Work schedule creation support system and work schedule creation support program
The work plan creation support system efficiently manages and creates schedules for employees working at multiple locations by switching between full and aggregated display modes, addressing the challenges of overlapping work and excessive hours, and enhancing operational convenience and management.
Patent Information
- Application Number
- JP2024041720
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-03-15
- Publication Date
- 2025-09-29
AI Technical Summary
Existing work schedule creation systems struggle to efficiently manage and create schedules for employees working at multiple locations, ensuring compliance with working conditions and avoiding overlaps or excessive hours, while maintaining operational convenience and reducing input errors.
A work plan creation support system and program that allows switching between full display mode, showing all work locations for a worker, and aggregated display mode, combining schedules from multiple locations into one, with features to aggregate labor costs and hours, enabling efficient and appropriate management of multi-location work.
Improves operational convenience by allowing simultaneous checking of work overlaps and compliance with working conditions, reduces input errors, and enhances visibility and management of working hours and labor costs across multiple locations.
Smart Images

Figure 2025141677000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a work schedule creation support system and a work schedule creation support program for creating a work schedule that includes workers who work at multiple work locations. [Background technology]
[0002] With the recent spread of cloud services, there has been an accelerating shift to work plan creation systems that can create work plans on the cloud, even in devices such as those disclosed in Patent Document 1.
[0003] On the other hand, in retail, service, and pharmacy industries that employ shift work, it is common for employees (workers) to move between stores when multiple stores are operated. Specifically, staff are transferred between stores to accommodate new store openings or closures, to respond to personnel adjustments, and to promote the career development of staff (workers). In addition, in order to maintain service levels during busy periods or in response to sudden employee absences, staff may be recruited from other stores, and such transfers of work locations occur frequently.
[0004] When creating a work schedule to accommodate such a situation, the planner must ensure that work at the source store does not overlap with work at the destination store. In addition, they must check that the total working hours and labor costs at each store do not exceed the established limits. Furthermore, they must check that each staff member does not work consecutive shifts as a result of helping out at the destination store on a day off at the source store, or that unintended consecutive shifts do not occur when looking at the source and destination stores across the transfer date.
[0005] In this way, when shift work is performed at multiple stores, it is necessary to appropriately manage the work of employees who move between stores and work at multiple work locations.Patent Document 2 discloses a shift verification device that verifies whether created pharmacist shifts are appropriate based on past performance in situations where many pharmacists work shifts, such as at multiple chain pharmacies or the pharmacy department of a large hospital. [Prior art documents] [Patent documents]
[0006] [Patent Document 1] Japanese Patent Application Laid-Open No. 2019-53479 [Patent Document 2] Japanese Patent Application Publication No. 2018-106607 Summary of the Invention [Problem to be solved by the invention]
[0007] However, when creating a work schedule that includes employees working at multiple work locations (such as stores), what is required is ease of creating work plans for each work location and appropriate management that suits the working conditions of each employee.
[0008] Therefore, an object of the present invention is to provide a work plan creation support system and a work plan creation support program that enable efficient creation of work plans at each work location and also enable appropriate management of the work of employees working at multiple work locations. [Means for solving the problem]
[0009] In order to achieve the above-mentioned object, the work plan creation support system of the present invention is a work plan creation support system for creating work plans that include workers who work at multiple work locations, and comprises: a work plan creation unit that creates work plans for plan targets at a first work location made up of multiple workers; a shift schedule output unit that displays the work plans for the first work location in shift schedule format before, during, or after creation; and a display switching unit that switches the display of work plans for concurrent workers who work at multiple work locations, and is characterized in that the display switching unit can switch between a full display mode that displays all of the work plans for the concurrent worker at multiple work locations, and an aggregated display mode that aggregates and displays the work plans for other work locations into the work plan for the first work location of the concurrent worker.
[0010] Here, the shift schedule format is such that the work schedule of each worker is displayed on one line, and in the full display mode, the number of lines allocated to the display for the multiple workers corresponds to the number of work locations, and in the aggregate display mode, the work schedule of the multiple workers is also displayed on one line.
[0011] In addition, the shift schedule format can be configured so that the row displaying each worker's work plan displays the aggregated value for at least one of the target period for labor costs, working hours, and number of holidays. Furthermore, for multiple workers, in the all-display mode, the aggregated value is displayed in each row for each work location, and in the aggregated display mode, the total value obtained by adding up the aggregated values for all work locations is displayed.
