Agricultural work management system, agricultural work management method, and agricultural work management program
The agricultural work management system addresses the inefficiency of existing systems by using a mobile and server terminal setup to register workers and track work locations, improving lane-type agricultural work management and productivity in greenhouse horticulture.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2026-03-11
AI Technical Summary
Existing plant and factory management systems are not suitable for managing agricultural work in greenhouses with multiple lanes, making it difficult to efficiently manage lane-type agricultural work in greenhouse horticulture.
An agricultural work management system comprising a mobile terminal and a server terminal that allows registration of worker IDs, selection of work locations, and communication of work information to manage agricultural work efficiently in greenhouse horticulture with multiple lanes.
Enables efficient management of lane-type agricultural work by preventing overlap and improving work efficiency through detailed location tracking and resource allocation, enhancing productivity in greenhouse environments.
Smart Images

Figure 2026042518000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to an agricultural work management system, an agricultural work management method, and an agricultural work management program. [Background technology]
[0002] BACKGROUND ART There has been a demand for improving the efficiency of work at work sites. For example, in work sites and factory work, particularly in fields such as plants and factories, support for various operational operations performed by workers has been provided.
[0003] For example, technology has been proposed for an operation support and confirmation system that can improve the reliability and recording of the operation and operation support of equipment and devices in plants, etc., and further improve work efficiency and reduce the number of workers required (see, for example, Patent Document 1). [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2011-034180 Summary of the Invention [Problem to be solved by the invention]
[0005] However, the technology used in plant and factory management systems is specialized for factory equipment, making it difficult to adapt and use for agricultural work. For this reason, factory management systems are not suitable for managing agricultural work in greenhouses with multiple lanes. Therefore, there is a demand for management systems that are suitable for managing agricultural work.
[0006] The present invention has been made based on the above-mentioned awareness of the problem, and aims to provide an agricultural work management system, an agricultural work management method, and an agricultural work management program that can efficiently manage lane-type agricultural work in greenhouse horticulture. [Means for solving the problem]
[0007] The agricultural work management system of this embodiment includes a mobile terminal and a server terminal capable of communicating with the mobile terminal, and is an agricultural work management system for greenhouse horticulture with multiple lanes.The mobile terminal accepts registration of an ID that can identify any worker, accepts registration of only one ID for any one lane selected from the multiple lanes, accepts a selection of whether to start from a work location on the left or right of the lane, transmits information on the received ID, the lane, and the work location to the server terminal, and the server terminal manages the agricultural work of the worker based on the information transmitted from the mobile terminal.
[0008] The agricultural work management method of this embodiment includes a mobile terminal and a server terminal capable of communicating with the mobile terminal, and is executed by an agricultural work management system for greenhouse horticulture having multiple lanes.The mobile terminal accepts registration of an ID that can identify any worker, accepts registration of only one of the IDs for any one lane selected from the multiple lanes, accepts a selection of whether to start from a work location on the left or right side of the lane, transmits information on the received ID, the lane, and the work location to the server terminal, and the server terminal executes a process to manage the agricultural work of the worker based on the information transmitted from the mobile terminal.
