Transportation Management System
The system automates the identification and management of transported goods using transmitting devices and a cloud server, addressing manual recording errors and enhancing operational efficiency.
Patent Information
- Application Number
- JP2022047073
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-03-23
- Publication Date
- 2025-11-06
- Estimated Expiration
- 2042-03-23
Smart Images

Figure 0007765325000001 
Figure 0007765325000002 
Figure 0007765325000003
Abstract
Description
[Technical Field]
[0001] The present invention relates to a transportation management system including a transportation vehicle that transports transported goods and an information processing device that is communicably connected to the transportation vehicle. [Background technology]
[0002] At a site where a transport vehicle for transporting materials such as earth and sand is in operation, transport management of the transport vehicle may be performed to grasp the work status of the transport vehicle and improve the work efficiency of the transport vehicle. Patent Document 1 discloses a system for transport management of the transport vehicle at a site where the transport vehicle and a loading machine for loading materials onto the transport vehicle are in operation. The system of Patent Document 1 includes a transport vehicle equipped with a transmitter that emits radio waves including specific data for identifying the transport vehicle, and a loading machine equipped with a mobile terminal. The mobile terminal equipped on the loading machine receives radio waves from the transmitter and detects the strength of the received radio waves. The mobile terminal then identifies and manages the transport vehicle approaching the loading machine based on the specific data included in the received radio waves and the strength of the radio waves. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] International Publication No. 2015 / 156018 Summary of the Invention [Problem to be solved by the invention]
[0004] However, the system of Patent Document 1 cannot identify the contents (type) of the goods transported by the transport vehicle. For this reason, a field worker (in most cases, the driver of the transport vehicle) manually records information indicating the contents (type) of the goods loaded by the loading machine. This manual work places a burden on the field worker and can lead to recording errors or omissions. Therefore, there is a need for a technology that can manage the contents of goods transported by the transport vehicle while reducing the workload of the field worker.
[0005] The present invention provides a transportation management system that reduces the workload of field workers and is capable of managing the contents of transported goods transported by transport vehicles. [Means for solving the problem]
[0006] The transportation management system of the present invention comprises a first holding unit installed in an area where transported goods are stored and holding first information, a transport vehicle that transports the goods and acquires the first information held in the first holding unit and transmits first code information corresponding to the acquired first information and identification information that identifies the transport vehicle, and an information processing device that receives the first code information and identification information transmitted by the transport vehicle and manages the contents of the goods transported by the transport vehicle based on the received first code information and identification information. [Effects of the Invention]
[0007] According to the present invention, the workload of field workers can be reduced and the contents of the transported goods transported by transport vehicles can be managed. [Brief explanation of the drawings]
[0008] [Figure 1] 1 is a diagram showing the overall configuration of a transportation management system according to a first embodiment. [Figure 2] FIG. 10 is a diagram showing a signal code conversion table. [Figure 3] FIG. 2 is a hardware block diagram of a control unit of the transport vehicle. [Figure 4]FIG. 2 is a hardware block diagram of an information processing unit of the cloud server. [Figure 5] FIG. 1 is a diagram showing a cord material comparison table. [Figure 6] FIG. 10 is a diagram showing a state determination table. [Figure 7] FIG. 2 is a diagram showing information displayed by the information display device of the first embodiment. [Figure 8] FIG. 2 is a diagram for explaining the operation of the transportation management system according to the first embodiment. [Figure 9] 10 is a flowchart showing an operation performed by a receiving device of a transport vehicle. [Figure 10] 10 is a flowchart showing an operation performed by an encoding device of a transport vehicle. [Figure 11] 10 is a flowchart showing an operation executed by a control unit of the transporter vehicle. [Figure 12] 10 is a flowchart showing an information processing operation executed by an information processing unit of the cloud server. [Figure 13] 10 is a flowchart showing an information output operation executed by an information processing unit of the cloud server. [Figure 14] FIG. 10 is a diagram showing the overall configuration of a transportation management system according to a second embodiment. [Figure 15] FIG. 10 is a diagram showing information displayed by an information display device according to a second embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0009] The embodiments of the present invention will be described in detail with reference to the drawings. In the following embodiments, it goes without saying that the components (including element steps, etc.) are not necessarily essential unless otherwise specified or considered to be obviously essential in principle.
