by predetermined period, etc.
[0030] Furthermore, the inspection status tabulation means 27 acquires information designated by, for example, the user from the inspection status table 236, generates summary information SU according to the incomplete actions, and transmits it to the client terminal 3 via the server transmission means 21. The inspection status tabulation means 27 generates the summary information SU based on the results of extracting the action status included in the inspection status table 236 for a predetermined period (for example, every year, every quarter, etc.) using the inspection procedure manual number designated by the user as a key. The summary information SU can be, for example, a fraction with the number of registered deficiency reports as the denominator and the number of unprocessed deficiency reports as the numerator for all inspection results during the relevant period using the inspection procedure manual with the designated inspection procedure manual number. Furthermore, the inspection status tabulation means 27 generates summary information SU, for example, for each hierarchical level of the inspection target of the device, etc., or for each inspection type.
[0031] Fig. 9 is a block diagram showing a configuration example of a client terminal according to an embodiment of the present disclosure. As shown in Fig. 9, the client terminal 3 includes, as functional blocks, an inspection result information receiving means 31, a summary information receiving means 32, an inspection procedure manual receiving means 33, a display control means 34, a client transmitting means 35, and a client receiving means 36. In the example shown in Fig. 9, the client terminal 3 also includes a display unit 37, which is an external display device. However, the display unit 37 may be provided within the client terminal 3.
[0032] The inspection result information receiving means 31 receives the inspection result information IN from the server 2 via the client receiving means 36 in accordance with, for example, a user's operation, and displays it on the display unit 37 using the display control means 34.
[0033] Summary information receiving means 32 receives summary information SU from server 2 via client receiving means 36 in accordance with, for example, a user's operation, and displays it on display unit 37 using display control means 34.
[0034] The inspection procedure manual receiving means 33 receives a file including information representing the inspection procedure manual from the server 2 via the client receiving means 36 in accordance with, for example, a user operation, and displays it on the display unit 37 using the display control means 34.
[0035] The display control means 34 causes the display unit 37 to display predetermined information.
[0036] The client transmission means 35 transmits predetermined information to the server 2.
[0037] The client receiving means 36 receives predetermined information from the server 2 .
[0038] Next, an operation example of the information processing system 1 (the server 2 and the client terminal 3) will be described with reference to Fig. 10 to Fig. 18. Fig. 10 to Fig. 12 are flowcharts showing an operation example of the information processing system according to an embodiment of the present disclosure. Fig. 13 to Fig. 18 are diagrams showing display examples on the client terminal according to an embodiment of the present disclosure.
[0039] The process shown in FIG. 10 is started, for example, by starting up predetermined application software on the client terminal 3 and performing a predetermined input operation. FIGS. 11 and 12 show an example of the process executed in step S104 of FIG. 10. The flow shown in FIG. 11 and the flow shown in FIG. 12 are connected to each other by the same connectors C1 to C3. In the following operation example, it is assumed that the latest inspection results have already been registered in the inspection status table 236 by the client terminal 3 (for example, client terminal 3b). The inspection results may be registered in advance by, for example, an inspection worker, regardless of the start of the process shown in FIG. 10, or may be registered at the start of the process shown in FIG. 10.
[0040] 10, first, a person in charge is designated in accordance with a user's operation on the client terminal 3 (while appropriately transmitting and receiving predetermined information with the server 2 (same below)) (step S101). The client terminal 3 receives summary information SU and the like relating to the inspection procedure manual handled by the designated person in charge from the server 2, and displays, for example, a display screen DS1 as shown in FIG. 13 on the display unit 37 (step S102).
[0041] The display screen DS1 shown in FIG. 13 displays summary information SU (SU1) representing the inspection status for each year for the inspection procedure manual. The summary information SU is generated by the inspection status tallying means 27 in the server 2 as described above, based on the inspection procedure manual number and other information received by the server receiving means 22 from the client transmitting means 35. The summary information SU generated by the inspection status tallying means 27 is transmitted by the server transmitting means 21, received by the summary information receiving means 32 via the client receiving means 36, and displayed on the display unit 37 by the display control means 34 (the same applies below to summary information SU). In this case, the inspection status is represented by the number of deficiency reports in the denominator and the number obtained by subtracting the number of deficiency reports that have been addressed from the number of deficiency reports (the number of deficiency reports that have not been addressed). The display is distinguished, for example, by the presence or absence of hatching, between deficiency reports that still require addressing (when the numerator is other than 0) and those that have already been addressed (when the numerator is 0). In Figure 13, an icon containing a fraction indicates that a deficiency report has been registered, and each icon indicates the progress of the action chronologically by inspection procedure and by year (every year from 2020 to 2023).
