Egg information management system

The egg information management system uses unique identification tags and cloud computing to efficiently manage and transmit egg data, addressing the challenges of manual input errors and streamlining the transportation process.

JP7770032B2Active Publication Date: 2025-11-14NABERU KK
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Patent Information

Application Number
JP2022575563
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2021-01-12
Filing Date
2022-01-07
Publication Date
2025-11-14
Estimated Expiration
2042-01-07

AI Technical Summary

Technical Problem

The task of manually inputting and managing information about eggs during transportation from farms to sorting locations is time-consuming and prone to errors, particularly during unloading from trucks.

Method used

An egg information management system utilizing unique identification tags and cloud computing to associate and transmit farm and weight information of eggs on fixtures, accessible from both farm and sorting location devices, enabling efficient and accurate data management.

Benefits of technology

Facilitates easy and accurate transmission of egg information from farms to sorting locations, reducing manual input errors and streamlining the process.

✦ Generated by Eureka AI based on patent content.

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Abstract

An egg information management system (1) of this disclosure is a system for managing information on eggs that have been produced in a farm (41) and are placed on a utensil (52) with a unique identification tag (53) and carried to a selection place (42). The information management system (1) associates, with the unique identification tag (53), information on the farm (41) transmitted from a farm side user device (2) and information on the weight of eggs placed on the utensil (52) and manages same in a cloud system accessible from both the farm side user device (2) and a selection place side user terminal (3).
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Description

[Technical Field]

[0001] The present disclosure relates to an egg information management system. [Background technology]

[0002] Eggs collected at production farms are placed in stacked trays on fixtures such as pallets. These eggs are then transported by truck or other means from the production farm to a location where a grading device is located, and may be stored in a warehouse until they are sorted (see, for example, Patent Document 1). Users and the like are required to write or input information about the eggs placed on the fixtures each time they are shipped from the production farm, unloaded from the truck, and placed in the warehouse. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2016-55938 Summary of the Invention [Problem to be solved by the invention]

[0004] The task of users filling out and inputting information about eggs is time-consuming and prone to input errors. The burden of unloading the eggs from trucks is particularly heavy.

[0005] The present disclosure aims to provide an egg information management system that can easily and accurately transmit information about eggs transported from the farm to the sorting location. [Means for solving the problem]

[0006] The disclosed egg information management system manages information about eggs produced on farms and transported to a sorting location on fixtures with unique identification tags. The system includes a cloud system accessible from both user devices on the farm side and user devices on the sorting location side. The cloud system manages farm information about the farm transmitted from the user device on the farm side and weight information about the weight of the eggs on the fixtures, associating them with the unique identification tags. [Effects of the Invention]

[0007] According to the present disclosure, it is possible to provide an egg information management system that can easily and accurately transmit information about eggs transported from the farm to the sorting location.

[0008] The above and other objects, features, aspects and advantages of the present disclosure will become apparent from the following detailed description of the disclosure taken in conjunction with the accompanying drawings. [Brief explanation of the drawings]

[0009] [Figure 1] FIG. 1 is a perspective view showing a state in which trays are stacked on the fixture according to the present embodiment. [Figure 2] FIG. 2 is a diagram showing a business model of the egg information management system according to the embodiment. [Figure 3] FIG. 2 is a diagram showing a business model of the egg information management system according to the embodiment. [Figure 4] FIG. 2 is a block diagram of the egg information management system according to the embodiment. [Figure 5] FIG. 2 is a schematic diagram illustrating an example of the configuration of an egg information management system according to the embodiment. [Figure 6] FIG. 10 is a diagram showing an example of content displayed on a display unit of a user device according to the embodiment. [Figure 7] FIG. 10 is a diagram showing an example of content displayed on a display unit of a user device according to the embodiment. DETAILED DESCRIPTION OF THE INVENTION

[0010] Hereinafter, this embodiment will be described with reference to FIGS. Eggs are produced on a farm 41 equipped with chicken coops. At the farm 41, the eggs are collected and packed into trays 51. The trays 51 are stacked, for example, in groups of six. The trays 51 are placed on a fixture 52 using a transfer device 61 called a palletizer. As shown in FIG. 1, multiple trays 51 are arranged on the fixture 52. Note that eggs are not shown in FIG. 1. A unique identification tag 53 is attached to the fixture 52. The unique identification tag 53 is, for example, a barcode. The fixture 52 is, for example, a pallet, and up to 10,800 eggs can be placed on it via dividers.

[0011] 2, the eggs placed on fixture 52 are weighed at farm 41. That is, the total weight of the eggs, the trays 51, and fixture 52 is measured.