[0009] The agricultural work management program of this embodiment includes a mobile terminal and a server terminal capable of communicating with the mobile terminal, and is executed by an agricultural work management system for greenhouse horticulture equipped with multiple lanes. In this agricultural work management program, the mobile terminal accepts registration of an ID that can identify any worker, accepts registration of only one of the IDs for any one lane selected from the multiple lanes, accepts a selection of whether to start from a work location on the left or right of the lane, transmits information on the received ID, the lane, and the work location to the server terminal, and the server terminal executes a process to manage the agricultural work of the worker based on the information transmitted from the mobile terminal. [Effects of the Invention]
[0010] According to the present invention, it is possible to provide an agricultural work management system, an agricultural work management method, and an agricultural work management program that can efficiently manage lane-type agricultural work in greenhouse horticulture. [Brief explanation of the drawings]
[0011] [Figure 1] FIG. 1 is a conceptual diagram showing an example of the technical concept of the agricultural work management system and agricultural work management method of the present embodiment. [Figure 2] FIG. 2 is a diagram illustrating an example of a configuration diagram of a mobile terminal according to the present embodiment. [Figure 3] FIG. 2 is a diagram illustrating an example of a configuration diagram of a server terminal according to the present embodiment. [Figure 4] 1 is a flowchart showing an example of a farm work management method executed by the farm work management system. [Figure 5] FIG. 10 is a diagram illustrating an example of a work content selection screen displayed on the output device. [Figure 6] FIG. 10 is a diagram illustrating an example of a work location selection screen displayed on the output device. [Figure 7] FIG. 10 is a diagram illustrating an example of a work range selection screen displayed on the output device. [Figure 8] FIG. 10 is a diagram illustrating an example of a final confirmation screen displayed on the output device. [Figure 9] FIG. 10 is a diagram showing an example of a report category selection screen displayed on the output device. [Figure 10] FIG. 10 is a diagram illustrating an example of a report location selection screen displayed on the output device. [Figure 11] FIG. 10 is a diagram illustrating an example of a report range selection screen displayed on the output device. [Figure 12] FIG. 10 is a diagram illustrating an example of a preview screen displayed on an output device. [Figure 13] FIG. 10 is a diagram showing an example of a pest information screen displayed on the output device. [Figure 14] FIG. 10 is a diagram illustrating an example of a daily planning screen displayed on an output device. [Figure 15] FIG. 10 is a diagram illustrating an example of a task assignment screen displayed on the output device. DETAILED DESCRIPTION OF THE INVENTION
[0012] FIG. 1 is a conceptual diagram illustrating an example of the technical concept of the agricultural work management system and agricultural work management method of this embodiment. As shown in FIG. 1, the agricultural work management system 1 of this embodiment includes a mobile terminal 10 and a server terminal 20. The agricultural work management system 1 may include components other than those shown in FIG. 1. The mobile terminal 10 is used in a lane 400 of a greenhouse horticulture 300. The mobile terminal 10 and the server terminal 20 are connected to each other via a network so that they can communicate with each other. Although FIG. 1 shows only one mobile terminal 10, this is not limited to this; multiple mobile terminals may be provided for each greenhouse horticulture 300. Preferably, one mobile terminal is provided for each worker. Note that in FIG. 1, the server terminal 20 is located near the greenhouse horticulture 300, but this is not limited to this. For example, the server terminal 20 may be configured as a cloud server connected via a network (not shown). The agricultural work management system 1 is not limited to the configuration shown in FIG. 1. It may also include other configurations.
[0013] The greenhouse horticulture 300 is a facility for cultivating plants such as agricultural crops. The greenhouse horticulture 300 may be any facility that includes a plurality of lanes 400, and examples of the greenhouse horticulture 300 include a greenhouse, a vinyl greenhouse, a hydroponic cultivation facility, and the like.
[0014] A plurality of lanes 400 are arranged in the greenhouse horticulture 300. A plurality of pillars 500 are arranged on the left and right sides of each lane 400. The pillars 500 are an example of a work area. Vegetables and fruits are grown on the pillars 500. Workers can perform agricultural work by harvesting the vegetables, fruits, and other agricultural products grown on the pillars 500.
[0015] Each lane 400 is a space where workers can perform agricultural work. Workers can move through the lane 400, harvest and sort produce such as vegetables and fruits obtained through agricultural work, take breaks, etc. Because agricultural work in each lane 400 is basically performed using a cart or a high-altitude cart, if two people perform agricultural work at the same time, the work efficiency of the agricultural work will drop significantly. Because each lane 400 is a very narrow space, it is preferable to have only one person perform agricultural work per lane 400 in order to improve work efficiency. For this reason, in this embodiment, in the agricultural work management system 1 including the mobile terminal 10 and the server terminal 20, the mobile terminal 10 is set so that only one person can perform agricultural work per lane 400.
[0016] The mobile terminal 10 may be any terminal that is small enough to be carried by a worker and used in the lanes of the greenhouse horticulture 300, and may be, for example, a smartphone. The mobile terminal 10 is not limited to a smartphone, and may be a tablet terminal, a notebook PC, a wearable terminal, or the like that can be carried by the worker.
