Information provision device, information provision method, and information provision program
The information providing device addresses the challenge of tracking recycling processes by integrating order and performance management units, offering a comprehensive view of waste material transformation into products.
Patent Information
- Application Number
- JP2024037522
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-03-11
- Publication Date
- 2025-09-25
AI Technical Summary
Conventional technology faces difficulties in tracking and managing the overall process of converting waste materials from demolition into new products, particularly in the context of recycling processes involving collection, transportation, and processing.
An information providing device equipped with an order management unit for managing collection orders and a performance management unit for tracking transportation to processing facilities, providing a comprehensive view of the recycling process.
Enables a bird's-eye view of the recycling process from waste materials to finished products, enhancing traceability and efficiency in resource management.
Smart Images

Figure 2025138428000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to an information providing device, an information providing method, and an information providing program. [Background technology]
[0002] There is a shift in society from a linear economy, which is a one-way economic and social activity in which products are manufactured from raw materials and then discarded after use, to a circular economy, which uses resources in a sustainable manner by, for example, recycling used products (see, for example, non-patent document 1).
[0003] For example, in relation to the circular economy, a technology has been proposed for acquiring carbon dioxide (CO2) emissions during the manufacturing process of a product (see, for example, Patent Document 1). [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Patent Publication No. 2021-189566 [Non-patent literature]
[0005] [Non-Patent Document 1] 2021 White Paper on the Environment, Recycling-Based Society, and Biodiversity: Towards a Circular Economy, [online], [Retrieved November 6, 2023], Internet (https: / / www.env.go.jp / policy / hakusyo / r03 / html / hj21010202.html) Summary of the Invention [Problem to be solved by the invention]
[0006] When buildings and structures are demolished, waste materials such as scrap iron are generated. By collecting these waste materials and processing them in an electric furnace or similar, it is possible to manufacture new products. In other words, the waste materials generated during the demolition of buildings and structures are recycled. Furthermore, recycling of waste materials involves multiple processes, such as collection, transportation, and processing of the waste materials.
[0007] Conventional technology has the problem that it is difficult to grasp the overall process of how waste materials are turned into products. [Means for solving the problem]
[0008] In order to solve the above-mentioned problems and achieve the objectives, the information providing device is characterized by having an order management unit that manages information regarding orders for the collection of resources that have been discarded as waste, and a performance management unit that manages the performance of transportation of the resources to processing facilities carried out in accordance with the orders. [Effects of the Invention]
[0009] According to the present invention, it is possible to obtain a bird's-eye view of the process from waste materials to products. [Brief explanation of the drawings]
[0010] [Figure 1] FIG. 1 is a diagram illustrating an example of the configuration of an information providing system according to the first embodiment. [Figure 2] FIG. 2 is a diagram illustrating an example of the configuration of the information providing device according to the first embodiment. [Figure 3] FIG. 3 is a diagram illustrating an example of a user table. [Figure 4] FIG. 4 is a diagram illustrating an example of the vehicle table. [Figure 5] FIG. 5 is a diagram illustrating an example of an order table. [Figure 6] FIG. 6 is a diagram illustrating an example of a plan table. [Figure 7] FIG. 7 is a diagram illustrating an example of the performance table. [Figure 8] FIG. 8 is a diagram showing the order registration screen. [Figure 9] FIG. 9 shows the package registration screen. [Figure 10] FIG. 10 is a diagram showing the order list screen (orderer side). [Figure 11] FIG. 11 is a diagram showing the order list screen (order receiver side). [Figure 12] FIG. 12 shows the order confirmation screen. [Figure 13] FIG. 13 shows the batch vehicle dispatch screen. [Figure 14] FIG. 14 is a diagram showing the vehicle allocation schedule screen (driver's side). [Figure 15] FIG. 15 is a diagram showing the vehicle allocation schedule screen (administrator side). [Figure 16] FIG. 16 is a flowchart showing the flow of the order management process according to the first embodiment. [Figure 17] FIG. 17 is a flowchart showing the flow of the performance management process according to the first embodiment. [Figure 18] FIG. 18 is a diagram illustrating an example of a computer that executes an information providing program. DETAILED DESCRIPTION OF THE INVENTION
[0011] Hereinafter, embodiments of an information providing device, an information providing method, and an information providing program according to the present application will be described in detail with reference to the accompanying drawings. However, the present invention is not limited to the embodiments described below.
