Cubicle management system, cubicle management method, and program
The cubicle management system enhances data readability by using optical character recognition and formatting to convert handwritten inspection data into standardized formats, addressing issues with varying image resolutions and improving cubicle identification.
Patent Information
- Application Number
- JP2024009790
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-01-25
- Publication Date
- 2025-08-06
AI Technical Summary
Images of inspection record sheets may be difficult to read due to varying image resolutions and handwritten entries, leading to challenges in displaying inspection data accurately on servers.
A cubicle management system that includes an inspection form image acquisition unit, a character extraction unit for optical character recognition, and a display unit that formats and displays characters in a unified manner, using optical character recognition and predetermined relationships to enhance readability.
Enables easy-to-read display of inspection form data by converting handwritten entries into standardized formats, improving data readability and accuracy in identifying individual cubicles.
Smart Images

Figure 2025115308000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a cubicle management system, a cubicle management method, and a program. [Background technology]
[0002] Systems are known that output various data related to the inspection of cubicle-type high-voltage power receiving equipment (cubicles) to a server via a network. For example, an automatic safety inspection system for cubicles is known (Patent Document 1). In the automatic safety inspection system described in Patent Document 1, an alarm is issued when an abnormality is detected, and information acquired about the cubicle is output via the network. The information includes information about the process leading up to the issuance of the alarm, various measurement values about the cubicle, and images of the inside and outside of the cubicle. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] International Publication No. 2020 / 171189 Summary of the Invention [Problem to be solved by the invention]
[0004] Images of inspection record sheets (inspection sheets) may be output and saved to a server via a network. Inspection record sheets may be filled out by hand. Images of inspection sheets may also be difficult to read depending on the image resolution. When an image of an inspection sheet is acquired, the data of the inspection sheet saved on the server may be difficult to read when displayed.
[0005] The present invention has been made in consideration of the above points, and provides a cubicle management system, a cubicle management method, and a program that can display inspection form data in an easy-to-read manner. [Means for solving the problem]
[0006] The present invention has been made to solve the above-mentioned problems, and one aspect of the present invention is a cubicle management system that includes an inspection form image acquisition unit that acquires an inspection form image, which is an image of an inspection form for a cubicle, a character extraction unit that recognizes characters in the inspection form image based on optical character recognition and extracts character data, and a display unit that displays characters based on the extracted character data in a predetermined format.
[0007] In addition, one aspect of the present invention is that, in the cubicle management system, the display unit displays the characters based on the character data based on a unified format that is different from the format of the inspection form.
[0008] In addition, one aspect of the present invention is that in the above-mentioned cubicle management system, the character extraction unit recognizes characters in the inspection form image based on the optical character recognition and also on a predetermined relationship between characters, and extracts the character data.
[0009] In one aspect of the present invention, in the cubicle management system, the display unit displays a string of characters based on the character data as a unified string of characters that are similar in meaning to each other.
[0010] In one aspect of the present invention, in the cubicle management system, the items on the inspection form include predetermined items for identifying individual cubicles.
[0011] In addition, in one aspect of the present invention, in the cubicle management system, the display unit displays the characters based on the character data in a unified font.
[0012] Furthermore, one aspect of the present invention is that in the above-mentioned cubicle management system, the display unit displays characters based on the character data extracted by recognizing characters written in a specified column in the inspection form image in a specified manner that makes them more noticeable than characters based on the character data extracted by recognizing characters written outside the specified column.
[0013] Another aspect of the present invention is a cubicle management method having an inspection form image acquisition step of acquiring an inspection form image, which is an image of an inspection form for a cubicle, a character extraction step of recognizing characters in the inspection form image based on optical character recognition and extracting character data, and a display step of displaying characters based on the extracted character data in a predetermined format.