[0012] Furthermore, the invention of a work schedule creation support program is a work schedule creation support program for creating a work schedule that includes workers who work at multiple work locations, and is characterized in that the computer is made to function as work schedule creation means for creating a work schedule for a schedule target at a first work location consisting of multiple workers, shift schedule output means for displaying the work schedule for the first work location in shift schedule format before, during, or after creation, and display switching means for switching the display of the work schedule for a multiple-worker who works at multiple work locations, with the display switching means performing processing to switch between a full display mode that displays all of the work plans for the multiple work locations of the multiple work employee, and an aggregated display mode that aggregates and displays the work plans for other work locations into the work plan for the first work location of the multiple work employee. [Effects of the Invention]
[0013] The work schedule creation support system and work schedule creation support program of the present invention configured as described above includes a display switching unit that switches the display of work schedules for a multiple-shift worker who works at multiple work locations.
[0014] The display switching unit can switch between a full display mode, which displays all of the work plans for multiple work locations of a multiple-shift worker in the form of a shift schedule, and an aggregated display mode, which displays the work plans for the multiple-shift worker's first work location in an aggregate with the work plans for other work locations.
[0015] This means that the person creating the work schedule can check at once in full display mode whether the work of a multiple-shift worker overlaps across multiple work locations, without having to switch between work shift schedules for each work location, which not only improves operational convenience but also reduces the risk of input errors.
[0016] On the other hand, by switching to the aggregated display mode, the working hours and labor costs for each worker can be aggregated and displayed on a worker-by-worker basis, so plans can be created while checking the aggregate working hours and labor costs for each worker. In other words, not only can work plans be created efficiently for each work location, but the work of workers working at multiple work locations can also be managed appropriately.
[0017] Furthermore, when the work plans of each worker are displayed on one line, if the work plans of workers with multiple jobs are also displayed on one line in the aggregate display mode, work at locations other than the work location for which the work plan is being created will not be displayed, increasing the number of workers displayed in the display area on the screen and improving viewability.
[0018] Furthermore, if the work shift schedule displays the aggregated values for at least one of the target periods for labor costs, working hours, and number of holidays in the row displaying each worker's work plan, it is possible to create work plans while checking the upper limits of working hours, labor costs, holidays, etc. for each work location and worker. In particular, by displaying the total value obtained by adding up the aggregated values for all work locations in the aggregate display mode, it becomes possible to more efficiently manage appropriate work conditions for each worker. [Brief explanation of the drawings]
[0019] [Figure 1] 1 is a block diagram illustrating a configuration of a work schedule creation support system according to an embodiment of the present invention. [Figure 2] FIG. 10 is an explanatory diagram illustrating an example of the full display mode displayed on the display device of the store terminal at the Shibuya store. [Figure 3] FIG. 10 is an explanatory diagram illustrating an example of an aggregated display mode displayed on the display device of the store terminal at the Shibuya store. [Figure 4] FIG. 10 is an explanatory diagram illustrating an example of the full display mode displayed on the display device of the store terminal at the Shinjuku store. [Figure 5] FIG. 10 is an explanatory diagram illustrating an example of an aggregated display mode displayed on the display device of the store terminal at the Shinjuku store. DETAILED DESCRIPTION OF THE INVENTION
[0020] Hereinafter, an embodiment of the present invention will be described with reference to the drawings. FIG. 1 is a block diagram illustrating the configuration of a work schedule creation support system 1 according to this embodiment.
[0021] The work schedule creation support system 1 of this embodiment is configured to create work schedules using computers (2, 3, 4A, 4B) connected via a network NW, as shown in Fig. 1. The following describes an example of a configuration in which processing for creating work plans is performed by a processing unit 2 of a server connected to the network NW.
[0022] The network NW is configured by some or all of the Internet, a wide area network (WAN), a wired local area network (LAN), a wireless LAN (Wi-Fi), a provider device, a wireless base station, a dedicated line, and the like.
[0023] A computer includes a processing unit, an input device, a memory unit, a display device, etc., which may be integrated or separate depending on the required functions. The processing unit is composed of a central processing unit (CPU) and a micro-processing unit (MPU) as hardware, and includes memories such as random access memory (RAM) and read-only memory (ROM).
[0024] Input devices include keyboards, mice, touchpads, touch panels, scanners, microphones for voice input, etc. Display devices include liquid crystal displays and organic EL (Electro-Luminescence) displays.
[0025] The storage unit is a storage medium that records data generated by processing in the arithmetic processing unit and data required for arithmetic processing, and includes hard disks, solid-state drives (SSDs), flash memory (SD memory cards, etc.), magnetic disks, optical disks, etc. A cloud server can also be used as the storage unit.