[0012] After being measured, the eggs on the fixtures 52 are loaded onto a truck, for example, and transported to a grading location 42 called a GP (Grading & Packing) center. The eggs on the fixtures 52 may be loaded onto a truck or container and then transported to the grading location 42 via ship, plane, or train. After being measured, the eggs may be temporarily stored in a warehouse (not shown) on the farm before being shipped to the grading location 42.

[0013] The sorting area 42 receives eggs delivered from the farm 41. The eggs placed on the fixtures 52 are stored in a warehouse 62 at the sorting area 42. The warehouse 62 is, for example, an automated warehouse 62 equipped with storage shelves 63, a stacker crane 64, an inlet port 65, and an outlet port 66. The eggs placed on the fixtures 52 are received through the inlet port 65. The eggs placed on the fixtures 52 are shipped through the outlet port 66 in response to a shipping request.

[0014] As shown in Figure 3, eggs that have been delivered are sorted by sorting device 67. Eggs that have been removed from warehouse 62 are placed on trays 51 and taken down from fixture 52. Trays 51 are separated into individual layers, for example, by a separating device (not shown). Furthermore, individual eggs are transferred from trays 51 to a conveying device (not shown), for example, by a transfer device (not shown). Sorting device 67 inspects and weighs each egg transported by the conveying device, thereby sorting them. Meanwhile, fixture 52 from which trays 51 have been removed is returned to farm 41, for example, stacked in groups of several, and used again to transport eggs from farm 41 to sorting location 42.

[0015] The egg information management system 1 according to this embodiment is a system that manages information about eggs that are produced on a farm 41 and transported to a grading location 42 on fixtures 52 with unique identification tags 53 attached. In this embodiment, the egg information management system 1 is used at multiple farms 41 and multiple grading locations 42 and is applied to an egg distribution environment such as that shown in Figure 2. The egg information management system 1 uses cloud computing to support egg management, and is a cloud system that can be accessed from both a user device 2 on the farm side and a user device 3 on the grading location side.

[0016] As shown in Fig. 4, information acquired at a farm 41 is stored in an egg information management system 1. Information acquired at a sorting location 42 is stored in an egg information management system 1. As shown in Fig. 5, a user device 2 on the farm side, a user device 3 on the sorting location side, and the egg information management system 1 are connected to each other so that they can communicate with each other via a network such as the Internet.

[0017] As shown in FIG. 4 , the egg information management system 1 includes an acquisition unit 11, a storage unit 12, a calculation unit 13, and an output unit 14. The acquisition unit 11, the storage unit 12, the calculation unit 13, and the output unit 14 may be configured as a physically integrated computer, or may be configured as physically separate computers. The egg information management system 1 is communicatively connected to a plurality of farm-side user devices 2 and a plurality of sorting location-side user devices 3 via a network. The plurality of farm-side user devices 2 may be installed on a single farm 41, or may be installed on different farms 41. The plurality of sorting location-side user devices 3 may be installed on a single sorting location 42, or may be installed on different sorting locations 42.

[0018] The acquisition unit 11 acquires the ID information read by the unique identification tag 53. For example, the acquisition unit 11 may read the barcode that is the unique identification tag 53 with a reader.

[0019] The acquisition unit 11 acquires information about the farm 41. The information about the farm 41 includes, for example, date and time information, shipping destination information, egg collection date information, and raw material egg information. The acquisition unit 11 also acquires information about the weight of the eggs placed on the fixtures 52. The information about the farm 41 and the information about the weight of the eggs placed on the fixtures 52 are, for example, input by a user of the farm 41 and transmitted from the user device 2 on the farm side. If a scale that measures the weight of the eggs placed on the fixtures 52 is configured to be able to communicate with the egg information management system 1 via a network, the information about the egg weight may be transmitted from the scale.

[0020] The acquisition unit 11 also acquires information related to the warehouse 62. The information related to the warehouse 62 includes, for example, inventory information, shipping information, etc. The inventory information includes the time of inventory entry, information related to the storage shelf 63 where the item is stored after inventory entry (for example, shelf number), etc. The shipping information includes the time of inventory entry, etc.

[0021] The storage unit 12 is a cloud storage that can be accessed via a network by authorized user devices 2 and 3, including producers of the farm 41 and producers of the sorting location 42. The storage unit 12 stores information about the farm 41 transmitted from the user device 2 on the farm side and information about the weight of the eggs placed on the fixtures 52, in association with the unique identification tag 53. Furthermore, as shown in FIG. 6 (to be described later), the storage unit 12 may also store (manage) information about the warehouse 62 (warehouse information), information about the farm 41 (farm information), and weight information in association with the unique identification tag.