[0012] [First embodiment] [Configuration of the first embodiment] First, the configuration of an information providing device according to the first embodiment will be described with reference to Fig. 1. Fig. 1 is a diagram showing an example of the configuration of an information providing system according to the first embodiment. As shown in Fig. 1, the information providing system 1 includes an information providing device 10, a terminal 20a, a terminal 20b, and a terminal 20c.
[0013] The information provision system 1 is a system for supporting operations related to the recycling of waste materials generated during the demolition of buildings, etc. In the following description, the waste materials are referred to as resources. Resources are, for example, scrap iron generated during the demolition of buildings, etc.
[0014] It should be noted that resources are not limited to scrap iron generated during the demolition of buildings, etc. Resources may also be waste generated from households or businesses, etc. Resources may also be metal products, concrete, plastic products (including PET bottles), wood, paper, etc. Resources include all recyclable materials.
[0015] In the first embodiment, the entities involved in recycling resources are a resource discharge business, a transport business, and a recycling business.
[0016] Resource discharge businesses are construction companies, demolition contractors, etc. Resource discharge businesses demolish buildings, etc. Resource discharge businesses request (order) the collection of resources from demolition sites. User Ua in FIG. 1 belongs to the resource discharge business. Terminal 20a is used by user Ua.
[0017] A transport company transports waste materials using transport equipment such as trucks. For example, resources are collected from a demolition site and transported to a processing facility such as an electric furnace. User Ub in FIG. 1 belongs to the transport company. Terminal 20b is used by user Ub. User Ub may be a truck driver.
[0018] A recycling business receives an order placed by a resource discharge business. After receiving the order, the recycling business may request a transport business to collect and transport the resources. The transport business and the recycling business may also be the same business. The recycling business may manufacture products from the collected resources by using its own processing facilities or by requesting other businesses (such as electric furnace manufacturers or steel manufacturers).
[0019] 1, the information providing device 10 is connected to terminals 20a, 20b, and 20c via a network N (e.g., the Internet). The terminals 20a, 20b, and 20c are, for example, personal computers and smartphones. The terminals 20a, 20b, and 20c may be referred to as terminals 20 without distinction. The information providing device 10 is, for example, a server.
[0020] The information providing device 10 acquires information from the terminal 20. The information providing device 10 also provides information to the terminal 20. The information providing device 10 can provide information by displaying a screen on the terminal 20. For example, the information providing device 10 displays a screen as a web page on a web browser of the terminal 20, and acquires information input via the screen.
[0021] The configuration of the information providing device 10 will be described with reference to Fig. 2. Fig. 2 is a diagram showing an example of the configuration of the information providing device according to the first embodiment. As shown in Fig. 2, the information providing device 10 includes a communication unit 11, a control unit 12, and a storage unit 13.
[0022] The communication unit 11 performs data communication with other devices via a network. For example, the communication unit 11 is a network interface card (NIC).
[0023] The control unit 12 controls the entire information providing device 10. The control unit 12 is, for example, an electronic circuit such as a CPU (Central Processing Unit), MPU (Micro Processing Unit), or GPU (Graphics Processing Unit), or an integrated circuit such as an ASIC (Application Specific Integrated Circuit) or FPGA (Field Programmable Gate Array). The control unit 12 also has an internal memory for storing programs that define various processing procedures and control data, and executes each process using the internal memory. The control unit 12 also functions as various processing units by running various programs.
[0024] For example, the control unit 12 has an order receiving unit 121, an order management unit 122, a performance receiving unit 123, a performance management unit 124, and an output control unit 126. Note that each processing unit included in the control unit 12 will be outlined here, and will be described in detail later together with specific data flows.