[0014] Another aspect of the present invention is a program for causing a computer to execute an inspection form image acquisition step of acquiring an inspection form image, which is an image of an inspection form for a cubicle; a character extraction step of recognizing characters in the inspection form image based on optical character recognition and extracting character data; and a display step of displaying characters based on the extracted character data in a predetermined format. [Effects of the Invention]
[0015] According to the present invention, the data on the inspection slip can be displayed in an easy-to-read manner. [Brief explanation of the drawings]
[0016] [Figure 1] 1 is a diagram showing an example of a configuration of a cubicle management system 1 according to an embodiment of the present invention. [Figure 2] FIG. 2 is a diagram showing an example of an inspection form image A1 according to the embodiment of the present invention. [Figure 3] 1 is a diagram illustrating an example of a functional configuration of a cubicle management system 1 according to an embodiment of the present invention. [Figure 4] FIG. 2 is a diagram showing an example of orthodontic inspection form data F1 according to the embodiment of the present invention. [Figure 5]FIG. 4 is a diagram showing an example of the flow of character recognition processing according to the embodiment of the present invention. [Figure 6] FIG. 10 is a diagram showing an example of a flow of a shaping inspection form data display process according to an embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION
[0017] (Embodiment) Hereinafter, an embodiment of the present invention will be described in detail with reference to the drawings. FIG. 1 is a diagram showing an example of the configuration of a cubicle management system 1 according to this embodiment. The cubicle management system 1 is a system for managing data on inspection slips for cubicle-type high-voltage power receiving equipment (hereinafter referred to as cubicles) and displaying the data in a predetermined format. The cubicle management system 1 is, for example, a cloud server.
[0018] Figure 1 shows a cubicle 2 as an example of a cubicle. A cubicle is a facility that houses a set of equipment in a metal outer box for converting high-voltage commercial power supplied by an electric power company or the like into power with a voltage or frequency that matches the specifications of the load equipment of an electric power consumer.
[0019] The terminal device 3 is a terminal device used by the safety manager (also referred to as an inspector). The terminal device 3 is, for example, a tablet terminal or a smartphone. The terminal device 3 is equipped with a camera. After the safety manager has finished inspecting the cubicle 2, he or she fills in various items on the inspection form 4 as the inspection results. The safety manager uses the camera of the terminal device 3 to photograph the inspection form 4 on which the inspection results have been filled out. The safety manager uses the terminal device 3 to send an inspection form image A1, which is an image of the inspection form 4, to the cubicle management system 1.
[0020] The terminal device 3 communicates with the cubicle management system 1 via the Internet established by the communication network N1.
[0021] The terminal device 3 may be a personal computer (PC). When the terminal device 3 is a PC, the security manager takes an image of the inspection form 4 using a photographing device such as a digital camera. The security manager causes the photographing device to output the inspection form image A1 obtained by photographing to the terminal device 3. The inspection form image A1 is output from the photographing device to the terminal device 3 using a cable or short-range wireless communication.
[0022] 2 shows an example of an inspection form image A1 of the inspection form 4. In the inspection form 4, various items are written. Items entered on the inspection form 4 include, for example, customer number, business name, business establishment name, inspector name, cubicle name, installed capacity [kVA], receiving voltage [V], power meter multiplying factor, reading, monthly energy [kVAh], maximum demand power [kVA], active energy for power measurement [kVAh], reactive energy for power measurement [kVAh], power factor, power receiving panel, high-voltage feeder, lamps 1-n, power sources 1-m, generator panel, non-transparent power panel, voltage (RS, ST, TR) [V], current (R, S, T) [A], power [W], power factor, energy (purchased) (consumed), energy (sold) (generated) (reverse flow) [kVAh], transformer capacity [kVA], leakage current [mA], oil temperature [°C], demand current [A], and overcurrent alarm setting value [A]. Lamps 1-n refer to n lamps. Powers 1 to m refer to m powers. The items to be recorded on the inspection sheet 4 are not limited to the above example.