[0010] Example 1 FIG. 1 is a diagram showing the overall configuration of a transportation management system 1 according to a first embodiment. The transportation management system 1 according to the first embodiment is a system for managing the work status of a transportation vehicle 110 that transports materials such as earth and sand. The transportation management system 1 includes a plurality of transmitting devices 210-213 provided at a transportation site 100, one or more transportation vehicles 110, a cloud server 400, and an information display device 301. The transportation site 100 includes a loading area 201 where material A, which is a transportation material, is stored and where the material A is loaded onto the transportation vehicle 110, a loading area 202 where material B, which is a transportation material, is stored and where the material B is loaded onto the transportation vehicle 110, and a loading area 203 where material C, which is a transportation material, is stored and where the material C is loaded onto the transportation vehicle 110. The transportation site 100 also includes an unloading area 200 where the transportation material loaded onto the transportation vehicle 110 is unloaded. For example, the transport vehicle 110 loads material A in the loading area 201, moves to the unloading area 200, and unloads the material A loaded on the transport vehicle 110 in the unloading area 200.
[0011] (Transportation site 100) A transmitting device 211 is installed in the loading area 201, transmitting information to the transport vehicles 110 near the loading area 201 and that have entered the loading area 201. The transmitting device 211 holds information indicating the loading area 201, and transmits a signal 211S indicating the loading area 201. A transmitting device 212 is installed in the loading area 202, transmitting information to the transport vehicles 110 near the loading area 202 and that have entered the loading area 202. The transmitting device 212 holds information indicating the loading area 202, and transmits a signal 212S indicating the loading area 202. A transmitting device 213 is installed in the loading area 203, transmitting information to the transport vehicles 110 near the loading area 203 and that have entered the loading area 203. The transmitting device 213 holds information indicating the loading area 203, and transmits a signal 213S indicating the loading area 203. Furthermore, in the unloading area 200, a transmitting device 210 is installed that transmits information to the transport vehicles 110 that are near the unloading area 200 and that have entered the unloading area 200. The transmitting device 210 holds information indicating the unloading area 200 and transmits a signal 210S indicating the unloading area 200. The information held by the transmitting devices 211 to 213 corresponds to the first information of the present invention. Furthermore, the information held by the transmitting device 210 corresponds to the second information of the present invention. The transmitting devices 210 to 213 output signals in accordance with wireless standards such as RFID, Wifi, ZIGBEE (registered trademark), and BLUETOOTH (registered trademark).
[0012] Although the transmitting devices 210-213 in the first embodiment are devices that output signals 210S-213S, they may not have the function of outputting signals. The transmitting devices 210-213 do not have to be able to output information as long as they hold information acquired by the transporter vehicle 110. For example, the transmitting devices 210-213 may be a display unit that displays a two-dimensional barcode or the like in which information is embedded. The transporter vehicle 110 uses a camera to capture the two-dimensional barcode displayed on the display unit and acquires the information embedded in the two-dimensional barcode. The transmitting devices 211-213 installed in the loading areas 201-203 and the display unit that displays the two-dimensional barcode or the like correspond to the first holding unit of the present invention. Furthermore, the transmitting device 210 and the display unit installed in the unloading area 200 correspond to the second holding unit of the present invention.
[0013] Furthermore, the information transmitted by the transmitting devices 210-213 is not limited to information indicating the area, and may be identification information for identifying the transmitting devices 210-213 (for example, the IP address of the transmitting device, the MAC address of the transmitting device 210, or information unique to the transmitting device). Although the transmitting devices 210-213 are installed in the areas 200-203, the installation locations of the transmitting devices 210-213 are not limited to inside the areas 200-203. The unloading area 200 and the loading areas 201-203 are referred to as areas 200-203. The installation locations of the transmitting devices 210-213 may be outside the areas 200-203, underground, or in the sky, as long as the installation locations are such that the transport vehicle 110 approaching the areas 200-203 can acquire information.
