Item management device and program

The item management device tracks and displays threshold exceedance times for items, enhancing the efficiency of managing items by highlighting critical items for timely maintenance.

JP7779667B2Active Publication Date: 2025-12-03TOSHIBA TEC KK
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Patent Information

Application Number
JP2021097561
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-06-10
Publication Date
2025-12-03
Estimated Expiration
2041-06-10

AI Technical Summary

Technical Problem

Conventional item management systems struggle to efficiently track and manage the time elapsed since an environmental threshold is exceeded, particularly in maintaining the quality of items like vaccines, as they lack the capability to monitor and display this information effectively.

Method used

An item management device that includes an acquisition unit to collect identification and environmental data from wireless tags, a recording unit to associate this data with timestamps, a timing processing unit to measure threshold exceedance time, and a management unit to display and rearrange data based on user input, highlighting items exceeding a second threshold for quality maintenance.

Benefits of technology

The device efficiently manages item status by tracking threshold exceedance times, allowing for proactive maintenance and highlighting critical items, thereby improving the management of items like vaccines.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide an article management device and a program which enable efficient article condition management, which is the problem to be solved in the present invention.SOLUTION: An article management device is provided, comprising: an acquisition unit configured to repeatedly acquire identification information for identifying a wireless tag and environmental physical quantity from the wireless tag attached to an article, the wireless tag being capable of measuring the environmental physical quantity related to the quality condition of the article; a timing processing unit configured to time a period during which the environmental physical quantity is greater than a first threshold if the environmental physical quantity acquired by the acquisition unit exceeds the first threshold; and a management unit configured to manage the period timed by the timing processing unit in association with the identification information.SELECTED DRAWING: Figure 2
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Description

[Technical Field]

[0001] An embodiment of the present invention relates to an article management device and a program. [Background technology]

[0002] Conventionally, there have been proposed devices that attach sensors to items to monitor their status. For example, there has been proposed a technology that periodically measures the temperature of an item to monitor its status at each measurement.

[0003] However, while conventional techniques can grasp the temperature of an item at the time of measurement by periodically measuring the temperature, it is difficult to grasp, for example, how much time has passed since the temperature exceeded a threshold temperature. Therefore, there is room for further improvement in the management of the condition of items. Summary of the Invention [Problem to be solved by the invention]

[0004] The problem to be solved by the present invention is to provide an item management device and a program that can efficiently manage the status of items. [Means for solving the problem]

[0005] The article management device of this embodiment includes an acquisition unit that repeatedly acquires, from a wireless tag attached to an article that can measure an environmental physical quantity related to the quality state of the article, identification information that can identify the wireless tag and the environmental physical quantity. a recording unit that records the identification information and the environmental physical quantity acquired by the acquisition unit in association with an acquisition date and time when the identification information and the environmental physical quantity were acquired; a timing processing unit configured to, when the environmental physical quantity acquired by the acquisition unit exceeds a first threshold, measure a threshold elapsed time since the first threshold was exceeded; do a management unit that manages the threshold elapsed time in association with the identification information and displays the identification information and a time-based change in the environmental physical quantity for each piece of identification information; and an arrangement unit that rearranges a display order of the threshold elapsed time of the identification information displayed on a display device by the management unit in response to a user operation. When the threshold elapsed time for an item corresponding to the identification information being measured exceeds a second threshold at which it becomes difficult to maintain the quality of the item, the management unit highlights and displays the identification information, and the alignment unit rearranges the display order of the times at which the identification information displayed on the display device by the management unit exceeds the second threshold in response to user operation. [Brief explanation of the drawings]

[0006] [Figure 1] FIG. 1 is a block diagram showing an example of a hardware configuration of an article management device according to an embodiment. [Figure 2] FIG. 2 is a functional configuration diagram showing an example of functions of the article management device according to the embodiment. [Figure 3] FIG. 3 is a schematic configuration diagram showing an example in which an article management device according to an embodiment reads an article. [Figure 4] FIG. 4 is a diagram showing an example of a table in which the article management device according to the embodiment records information about articles. [Figure 5] FIG. 5 is a flowchart illustrating an example of processing executed by the article management device according to the embodiment. DETAILED DESCRIPTION OF THE INVENTION

[0007] An embodiment of an article management device will be described in detail below with reference to the accompanying drawings. In this embodiment, an example will be described in which the article management device is applied to a device that manages the state of vaccines contained in containers such as vials, but the present invention is not limited to this form. Note that, hereinafter, a container containing a vaccine will also be simply referred to as a vaccine.