[0025] The order receiving unit 121 receives input of an order. The order management unit 122 manages information related to orders for the collection of discarded resources based on the information received by the order receiving unit 121. For example, the order management unit 122 registers, updates, deletes, etc. data related to the order.
[0026] The result receiving unit 123 receives input of the results. The result management unit 124 manages the results of transporting resources to processing facilities in response to orders, based on the information received by the result receiving unit 123. For example, the result management unit 124 registers, updates, deletes, etc. data related to the results.
[0027] The output control unit 126 causes the terminal 20 to output information. For example, the output control unit 126 causes the terminal 20 to display a screen for displaying information based on data managed in the information providing device 10.
[0028] Furthermore, the control unit 12 may have functions other than those realized by the processing units described here. For example, the control unit 12 may have a master maintenance function for maintaining each table that functions as a master.
[0029] The storage unit 13 is a storage device such as an HDD (Hard Disk Drive), an SSD (Solid State Drive), an optical disk, etc. Note that the storage unit 13 may be a data-rewritable semiconductor memory such as a RAM (Random Access Memory), a flash memory, or an NVSRAM (Non Volatile Static Random Access Memory). The storage unit 13 stores an OS (Operating System) and various programs executed by the information providing device 10.
[0030] The storage unit 13 stores a user table 131, a vehicle table 132, an order table 133, a plan table 134, and a performance table 135. Each table will be described below. The column (item) and field values of the tables shown in the drawings etc. are examples.
[0031] The user table 131 holds user information. Fig. 3 is a diagram showing an example of the user table. The user table 131 has columns such as "user ID," "email address," "name," "organization," "role," "group," and "telephone number."
[0032] "User ID" is an ID that identifies a user. "Email address" is the user's email address. "Name" is the user's name. "Organization" is the organization to which the user belongs. "Role" is the user's role. "Group" is the group into which the user's organization is classified.
[0033] The registration, update, and deletion of each record in the user table 131 are performed by the system operator via the master maintenance function provided by the information providing device 10.
[0034] For example, Figure 3 shows that the email address of a user with user ID "U004" is "user4@test.com", the name is "Sato Shiro", the organization to which the user belongs is "Recycling Company D", the role is "Driver", the group is "Group β", and the phone number is "1234-5678".
[0035] The vehicle table 132 holds information about vehicles. A vehicle is a truck or the like used to transport resources. FIG. 4 is a diagram showing an example of the vehicle table. As shown in FIG. 4, the vehicle table 132 has columns such as "Vehicle ID," "Vehicle Name," "Vehicle Type," "Vehicle Affiliation," "Start Point," "End Point," "Driver," and "Affiliated Group."
[0036] "Vehicle ID" is an ID that identifies the vehicle. "Vehicle name" is the name of the vehicle. "Vehicle type" is the type (kind) of the vehicle. "Vehicle affiliation" is the business operator to which the vehicle belongs. "Departure point" is the point from which the vehicle starts moving when starting to transport resources. "End point" is the point to which the vehicle moves after completing the transportation of resources. "Driver" is the driver assigned to the vehicle. "Affiliated group" is the group to which the organization to which the driver belongs is classified.
[0037] The registration, update, and deletion of each record in the vehicle table 132 are performed by the system operator via a master maintenance function provided by the information providing device 10. Also, a driver is a user whose "role" in the user table 131 is "driver."
[0038] For example, Figure 4 shows that the name of a vehicle with vehicle ID "V001" is "2T Wing - Tokyo No. 001," the vehicle type is "2T Wing," the organization to which it belongs is "Recycling Company D," the starting point is "Point P01," the ending point is "Point P11," the driver is "U004," and the group to which it belongs is "Group β."
[0039] The order table 133 holds information about orders. Fig. 5 is a diagram showing an example of the order table. As shown in Fig. 5, the order table 133 has columns such as "order ID," "order status," "requester," "location," "desired delivery date and time," "order date and time," "vehicle ID," and "resource ID."