[0014] (Transport vehicle 110) The transport vehicle 110 is a vehicle that carries and transports a load of transported goods. The transport vehicle 110 is, for example, a wheel loader, a truck, or a shovel. The transport vehicle 110 has a receiving device 111, an encoding device 112, and a control unit 113. The receiving device 111 is a device that receives signals output by the transmitting devices 210 to 213, and the encoding device 112 is a device that encodes the signals received by the receiving device 111. The encoding device 112 has a signal code conversion table 114 for converting the received signals into code information.
[0015] 2 is a diagram showing the signal code conversion table 114. The signal code conversion table 114 is a table in which signals 210S to 213S output by the transmitting devices 210 to 213 are stored in association with code information. The encoding device 112 converts the signals output from the transmitting devices 210 to 213 into code information and outputs the code information by referring to the signal code conversion table 114. For example, when the encoding device 112 receives the signal 210S output by the transmitting device 210, it refers to the signal code conversion table 114 and outputs code information (0x00) indicating the unloading area 200 where the transmitting device 210 is installed. The code information output by the transmitting devices 211 to 213 corresponds to the first code information of the present invention, and the code information output by the transmitting device 210 corresponds to the second code information of the present invention.
[0016] The control unit 113 of the transport vehicle 110 controls the operation of each unit of the transport vehicle 110. The control unit 113 receives code information from the encoding device 112 and transmits the received code information to the cloud server 400 together with the vehicle PIN, load information, and time. The vehicle PIN is identification information for identifying the transport vehicle 110. The load information is information indicating the weight of the transported goods loaded on the transport vehicle 110. Note that the load information may be the weight of the transport vehicle 110 including the loaded goods. The time is information indicating the current time output by an RTC (real-time clock). The RTC is incorporated in a processor 131 (see FIG. 3) described later.
[0017] FIG. 3 is a hardware block diagram of the control unit 113 of the transport vehicle 110. As shown in FIG. 3, the control unit 113 includes a processor 131, a communication interface 132 (hereinafter, interface will be abbreviated as I / F), a main memory device 133, an auxiliary memory device 134, an input / output I / F 135, and a bus 136 that communicatively connects the above-mentioned modules. The input / output I / F 135 is connected to the encoding device 112 and a monitor (not shown). The processor 131 is a central processing unit. The processor 131 is, for example, a central processing unit (CPU), a digital signal processor (DSP), an application specific integrated circuit (ASIC), etc. The processor 131 includes an RTC that outputs the current time. The processor 131 loads a program stored in the auxiliary memory device 134 into a work area of the main memory device 133 and executes it. The main memory device 133 stores the program executed by the processor 131, data processed by the processor, etc. The main memory device 133 is a flash memory, a RAM (Random Access Memory), a ROM (Read Only Memory), or the like. The auxiliary memory device 134 stores a vehicle PIN, load information, and the like. The auxiliary memory device 134 is a HDD (Hard Disk Drive), an SSD (Solid State Drive), or the like. The communication I / F 132 transmits the vehicle PIN and load information stored in the auxiliary memory device 134, the time output by the RTC, and the code information encoded by the encoding device 112 to the cloud server 400. Information including the vehicle PIN, load information, code information, and time is called vehicle information. The communication I / F 132 transmits the vehicle information to the cloud server 400 periodically or in response to a request from the cloud server 400.
[0018] (Cloud Server 400) 1, the cloud server 400 is communicatively connected to one or more haulage vehicles 110, and receives and manages vehicle information transmitted from each haulage vehicle 110. The cloud server 400 corresponds to the information processing device of the present invention. The cloud server 400 is communicatively connected to the information display device 301, and transmits generated information to the information display device 301 in response to a request from the information display device 301.