[0017] Fig. 2 is a diagram showing an example of a configuration diagram of the mobile terminal 10 of this embodiment. As shown in Fig. 2, the mobile terminal 10 includes a processor 110, a storage device 120, a communication device 130, an input device 140, and an output device 150. The processor 110 is, for example, a CPU (Central Processing Unit) or a GPU (Graphics Processing Unit). The processor 110 executes a program 121 stored in the storage device 120, causing the mobile terminal 10 to operate as a computer and perform various processes. The program 121 is an example of an agricultural work management program.
[0018] The storage device 120 includes, for example, semiconductor memories that operate as main storage devices, such as RAM (Random Access Memory) and ROM (Read Only Memory), and storages that operate as auxiliary storage devices, such as SSDs (Solid State Drives) and HDDs (Hard Disk Drives). The storage device 120 is an example of a storage device. The storage device 120 stores a program 121 executed by the processor 110 and various databases used when the program 121 is executed.
[0019] The communication device 130 is a communication module that communicates with the server terminal 20 via a network. The input device 140 accepts user operations. The input device 140 is a touch panel. The input device 140 may be a keyboard, a mouse, or the like. The output device 150 displays information to the user. The output device 150 is a liquid crystal display, an organic EL display, or the like. The input device 140 and the output device 150 may be formed integrally.
[0020] The server terminal 20 may be a PC that can communicate with the mobile terminal 10, and may be configured by, for example, a server. The server terminal 20 is not limited to a server, and may be a cloud server (not shown) or the like.
[0021] Fig. 3 is a diagram showing an example of a configuration diagram of the server terminal 20 of this embodiment. As shown in Fig. 3, the server terminal 20 includes a processor 210, a storage device 220, a communication device 230, an input device 240, and an output device 250. The processor 210 is, for example, a CPU or a GPU. The processor 210 executes a program 221 stored in the storage device 220, causing the server terminal 20 to operate as a computer and perform various processes. The program 221 is an example of an agricultural work management program.
[0022] The storage device 220 includes, for example, semiconductor memory such as RAM or ROM that operates as a main storage device, and storage such as SSD or HDD that operates as an auxiliary storage device. The storage device 220 is an example of a storage device. The storage device 220 stores a program 221 executed by the processor 210 and various databases used when the program 221 is executed.
[0023] The communication device 230 is a communication module that communicates with the mobile terminal 10 via a network. The input device 240 accepts user operations. The input device 240 is a keyboard, a touch panel, a mouse, etc. The output device 250 displays information to the user. The output device 250 is a liquid crystal display, an organic EL display, etc. The input device 240 and the output device 250 may be formed integrally.
[0024] Next, a description will be given of a flowchart for executing a farm work management method executed by the mobile terminal 10 and the farm work management system 1 including the server terminal 20. Fig. 4 is a flowchart showing an example of the farm work management method executed by the farm work management system 1.
[0025] The mobile terminal 10 accepts the worker's login by accepting and authenticating the registration of an ID that can identify an arbitrary worker from among multiple workers (step S11). In this embodiment, the mobile terminal 10 accepts the registration of "01" as the ID of worker 01. The mobile terminal 10 transmits the accepted worker ID information to the server terminal 20.
[0026] The mobile terminal 10 accepts the selection of the work content of the worker whose ID has been registered (step S12). In this process, the mobile terminal 10 displays a work content selection screen on the output device 150 and accepts the selection of the work content via the input device 140.
[0027] FIG. 5 is a diagram showing an example of a work content selection screen 601 displayed on the output device 150. The work content selection screen 601 displays the worker's ID and the work content that the worker can select. The selectable work content may be different depending on the worker's skill. The work content selection screen 601 in FIG. 5 displays harvesting, other, fruit sorting, lunch break, and help as selectable work content. The selectable work content is not limited to those displayed on the work content selection screen 601 in FIG. 5, and other work content may be displayed. Note that instead of the worker's ID, the worker's name or abbreviation may be displayed.