[0023] Inspection form 4 has the name of each item printed in ruled columns. In addition, depending on the item, the specified units (such as "year," "month," "day," current unit "A," voltage unit "V," and capacity unit "kVA") are printed. Each item included in inspection form 4 is written by hand by the safety manager. Measurement values for inspection items are written in numbers. Inspection items other than measurement values are written in letters.
[0024] In the example shown in Figure 2, inspection form image A1 includes a customer number ("customer number"), business name, business name, inspector name, inspection date, cubicle name, equipment capacity, incoming power voltage, inspection items, inspection results, and remarks. Note that Figure 2 shows only some of the items included in inspection form 4.
[0025] In FIG. 2, the inspection items include, as an example, the voltage and current of various pieces of equipment such as incoming panels and distribution panels. The inspection results of the voltage and current inspection items are indicated by the measured voltage and current values. The inspection items also include visual inspection items. For the visual inspection results, whether or not there is a problem is entered using letters or symbols such as "OK," "○," or "no problem." The remarks include the results of the inspection and any matters that require special note. In the example shown in FIG. 2, special notes are entered in the remarks for the "voltage (TR)" inspection item.
[0026] As shown in Figure 2, the inspection form 4 includes some handwritten characters. If the resolution of the inspection form image A1 is not sufficient, the handwritten characters may be difficult to distinguish.
[0027] The inspection form 4 shown in Figure 2 is an example, and the format of the inspection form 4 varies depending on the business operator. Even if common inspection items are included, the arrangement of the inspection items may differ depending on the business operator. Furthermore, even for the same business operator, the format of the inspection form 4 may differ depending on the type of inspection. Examples of types of inspection include completion inspections, monthly inspections, annual inspections, and detailed inspections.
[0028] As described above, the items on the inspection form 4 include the customer number, the business name and business establishment name, and the cubicle name. These customer numbers, business names and business establishment names, and cubicle names are items for identifying individual cubicles 2. The customer numbers, business names and business establishment names, and cubicle names are linked to each other and managed in the cubicle management system 1. Therefore, if one or more of these customer numbers, business names and business establishment names, and cubicle names are obtained, the individual cubicles 2 can be identified. As described above, the items on the inspection sheet 4 include predetermined items for identifying individual cubicles 2.
[0029] [Cubicle Management System 1 Functional Configuration] FIG. 3 is a diagram showing an example of the functional configuration of the cubicle management system 1 according to this embodiment. The cubicle management system 1 includes an inspection form image acquisition unit 10, a character extraction unit 11, a display unit 12, and a storage unit 13. As described above, the cubicle management system 1 is a cloud server. Therefore, the inspection form image acquisition unit 10, the character extraction unit 11, the display unit 12, and the storage unit 13 are realized by one or more servers. Note that the cubicle management system 1 may also be realized by a single server.
[0030] The inspection slip image acquisition unit 10, the character extraction unit 11, and the display unit 12 are each realized by, for example, a CPU (Central Processing Unit) loading a program from a ROM (Read Only Memory) into a RAM (Random Access Memory) and executing processing in accordance with the program. The ROM and RAM are included in the storage unit 13.
[0031] The inspection form image acquisition unit 10 acquires an inspection form image A1. The inspection form image A1 is an image of an inspection form 4 for a cubicle 2.
[0032] The character extraction unit 11 recognizes characters in the inspection form image A1 based on optical character recognition and extracts character data B1. The character data B1 is represented by a character code. The character extraction unit 11 may recognize characters by combining optical character recognition and machine learning (AI). If the resolution of the inspection form image A1 is insufficient or if the inspection form image A1 contains images of handwritten characters, the character extraction unit 11 can improve recognition accuracy by combining optical character recognition and machine learning.