[0019] The cloud server 400 includes an information processing unit 401 and a storage unit 410. The information processing unit 401 processes the vehicle information received from the haulage vehicle 110, and generates and manages information (see FIG. 7 ) such as an operating status 701 of the haulage vehicle 110, an unloading record 702 of the haulage vehicle 110, and an unloading record by material 703. The information processing unit 401 then transmits the managed information such as the operating status 701 of the haulage vehicle 110, an unloading record 702 of the haulage vehicle 110, and an unloading record by material 703 to the information display device 301.
[0020] FIG. 4 is a hardware block diagram of the information processing unit 401 of the cloud server 400. As shown in FIG. 4, the information processing unit 401 includes a processor 431, a communication I / F 432, a main storage device 433, an auxiliary storage device 434, an input / output I / F 435, and a bus 436. The components of the information processing unit 401 are similar to those of the control unit 113, and therefore, description thereof will be omitted as appropriate. The communication I / F 432 receives vehicle information from the haulage vehicle 110, and the processor 431 stores the vehicle information received from the communication I / F 432 in the storage unit 410 via the input / output I / F 435. The processor 431 acquires the vehicle information from the storage unit 410 via the input / output I / F 435, and generates and manages information such as an operating status 701 of the haulage vehicle 110, an unloading record 702 of the haulage vehicle 110, and an unloading record by material 703. Then, in response to a request from the information display device 301, the communication I / F 432 transmits information such as the operating status 701 of the transport vehicle 110 under its management, the unloading record 702 of the transport vehicle 110, and the unloading record by material 703 to the information display device 301.
[0021] The storage unit 410 is one or more HDDs, SSDs, etc., and stores various information including vehicle information collected by the cloud server 400, programs executed by the processor of the information processing unit 401, etc. As shown in FIG. 1 , the storage unit 410 of the first embodiment stores a cord material comparison table 411, a cord holding area 412, a status determination table 413, and an information accumulation area 414.
[0022] 5 is a diagram showing the code material comparison table 411. The code material comparison table 411 is used to output the contents (type of material) of the transported goods transported by the transport vehicle 110 from the code information. The code material comparison table 411 is a table in which code information corresponding to the signals output by the transmitting devices 211 to 213 is stored in association with the types of materials managed in the loading areas where the transmitting devices 211 to 213 are installed. The information processing unit 401 refers to the code material comparison table 411 and outputs the contents (type of material) of the transported goods transported by the transport vehicle 110 from the received code information.
[0023] 6 is a diagram showing the status determination table 413. The status determination table 413 is used to identify the status of the haulage vehicle 110 from the load information and the received code information. The status determination table 413 stores the loading status, the received code, the retained code, and the status of the haulage vehicle 110 in association with each other. The information processing unit 401 refers to the status determination table 413 and outputs the status of the haulage vehicle 110 based on the loading status, the received code, and the retained code.
[0024] 6 is information indicating the loading state of the transport vehicle 110 that can carry transported goods, and specifically, is either information indicating an "empty" state in which the transport vehicle 110 is not carrying any transported goods, or information indicating a "laden" state in which the transport vehicle 110 is carrying any transported goods. The loading state is determined by the load information received from the transport vehicle 110. For example, if the weight indicated by the load information is smaller than a threshold value, the loading state is the "empty" state, and if the weight indicated by the load information is larger than the threshold value, the loading state is the "laden" state.
[0025] 6 is code information received from the delivery vehicle 110. The retained code is code information retained in the code retention area 412 and is code information received immediately before the code information received from the delivery vehicle 110.
[0026] The state of the delivery vehicle in FIG. 6 is information indicating the state of the delivery vehicle 110. When the received code and the retained code are the same code information, the position of the delivery vehicle 110 has not changed, and therefore the state of the delivery vehicle is determined to be stagnant. When the received code and the retained code are different code information, the state of the delivery vehicle is determined to have entered the area indicated by the received code. For example, when the received code is code information (0x00) corresponding to the signal output by the transmitter 210 in the unloading area 200 and the retained code is not code information (0x00), the state of the delivery vehicle is determined to have entered the unloading area 200. When the received code is code information (0x01, 0x10, 0x11) corresponding to the loading areas 201 to 203 and the retained code is code information different from the received code, the state of the delivery vehicle is determined to have entered the loading area 201 to 203 indicated by the received code.