[0026] The work schedule creation support system 1 described in this embodiment creates work schedules in a client-server system configuration, with store terminals (4A, 4B) serving as manager terminals operated by managers who create work schedules, and a calculation processing unit 2.
[0027] The work schedule creation support system 1 can also be linked to external systems such as a time attendance management system or a personnel system. The following description will use the master management server 3 as an example of such an external system. The functions of the master management server 3 can also be executed by the same computer as the processing unit 2.
[0028] The master management server 3 is a system that registers attribute information such as the name, employee number, and workplace of workers, such as an attendance management system or a personnel system managed by a headquarters, etc. Workers are workers (employees) registered in the master management server 3, and are not limited by employment status, such as whether they are regular employees or non-regular employees (part-time employees, casual employees, dispatched employees, contract employees, etc.).
[0029] Attribute information such as the name and employee number of each employee is registered as a master (employee master) in the master management server 3, and is imported into the processing unit 2 and store terminals (4A, 4B) when necessary, such as when creating a work schedule.
[0030] The attribute information of employees registered in the master management server 3 includes name, employee number, workplace, age, gender, etc. The attribute information also includes hourly wage, job rank, occupation, qualification (such as nurse or pharmacist in a hospital), contract type (full-time employee, part-time employee, casual employee, etc.), and whether or not the employee is enrolled in social insurance. This attribute information data is stored in a memory unit connected to the master management server 3.
[0031] The calculation processing unit 2 of the work plan creation support system 1 of this embodiment includes a work plan creation unit 21 that creates work plans, a shift schedule output unit 22 that displays the work plans in the form of a shift schedule, a display switching unit 23 that switches the display of work plans for employees who work multiple shifts at multiple work locations, and an aggregation period selection unit 24 that selects the aggregation period for labor costs, working hours, etc.
[0032] These components of the calculation processing unit 2 can be made to function by installing the work plan creation support program of this embodiment in one or more computers. In short, the work plan creation unit 21 functions as work plan creation means, the shift table output unit 22 functions as shift table output means, the display switching unit 23 functions as display switching means, and the tallying period selection unit 24 functions as tallying period selection means.
[0033] Furthermore, data generated by processing in the arithmetic processing unit 2 and data required for the arithmetic processing are stored in a storage unit 25 connected to the arithmetic processing unit 2. For this storage unit 25, an external online storage (cloud storage) such as a server connected via a network NW can also be used.
[0034] The work schedule creation unit 21 creates work schedules such as work shift tables for plan targets made up of multiple workers. Data such as master data for the workers who are plan targets is acquired from the master management server 3 and registered in the worker master data in the storage unit 25.
[0035] At least some of the people covered by this plan will be employees who work at multiple locations (multiple employees). For example, in retail, service, pharmacies, hospitals, and other businesses that employ shift workers, when chains are formed and multiple stores are operated, it is common for employees to move between locations.
[0036] Therefore, the work schedule creation support system 1 of this embodiment allows concurrent workers who work at multiple work locations to be included in the people to be scheduled. Here, the people to be scheduled may be some or all of the people. For example, it is conceivable that some of the staff working at a store are regular employees who also work multiple jobs.
[0037] The work schedule creation unit 21 creates a work schedule based on information input from the store terminals (4A, 4B) operated by the manager. The store terminals (4A, 4B) can be personal computers such as notebook PCs or desktop PCs.
[0038] Below, we will explain the case where work plans for each store are created using store terminal 4A at store A and store terminal 4B at store B, but the work plans themselves may also be created collectively at an administrator terminal at headquarters, and the work plans for each store may be displayed on the store terminals (4A, 4B).
[0039] A work plan such as a work shift schedule before, during, or after creation is displayed on the display device 41 of the store terminals (4A, 4B) by the shift schedule output unit 22. Fig. 2 is an explanatory diagram illustrating an example of a plan creation screen M displayed on the display device 41 of the store terminal 4A of the Shibuya store (store A), which is the first workplace.
[0040] The plan creation screen M displays a work location display area M2 that displays the store where the person being planned works, a period display area M3 that displays the period (monthly, weekly, etc.) for which the work plan is being created, and a work shift schedule M1 that consists of the names of the workers included in the person being planned and dates. Here, the first work location refers to the work location for which the work shift schedule M1 is being created (the Shibuya store in Figure 2).