[0008] (Hardware configuration of the item management device) As shown in FIG. 1, the item management device 100 has a CPU (Central Processing Unit) 11, a ROM (Read Only Memory) 12, a RAM (Random Access Memory) 13, an auxiliary storage device 14, an input device 15, a display device 16, a reading device 17, and an external I / F (Interface) 18.

[0009] The CPU 11 is a computing device that reads out programs and data stored in the ROM 12, auxiliary storage device 14, etc. onto the RAM 13 and executes processing to realize each function of the item management device 100. The RAM 13 is a volatile memory used as a work area, etc. for the CPU 11. The ROM 12 is a non-volatile memory.

[0010] The auxiliary storage device 14 is, for example, a recording device such as an HDD (Hard Disk Drive) or an SSD (Solid State Drive), and stores, for example, an OS (Operating System), application programs, various data, etc. The input device 15 is a device that allows a user of the item management device 100 to perform various operations. The input device 15 is, for example, configured with a touch panel or hardware keys.

[0011] The display device 16 is a display device that displays various information read by the reading device 17. The display device 16 is configured, for example, as a liquid crystal display, and the input device 15 and the display device 16 may be configured integrally in the form of, for example, a touch panel.

[0012] The reading device 17 is a device that reads identification information for identifying each item and environmental physical quantities from wireless tags that are attached to each of the items to be managed, i.e., vaccines, and that are capable of measuring environmental physical quantities related to the quality state of the items. Environmental physical quantities are measurable physical quantities of the item itself or the environment surrounding the item, such as temperature, humidity, and illuminance. As an example, for items whose quality may be reduced or deteriorated by being placed at a temperature above a threshold, a wireless tag that measures temperature as an environmental physical quantity is attached to the item.

[0013] A wireless tag reader / writer has an antenna and detects wireless tags attached to items within the antenna's communication range. That is, the wireless tag reader / writer transmits radio waves from the antenna to surrounding wireless tags. When the wireless tags receive the radio waves from the antenna, they transmit a response signal to the wireless tag reader / writer.

[0014] The RFID tag reader / writer receives a response signal from the RFID tag and reads the tag information stored in the RFID tag's memory. The tag information includes the above-mentioned identification information and environmental physical quantities. An anti-collision method is used to control communication between the RFID tag reader / writer and the RFID tag. This allows the RFID tag reader / writer to read the tag information from each RFID tag simultaneously when multiple RFID tags are present within the antenna's communication range.

[0015] A wireless tag has an internal non-volatile memory that contains an ID area for recording a unique ID (Identifier) ​​assigned by the manufacturer during the manufacturing process of the wireless tag, and a user area in which the user can write any data.

[0016] The wireless tag also has a built-in sensor that measures the environmental physical quantity of the item. For example, the sensor is a temperature sensor that measures the temperature of the item. In this embodiment, the above-mentioned identification information and the temperature of the item as the environmental physical quantity measured by the temperature sensor are written in the user area of ​​the wireless tag. The wireless tag reader / writer reads the ID, identification information, and environmental physical quantity from the wireless tag as tag information. For example, the wireless tag is an RFID (Radio Frequency Identifier).

[0017] The wireless tag reader / writer performs a duplication check based on the ID included in the read tag information, thereby controlling the reading of tag information (identification information) including the same ID in duplicate. The item management device 100 can then perform a record process of the item based on the identification information read by the wireless tag reader / writer.

[0018] The external I / F 18 is a communication interface for connecting the article management device 100 to a network.

[0019] Next, the functional configuration of the item management device 100 according to the embodiment will be described. Fig. 2 is a block diagram showing an example of the functional configuration of the item management device 100. The item management device 100 functions as an acquisition unit 21, a recording unit 22, a determination unit 23, a timing processing unit 24, a management unit 25, an input unit 26, and an alignment unit 27, as a result of the CPU 11 operating in accordance with a control program recorded in the ROM 12 or RAM 13. Note that each of the above functional configurations may be realized by hardware, as long as the item management device 100 has the above functions.