[0033] The display unit 12 displays characters based on the extracted character data B1 in a predetermined format. Data in which characters based on the character data B1 are displayed by the display unit 12 in a predetermined format is referred to as formatted inspection form data F1. The formatted inspection form data F1 is, for example, data in a table format. The formatted inspection form data F1 may be data in a format other than a table format, and may be text data, image data, or the like. The formatted inspection form data F1 is data that is temporarily generated when the display unit 12 displays the data. The display unit 12 displays the formatted inspection form data F1 on, for example, a terminal device of a viewer. The viewer may be, for example, the safety manager who performed the inspection, an employee of the business operator who performs the inspection, or the like.
[0034] The storage unit 13 stores various types of information. The storage unit 13 is configured using a storage device such as a magnetic hard disk drive or a semiconductor storage device. The information stored in the storage unit 13 includes character data B1, character string correspondence information C1, format information D1, dictionary information E1, and cubicle management information G1. The character string correspondence information C1, format information D1, dictionary information E1, and cubicle management information G1 are stored in the storage unit 13 in advance.
[0035] The character data B1 is generated by the inspection form image A1 as a result of the character extraction unit 11 recognizing and extracting characters in the inspection form image A1. The character data B1 is a collection of predetermined character codes.
[0036] The character string correspondence information C1 is information indicating a predetermined relationship between characters. For example, this relationship is such that, in a column adjacent to a column in which a character string indicating the name of an inspection item indicating a physical quantity is entered, a number indicating a measurement value obtained by measuring the physical quantity is entered. The adjacent column is, for example, the column adjacent to the right or the column adjacent below. The character string indicating the name of an inspection item may include, for example, hiragana, katakana, kanji, numbers, alphabets, or symbols.
[0037] For example, in the inspection form 4, the columns to the right of the voltage and current items contain numbers indicating the measured voltage and current values, respectively. The character string correspondence information C1 indicates, for example, that the measured voltage value is entered in the column to the right of the column in which the character string "voltage" is entered. Similarly, the character string correspondence information C1 indicates, for example, that the measured current value is entered in the column to the right of the column in which the character string "current" is entered.
[0038] Using the character string correspondence information C1, the character extraction unit 11 extracts character data B1 from the inspection form image A1 based on the relationship that a column containing a character string for the name of the measurement object contains a number in the adjacent column. The character extraction unit 11 can improve conversion accuracy by estimating whether a character string in an adjacent column is a non-numeric character string or a numeric value based on the relationship between the items in the context of the character string in a column. Therefore, the character extraction unit 11 recognizes characters in the inspection form image A1 based on optical character recognition and the predetermined relationships between characters to extract character data B1.
[0039] As another example, the character string correspondence information C1 may indicate a relationship in which numbers, letters, symbols, etc. are entered in the column immediately to the right of the column in which the character string "customer number" is entered. The character string correspondence information C1 may indicate a relationship in which numbers are entered to the left of each of the characters "year," "month," and "day" in the column immediately to the right of the column in which the character string "inspection date" is entered.
[0040] The format information D1 is information indicating a predetermined format for the display unit 12 to display the character data B1. For example, the format information D1 indicates a format in which items and the character strings entered for those items are arranged side by side in two columns. The format information D1 may be a format different from the format of the inspection form 4. In that case, the display unit 12 displays characters based on the character data B1 based on a unified format different from the format of the inspection form 4.
[0041] The dictionary information E1 is information indicating the relationship between character strings that have similar meanings. Character strings that have similar meanings are, for example, "OK," "○," and "no problem." These character strings all indicate that there were no problems as inspection results. Based on the dictionary information E1, the display unit 12 displays the character strings "OK," "○," and "no problem" as "no problem." The user specifies which character string of the character strings that have similar meanings should be displayed. The display unit 12 displays character strings made up of characters based on the character data B1 as a unified character string of character strings having similar meanings, based on the dictionary information E1.
[0042] The dictionary information E1 is, for example, created in advance by a user and stored in the storage unit 13. The dictionary information E1 may be generated by the display unit 12 by learning character strings that are similar in meaning based on natural language processing. Furthermore, the dictionary information E1 created in advance may be updated based on natural language processing or machine learning. The dictionary information E1 can be viewed from the viewer's terminal device. In this case, the display unit 12 displays the dictionary information E1 on the terminal device, for example, as a table in which character strings similar in meaning are arranged.