[0027] The information processing unit 401 refers to the state determination table 413 and outputs the state of the transport vehicle from the above-mentioned loading state ("empty" state, "loaded" state), the received code, and the held code.
[0028] The code holding area 412 is an area for storing, as a held code, past code information received from the transporter vehicle 110. The code holding area 412 stores time, a vehicle PIN, and code information in association with each other.
[0029] The information storage area 414 stores time, code information, vehicle PIN, load information, loading status, transport vehicle status, and materials in association with each other. The time, code information, vehicle PIN, and load information are information received from the transport vehicle 110. The loading status is the loading status shown in FIG. 6, and the transport vehicle status is the status of the transport vehicle shown in FIG. 6. The materials are information output by referring to the code-material comparison table 411.
[0030] The information processing unit 401 outputs the operation status 701 of the transport vehicle 110, the unloading record 702 of the transport vehicle 110, and the unloading record by material 703 shown in Fig. 7 based on the information stored in the information storage area 414. The information processing unit 401 outputs the operation status 701 of the transport vehicle 110 based on the time, vehicle PIN, and loading status stored in the information storage area 414. The operation status 701 of the transport vehicle is information with the horizontal axis representing the time and the vertical axis representing the loading status. The loading status is an "empty" state in which the transport vehicle 110 is not loaded with transported goods, or a "loaded" state in which the transport vehicle 110 is loaded with transported goods.
[0031] The information processing unit 401 also outputs an unloading record 702 of the transport vehicle 110 based on the time, vehicle PIN, transport vehicle status, and load information stored in the information storage area 414. The unloading record 702 of the transport vehicle is information in which the horizontal axis represents time and the vertical axis represents the weight of the transported goods. For example, the weight of the transported goods is calculated from the difference between the load information of the transport vehicle that entered the unloading area and the load information immediately thereafter.
[0032] The information processing unit 401 also outputs unloading records 703 by material based on the vehicle status, load information, and materials stored in the information storage area 414. The unloading records 703 by material are information in which the horizontal axis represents the material and the vertical axis represents the weight of the unloaded material. For example, the weight of the unloaded material is calculated from the difference between the load information of a vehicle that has entered the unloading area and is transporting the material and the load information immediately thereafter. The weight of the material in (c) of FIG. 7 may be the weight of the material unloaded by a single vehicle 110, or it may be the total weight of the material unloaded by multiple vehicles 110 at the transport site 100.
[0033] (Information display device 301) An information display device 301 is installed in a control room 300 of the transportation site 100. The information display device 301 is, for example, a personal computer, a smartphone, or a tablet. The location where the information display device 301 is installed is not limited to the control room 300, but may also be a control center that comprehensively manages information about the transportation vehicles 110, or may be at the transportation site 100 outside the control room 300. The information display device 301 transmits a request for information to the cloud server 400, receives information generated by the cloud server 400 as a response to the request, and displays the information.
[0034] The information display device 301 displays various information based on the information received from the cloud server 400. Specifically, the information display device 301 displays the contents of the goods being transported by the transport vehicle 110 based on the information received from the cloud server 400.
[0035] Fig. 7 is a diagram showing information displayed by the information display device 301. As shown in Fig. 7(a), the information display device 301 displays the operation status 701 of the transport vehicle 110. From the operation status 701 of the transport vehicle 110, the user of the information display device 301 can check the loading status of each transport vehicle 110 in chronological order.
[0036] 7(b), the information display device 301 also displays the unloading record 702 of the transport vehicle 110. From the unloading record 702 of the transport vehicle 110, the user of the information display device 301 can check the weight of the transported goods unloaded by the transport vehicle 110 in chronological order for each transport vehicle 110.
[0037] 7(c), the information display device 301 displays the unloading record by material 703. From the unloading record by material 703, the user of the information display device 301 can check the weight of the materials unloaded in the unloading area 200 by material.