[0040] "Order ID" is an ID that identifies the order. "Order status" is information that indicates the status of the order. "Requester" is the business operator (orderer) that placed the order. "Location" is the location where the resources will be collected. "Desired delivery date and time" is the date and time when the resources are desired to be collected by a vehicle. "Order date and time" is the date and time when the order was placed. "Vehicle ID" is an ID that identifies the vehicle that will collect the resources. "Resource ID" is an ID that identifies the resource to be collected.
[0041] The order management unit 122 registers each record in the order table 133 based on information about an order input to the information providing device 10. The information about an order is information input by, for example, a user of a resource waste business operator. In addition, the order management unit 122 updates each record in the order table 133 in response to changes in the status of an order.
[0042] The order management unit 122 sets the order status to "unconfirmed" when an order is placed, updates the order status to "confirmed" when the order is confirmed, and updates the order status to "dispatched" when the vehicle dispatch according to the order is completed.
[0043] For example, Figure 5 shows that the order status of an order with order ID "C001" is "Unconfirmed," the requester is "E Co., Ltd.", the location is "Tokyo Center," the desired delivery date and time is "2023 / 11 / 1 9:00-18:00," the vehicle ID is "V004," and the resource ID is "R001."
[0044] The plan table 134 is information about a plan that combines multiple orders into one. Fig. 6 is a diagram showing an example of the plan table. As shown in Fig. 6, the plan table 134 has columns such as "plan ID," "plan name," and "order ID."
[0045] "Plan ID" is an ID that identifies the plan. "Plan Name" is the name of the plan. "Order ID" is one or more IDs that identify the orders included in the plan.
[0046] The order management unit 122 can create one record in the plan table 134 by grouping together multiple order IDs that share the same requester, location, desired delivery date and time, etc.
[0047] For example, Figure 6 shows a plan with a plan ID of "P001", a plan name of "Delivery Route 1", and order IDs of "C001", "C002", "C003", "C004", "C005", "C006", and "C007".
[0048] The track record table 135 holds information related to track records. Fig. 7 is a diagram showing an example of the track record table. As shown in Fig. 7, the track record table 135 has columns such as "Vehicle ID," "Destination," "Status," "Order ID," "Classification," "Arrival Date and Time," "Distance," and "Cargo ID."
[0049] Here, each record in the achievement table 135 corresponds to an achievement. "Vehicle ID" is an ID that identifies the vehicle. "Destination" is the location visited by the vehicle. "Status" is the status of the achievement. "Order ID" is the ID of the order corresponding to the achievement. "Category" is the category of the achievement. "Arrival date and time" is the date and time when the vehicle arrived at the destination. "Distance" is the distance traveled by the vehicle. "Parcel ID" is the resource ID of the parcel (resource) associated with the achievement. The "Parcel ID" is the same as the "Resource ID" in the order table 133.
[0050] The result management unit 124 registers each record in the result table 135 based on information about the results input to the information providing device 10. The information about the results is information input by users such as resource waste disposal businesses, transport businesses, or recycling businesses. The result management unit 124 also updates each record in the result table 135 in response to the input of the results.
[0051] 7, when an order is placed, the result management unit 124 registers as records the result of the vehicle departing from the departure point (category: departure point) (line 1), the result of loading resources onto the vehicle at a dismantling site or the like (category: loading depot) in accordance with the order (lines 2, 3, 4, and 6), the result of taking a break (line 5), the result of unloading the loaded resources at a processing facility or the like (category: collection depot) (line 7), and the result of the vehicle arriving at the end point (category: destination point) (line 8). At this point, the "status" of each result is a value meaning incomplete ("not departed," "not loaded," "not unloaded," "not rested," or "not arrived").