[0043] Cubicle management information G1 is information for managing cubicles 2. Cubicle management information G1 includes, for example, the above-mentioned customer number, business name and business establishment name, and cubicle name, as well as the address of the location where cubicle 2 is installed. As described above, the customer number, business name and business establishment name, and cubicle name are information for identifying individual cubicles 2. In cubicle management information G1, the customer number, business name and business establishment name, and cubicle name are linked to each other.
[0044] FIG. 4 is a diagram showing an example of the shaped inspection form data F1 according to this embodiment. In the shaped inspection form data F1, items and character strings entered for the items are arranged in two columns. Note that the shaped inspection form data F1 shown in FIG. 4 is an example, and the items and character strings entered for the items may be arranged in four or more columns. Furthermore, the shaped inspection form data F1 may be displayed based on the same format as the inspection form 4.
[0045] In addition, in the formatting checklist data F1, the items and the character strings entered for the items are displayed in a unified font. The display unit 12 displays characters based on the character data B1 in a unified font.
[0046] Here, the "Voltage (TR)" item is displayed with a highlighted background. The "Voltage (TR)" item is an item for which special notes were written in the "remarks" section of the inspection form 4 (see Figure 2). The text written in the "remarks" section is displayed in a more prominent manner than the text written in the other sections. This may be achieved by changing the font, highlighting the background, or changing the line style in the item column. Font changes include changing the text color (e.g., making the text red), changing the text type (e.g., making the text bold), and changing the text size (e.g., making the text larger).
[0047] Therefore, the display unit 12 displays characters based on the character data B1 extracted by recognizing characters written in a predetermined field in the inspection form image A1 in a predetermined manner that makes the characters more noticeable than characters based on character data extracted by recognizing characters written in fields other than the predetermined field. The predetermined field may be the above-mentioned remarks field, a special notes field, a memo field, or the like. The predetermined manner is included in the above-mentioned format information D1. In addition, the display unit 12 may display characters based on character data B1 extracted by recognizing characters written in a specified column in the inspection form image A1 in the same manner as characters based on character data extracted by recognizing characters written in a column other than the specified column.
[0048] Furthermore, the display unit 12 may display a warning message when, as a result of generating the shape inspection form data F1, no information for identifying an individual cubicle 2 is included in the items.
[0049] [Character Recognition Processing] Next, referring to Fig. 5, a character recognition process in which the cubicle management system 1 recognizes characters in the inspection form image A1 and extracts character data B1 will be described. Fig. 5 is a diagram showing an example of the flow of the character recognition process according to this embodiment. The character recognition process is started when the inspection form image A1 is transmitted (uploaded) from the terminal device 3 to the cubicle management system 1.
[0050] Step S10: The inspection form image acquiring unit 10 acquires the inspection form image A1 transmitted from the terminal device 3. The inspection form image acquiring unit 10 supplies the acquired inspection form image A1 to the character extracting unit 11.
[0051] Step S20: The character extraction unit 11 recognizes the characters in the inspection slip image A1 based on optical character recognition and extracts character data B1.
[0052] Step S30: The character extraction unit 11 stores the extracted character data B1 in the storage unit 13. With this, the cubicle management system 1 ends the character recognition process.
[0053] [Formed inspection form data display processing] Next, referring to Fig. 6, a description will be given of the shaped inspection form data display process, which is a process in which the cubicle management system 1 displays the shaped inspection form data F1. Fig. 6 is a diagram showing an example of the flow of the shaped inspection form data display process according to this embodiment. The shaped inspection form data display process is started when the cubicle management system 1 receives a request to display the shaped inspection form data F1 from the viewer's terminal device (such as the terminal device 3).
[0054] Step S110: The display unit 12 reads out the character data B1 from the storage unit 13.