[0038] (Operation of the transportation management system) FIG. 8 is a diagram for explaining the operation of the transportation management system 1. The operation of the transportation management system 1 will be explained with reference to FIG. 8. When the transportation vehicle 110 enters the loading area 201, the receiving device 111 receives the signal 211S output by the transmitting device 211. The receiving device 111 transmits the received signal 211S to the encoding device 112. The encoding device 112 converts the signal 211S into code information (e.g., 0x01) by referring to the signal code conversion table 114, and transmits it to the control unit 113. The control unit 113 acquires the vehicle PIN, time, and load information, and transmits the vehicle PIN, time, and load information together with the code information to the cloud server 400. The same operation occurs when the transportation vehicle 110 enters the other loading areas 202 and 203, so a description thereof will be omitted.
[0039] When the transport vehicle 110 enters the unloading area 200, the receiving device 111 receives the signal 210S output by the transmitting device 210. The receiving device 111 transmits the received signal 210S to the encoding device 112. The encoding device 112 converts the signal 210S into code information (e.g., 0x00) by referring to the signal code conversion table 114, and transmits it to the control unit 113. The control unit 113 transmits the vehicle PIN, time, and load information together with the code information to the cloud server 400.
[0040] The communication I / F 432 of the cloud server 400 receives the vehicle information (code information, vehicle PIN, time, and load information) transmitted by the control unit 113. The processor 431 of the information processing unit 401 stores the received vehicle information in the information storage area 414. The processor 431 also references the code material comparison table 411, outputs a material from the received code information, and stores it in the information storage area 414. The processor 431 also stores the loading status ("empty" status, "loaded" status) determined based on the load information and the status of the transport vehicle output based on the status determination table 413 in the information storage area 414. The processor 431 also associates the received code information with the vehicle PIN and time, and stores it in the code storage area 412 as a stored code.
[0041] The communication I / F 432 receives a request from the information display device 301, and transmits, as a response to the request, the operation status 701 of the haulage vehicle 110, the unloading record 702 of the haulage vehicle 110, or the unloading record by material 703, all of which are shown in FIG. 7 , to the information display device 301. When the communication I / F 432 receives a request from the information display device 301, the processor 431 generates information such as the operation status 701 of the haulage vehicle 110, the unloading record 702 of the haulage vehicle 110, and the unloading record by material 703. Then, the communication I / F 432 transmits the generated information such as the operation status 701 of the haulage vehicle 110, the unloading record 702 of the haulage vehicle 110, and the unloading record by material 703, to the information display device 301.
[0042] (Operation flow of the receiving device 111) 9 is a flowchart showing the operation executed by the receiving device 111 of the haulage vehicle 110. As shown in FIG. 9, when the receiving device 111 of the haulage vehicle 110 receives a signal from the transmitting devices 210 to 213 (V101: Yes), it transmits the received signal to the encoding device 112 (V102). The receiving device 111 determines whether or not a signal has been received from the transmitting devices 210 to 213 at a predetermined sampling period (V101). If no signal has been received from the transmitting devices 210 to 213 (V101: No), this flow ends. Then, this flow is executed again at the next sampling period.
[0043] (Operation flow of the encoding device 112) Fig. 10 is a flowchart showing the operation executed by the encoding device 112 of the transport vehicle 110. As shown in Fig. 10, the encoding device 112 determines whether or not a signal has been received from the receiving device 111 (V201). If it is determined that a signal has been received from the receiving device 111 (V201: Yes), the encoding device 112 refers to the signal code conversion table 114 (see Fig. 2) and converts the received signal into code information (V202). Then, the encoding device 112 transmits the code information to the control unit 113 (V203). If a signal has not been received from the receiving device 111 (V201: No), the encoding device 112 performs the determination of V201 again after a predetermined time has elapsed.