[0052] For example, when information indicating that vehicle "V001" has departed from the departure point is input, the result management unit 124 updates the "status" in the first line from "not yet departed" to "departed." Furthermore, when information indicating that vehicle "V001" has loaded resource "R001" at "center J1" specified in order "C001" is input, the result management unit 124 updates the "status" in the second line from "not loaded" to "loaded." Furthermore, when information indicating that vehicle "V001" has unloaded resource at "center M1," which is a processing facility or the like, is input, the result management unit 124 updates the "status" in the seventh line from "not unloaded" to "unloaded."
[0053] "Resource ID" is an ID that identifies a resource. "Resource type" is the type of resource. "Resource quantity" is the quantity of the resource. "Resource location" is the location of the resource. "Status" is the status of the resource.
[0054] The following describes the screens that the output control unit 126 causes the terminal 20 to display. The information providing device 10 can not only output information via the screens, but also accept information input via the screens. Hereinafter, unless otherwise specified, each screen shown in the drawings is a screen that the output control unit 126 causes the terminal 20 to display.
[0055] 8 is a diagram showing an order registration screen. The order registration screen 311 can accept input of information about an order from, for example, a user of a resource waste disposal business. The order reception unit 121 passes the information entered in the basic order information and package information fields on the order registration screen 311 to the order management unit 122. The order management unit 122 registers a record created based on the information passed from the order reception unit 121 in the order table 133.
[0056] When the add package button on the order registration screen 311 is pressed, the output control unit 126 displays a package registration screen 312. Fig. 9 is a diagram showing the package registration screen.
[0057] The package registration screen 312 accepts input of information related to packages (resources). The order receiving unit 121 transfers the information related to resources input on the package registration screen 312 to the order management unit 122. Furthermore, the order management unit 122 registers a resource ID that identifies the resource in the order table 133 in association with the order ID.
[0058] FIG. 10 is a diagram showing the order list screen (orderer side). The order list screen 321 displays the contents of the order table 133. A user of a resource waste business that is the orderer can check the status of an order by looking at the order list screen 321. Furthermore, when the edit button on the order list screen 321 is pressed, the screen transitions to the order registration screen 311. Furthermore, when the delete button on the order list screen 321 is pressed, the corresponding record is deleted from the order table 133.
[0059] FIG. 11 is a diagram showing the order list screen (recipient side). The order list screen 322 displays the contents of the order table 133. The user, who is the recipient of the order, a recycling business, can check the status of the order by looking at the order list screen 322. Furthermore, when the Confirm button on the order list screen 322 is pressed, the order management unit 122 updates the order status in the order table 133 from "unconfirmed" to "confirmed." When the order status is "confirmed," editing and deletion on the order list screen 321 are disabled, and the order becomes eligible for dispatch, which will be described later.
[0060] Additionally, each value in the "Order ID" column on the order list screen 322 is a clickable hyperlink. When the hyperlink for the order ID is clicked, an order confirmation screen 323 is displayed. Figure 12 is a diagram showing the order confirmation screen. On the order confirmation screen 323, the details of the order are confirmed and confirmed.
[0061] After an order is confirmed, the order management unit 122 performs vehicle allocation. Vehicle allocation is the process of allocating a vehicle to each order. That is, the order management unit 122 determines which vehicle from multiple vehicles will collect the resources and transport them to the processing facility based on the conditions specified in the order. By automatically allocating vehicles in this way, resource collection can begin promptly after receiving an order.
[0062] The order management unit 122 collectively allocates vehicles for multiple orders in response to an operation on the collective vehicle allocation screen 324 shown in Fig. 13. Fig. 13 is a diagram showing the collective vehicle allocation screen. As shown in Fig. 6, the order management unit 122 can compile multiple confirmed orders into a plan.
[0063] For example, when the vehicle dispatch execution button in Fig. 13 is pressed, the order management unit 122 requests an external system that manages the status of the transportation company's vehicles to execute vehicle dispatch processing. In this case, the order management unit 122 sends information about the orders included in the plan "Delivery Route 1" to the external system and executes a predetermined API. As a result, information identifying the vehicle assigned to each order (vehicle ID) or information identifying the vehicle driver (user ID) is returned from the external system. In this way, the order management unit 122 can dispatch vehicles using SaaS (Software as a Service).