[0042] As shown on display screen DS1, each facility name displayed in the "Facility" column is selectable. For example, when "AA Facility" TP1 is selected, related devices and the like are displayed as shown on display screen DS2 in FIG. 14. In the example shown in FIG. 14, multiple devices and the like correspond to one inspection procedure manual. In this example, "Generator," "Turbine," "High-Pressure Pump A," and "High-Pressure Pump B" correspond to the inspection procedure manual with the inspection procedure manual title "Rotating Machine Inspection." Each facility displayed on display screen DS2 in FIG. 14 is selectable. For example, when "Generator" is selected, the inspection status for "Generator" is displayed as shown on display screen DS3 in FIG. 15 (steps S103:Y to S104).
[0043] The display screen DS3 shown in Figure 15 displays summary information SU (SU2) for each inspection type and quarter from 2020 to 2023 for the generator of facility AA in the XX system, as well as inspection result information IN (IN1) for each inspection item related to the inspection procedure name "rotating machine inspection" for each year from 2020 to 2023. In the example shown in Figure 15, within each icon included in the inspection result information IN (IN1), the character string "rust" or "crack" is displayed along with a mark indicating whether a deficiency report has been registered. In this case, a check mark indicates that no deficiency report has been registered, and an exclamation mark within a triangle indicates that a deficiency report has been registered. Clicking on each icon displays links to display registered information other than rust and cracks, deficiency reports, and links to edit the content (hereinafter also referred to as the "inspection result edit area").
[0044] Figure 16 shows an example of an inspection procedure manual that can be selected in the list box LB1 shown in Figure 15. As shown in Figure 16, it is possible to associate multiple inspection procedure manuals related to one device, etc., and it is possible to select any one of the inspection procedure manuals in this list box LB1. In this example, "0001 Rotating Machine Inspection," "0011 Legal Inspection," and "0022 Daily Inspection" correspond to the "Generator," indicating that inspections will be performed using each inspection procedure manual for the "Generator."
[0045] The inspection result information IN (IN1) indicates the progress (inspection results) of each inspection item in the inspection procedure manual for the equipment, etc. In the example shown in FIG. 15, the inspection status for each year for the inspection item in the inspection procedure manual "0001 Rotating Machine Inspection" for the "Generator" is displayed. The inspection status is switched and displayed for the inspection procedure manual selected in the list box LB1. The inspection result information IN is generated by the inspection status acquisition means 26 in the server 2 as described above based on the inspection procedure manual number, etc., received by the server receiving means 22 from the client transmitting means 35. The inspection result information IN generated by the inspection status acquisition means 26 is transmitted by the server transmitting means 21, received by the inspection result information receiving means 31 via the client receiving means 36, and displayed on the display unit 37 by the display control means 34.
[0046] Next, the process shown in FIGS. 11 and 12 (the process of step S104 in FIG. 10) will be described. In the process shown in FIGS. 11 and 12, first, the client terminal 3 displays a summary of all inspection statuses of the devices to be inspected, as shown in FIG. 15 (step S201), and displays the inspection results for the inspection items in the inspection procedure manual (step S202). Next, the client terminal 3 determines whether another inspection procedure manual has been selected (step S203). If selected (step S203: Y), the client terminal 3 displays the inspection results for the inspection items in the inspection procedure manual (step S204). If no selection has been made in step S203 or after step S204, the client terminal 3 determines whether a correction area for the inspection results has been selected (step S205). If selected (step S205: Y), the client terminal 3 displays the inspection results in a list, as shown in FIG. 17, for example (step S206). The display screen DS4 shown in FIG. 17 is the same as the display screen DS3 shown in FIG. 15, but the list display is different. The display screen DS4 shown in Fig. 17 includes a list (or pop-up) R2 that is displayed when the icon R1 is clicked. For example, the display screen DS4 shown in Fig. 17 displays (for example, by color) the fact that a deficiency report has been registered, and when selected, the deficiency report is displayed. Note that it is also possible to register that a process has been completed for a deficiency report registered in association with an inspection item, inspection date, etc. in another system, and display this in the relevant location. Any mode is acceptable as long as it accepts that a process for a deficiency report has been completed. Note that if no selection is made (step S205: N), the process of step S213 in Fig. 12, described below, is executed.