[0022] The calculation unit 13 processes data for displaying status information of the fixtures 52. Specifically, the calculation unit 13 calculates the status of the eggs placed on the fixtures 52 using information obtained at the farm 41 and information obtained at the sorting location 42. The status information includes information on whether the eggs placed on the fixtures 52 have been weighed at the farm side, and information on whether the eggs placed on the fixtures 52 are being stored at the sorting location side. The calculation results by the calculation unit 13 are stored in the memory unit 12.

[0023] The output unit 14 outputs the information stored in the storage unit 12 to the user device 2 on the farm side and the user device 3 on the sorting site side.

[0024] The user device 2 on the farm side is, for example, a notebook computer, a desktop computer, a smart device, or a tablet terminal. The user device 2 includes an input unit 21, a communication unit 22, an information acquisition unit 23, and a display unit 24. The input unit 21 accepts input of information necessary for management. The communication unit 22 has a transmission function of transmitting information input via the input unit 21 to the egg information management system 1 via the network, and a reception function of receiving information output from the egg information management system 1 via the network. The information acquisition unit 23 acquires information managed in association with the unique identification tag 53 obtained via the communication unit 22. The display unit 24 displays at least one of the information input via the input unit 21 and the information acquired by the information acquisition unit 23.

[0025] The user device 3 at the sorting location is, for example, a laptop computer, a desktop computer, a smart device, or a tablet terminal. The user device 3 includes an input unit 31, a communication unit 32, an information acquisition unit 33, and a display unit 34. The input unit 31 accepts input of information necessary for management. The communication unit 32 has a transmission function for transmitting information input via the input unit 31 to the egg information management system 1 via the network, and a reception function for receiving information output from the egg information management system 1 via the network. The information acquisition unit 33 acquires information managed in association with the unique identification tag 53 obtained via the communication unit 32. Specifically, the information acquisition unit 33 acquires information about the farm 41 and information about the weight of the eggs placed on the fixtures 52 based on the ID information read by the unique identification tag 53. The display unit 34 displays at least one of the information input via the input unit 31 and the information acquired by the information acquisition unit 33.

[0026] Next, how to use the egg information management system 1 will be described. First, when the trays 51 are placed on the fixture 52, a reader reads the unique identification tag 53 attached to the fixture 52. The worker uses the input unit 21 of the user device 2 on the farm side to input date and time information, shipping destination information, egg collection date information, and raw egg information. Information linking information about the farm 41 to the pallet ID, which is assigned one-to-one to each unique identification tag 53, is recorded in a temporary recording unit (not shown) or the like, and then transmitted to the egg information management system 1 via the network.

[0027] The calculation unit 13 performs processing to convert the information received via the acquisition unit 11 into data for displaying the status information of the fixtures 52. As a result, data such as that shown in FIG. 6 is created. The calculation unit 13 sets the status item to "palletizer." In other words, it records status information indicating that the eggs placed on the fixtures 52 are in a state before being weighed at the farm. The storage unit 12 stores the status item, the last update date and time, the number of eggs, the egg collection date, the raw material eggs, the farm, and the shipping destination, linked to the pallet ID.

[0028] Next, with the trays 51 placed on the fixtures 52, the total weight of the eggs placed on one fixture 52 is measured. At this time, the unique identification tags 53 attached to the fixtures 52 are read again with a reader. The worker inputs the weight information using the input unit 21 of the user device 2 on the farm side. Information linking information about the weight of the eggs placed on the fixtures 52 to the pallet IDs, which are assigned one-to-one to each unique identification tag 53, is recorded in a temporary recording unit or the like and then transmitted to the egg information management system 1 via the network.

[0029] The calculation unit 13 performs processing to convert the information received via the acquisition unit 11 into data for displaying the status information of the fixture 52, and changes the status item from "palletizer" to "weighing completed." In other words, the calculation unit 13 records the status information indicating that the eggs placed on the fixture 52 have been weighed on the farm side. The storage unit 12 stores the status items, the last update date and time, and the weight item, linked to the pallet ID.

[0030] Next, the eggs are placed on fixtures 52 and transported to sorting location 42. The eggs transported to sorting location 42, with trays 51 placed on fixtures 52, are temporarily stored in warehouse 62. After being unloaded from the truck, when the eggs are brought into warehouse 62, the unique identification tags 53 attached to fixtures 52 are read again by a reader. A worker inputs the receiving information using input unit 31 of user device 3 at the sorting location. Information linking the receiving information to the pallet ID, which is assigned one-to-one correspondence for each unique identification tag 53, is recorded in a temporary recording unit or the like and then transmitted to egg information management system 1 via a network.

[0031] The calculation unit 13 performs processing to convert the information received via the acquisition unit 11 into data for displaying the status information of the fixture 52, and changes the status item from "weighed completed" to "in warehouse." In other words, the calculation unit 13 records status information indicating that the eggs placed on the fixture 52 are being stored at the sorting location. The storage unit 12 stores the status items, the last update date and time, and the shelf number items, linked to the pallet ID.