[0041] The work shift schedule M1 is displayed as a shift schedule, with rows listing the workers included in the planning target (see M12) and columns listing dates (see M16). In addition to the work location (see M11) and name, the work shift schedule M1 can also display employee number, age, date of birth, gender, and so on. In addition, the columns corresponding to each day display work details such as day shift, early shift, late shift, PM shift (afternoon shift), paid leave, etc. (see M16).
[0042] Before creating a work plan, work shift schedule data for the previous month or the same month of the previous year can be imported from the master management server 3 and displayed on the work shift schedule M1. Furthermore, even while creating a work plan, the manager can check the work shift schedule M1. The finalized work shift schedule M1 can also be displayed after creation.
[0043] In the work schedule creation support system 1 of this embodiment, in order to create a work schedule that includes workers who work at multiple work locations (multiple workers), the work location is displayed in each row of the work shift schedule M1 (see M11).
[0044] The work shift schedule M1 also displays the labor costs (M13), working hours (M14), and number of holidays (M15) for each worker. When creating a work schedule, it is necessary to check that the total working hours and labor costs for each store do not exceed the set upper limit. It is also necessary to check that each worker (staff member) does not work consecutive hours that exceed the upper limit.
[0045] To this end, the work shift schedule M1 displays aggregated values such as labor costs, working hours, and number of holidays for each worker. In the aggregation period selection area M4, it is possible to select the aggregation period for the aggregated values to be displayed on the work shift schedule M1. Figure 2 shows an example of a check box for daily aggregation and a check box for period aggregation, showing the state when period aggregation is selected.
[0046] Of the workers shown in work shift schedule M1 in Figure 2, the only worker who works at multiple locations (a dual-shift worker) is "Yamazaki," shown on the first and second lines (see the area surrounded by the dashed line). For this dual-shift worker, "Yamazaki," his primary workplace is the Shibuya store (Store A), which is shown in work shift schedule M1 in Figure 2, and he works as a support worker at the Shinjuku store (Store B).
[0047] Aggregate values for personnel costs, working hours, number of holidays, etc. for multiple-workers can be displayed by store (by work location), as shown in Figure 2. In Figure 2, the "Squeeze" checkbox in the display switching area M5 is unchecked, and all work locations where multiple-worker "Yamazaki" works are assigned to each row in the work shift schedule M1. Although not shown in Figure 2, if there is a multiple-worker whose primary work location is the Shinjuku store (store B) and whose secondary work location is the Shibuya store (store A), that multiple-worker will also be assigned rows in the display according to the number of work locations. This point will be discussed later with reference to Figure 4.
[0048] The processing of the display switching unit 23, which displays all of the work plans for multiple work locations of a multiple-worker on the work shift schedule in this way, is referred to as the "full display mode." In the full display mode, for a multiple-worker, the number of rows allocated to the display corresponds to the number of work locations. Also, in the example of Figure 2, the row for the first work location (Shibuya store) of the multiple-worker (Yamazaki) has a "!" warning mark added on the days when he works at another work location (Shinjuku store).
[0049] In contrast to this, the processing of the display switching unit 23 that aggregates and displays the work plans of other work locations into the work plan of the first work location being created will be called the “aggregated display mode.” The display switching unit 23 switches between the full display mode and the aggregated display mode.
[0050] 3 is an explanatory diagram illustrating the aggregated display mode displayed on the display device 41 of the store terminal 4A at the Shibuya store (Store A). In other words, in FIG. 3, the check box for "Squeeze" in the display switching area M5 is checked, and the aggregated display mode is displayed.
[0051] Focusing on Yamazaki, the multiple-worker circled in dashed lines in Figure 3, the work schedule for this multiple-worker is displayed in a single line on the work shift schedule M1, just like the other workers who work only at the Shibuya store. The columns corresponding to each day show the work details, such as day shift and early shift, at the Shibuya store, which is the multiple-worker Yamazaki's primary workplace (see M16). On the other hand, for work at the Shinjuku store, which is the multiple-worker Yamazaki's other workplace, a "!" warning mark is placed next to the days on which the work is scheduled.
[0052] In aggregate display mode, for employees who work multiple jobs, labor costs, working hours, etc. are displayed as the total sum of the aggregate values for all work locations. In other words, the labor costs (M13) for Yamazaki, an employee who works multiple jobs in Figure 3, are the total for the Shibuya and Shinjuku branches. In addition, working hours (M14) and paid leave (M15) are also the total for the Shibuya and Shinjuku branches.