[0047] Next, the client terminal 3 determines whether the inspection result has been selected or modified (step S207), and if it has not been selected or modified (step S207: N), it hides the inspection result (list) (step S208) and executes the process of step S205. If it has been selected or modified (step S207: Y), it executes the process of step S209 in FIG.
[0048] In step S209, the client terminal 3 determines whether an instruction to register a deficiency report has been given (step S209), and if an instruction to register a deficiency report has been given (step S209: Y), it recognizes that the deficiency report has been registered and displays the inspection results (step S210). If an instruction to register a deficiency report has not been given (step S209: N), the client terminal 3 determines whether an instruction to display a deficiency report has been given (step S214). If an instruction to display a deficiency report has been given (step S214: Y), the client terminal 3 displays the deficiency report (step S215).
[0049] If an instruction to display the deficiency report has not been given (step S214: N), the client terminal 3 determines whether an instruction to register that the report has been processed has been given (step S216). If an instruction to register that the report has been processed has been given (step S216: Y), the client terminal 3 displays that the report has been processed (step S217). The display screen DS5 shown in FIG. 18 includes a list R3 that is displayed when the icon R1 is clicked. The display screen DS5 shown in FIG. 18 is the same as the display screen DS3 shown in FIG. 15, but the list display is different. On the display screen DS5 shown in FIG. 18, when processing for the deficiency report has been completed, "processed" can be selected and registered. If an instruction to register that the report has been processed has not been given (step S216: N), the client terminal 3 displays the selected inspection results (step S218).
[0050] After step S210, S215, S217, or S218, the client terminal 3 determines whether an instruction to correct the inspection result has been given (step S211). If an instruction to correct has been given (step S211: Y), the client terminal 3 corrects the inspection result (step S212) and ends the processing shown in FIG. 12. If an instruction to correct has not been given (step S211: N), the client terminal 3 determines whether a condition for closing the screen has been met (step S213). If the condition for closing the screen has been met (step S213: Y), the client terminal 3 ends the processing shown in FIG. 12. If the condition for closing the screen has not been met (step S213: N), the client terminal 3 executes the processing of step S205 in FIG. 11.
[0051] Next, another operation example of the information processing system 1 (server 2 and client terminal 3) will be described with reference to Fig. 19 to Fig. 22. Fig. 19 is a flowchart showing another operation example of the information processing system according to an embodiment of the present disclosure. Fig. 20 to Fig. 22 are diagrams showing display examples on the client terminal according to an embodiment of the present disclosure.
[0052] The process shown in FIG. 19 is started by, for example, an administrator using the client terminal 3 to check summary information SU for each inspection target tier, by issuing a command to display a summary from a menu screen (not shown). In the process shown in FIG. 19, the client terminal 3 displays a list of summaries of the inspection status of the selected tier (Step S301). Next, the client terminal 3 determines whether or not another tier has been selected (Step S302). If another tier has been selected (Step S302: Y), the client terminal 3 displays a list of summaries of the inspection status of the selected tier (Step S301). If another tier has not been selected (Step S302: N), the client terminal 3 determines whether or not to end the process (Step S303). If a predetermined condition for ending the process is met (Step S303: Y), the client terminal 3 ends the process shown in FIG. 19. If the predetermined condition for ending the process is not met (Step S303: N), the client terminal 3 executes the process of Step S302.