[0032] Next, when the eggs are released from the warehouse 62, the unique identification tag 53 attached to the fixture 52 is read again by a reader. The worker inputs the release information using the input unit 31 of the user device 3 at the sorting location. Information linking the release information to the pallet ID, which is assigned one-to-one correspondence for each unique identification tag 53, is recorded in a temporary recording unit or the like and then transmitted to the egg information management system 1 via the network.

[0033] The calculation unit 13 performs processing to convert the information received via the acquisition unit 11 into data for displaying the status information of the fixtures 52, and changes the status item from "in warehouse" to "discharged." In other words, the sorting location records status information indicating that the eggs placed on the fixtures 52 have been removed from the storage location. The storage unit 12 stores the status items and the last update date and time item, linked to the pallet ID.

[0034] The calculation unit 13 may use the data stored in the memory unit 12 to display the information shown in Fig. 7. Here, the "current status" is changed in real time. When the current status is "palletizer", the total weight of eggs, number of eggs, and number of pallets is displayed. The same applies to "weighing completed", "in warehouse", and "discharged".

[0035] As described above, the egg information management system 1 according to this embodiment is a system that manages information about eggs that are produced on a farm 41 and transported to a sorting location 42 on fixtures 52 with unique identification tags 53 attached. This system includes a cloud system that can be accessed from both the user device 2 on the farm side and the user device 3 on the sorting location side. The cloud system manages information about the farm 41 sent from the user device 2 on the farm side and information about the weight of the eggs on the fixtures 52, in association with the unique identification tags 53. This makes it possible to easily and accurately transmit information about eggs transported from the farm side to the sorting location side.

[0036] The user device 3 at the sorting location has an information acquisition unit 33 that acquires information about the farm 41 and information about the weight of the eggs placed on the fixtures 52 based on the ID information read by the unique identification tag 53.

[0037] The user devices 2, 3 are provided with a calculation unit 13 that processes data to display status information of the fixtures 52 on the displays 24, 34, and the status information indicates whether the eggs placed on the fixtures 52 have been weighed at the farm, and whether the eggs placed on the fixtures 52 are being stored at the sorting location. This makes it very convenient because both the farm and the sorting location can check in real time how many eggs are currently on the farm, in transit, and at the sorting location.

[0038] The present disclosure is not limited to the above-described embodiments. The information about farm 41 and the information about the weight of eggs placed on fixture 52 may be transmitted from user devices 2 on the same farm side, or may be transmitted from user devices 2 on different farm sides. Furthermore, user devices 2 and 3 equipped with input units 21 and 31 and used mainly for transmission may be separate from user devices 2 and 3 equipped with information acquisition units 23 and 33 and used mainly for reception.

[0039] Examples of the unique identification tag 53 include a one-dimensional code, a two-dimensional code, an RF tag, etc. The unique identification tag 53 may be visible from the outside, or may be embedded in the fixture 52.

[0040] The cloud system may be one that connects a plurality of user devices 2 on the farm side and a plurality of user devices 3 on the sorting site side.

[0041] The sorting location 42 may not be equipped with the automated warehouse 62, and the egg information management system 1 may not acquire the incoming and outgoing information from the sorting location.

[0042] The embodiments disclosed herein are examples and are not intended to be limiting. The scope of the present disclosure is defined by the scope of the claims, not the scope described above, and is intended to include all modifications within the meaning and scope equivalent to the scope of the claims. [Industrial Applicability]

[0043] The present disclosure can be used in an egg information management system. [Explanation of symbols]

[0044] 1. Egg information management system 13...Arithmetic section 2...Farm user equipment 24,34...Display section 3...User equipment at the sorting location 41...Farm 42...Sorting area 52...Fixtures 53...Unique identification tag

Claims

1. A system for managing information on eggs produced on a farm and transported to a sorting location on a display with a unique identification tag, comprising: A cloud system is provided that can be accessed from both the farm side user device and the sorting location side user device, The cloud system is an egg information management system that manages farm information about the farm sent from user equipment on the farm side and weight information about the weight of the eggs placed on the fixtures by associating them with the unique identification tag.

2. The egg information management system of claim 1, wherein the user device at the sorting location includes an information acquisition unit that acquires the farm information and the weight information based on the ID information read by the unique identification tag.

3. A calculation unit that processes data for displaying the status information of the fixtures on the display unit of the user device, 3. The egg information management system according to claim 1, wherein the status information indicates at least one of information indicating whether the eggs placed on the display unit at the farm have been weighed or not, and information indicating whether the eggs placed on the display unit at the sorting location are being stored or not.

Citation Information

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