[0053] 4 and 5 are explanatory diagrams illustrating an example of the plan creation screen M displayed on the display device 41 of the store terminal 4B when the first work location is the Shinjuku store (Store B). The plan targets displayed on the work shift schedule M1 for the Shinjuku store are employees (staff) working at the Shinjuku store.
[0054] 4 shows an example of the Shinjuku store's work shift schedule M1 displayed in full display mode. Here, the first work location refers to the work location for which the work schedule is being created, as described above, so in the Shinjuku store's work shift schedule M1, the Shinjuku store is the first work location.
[0055] Focusing on "Yamazaki," a multiple-worker circled in dashed lines in Figure 4, "Yamazaki," whose primary workplace is the Shibuya store, works as a "support" at the Shinjuku store. However, since the Shinjuku store is his primary workplace in this work shift schedule M1, a "!" warning mark is added to the row for the Shinjuku store on days when he works at the Shibuya store. In addition, the row for the Shibuya store, which is his other workplace, displays the work content, labor costs, working hours, and number of paid holidays at the Shibuya store.
[0056] Then, as shown in Figure 5, by checking the "Squeeze" checkbox in the display switching area M5 to switch to the aggregated display mode, the work plan of the multiple-worker will be displayed in a single line in the work shift schedule M1, just like other workers who work only at the Shinjuku store. The column corresponding to each day displays the work details of the multiple-worker "Yamazaki" at the Shinjuku store, such as day shift or early shift, and for the days when the multiple-worker "Yamazaki" works at the Shibuya store, a "!" warning mark will be added.
[0057] The labor costs (M13) are displayed as the total value for the Shinjuku and Shibuya stores, and the working hours (M14) and paid leave (M15) are also displayed as the total values for the Shinjuku and Shibuya stores. Although not shown in Figures 4 and 5, if there is a dual-worker whose main workplace is the Shinjuku store (Store B) and who is supported by the Shibuya store (Store A), that dual-worker will be displayed in the same way as the dual-worker "Yamazaki" in the full display mode and aggregated display mode.
[0058] Next, the operation of the work schedule creation support system and the work schedule creation support program of this embodiment will be described. The work schedule creation support system 1 of this embodiment configured as described above includes a display switching unit 23 that switches the display of work schedules for concurrent workers who work at multiple work locations.
[0059] The display switching unit 23 can switch between a full display mode in which all work plans for multiple work locations (stores) of a multiple-shift worker are displayed in a shift schedule M1, and an aggregated display mode in which the work plans for the multiple-shift worker's first work location are aggregated and displayed with the work plans for other work locations.
[0060] This allows the person creating the work schedule to check whether the work schedules of a multiple-shift worker overlap at multiple work locations in all display mode at once, without having to switch between work shift schedules for each work location as in the past. In short, operational convenience is improved and the risk of input errors is reduced.
[0061] For example, as shown in Figures 2 and 4, in full display mode, the work details of a multiple-worker are displayed in the columns for each day by work location (see the area enclosed by dashed lines). Therefore, if the work details for multiple work locations on the same day are displayed one above the other, the person creating the work schedule can notice them at a glance and easily determine whether or not the work is feasible.
[0062] Furthermore, when the work plans of each worker are displayed on one line, if the work plans of workers with multiple jobs are also displayed on one line in the aggregate display mode, work at locations other than the first work location for which the work plan is being created will not be displayed, increasing the number of workers displayed in the display area on the screen and improving viewability.
[0063] For example, in full display mode, Yamazaki, a multiple-shift worker who works at both the Shibuya and Shinjuku stores, will use two rows in the work shift schedule M1, occupying more display area than a worker who works at one workplace. However, in the aggregate display mode shown in Figures 3 and 5, his work plan can be displayed in one row, just like other workers, improving the visibility of the work shift schedule M1 on the plan creation screen M.
[0064] Furthermore, by switching to aggregate display mode, the working hours and labor costs for each employee can be aggregated and displayed on an employee-by-employee basis, allowing employees to create work plans while checking the aggregate working hours and labor costs for each employee. For example, if the aggregate values are for each store only, it is not possible to grasp the working hours and labor costs for multiple employees at all stores, which can lead to the risk of exceeding the upper limit for working hours and labor costs without realizing it.
[0065] In contrast, in the work shift schedule M1, which displays the labor costs, working hours, and number of paid holidays as aggregate values for the target period selected in the aggregation period selection area M4 in the row where each worker's work plan is displayed, the following can be confirmed: First, in full display mode, it is possible to easily check the working hours and labor cost limits for each workplace (store).