[0020] The acquisition unit 21 is an example of an acquisition unit. The acquisition unit 21 repeatedly acquires tag information, including identification information for identifying a wireless tag and environmental physical quantities, from a wireless tag attached to an item and capable of measuring environmental physical quantities related to the quality state of the item, by cooperating with the reading device 17. For example, when the reading device 17 detects an item, the acquisition unit 21 operates the reading device 17 to start reading the wireless tag and acquires the identification information of the item read by the reading device 17 and the environmental physical quantities related to the quality state of the item.

[0021] The acquisition unit 21 repeatedly acquires the identification information recorded on the wireless tag of the item and the environmental physical quantity from the reading device 17 at predetermined time intervals. By repeatedly acquiring the information at predetermined time intervals, the acquisition unit 21 can appropriately grasp the condition of the item. Note that the predetermined time interval may be determined in advance according to the characteristics of the quality state of the item, or may be determined by the user, but is not limited to this.

[0022] The recording unit 22 is an example of a recording unit. The recording unit 22 records the identification information and the environmental physical quantity acquired by the acquiring unit 21 in association with the acquisition date and time. Here, the acquisition date and time indicates the date and time acquired by the acquiring unit 21. The acquisition date and time is acquired by the acquiring unit 21 from, for example, an RTC (Real-time clock) included in the item management device 100.

[0023] Here, a method in which the article management device 100 acquires information on a wireless tag attached to an article will be described with reference to Fig. 3. Fig. 3 is a schematic configuration diagram showing an example of how the article management device 100 according to an embodiment reads an article. Fig. 3 shows vaccines (31, 32, 33, 34, 35), a container 36, and a mounting table 37, which are examples of articles.

[0024] Each of the vaccines (31, 32, 33, 34, 35) is provided with a wireless tag (311, 312, 313, 314, 315) capable of measuring environmental physical quantities related to the quality state of the item. The storage device 36 stores the vaccines (34, 35) and manages the vaccines (34, 35) in an appropriate quality state. For example, the storage device 36 is a freezer. The mounting table 37 mounts the vaccines (31, 32, 33) and the storage device 36. The mounting table 37 also includes an antenna for the reader 17 inside or below the mounting table 37.

[0025] In the case of Fig. 3, the acquisition unit 21 cooperates with the wireless tag reader / writer to repeatedly acquire identifiable identification information and environmental physical quantities from the wireless tags (311, 312, 313, 314, 315) attached to each of the vaccines (31, 32, 33) placed on the mounting table 37 and the vaccines (34, 35) in the container 36. For example, the acquisition unit 21 operates the wireless tag reader / writer to start reading the wireless tags and acquires the tag information (identification information, environmental physical quantities) read by the wireless tag reader / writer.

[0026] In this case, the vaccines (31, 32, 33) placed on the mounting table 37 and the vaccines (34, 35) in the container 36 are placed in different environments, and therefore the environmental physical quantities measured by each wireless tag will also be different. Each time the acquisition unit 21 acquires tag information, the recording unit 22 records the identification information and the environmental physical quantities included in the tag information in a table.

[0027] 4 is a diagram showing an example of a table in which the article management device 100 according to the embodiment records articles. The table is stored in the RAM 13 or the auxiliary storage device 14 of the article management device 100.

[0028] 4, IDs, which are identification information for identifying each item, acquisition times indicating the times when the items were acquired by the acquisition unit 21, and temperature values ​​indicating environmental physical quantities are recorded for each ID in the column of acquisition times in the table. In addition, the predetermined time interval for acquisition by the acquisition unit 21 in this embodiment is one minute.

[0029] Returning to Figure 2, determination unit 23 is an example of a determination unit. Determination unit 23 determines whether the environmental physical quantity acquired by acquisition unit 21 exceeds a first threshold. Specifically, determination unit 23 compares a preset first threshold with the temperature of the vaccine acquired by acquisition unit 21, and determines whether the acquired temperature of the vaccine exceeds the first threshold.

[0030] The first threshold is preferably set to an environmental physical quantity that is an upper limit (or lower limit) for managing the quality of the vaccine. In this embodiment, the first threshold is set to the temperature (0 degrees) at which the vaccine is thawed. Note that the first threshold can be set arbitrarily and is not limited to this.

[0031] The timing processing unit 24 is an example of a timing processing unit. When the environmental physical quantity acquired by the acquisition unit 21 exceeds a first threshold, the timing processing unit 24 measures the time during which the first threshold is exceeded. Specifically, when the determination unit 23 determines that the first threshold is exceeded, the timing processing unit 24 measures the time during which the threshold is exceeded. Furthermore, the timing processing unit 24 measures the time during which the first threshold is exceeded based on the acquisition date and time recorded by the recording unit 22.