[0053] FIG. 20 shows an example of the display screen DS6 that the client terminal 3 first displays in the processing shown in FIG. 19. The display screen DS6 includes summary information SU (SU3). The summary information SU (SU3) shows the results of tallying the number of untreated items for each system. The display screen DS6 displays a summary of the inspection progress for all systems. The display screen DS6 summarizes the inspection status for each year of each piece of equipment and device that belongs to each system and displays it as the inspection status for each system. Furthermore, if you want to know the inspection status for lower-level equipment, select the relevant location (for example, "XX system" TP2) and the display screen DS7 shown in FIG. 21 will be displayed.
[0054] FIG. 21 shows an example of a display screen DS7 that the client terminal 3 displays next in the processing shown in FIG. 19. The display screen DS7 includes summary information SU (SU4). The summary information SU (SU4) shows the results of tallying the number of untreated items for each piece of equipment. The display screen DS7 summarizes the inspection status for each year of each piece of equipment, etc. belonging to each piece of equipment, and displays it as the inspection status of each piece of equipment. Furthermore, if you want to know the inspection status of lower-level equipment, etc., select the relevant item (for example, "AA equipment" TP3) and the display screen DS8 shown in FIG. 22 will be displayed.
[0055] FIG. 22 shows an example of a display screen DS8 that the client terminal 3 displays after the display screen DS7 shown in FIG. 21 in the process shown in FIG. 19. The display screen DS8 includes summary information SU (SU5). The display screen DS8 allows you to check the inspection status of each device, etc. that belongs to the lower layer of the AA equipment. The display screen DS8 displays a summary of the overall inspection progress of the lower-level devices, etc. The display screen DS8 summarizes the inspection status for each year in the inspection procedure manual corresponding to each device, etc., and displays it as the inspection status of each device, etc. If you want to know the inspection status of the equipment, select the relevant section (for example, "Generator" TP4) to display the display screen DS3 shown in FIG. 15, and you can check the inspection status of the generator.
[0056] As described above, in this embodiment, the server 2 (information processing device) includes a first information generating unit 201 that generates summary information SU (first information) corresponding to incomplete actions among actions that have become necessary as a result of inspection of one or more inspection targets, and a server transmitting means 21 (output unit) that outputs the summary information SU (first information). With this configuration, it is possible to process and display the progress status of the inspection for each inspection target, and to appropriately process information related to the results of the inspection of the inspection targets.
[0057] In this embodiment, the inspection is performed based on one or more inspection work documents (procedure information) that indicate the procedure for the inspection work on the inspection target, and the system further includes a second information generation unit 202 that generates inspection result information IN (second information) that indicates the result of the inspection in association with the inspection work document (procedure information), and the server transmission means 21 (output unit) further outputs the inspection result information IN (second information). With this configuration, the summary information SU (first information) and the inspection result information IN (second information) can be confirmed.
[0058] In addition, in this embodiment, there can be multiple inspection work documents (procedure information). This makes it possible to check the inspection result information IN (second information) related to multiple inspection work documents (procedure information).
[0059] In addition, in this embodiment, a plurality of pieces of procedure information can be associated with one inspection target, and thus, inspection result information IN (second information) related to a plurality of inspection work documents (procedure information) can be confirmed for each inspection target (system, facility, equipment, etc.).
[0060] In this embodiment, the inspection target includes multiple hierarchical levels, and the first information generation unit 201 generates summary information SU (first information) for each hierarchical level. With this configuration, the summary information SU (first information) can be confirmed for each hierarchical level.
[0061] In this embodiment, the measures are based on a deficiency report (deficiency report information) for reporting that a deficiency has been found in the inspection target as a result of the inspection. By registering the deficiency report, it is possible to register that a measure is required.
[0062] In this embodiment, multiple deficiency reports (deficiency report information) may be associated with one inspection item specified by the inspection procedure. This makes it possible to respond when an event occurs that requires multiple actions for one inspection item.
[0063] In this embodiment, the summary information SU (first information) can be information that represents a fraction with the number of required actions as the denominator and the number of incomplete actions as the numerator. This allows the summary information SU (first information) to be information that quantitatively summarizes the inspection results.
[0064] In this embodiment, the number of required actions in the summary information SU (first information) can be the number of files containing defect report information. This allows the summary information SU to be generated based on the number of files containing defect report information.