[0066] On the other hand, in the aggregate display mode, the total value is displayed, which is the sum of the aggregate values for all work locations of a multiple-shift employee, so you can create a work plan while checking the upper limits for working hours, labor costs, number of paid holidays, etc. for each multiple-shift employee.
[0067] In this way, even if the people being planned include employees who work multiple jobs, it will be possible to create work plans efficiently at each work location, and it will also be possible to more efficiently manage the work of employees who work multiple jobs in a way that suits their individual working conditions.
[0068] The embodiments of the present invention have been described above in detail with reference to the drawings, but the specific configuration is not limited to this embodiment, and design changes that do not deviate from the gist of the present invention are included in the present invention.
[0069] For example, in the above embodiment, an example has been described in which a work schedule is created by displaying a work shift schedule M1 as a schedule creation screen M on the display device 41 of the store terminal (4A, 4B), but this is not limiting. A work schedule for each store may be created on a manager's terminal at headquarters, and the store terminals (4A, 4B) may manage the personnel costs of each store and the working conditions of the employees (staff) working at the store, including support staff.
[0070] In addition, in the above embodiment, we have explained a case where the work shift schedule M1 displays all of the labor costs, working hours, and number of paid holidays, but this is not limited to this. For example, if only the working status of employees is to be managed, the display of labor costs can be omitted.
[0071] Furthermore, in the above embodiment, we have explained a case where a person working multiple shifts works at two stores, but this is not limited to this and may include a case where a person working multiple shifts works at three or more work locations. In this case, switching the display to the consolidated display mode can be said to further improve the visibility of the work shift schedule M1. [Explanation of symbols]
[0072] 1: Work schedule creation support system 21: Work Planning Department 22: Shift table output section 23: Display switching section 24: Aggregation period selection section M1: Work shift schedule (work plan)
Claims
1. A work plan creation support system for creating a work plan including workers who work at multiple work locations, a work plan creation unit that creates a work plan for a planning target at a first work location that is made up of a plurality of workers; a shift schedule output unit that displays the work plan for the first work location in a shift schedule format before, during, or after creation; A display switching unit is provided to switch the display of the work plans of a concurrent worker who works at multiple work locations, The display switching unit of this work plan creation support system can switch between a full display mode that displays all of the work plans of the multiple work locations of the multiple-worker, and an aggregated display mode that aggregates and displays the work plans of the multiple-worker's first work location with the work plans of other work locations.
2. The work schedule creation support system according to claim 1, characterized in that the shift schedule format displays the work schedule of each worker on one line, and in the full display mode, for the workers with multiple jobs, the number of lines corresponding to the number of work locations is allocated for display, and in the aggregated display mode, the work schedule of the workers with multiple jobs is also displayed on one line.
3. The work schedule creation support system according to claim 2, characterized in that in the shift schedule format, the row displaying each worker's work plan displays the aggregated value for the target period of at least one of labor costs, working hours, and number of holidays.
4. The work schedule creation support system of claim 3, characterized in that for the multiple-worker, in the full display mode, the aggregated values are displayed in each row for each work location, and in the aggregated display mode, a total value obtained by adding up the aggregated values for all work locations is displayed.
5. A work plan creation support program for creating a work plan including workers who work at multiple work locations, a work plan creation means for creating a work plan for a planning target at a first work location that is made up of a plurality of workers; a shift schedule output means for displaying the work schedule for the first work location in a shift schedule format before, during, or after creation; In order to make a computer function as a display switching means for switching the display of the work schedule of a concurrent worker who works at multiple work locations, A work plan creation support program characterized in that the display switching means switches between a full display mode in which all work plans for the multiple work locations of the multiple-worker are displayed, and an aggregated display mode in which the work plan for the first work location of the multiple-worker is aggregated and displayed with work plans for other work locations.
6. A work plan creation support program as described in claim 5, characterized in that in the shift table format, the work plan of each worker is displayed on one line, and in the full display mode, for the multiple-worker, the number of lines corresponding to the number of work locations is allocated to the display, and in the aggregated display mode, the work plan of the multiple-worker is also displayed on one line.
7. The work schedule creation support program according to claim 6, characterized in that in the shift schedule format, the row displaying each worker's work plan displays the aggregated values for the target period of at least one of labor costs, working hours, and number of holidays.
8. The work schedule creation support program of claim 7, characterized in that for the multiple-worker, in the full display mode, the aggregated values are displayed in each row for each work location, and in the aggregated display mode, a total value obtained by adding up the aggregated values for all work locations is displayed.
Citation Information
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