[0032] The operation of the timing processing unit 24 will now be described with reference to Figure 4. For example, looking at the tag information acquired from the wireless tag 311 (ID: 311) of the vaccine 31, the temperature rises from 9:30 to 12:30, which is the time when the vaccine is removed from the container 36. The temperature also rises from 12:29 to 12:30, reaching 1 degree at 12:30.

[0033] As described above, since the first threshold is 0°C, the determination unit 23 determines that the temperature of the vaccine 31 exceeded the first threshold at 12:30. The timing processing unit 24 starts measuring the time since the first threshold was exceeded, depending on the determination result of the determination unit 23.

[0034] For example, if the temperature rises between 12:30 and 17:30, the timing processing unit 24 measures the five hours from 12:30 to 17:30 as the threshold elapsed time. The threshold elapsed time measured by the timing processing unit 24 is recorded in a table by the recording unit 22. Note that the recording method may be other than storing in a table, and is not limited to this.

[0035] The threshold elapsed time is updated every time the timing processing unit 24 measures time, that is, every time tag information is acquired by the acquisition unit 21. If the temperature of the item exceeds the first threshold and then drops below the first threshold, the timing process may be stopped. In this case, the threshold elapsed time may be reset or may be measured as a cumulative time, but is not limited to this.

[0036] Returning to FIG. 2, the management unit 25 is an example of a management unit. The management unit 25 manages the time measured by the timing processing unit 24 in a table in association with the identification information. Note that the management method may be other than using a table and is not limited to this. Furthermore, the management unit 25 displays the table on the display device 16 in response to an operation by the user via the input device 15.

[0037] The management unit 25 displays the identification information and the change over time of the environmental physical quantity recorded by the recording unit 22 on the display device 16 for each piece of identification information. For example, taking a two-axis graph as an example of the change over time, the management unit 25 displays on the display device 16 for each piece of identification information, the horizontal axis representing the time acquired by the acquisition unit 21 and the vertical axis representing the temperature information acquired by the acquisition unit. The management unit 25 associates the identification information with the threshold elapsed time and displays them on the display device 16.

[0038] Furthermore, the management unit 25 notifies the display device 16 when the time measured by the timing processing unit 24 exceeds a second threshold. Here, the second threshold is a value where the threshold elapsed time exceeds a predetermined time at which it becomes difficult to maintain the quality of the product. For example, when the second threshold is exceeded, the management unit 25 causes the display device 16 to display a warning message saying, "The threshold elapsed time has been exceeded, so please check the vaccine," and also causes the display device 16 to highlight the ID of the corresponding vaccine.

[0039] The notification method is not limited to, and may be other than displaying on the display device 16. Furthermore, if the user confirms the content of the notification, the management unit 25 does not need to notify the user again, and the number of times to notify may be set by providing a separate threshold value.

[0040] The input unit 26 is an example of an input unit. The input unit 26 cooperates with the input device 15 to operate the items of identification information, environmental physical quantity, acquisition date and time, and threshold elapsed time selected by the user in the table. The user uses the input unit 26 when he / she wants to change the items to be displayed on the display device 16 or when he / she wants to change the threshold set by the article management device 100. For example, the user inputs information into the input unit 26 when he / she wants to change the items to be displayed on the display device 16 by the management unit 25. Furthermore, when the user wants to change the threshold, the user inputs the changed threshold into the input unit 26.

[0041] The alignment unit 27 is an example of an alignment unit. The alignment unit 27 performs the following in response to a user operation: Management Department 25 The sorting unit 27 rearranges the display order of information (environmental physical quantity, acquisition date and time, threshold elapsed time) related to each piece of identification information displayed on the display device 16 by the sorting unit 27. For example, the sorting unit 27 rearranges the display order so that information with a longer threshold elapsed time is displayed at the top. This makes it easier to recognize identification information with a longer threshold elapsed time, thereby improving the convenience of item management.

[0042] The sorting unit 27 may also rearrange the information displayed on the display device 16 in response to a user operation via the input unit 26. For example, if the user wants to rearrange the information by the time at which the second threshold was exceeded, the sorting unit 27 rearranges the information in descending order of the time at which the second threshold was exceeded. Note that the sorting method can be set arbitrarily and is not limited to this. The functions of the sorting unit 27 may also be implemented by the management unit 25.