[0064] Here, the order management unit 122 registers the driver's user ID returned from the external system in the column “driver” of the order table 133 .
[0065] The driver of the vehicle assigned to the order by dispatch can check the status of the order assigned to him / her via the dispatch schedule screen 331. Fig. 14 is a diagram showing the dispatch schedule screen (driver's side). The dispatch schedule screen 331 displays the contents of the performance table 135.
[0066] The driver also inputs his / her performance via the vehicle allocation schedule screen 331. The performance management unit 124 updates the status in accordance with the driver's input.
[0067] 15 is a diagram showing the vehicle allocation schedule screen (administrator side). The administrator can check the status of orders assigned to multiple drivers via the vehicle allocation schedule screen 332.
[0068] [Processing of the first embodiment] 16 is a flowchart showing the flow of order management processing according to the first embodiment. As shown in FIG. 16, first, the order management unit 122 accepts input of order information (step S111). For example, the order management unit 122 accepts input of order information via the order registration screen 311.
[0069] Next, the order management unit 122 registers the order information in the order table 133 (step S112). Then, the order management unit 122 executes a vehicle dispatch process (step S113). At this time, the order management unit 122 may execute an API for an external system based on the order table 133.
[0070] Then, the order management unit 122 registers the vehicle dispatch information in the order table 133 (step S114). For example, the order management unit 122 updates the column “driver” in the order table 133.
[0071] 17 is a flowchart showing the flow of the performance management process according to the first embodiment. As shown in FIG. 17, the performance management unit 124 first accepts input of performance information (step S121). For example, the performance management unit 124 accepts input of performance information via the vehicle allocation schedule screen 331.
[0072] Then, the result management unit 124 registers the result information in the result table 135 (step S122). For example, the result management unit 124 updates the column "status" in the result table 135.
[0073] The information providing device 10 can realize the traceability of waste materials by linking with a system that can trace the process from waste materials as resources to the manufacture of new products, or by having a function equivalent to that of such a system. For example, traceability can be realized based on the data in the performance table 135. As a result, according to the embodiment, it is possible to grasp the overall flow of waste materials until they become products.
[0074] [System configuration, etc.] Furthermore, the components of each device shown in the figure are functional concepts and do not necessarily have to be physically configured as shown. In other words, the specific form of distribution and integration of each device is not limited to that shown, and all or part of them can be functionally or physically distributed or integrated in any unit depending on various loads, usage conditions, etc. Furthermore, each processing function performed by each device can be realized in whole or in part by a CPU and a program analyzed and executed by the CPU, or can be realized as hardware using wired logic. Note that the program may be executed not only by the CPU but also by other processors such as a GPU.
[0075] Furthermore, among the processes described in this embodiment, all or part of the processes described as being performed automatically can be performed manually, or all or part of the processes described as being performed manually can be performed automatically using a known method.In addition, the information including the processing procedures, control procedures, specific names, various data and parameters shown in the above documents and drawings can be changed as desired unless otherwise specified.
[0076] [program] In one embodiment, the information providing device 10 can be implemented by installing an information providing program that executes the above-described learning process as package software or online software on a desired computer. For example, by executing the above-described information providing program on an information processing device, the information processing device can function as the information providing device 10. The information processing device referred to here includes desktop and notebook personal computers. In addition, the information processing device also includes mobile communication terminals such as smartphones, mobile phones, and PHS (Personal Handyphone Systems), as well as slate terminals such as PDAs (Personal Digital Assistants).
[0077] The information providing device 10 may also be implemented as a server device that provides services related to the above-described processes to a client terminal device used by a user. For example, the server device may be implemented as a server device that receives order information and performance information as input and outputs various screens. In this case, the server device may be implemented as a web server or as a cloud that provides services related to the above-described processes through outsourcing.