[0028] When the mobile terminal 10 receives a selection of any of the work contents displayed on the work content selection screen 601, it receives a selection of a work location (lane) corresponding to the selected work content. In this process, the mobile terminal 10 displays a work location selection screen on the output device 150 and receives the selection of the work location (lane) via the input device 140. Information on the work location (lane) corresponding to the work content is set in advance by the server terminal 20 and transmitted to the mobile terminal 10.
[0029] FIG. 6 is a diagram illustrating an example of a work location selection screen 611 displayed on the output device 150. The work location selection screen 611 displays the worker's ID and the lanes 400 that the worker can select. The lanes 400 are an example of a work location. In FIG. 6, lanes A1 to A4 are displayed as the lanes 400. Among the lanes A1 to A4, selectable lanes 400 are displayed as white lanes A1, A2, and A4, while non-selectable lanes 400 are displayed as black lane A3. A selectable lane 400 is a lane 400 in which no other worker is working and in which the selected work content has not yet been performed. By visualizing selectable lanes as white or black, overlapping of farm work with other workers can be prevented, thereby improving the efficiency of farm work. Note that only when a work content for help is selected on the work content selection screen 601, help mode is executed, and the same work content is selected, can a lane 400 in which another worker is working be selected. This improves the efficiency of farm work.
[0030] The mobile terminal 10 may display a pest infestation notification 612 indicating that a pest has infested the work location selection screen 611. The pest infestation notification 612 may display information about previously reported pests, such as the report date, type, and whether or not the pest has been confirmed. By viewing the pest infestation notification 612, a worker can understand whether the pests are spreading or converging in the corresponding lane, allowing the worker to concentrate on farm work, thereby improving the efficiency of farm work.
[0031] When the mobile terminal 10 receives a selection of any one of the lanes 400 displayed on the work location selection screen 611, the mobile terminal 10 receives confirmation of the start of work (step S14).
[0032] If a pest or disease occurs during the cultivation of agricultural crops, it is necessary to confirm this with the manager. Therefore, the mobile terminal 10 determines whether or not a pest or disease has been confirmed through the input device 140, based on the worker's input operation on the input device 140, such as by selecting a confirmation button (not shown) (Step S15). If no pest or disease has been confirmed (Step S15: NO), the mobile terminal 10 receives confirmation of the start of work, and after a certain time has passed, when the agricultural work is completed, receives confirmation of the end of work based on the worker's input operation (Step S22).
[0033] After receiving confirmation that the work has been completed, the mobile terminal 10 accepts the selection of the work area (step S23). In this process, the mobile terminal 10 accepts the selection of the direction from which the farm work will start, based on the direction of the pillars 500 placed on the right and left of the selected lane 400. The mobile terminal 10 displays a work area selection screen on the output device 150, and accepts the selection of the starting direction via the input device 140.
[0034] FIG. 7 is a diagram showing an example of a work area selection screen 631 displayed on the output device 150. The work area selection screen 631 displays the worker's ID and the pillar 500 corresponding to the lane 400 selected by the worker. The pillar 500 is an example of a work location. The work area selection screen 631 displays at least a right button 632 and a left button 633. When the worker selects the right button 632, the worker can register that the farm work will start in the order indicated by the arrows, starting from the right pillar 500. When the worker selects the left button 633, the worker can register that the farm work will start in the order indicated by the arrows, starting from the left pillar 500. Information about the registered direction of the farm work is notified to the server terminal 20.
[0035] Since agricultural work in the greenhouse horticulture 300 involves working on plants grown on the pillars 500 of the lanes 400, simply selecting the lane 400 may not allow one to know at a glance whether the worker's agricultural work has been completed. For this reason, by registering the detailed work location (pillars 500), it is possible to get a detailed understanding of whether the agricultural work at the work location (pillar 500) on the left or right has been completed. This allows for efficient management of lane-type agricultural work.
[0036] After accepting the selection of the work range, the mobile terminal 10 performs a final confirmation (step S24). In this process, the mobile terminal 10 displays a final confirmation screen on the output device 150.