[0043] Next, an example of the operation of the article management device 100 having the above-described configuration will be described with reference to Fig. 5. Fig. 5 is a flowchart showing an example of processing executed by the article management device 100 of the embodiment.

[0044] First, the acquisition unit 21 determines whether a predetermined time (for example, one minute) has elapsed, which is the time interval for acquiring tag information. If the predetermined time has elapsed (step S1: Yes), the process proceeds to step S2. If the predetermined time has not elapsed (step S1: No), the process returns to step S1, and the process waits until the predetermined time has elapsed.

[0045] Next, the acquisition unit 21 acquires tag information including identification information (ID) and environmental physical quantity (temperature) from the wireless tag attached to each of the items (step S2). After the acquisition process is completed, the process proceeds to step S3.

[0046] The recording unit 22 determines whether the acquired ID is a new ID that is not recorded in the table. If the acquired ID is new (step S3: Yes), the recording unit 22 records the new ID in the table (step S4) and proceeds to step S5. If the acquired ID is registered in the table (step S3: No), the process proceeds to step S5.

[0047] Next, the recording unit 22 records the ID and temperature acquired by the acquisition unit 21 in association with the acquisition date and time (step S5), and the process proceeds to step S6.

[0048] Next, the determination unit 23 determines whether the temperature acquired by the acquisition unit 21 exceeds the first threshold value (step S6). If the acquired temperature exceeds the first threshold value (step S6: Yes), the process proceeds to step S7. If the acquired temperature does not exceed the first threshold value (step S6: No), the process returns to step S1.

[0049] When the determination unit 23 determines that the first threshold has been exceeded, the timing processing unit 24 measures the time during which the first threshold has been exceeded (step S7). After the timing process, the timing processing unit 24 records the measured time in a table. After the recording process, the management unit 25 manages the measured time in association with the identification information.

[0050] Next, the management unit 25 determines whether the threshold elapsed time measured by the timing processing unit 24 has exceeded the second threshold. If the predetermined time has passed (step S8: Yes), the management unit 25 proceeds to step S9. If the predetermined time has not passed (step S8: No), the management unit 25 returns to step S1 and waits until the predetermined time has passed.

[0051] Next, when it is determined that the second threshold has been exceeded, the management unit 25 notifies the display device 16 that the second threshold has been exceeded (step S9). The management unit 25 notifies the display device 16 of the identification information whose display order has been rearranged by the alignment unit 27 so that items with longer threshold elapsed times are displayed at the top. After the notification process is performed, the process returns to step S1, and the device waits until a predetermined time has elapsed.

[0052] As described above, in the item management device according to this embodiment, the acquisition unit repeatedly acquires identification information and environmental physical quantities from wireless tags attached to items. Furthermore, the timing processing unit measures the time during which the first threshold is exceeded when the first threshold is exceeded. Furthermore, the management unit manages the measured time in association with the identification information.

[0053] As a result, when an item exceeds a first threshold value of an environmental physical quantity, the time it has exceeded the threshold is measured and the measured time is managed in association with the identification information. The item management device can grasp the status of the item from the managed information, thereby efficiently managing the status of the item.

[0054] The above-described embodiment can be modified as needed by changing a portion of the configuration or function of the above-described device. Therefore, several modifications of the above-described embodiment will be described below as other embodiments. The following mainly focuses on differences from the above-described embodiment, and detailed descriptions of commonalities with the content already described will be omitted. The modifications described below may be implemented individually or in appropriate combination.

[0055] (Variation 1) In the above-described embodiment, the managed items are vaccines, but this is not limiting. For example, the managed items may be fresh food, etc. Furthermore, for example, the container may be a refrigerator, or any other container that can manage the stored items in an appropriate environment.

[0056] (Variation 2) In the above-described embodiment, a wireless tag is attached to the vaccine, which is an item to be managed, but a wireless tag may also be attached to, for example, a container.

[0057] (Variation 3) For example, the identification information stored in the wireless tag may be written on the vaccine, making it easy to identify vaccines that have exceeded the first threshold.

[0058] (Variation 4) In the above embodiment, the case where the value is equal to or less than the first threshold is also recorded in the table, but for example, the contents recorded in the table may also be the case where the value is equal to or greater than the first threshold.