[0065] In addition, in this embodiment, there are multiple types of inspection procedures (procedure information), and the first information generation unit 201 generates summary information SU (first information) for each type. With this configuration, it is possible to check the summary information SU (first information) for each type.
[0066] In this embodiment, the server transmission means 21 (output unit) outputs summary information SU (first information) as time-series information. This configuration makes it possible to check the progress status, etc. in time series.
[0067] Although the embodiments of the present disclosure have been described above in detail with reference to the drawings, the specific configuration is not limited to the embodiments, and design changes and the like are also included within the scope of the present disclosure. For example, the client terminal 3 may include some or all of the functional blocks included in the server 2.
[0068] FIG. 23 is a schematic block diagram illustrating the configuration of a computer according to at least one embodiment. The computer 90 includes a processor 91 , a main memory 92 , a storage 93 , and an interface 94 . The above-described server 2 and client terminal 3 are implemented in a computer 90. The operations of the above-described processing units are stored in the form of a program in a storage 93. A processor 91 reads the program from the storage 93, loads it into a main memory 92, and executes the above-described processing in accordance with the program. The processor 91 also allocates storage areas in the main memory 92 corresponding to the above-described storage units in accordance with the program.
[0069] The program may be for realizing some of the functions to be performed by the computer 90. For example, the program may be combined with other programs already stored in storage or other programs implemented in other devices to perform the functions. In other embodiments, the computer may include a custom LSI (Large Scale Integrated Circuit) such as a PLD (Programmable Logic Device) in addition to or instead of the above configuration. Examples of PLDs include PAL (Programmable Array Logic), GAL (Generic Array Logic), CPLD (Complex Programmable Logic Device), and FPGA (Field Programmable Gate Array). In this case, some or all of the functions realized by the processor may be realized by the integrated circuit.
[0070] Examples of storage 93 include a hard disk drive (HDD), a solid state drive (SSD), a magnetic disk, a magneto-optical disk, a compact disc read-only memory (CD-ROM), a digital versatile disc read-only memory (DVD-ROM), and a semiconductor memory. Storage 93 may be an internal medium directly connected to the bus of computer 90, or an external medium connected to computer 90 via interface 94 or a communication line. Furthermore, when this program is distributed to computer 90 via a communication line, computer 90 that receives the program may load the program into main memory 92 and execute the above-described processing. In at least one embodiment, storage 93 is a non-transitory tangible storage medium.
[0071] <Additional Notes> The server 2 (information processing device) described in the embodiment of the present disclosure can be understood, for example, as follows.
[0072] (1) The server 2 according to the first aspect includes a first information generating unit 201 that generates summary information SU (first information) corresponding to incomplete actions among actions that have become necessary as a result of inspection of one or more inspection targets, and a server transmitting means 21 (output unit) that outputs the summary information SU (first information). According to this aspect and each of the following aspects, information related to the results of inspection of the inspection targets can be appropriately processed.
[0073] (2) The server 2 according to the second aspect is the server 2 of (2), wherein the inspection is performed based on one or more inspection procedure manuals (procedure information) that indicate the procedure for inspection work on the inspection object, and further includes a second information generation unit 202 that generates inspection result information IN (second information) that indicates the result of the inspection in association with the inspection procedure manuals (procedure information), and the server transmission means 21 (output unit) further outputs the inspection result information IN (second information).
[0074] (3) The server 2 according to the third aspect is the server 2 according to (1) or (2), and has a plurality of inspection procedure manuals (procedure information).
[0075] (4) The server 2 according to a fourth aspect is the server 2 according to any one of (1) to (3), and is capable of associating a plurality of the inspection procedure manuals (procedure information) with one of the inspection objects.
[0076] (5) The server 2 according to the fifth aspect is the server 2 of (1) to (4), wherein the inspection target includes multiple hierarchies, and the first information generation unit 201 generates the summary information SU (first information) for each hierarchical level.
[0077] (6) The server 2 according to the sixth aspect is the server 2 of (1) to (5), and the action is based on a deficiency report (deficiency report information) to report that a deficiency was found in the inspection target as a result of the inspection.