[0037] FIG. 8 is a diagram showing an example of a final confirmation screen 641 displayed on the output device 150. The final confirmation screen 641 allows for final confirmation of the input content, and also displays the harvest content, the harvested category, and the work efficiency (minutes / lane) per lane 400 where the harvest was performed for each lane 400. The tools used in the farm work are also displayed. In the embodiment shown in FIG. 8, "scissors" are displayed as the tool used in the farm work on lane A2. The work efficiency of past farm work is also displayed. In the embodiment shown in FIG. 8, the average work efficiency of farm work for the previous week is also displayed as the work efficiency of past farm work. This allows for comparison with past work efficiency, making it easy to manage the work efficiency of lane-type farm work.
[0038] It is determined whether there are other lanes 400 to work on, and if there are other lanes 400 to work on (step S25: YES), the process returns to step S13, and the processes of steps S13 to S24 are repeated. The determination of whether there are other lanes 400 to work on is made by the worker. The determination of whether there are other lanes 400 to work on may also be made by the mobile terminal 10 or the server terminal 20 of the agricultural work management system 1. At step S24, the mobile terminal 10 transmits the received worker ID, information on the lane 400, and work location to the server terminal 20. The mobile terminal 10 may also simultaneously transmit information such as the work content, work execution time, and if there was an interruption, the interruption time to the server terminal 20. If there are no other lanes 400 to work on, the worker selects another work from step S12.
[0039] Returning to the process of step S15, if a pest or disease is confirmed (step S15: YES), the mobile terminal 10 accepts the selection of a reporting category for the pest or disease (step S16). In this process, the mobile terminal 10 displays a reporting category selection screen on the output device 150 and accepts the selection of a reporting category via the input device 140.
[0040] FIG. 9 is a diagram showing an example of a report category selection screen 651 displayed on the output device 150. At least one report category is displayed on the report category selection screen 651. The report category is information about the category to be reported to the manager. In the embodiment of FIG. 9, information about diseases, pests ("diseases" and "pests" are also collectively referred to as "diseases and pests"), and equipment is displayed as the report categories. The report categories shown in FIG. 9 are just an example, and the server terminal 20 of the agricultural work management system 1 can specify any character string not shown in FIG. 9 as the report category from a management screen not shown.
[0041] When the mobile terminal 10 receives a selection of one of the report categories displayed on the report category selection screen 651, the mobile terminal 10 receives a selection of a report location (lane) corresponding to the selected report category (step S17). The report location (lane) is an example of location information. In this process, the mobile terminal 10 displays a report location selection screen on the output device 150 and receives the selection of the report location (lane) via the input device 140. Information on the report location (lane) corresponding to the report category is set in advance by the server terminal 20 and transmitted to the mobile terminal 10.
[0042] FIG. 10 is a diagram showing an example of a reporting location selection screen 661 displayed on the output device 150. The reporting location selection screen 661 displays the ID of the worker and the lane 400 to which the worker can report. The lane 400 is an example of a reporting location. In FIG. 10, lanes A1 to A3 are displayed as the lanes 400. Of the lanes A1 to A3, lane A1, surrounded by a thick line, is selected as the lane 400 to be reported. By selecting the select button with lane A1 selected, the lane 400 to be reported can be selected.
[0043] The mobile terminal 10 may display a pest infestation report 662 indicating that pests have been infested on the reporting location selection screen 661. The pest infestation report 662 can display information such as the date of reporting to the manager, the type, and the confirmation status. By viewing the pest infestation report 662, the manager can grasp whether pests are spreading or converging in the corresponding lane 400, thereby managing farm work more efficiently, and as a result, the efficiency of farm work can be improved.
[0044] When the mobile terminal 10 receives a selection of any one of the lanes 400 displayed on the report location selection screen 661, the mobile terminal 10 receives a selection of a report range (step S18). In this process, the mobile terminal 10 receives a selection of which of the pillars 500 located on the right and left of the selected lane 400 should be included in the report range to be reported. The report range (pillar) is an example of location information. The mobile terminal 10 displays a report range selection screen on the output device 150, and receives the selection of the report range to be reported via the input device 140.