[0055] Step S120: The display unit 12 displays characters based on the character data B1 read from the storage unit 13 as well-formed inspection form data F1 based on a predetermined format. In this embodiment, the display unit 12 generates well-formed inspection form data F1 based on the character data B1, character string correspondence information C1, format information D1, and dictionary information E1. Note that the display unit 12 may omit the use of either the character string correspondence information C1 or the dictionary information E1 when generating the well-formed inspection form data F1. Therefore, the display unit 12 generates well-formed inspection form data F1 based on at least the character data B1 and characters based on the format information D1 based on a predetermined format.
[0056] The display unit 12 transmits the generated shaped inspection form data F1 to the terminal device of the viewer. The transmitted shaped inspection form data F1 is displayed by the terminal device. With this, the cubicle management system 1 ends the shaping inspection form data display process.
[0057] As described above, the cubicle management system 1 according to this embodiment includes the inspection slip image acquisition unit 10, the character extraction unit 11, and the display unit 12. The inspection form image acquisition unit 10 acquires an inspection form image A1, which is an image of the inspection form 4 for the cubicle 2. The character extraction unit 11 recognizes characters in the inspection slip image A1 based on optical character recognition and extracts character data B1. The display unit 12 displays characters based on the extracted character data B1 in a predetermined format.
[0058] With this configuration, the cubicle management system 1 of this embodiment can recognize characters in the inspection form image A1 based on optical character recognition and display characters based on the extracted character data B1 in a predetermined format, thereby making the inspection form data easy to read and display.
[0059] Furthermore, in the cubicle management system 1 according to this embodiment, the display unit 12 displays characters based on the character data B1 based on a unified format that is different from the format of the inspection slip 4.
[0060] With this configuration, the cubicle management system 1 according to this embodiment can display characters based on the character data B1 in a unified format, making the inspection form data easier to read for viewers. As mentioned above, the format of the inspection form 4 varies depending on the business operator. A unified format makes the inspection form data easier for viewers to read.
[0061] Furthermore, in the cubicle management system 1 according to this embodiment, the character extraction unit 11 recognizes characters in the inspection slip image A1 based on predetermined relationships between characters in addition to optical character recognition, and extracts character data B1.
[0062] With this configuration, the cubicle management system 1 of this embodiment can extract character data B1 from the inspection form image A1 using optical character recognition and predetermined relationships between characters, thereby improving the accuracy when extracting character data B1 from the inspection form image A1.
[0063] Furthermore, in the cubicle management system 1 according to this embodiment, the display unit 12 displays character strings made up of characters based on the character data B1 as a unified character string made up of character strings having similar meanings.
[0064] With this configuration, in the cubicle management system 1 of this embodiment, even if the inspection results entered on the inspection form 4 are written using different character strings by the safety manager, character strings with similar meanings are displayed as a unified character string for those character strings, making it easier for viewers to read the data on the inspection form.
[0065] In addition, in the cubicle management system 1 according to this embodiment, the items on the inspection slip 4 include predetermined items for identifying individual cubicles 2.
[0066] With this configuration, the cubicle management system 1 according to this embodiment can identify the individual cubicles 2 based on the items, and therefore can assist in the management of the cubicles 2.
[0067] Furthermore, in the cubicle management system 1 according to this embodiment, the display unit 12 displays characters based on the character data B1 in a unified font.
[0068] With this configuration, the cubicle management system 1 according to this embodiment can display characters in a unified font, making it easier for viewers to read the inspection form data.
[0069] Furthermore, in the cubicle management system 1 according to this embodiment, the display unit 12 displays characters based on character data B1 extracted by recognizing characters written in a specified column in the inspection form image A1 in a specified manner that makes the characters more noticeable than characters based on character data extracted by recognizing characters written in other columns.
[0070] With this configuration, in the cubicle management system 1 of this embodiment, when an entry is made in a specified column, the viewer can easily see that an entry has been made in that column, thereby preventing oversights from occurring when inspecting the cubicle 2.