[0078] (7) The server 2 according to the seventh aspect is the server 2 of (1) to (6), wherein the inspection is carried out based on one or more procedure information representing the procedure of the inspection work for the inspection object, and multiple deficiency reports (deficiency report information) can be associated with one inspection item indicated by the procedure of the inspection work.
[0079] (8) The server 2 according to the eighth aspect is a server 2 according to any one of (1) to (7), wherein the summary information SU (first information) is information representing a fraction with the number of required actions as the denominator and the number of incomplete actions as the numerator.
[0080] (9) The server 2 according to the ninth aspect is a server 2 according to any one of (1) to (8), wherein the first information is information representing a fraction with the number of the required actions as the denominator and the number of the incomplete actions as the numerator, the actions are based on defect report information for reporting that there was a defect in the inspection target as a result of the inspection, and the number of the required actions is the number of files containing the defect report information.
[0081] (10) The server 2 according to the tenth aspect is the server 2 of (1) to (9), wherein the inspection is performed based on one or more procedure information representing the procedure of the inspection work for the inspection object, the inspection procedure manual (procedure information) has multiple types, and the first information generation unit 201 generates the summary information SU (first information) for each type.
[0082] (11) The server 2 according to an eleventh aspect is the server 2 according to any one of (1) to (9), wherein the server transmission means 21 (output unit) outputs the summary information SU (first information) as time-series information.
[0083] (12) An information processing method according to a twelfth aspect includes the steps of generating first information corresponding to incomplete actions that have become necessary as a result of inspection of one or more inspection targets, and outputting the first information.
[0084] (13) A program according to a thirteenth aspect causes a computer to execute the steps of generating first information corresponding to incomplete actions that have become necessary as a result of an inspection of one or more inspection targets, and outputting the first information. [Explanation of symbols]
[0085] 1. Information processing system 2...Server 3 (3a, 3b)...Client terminal 21...Server transmission means (output unit) 201...First information generation section 202...Second information generation section SU...Summary information (first information) IN...Inspection result information (second information) DS1~8…display screen
Claims
1. a first information generating unit that generates first information corresponding to an incomplete action among actions that have become necessary as a result of an inspection of one or more inspection targets; an output unit that outputs the first information; An information processing device comprising:
2. The inspection is performed based on one or more pieces of procedure information that represent an inspection procedure for the inspection object, a second information generating unit that generates second information that indicates a result of the inspection in association with the procedure information; The output unit further outputs the second information. The information processing device according to claim 1 .
3. The procedure information is plural. The information processing device according to claim 2 .
4. A plurality of pieces of procedure information can be associated with one inspection target. The information processing device according to claim 3 .
5. The inspection target includes a plurality of floors, The first information generating unit generates the first information for each of the layers. The information processing device according to claim 1 .
6. The action is based on deficiency report information for reporting that a deficiency was found in the inspection target as a result of the inspection. The information processing device according to claim 1 .
7. The inspection is performed based on one or more pieces of procedure information that represent an inspection procedure for the inspection object, A plurality of pieces of defect report information can be associated with one inspection item instructed by the inspection procedure. The information processing device according to claim 6 .
8. The first information is information that represents a fraction with the number of the required procedures as the denominator and the number of the incomplete procedures as the numerator. The information processing device according to claim 1 or 6.
9. the first information is information representing a fraction with the number of the required procedures as a denominator and the number of the incomplete procedures as a numerator, The action is based on deficiency report information for reporting that a deficiency has been found in the inspection target as a result of the inspection, The number of actions required is the number of files containing the defect report information. The information processing device according to claim 1 .
10. The inspection is performed based on one or more pieces of procedure information that represent an inspection procedure for the inspection object, The procedure information has a plurality of types, The first information generating unit generates the first information for each of the types. The information processing device according to claim 1 .
11. The output unit outputs the first information as time-series information. The information processing device according to claim 1 .
12. generating first information corresponding to incomplete actions among actions that have become necessary as a result of inspection of one or more inspection targets; outputting the first information; An information processing method including:
13. generating first information corresponding to incomplete actions among actions that have become necessary as a result of inspection of one or more inspection targets; outputting the first information; A program that causes a computer to execute the following.
Citation Information
Patent Citations
Infrastructure facility management system and management screen display method
JP6713789B2