[0045] FIG. 11 is a diagram showing an example of a report range selection screen 671 displayed on the output device 150. The report range selection screen 671 displays the worker's ID and the pillar 500 corresponding to the lane 400 selected by the worker. The pillar 500 is an example of a reporting location. The report range selection screen 671 displays multiple pillars 500. When the worker selects the pillar 500 to be reported, the worker can select the selected pillar 500 as the reporting range. The selected pillar 500 is displayed in reverse color. In the embodiment of FIG. 10, the two pillars 500 on the lower left are highlighted in black, so the worker can easily understand that the two pillars have been selected. Information on the selected pillar 500 is notified to the server terminal 20.
[0046] The mobile terminal 10 writes the report content to be reported to the server terminal 20 and stores it in the storage device 120 (step S19). The report content includes information on the report category selected in step S16, the report location selected in step S17, and the report range selected in step S18. In this embodiment, the report category corresponds to the occurrence of a disease or pest, and the report location corresponds to the location of the occurrence of a disease or pest.
[0047] The mobile terminal 10 takes a photo of the item to be reported (step S20). In this embodiment, the photo of the item to be reported is a photo of a disease or pest. In this process, the mobile terminal displays a preview screen showing a preview of the taken photo on the output device 150 and accepts confirmation from the worker.
[0048] 12 is a diagram showing an example of a preview screen 681 displayed on the output device 150. The preview screen 681 displays a photograph of the subject of the report that has been taken and an OK button. When the worker confirms the photograph of the subject of the report and then selects the OK button, the mobile terminal 10 transmits the report content written in step S19 and the photograph of the subject of the report that was taken in step S20 to the server terminal 20, and completes the reporting process (step S21). When this process ends, the process proceeds to step S22. The process from step S22 onwards is as described above, and therefore will not be described again.
[0049] Next, a description will be given of the processing executed by the server terminal 20. When the server terminal 20 receives the report content transmitted from the mobile terminal 10, it manages the farm work of the workers by displaying the report content based on the information of the report content transmitted from the mobile terminal 10. In this processing, the server terminal 20 displays a pest information screen on the output device 250.
[0050] FIG. 13 is a diagram showing an example of a pest information screen 701 displayed on the output device 250. The pest information screen 701 displays the number of pests and diseases that have occurred in lanes 400 in any section on a given range of reporting dates, as well as the locations of the occurrences. For example, in the embodiment shown in FIG. 13, the report contents for lanes A1 to A5 are displayed. The server terminal 20 changes the color of the pillars 500 according to the type of report content. Therefore, by understanding the color and number of the pillars 500, the manager can easily understand which pillars 500 have reported what kind of report content. Furthermore, if a photograph has been sent in association with the pillar 500, the photograph of the report content can also be displayed. This allows the extent of the spread of pests and diseases to be understood, making it easy to manage crops.
[0051] The server terminal 20 also assigns workers to tasks based on the next day's work plan, based on information such as the ID, lane, and work location transmitted from the mobile terminal 10. Furthermore, the server terminal 20 can also assign workers to tasks based on the next day's work plan, taking into account information simultaneously transmitted from the mobile terminal 10, such as the task content, work execution time, and interruption time if any. This allows for management of the farm work of workers. In this process, the server terminal 20 displays a daily plan screen on the output device 250.
[0052] FIG. 14 is a diagram showing an example of a daily planning screen 711 displayed on the output device 250. The daily planning screen 711 displays information on the total number of workers, total scheduled working manpower, total scheduled work manpower, scheduled working manpower, and scheduled work manpower for the most recent agricultural work, as well as detailed work content. The detailed work content also displays information on the work category name, work name, unit, work location, basic group, variety, standard, reference efficiency, weekly schedule, scheduled excess / shortage, daily schedule total (actual), weekly efficiency, plan (actual), and efficiency. This allows the server terminal 20 to assign work to workers based on the work plan for the next day. In this process, the server terminal 20 displays a work assignment screen on the output device 250 and accepts work assignments via the input device 240.