[0078] 18 is a diagram showing an example of a computer that executes an information provision program. The computer 1000 includes, for example, a memory 1010 and a CPU 1020. The computer 1000 also includes a hard disk drive interface 1030, a disk drive interface 1040, a serial port interface 1050, a video adapter 1060, and a network interface 1070. These components are connected by a bus 1080.
[0079] The memory 1010 includes a ROM (Read Only Memory) 1011 and a RAM (Random Access Memory) 1012. The ROM 1011 stores a boot program such as a BIOS (Basic Input Output System). The hard disk drive interface 1030 is connected to a hard disk drive 1090. The disk drive interface 1040 is connected to a disk drive 1100. A removable storage medium such as a magnetic disk or optical disk is inserted into the disk drive 1100. The serial port interface 1050 is connected to a mouse 1110 and a keyboard 1120, for example. The video adapter 1060 is connected to a display 1130, for example.
[0080] The hard disk drive 1090 stores, for example, an OS 1091, an application program 1092, a program module 1093, and program data 1094. That is, a program that defines each process of the information providing device 10 is implemented as a program module 1093 in which computer-executable code is written. The program module 1093 is stored, for example, in the hard disk drive 1090. For example, a program module 1093 for executing processes similar to those of the functional configuration of the information providing device 10 is stored in the hard disk drive 1090. The hard disk drive 1090 may be replaced with an SSD (Solid State Drive).
[0081] Furthermore, setting data used in the processing of the above-described embodiment is stored as program data 1094, for example, in the memory 1010 or the hard disk drive 1090. Then, the CPU 1020 reads the program module 1093 or the program data 1094 stored in the memory 1010 or the hard disk drive 1090 into the RAM 1012 as necessary, and executes the processing of the above-described embodiment.
[0082] The program module 1093 and program data 1094 are not limited to being stored in the hard disk drive 1090, but may also be stored in, for example, a removable storage medium and read by the CPU 1020 via the disk drive 1100 or the like. Alternatively, the program module 1093 and program data 1094 may be stored in another computer connected via a network (such as a local area network (LAN) or a wide area network (WAN)). The program module 1093 and program data 1094 may then be read by the CPU 1020 from the other computer via the network interface 1070. [Explanation of symbols]
[0083] 1 Information provision system 10 Information provision device 11 Communications Department 12 Control Unit 13 Storage section 20, 20a, 20b, 20c terminals 121 Order Reception Department 122 Order Management Department 123 Results Reception Department 124 Performance Management Department 126 Output control section 131 User Table 132 Vehicle Table 133 Order Table 134 Planning Table 135 Performance Table 311 Order registration screen 312 Baggage registration screen 321 Order list screen 322 Order list screen 323 Order confirmation screen 324 Bulk dispatch screen 331 Vehicle dispatch schedule screen 332 Vehicle dispatch schedule screen
Claims
1. an order management unit that manages information regarding orders for the collection of resources discharged as waste materials; a performance management unit that manages performance of transportation of the resource to the processing facility in accordance with the order; An information providing device comprising:
2. The order management unit manages information regarding orders for the collection of the resource, which is iron scrap generated in the demolition of a building.
2. The information providing device according to claim 1.
3. The order management unit determines a vehicle from among a plurality of vehicles that will collect the resources and transport them to the processing facility based on the conditions specified in the order.
2. The information providing device according to claim 1.
4. 2. The information providing device according to claim 1, further comprising an output control unit that displays information about the orders managed by the order management unit on a screen.
5. An information providing method executed by an information providing device, comprising: an order management process for managing information regarding orders for the collection of resources discharged as waste materials; a performance management step of managing the performance of transportation of the resource to the processing facility performed in accordance with the order; An information providing method comprising:
6. an order management step for managing information regarding orders for the collection of resources discharged as waste materials; a performance management step for managing performance of transportation of the resource to the processing facility performed in accordance with the order; An information providing program that causes a computer to execute the above.
Citation Information
Patent Citations
Information processing device, information processing method, and program thereof
JP2021189566A