[0059] (Variation 5) In the above embodiment, the contents of the notification are notified to the display device 16 of the item management device 100, but the notification may also be made to, for example, an information processing terminal owned by the user. This allows the user to manage the items even if they are away from the place where the items are being managed.

[0060] The computer program executed by the item management device 100 of this embodiment is provided as a file in an installable or executable format recorded on a computer-readable recording medium such as a CD-ROM, a flexible disk (FD), a CD-R, or a DVD (Digital Versatile Disk).

[0061] The computer program executed by the item management device 100 of this embodiment may be stored on a computer connected to a network such as the Internet and provided by being downloaded via the network. The computer program executed by the item management device 100 of this embodiment may be provided or distributed via a network such as the Internet.

[0062] Furthermore, the computer program executed by the article management device 100 of this embodiment may be provided by being pre-installed in a ROM or the like.

[0063] Although several embodiments of the present invention have been described, these embodiments are presented as examples and are not intended to limit the scope of the invention. These novel embodiments can be embodied in various other forms, and various omissions, substitutions, and modifications can be made without departing from the spirit of the invention. These embodiments and their modifications are included within the scope and spirit of the invention, and are also included in the scope of the invention and its equivalents as defined in the claims. [Explanation of symbols]

[0064] 11 CPU 12 ROM 13 RAM 14 Auxiliary storage 15 Input Devices 16 Display device 17 Reading device 18 External I / F 21 Acquisition Department 22 Recording section 23 Judgment section 24 Timing processing section 25 Management Department 26 Input section 27 Alignment Section 100 Article management equipment [Prior art documents] [Patent documents]

[0065] [Patent Document 1] Japanese Patent Application Laid-Open No. 2005-265302

Claims

1. an acquisition unit that repeatedly acquires, from a wireless tag attached to an item and capable of measuring an environmental physical quantity related to a quality state of the item, identification information that can identify the wireless tag and the environmental physical quantity; a recording unit that records the identification information and the environmental physical quantity acquired by the acquisition unit in association with an acquisition date and time when the identification information and the environmental physical quantity were acquired; a timing processing unit configured to, when the environmental physical quantity acquired by the acquisition unit exceeds a first threshold, measure a threshold elapsed time since the environmental physical quantity exceeded the first threshold; a management unit that manages the threshold elapsed time measured by the timing processing unit in association with the identification information, and displays the identification information and a change over time in the environmental physical quantity for each piece of identification information; an arrangement unit that rearranges the display order of the threshold elapsed time of the identification information displayed on the display device by the management unit in response to a user operation; Equipped with the management unit, when the threshold elapsed time exceeds a second threshold at which it becomes difficult to maintain the quality of the item corresponding to the identification information being measured, highlights and displays the identification information; the sorting unit rearranges the display order of the identification information displayed on the display device by the management unit in accordance with a user's operation, the time during which the identification information exceeded the second threshold. Goods management device.

2. the acquisition unit acquires temperature or humidity as the environmental physical quantity measured by the wireless tag; The article management device according to claim 1 .

3. The timing processing unit times the time when the first threshold is exceeded based on the acquisition date and time recorded by the recording unit.

3. The article management device according to claim 1 or 2.

4. The computer of the goods management device an acquisition step of repeatedly acquiring, from a wireless tag attached to an item and capable of measuring an environmental physical quantity related to a quality state of the item, identification information capable of identifying the wireless tag and the environmental physical quantity; a recording step of recording the identification information and the environmental physical quantity acquired by the acquiring step in association with an acquisition date and time when the identification information and the environmental physical quantity were acquired; a timing process step of timing a threshold elapsed time since the environmental physical quantity acquired by the acquisition step exceeded a first threshold when the environmental physical quantity exceeded the first threshold; a management step of managing the threshold elapsed time measured in the time measurement step in association with the identification information, and displaying the identification information and changes over time in the environmental physical quantity for each piece of identification information; an arrangement step of rearranging a display order of the threshold elapsed time of the identification information displayed on the display device in the management step in response to a user operation; Execute In the management step, when the threshold elapsed time of the item corresponding to the identification information being measured exceeds a second threshold at which it becomes difficult to maintain the quality of the item, the identification information is highlighted and displayed; the sorting step rearranges a display order of the identification information displayed on the display device in the management step, the time during which the identification information exceeds the second threshold, in response to a user operation; program.

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