[0053] FIG. 15 is a diagram showing an example of a work assignment screen 721 displayed on the output device 250. The work assignment screen 721 displays information such as the worker, skill, group, start time, finish time, and work content for each time period, which can be assigned. The server terminal 20 can efficiently manage lane-type agricultural work by assigning workers using the work assignment screen 721 while referring to information on the daily planning screen 711, etc. Furthermore, the server terminal 20 can assign workers by taking into account information such as the work content, work execution time, and interruption time if any, simultaneously transmitted from the mobile terminal 10. This makes it possible to formulate an optimal shift plan that reflects the work time per lane for each individual worker, taking into account the work efficiency in each lane 400 and the skills of the worker.
[0054] In addition, variable resources such as unsorted fruit stock, the number of lanes available for leaf raking, scissors, and cutters can also be managed in association with the work assignment results. This allows for more efficient resource management in agricultural work. The work assignment results include information on how many people will be performing the corresponding tasks at the same time.
[0055] The present invention is not limited to the above-described embodiments, and the components can be modified and embodied in practice without departing from the spirit of the invention. Furthermore, various inventions can be formed by appropriately combining the multiple components disclosed in the above-described embodiments. For example, all of the components shown in the above-described embodiments can be appropriately combined. Naturally, various modifications and applications are possible without departing from the spirit of the invention.
[0056] In the above-described embodiment, the mobile terminal 10 transmits the received information on the worker's ID, the lane 400, and the work location to the server terminal 20, but this is not limited to this. Because the plants that are the target of agricultural work contain a lot of water, communication conditions may be poor in a work location where plants are overgrown, and communication between the mobile terminal 10 and the server terminal 20 may not be possible. Therefore, the mobile terminal 10 may automatically transmit information from the mobile terminal 10 to the server terminal 20 when communication with the mobile terminal 10 becomes possible. This makes it possible to manage lane-type agricultural work even in a situation where plants are densely packed, such as in greenhouse horticulture 300. [Explanation of symbols]
[0057] 1: Farm work management system 10: Mobile devices 20: Server terminal 110: Processor 120: Storage device 130: Communication equipment 140: Input device 150: Output device 210: Processor 220: Storage device 230:Communication equipment 240: Input device 250: Output device 300: Greenhouse Horticulture 400: Lane 500: Pillar
Claims
1. A farm work management system for greenhouse horticulture having a plurality of lanes, the system including a mobile terminal and a server terminal capable of communicating with the mobile terminal, The mobile terminal Accepts registration of IDs that can identify any worker, Accepting registration of only one of the IDs for any one of the lanes selected from the plurality of lanes; Accept a selection of whether to start from a work location on the left or right side of the lane; Transmitting the received information on the ID, the lane, and the work location to the server terminal; The server terminal Manage the farm work of the worker based on the information transmitted from the mobile terminal A farm work management system characterized by:
2. When a report content occurs in the lane, a photo of the report subject and a report location of the report subject are transmitted to the server terminal. The farm work management system according to claim 1 .
3. The mobile terminal When communication with the mobile terminal becomes possible, transmission from the mobile terminal to the server terminal is automatically performed. The agricultural work management system according to claim 2 .
4. The server terminal Based on the information transmitted from the mobile terminal, work assignments are made to the workers based on the work plan for the next day. The farm work management system according to claim 3 .
5. A farm work management method executed by a farm work management system for greenhouse horticulture having a plurality of lanes, the system including a mobile terminal and a server terminal capable of communicating with the mobile terminal, The mobile terminal Accepts registration of IDs that can identify any worker, Accepting registration of only one of the IDs for any one of the lanes selected from the plurality of lanes; Accept a selection of whether to start from a work location on the left or right side of the lane; Transmitting the received information on the ID, the lane, and the work location to the server terminal; The server terminal Manage the farm work of the worker based on the information transmitted from the mobile terminal A farm work management method comprising:
6. A farm work management program executed by a farm work management system for greenhouse horticulture having a plurality of lanes, the system including a mobile terminal and a server terminal capable of communicating with the mobile terminal, The mobile terminal Accepts registration of IDs that can identify any worker, Accepting registration of only one of the IDs for any one of the lanes selected from the plurality of lanes; Accept a selection of whether to start from a work location on the left or right side of the lane; Transmitting the received information on the ID, the lane, and the work location to the server terminal; The server terminal Manage the farm work of the worker based on the information transmitted from the mobile terminal A farm work management program that executes processing.
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