[0071] Note that parts of the cubicle management system 1 in the above-described embodiment, such as the inspection form image acquisition unit 10, the character extraction unit 11, and the display unit 12, may be implemented by a computer. In this case, a program for implementing this control function may be recorded on a computer-readable recording medium, and the program may be loaded and executed by a computer system. Note that the term "computer system" refers to a computer system built into the cubicle management system 1, including hardware such as an operating system (OS) and peripheral devices. Furthermore, the term "computer-readable recording medium" refers to portable media such as flexible disks, optical magnetic disks, ROMs (Read Only Memory), and CD-ROMs (Compact Disc-Read Only Memory), as well as storage devices such as hard disks built into the computer system. Furthermore, the term "computer-readable recording medium" may also include devices that dynamically store programs for a short period of time, such as communication lines used when transmitting programs via networks like the Internet or telephone lines, or devices that store programs for a fixed period of time, such as volatile memory within the computer systems that serve as the server or client in such cases. Furthermore, the above program may be one that realizes part of the functions described above, or may be one that can realize the functions described above in combination with a program already recorded in the computer system. Furthermore, part or all of the cubicle management system 1 in the above-described embodiment may be realized as an integrated circuit such as an LSI (Large Scale Integration). Each functional block of the cubicle management system 1 may be individually implemented as a processor, or part or all of them may be integrated into a processor. Furthermore, the integrated circuit implementation method is not limited to LSI, and may be implemented using a dedicated circuit or a general-purpose processor. Furthermore, if an integrated circuit implementation technology that can replace LSI emerges due to advances in semiconductor technology, an integrated circuit based on that technology may be used.
[0072] One embodiment of the present invention has been described in detail above with reference to the drawings, but the specific configuration is not limited to that described above, and various design changes and the like can be made within the scope that does not deviate from the gist of the present invention. [Explanation of symbols]
[0073] 1...cubicle management system, 10...inspection form image acquisition unit, 11...character extraction unit, 12...display unit, 2...cubicle, 4...inspection form, A1...inspection form image, B1...character data
Claims
1. an inspection form image acquisition unit that acquires an inspection form image that is an image of an inspection form for a cubicle; a character extraction unit that recognizes characters in the inspection slip image based on optical character recognition and extracts character data; a display unit that displays characters based on the extracted character data in a predetermined format; A cubicle management system equipped with:
2. The display unit displays the characters based on the character data in a unified format that is different from the format of the inspection slip. The cubicle management system according to claim 1.
3. The character extraction unit recognizes characters in the inspection slip image based on the optical character recognition and a predetermined relationship between characters, and extracts the character data. The cubicle management system according to claim 1.
4. The display unit displays a character string consisting of characters based on the character data as a unified character string consisting of character strings having similar meanings. The cubicle management system according to claim 1.
5. The items on the inspection sheet include predetermined items for identifying the individual cubicles. The cubicle management system according to claim 1.
6. The display unit displays the characters based on the character data in a unified font. The cubicle management system according to claim 1.
7. The display unit displays characters based on the character data extracted by recognizing characters written in a predetermined column in the inspection slip image in a predetermined manner that stands out compared to characters based on the character data extracted by recognizing characters written outside the column. The cubicle management system according to claim 1.
8. an inspection form image acquisition step of acquiring an inspection form image which is an image of an inspection form for a cubicle; a character extraction step of recognizing characters in the inspection slip image based on optical character recognition and extracting character data; a display step of displaying characters based on the extracted character data in a predetermined format; A cubicle management method having the above structure.
9. On the computer, an inspection form image acquisition step of acquiring an inspection form image which is an image of an inspection form for a cubicle; a character extraction step of recognizing characters in the inspection slip image based on optical character recognition and extracting character data; a display step of displaying characters based on the extracted character data in a predetermined format; A program to execute.
Citation Information
Patent Citations
Automatic security check system for cubicle (high-voltage power reception equipment)
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