[0044] (Operation flow of the control unit 113) 11 is a flowchart showing the operation executed by the control unit 113 of the transporter vehicle 110. As shown in FIG. 11, the processor 131 of the control unit 113 determines whether or not code information has been received from the encoding device 112 (V301). If it is determined that code information has been received from the encoding device 112 (V301: Yes), the processor 131 acquires the vehicle PIN, load information, and time (V302). Then, the processor 131 transmits the vehicle information (code information, vehicle PIN, load information, and time) to the cloud server 400 via the communication I / F 132 (V303). If code information has not been received from the encoding device 112 (V301: No), the processor 131 performs the determination of V301 again after a predetermined time has elapsed.
[0045] (Information processing flow by cloud server 400) Fig. 12 is a flowchart showing an information processing operation executed by the processor 431 of the cloud server 400. The information processing operation executed by the processor 431 will be described in detail with reference to Fig. 12. The processor 431 receives vehicle information (code information, vehicle PIN, load information, time) transmitted from the transporter vehicle 110 via the communication I / F 432 (C101). Next, the processor 431 reads the stored code (code information received immediately before the received code information) from the code storage area 412 (C102). The processor 431 also reads the cord material comparison table 411 from the storage unit 410 (C103), and also reads the status determination table 413 from the storage unit 410 (C104).
[0046] Next, the information processing unit 401 refers to the status determination table 413 to determine the status of the transport vehicle 110 (C105). If it is determined that the transport vehicle 110 entered the loading area empty, the process proceeds to C106. On the other hand, if it is determined that the transport vehicle 110 entered the unloading area 200 loaded, the process proceeds to C107. If it is determined that the transport vehicle 110 entered the loading area empty, the processor 431 refers to the code material comparison table 411 that was read and acquires the material corresponding to the received code (C107). Then, the processor 431 stores the acquired material in the information storage area 414 of the memory unit 410 as loading information (C108). From the vehicle PIN, time, and loading information stored in the information storage area 414, it is possible to determine the time when the transport goods were loaded, the transport vehicle 110 on which the transport goods were loaded, and the material of the transport goods.
[0047] When it is determined that the transport vehicle 110 has entered the unloading area 200 while loaded, the processor 431 acquires the material corresponding to the retention code (C107). Then, the processor 431 stores the acquired material in the information storage area 414 of the memory unit 410 as unloading information (C109). From the vehicle PIN, time, load information, and unloading information stored in the information storage area 414, it is possible to determine the time to unload the transported goods, the transport vehicle 110 that will unload the transported goods, the material of the transported goods, and the weight of the transported goods to be unloaded.
[0048] (Information output flow by cloud server 400) 13 is a flowchart showing an information output operation executed by the processor 431 of the cloud server 400. The information output operation by the information processing unit 401 will be described in detail with reference to FIG. 13. First, the processor 431 determines whether a request has been received from the information display device 301 in the management room 300 via the communication I / F 432 (C201). If it is determined that a request has been received (C201: Yes), the processor 431 collects necessary information from the information storage area 414 and generates information to be transmitted to the information display device 301 (C202). Then, the processor 431 outputs the generated information via the communication I / F 432 (C203). The information output by the information processing unit 401 includes the operating status 701 of the haulage vehicle 110, the unloading record 702 of the haulage vehicle 110, and the unloading record by material 703, all of which are shown in FIG. 7.
[0049] As shown in FIG. 7, the information display device 301 uses information received from the cloud server 400 to display the operating status 701 of the transport vehicle 110, the unloading record 702 of the transport vehicle 110, and the unloading record by material 703.
[0050] (Effects of Example 1) The cloud server 400 can refer to the code material comparison table 411 and manage the contents (materials) of the goods being transported by the transport vehicle based on the code information and vehicle PIN received from the transport vehicle 110. This eliminates the need for on-site workers (especially the driver of the transport vehicle 110) to manually manage the contents of the goods, thereby reducing manual management errors and the workload of on-site workers.
[0051] Furthermore, since the cloud server 400 stores the cord material comparison table 411, the contents of the transported goods transported by the transport vehicle 110 can be managed in a unified manner on the cloud server 400.
[0052] By providing transmitting devices 210-213 at the transportation site 100 and providing a receiving device 111 on the transportation vehicle 110, the code information can be acquired simply by the transportation vehicle 110 approaching the areas 200-203. This reduces the workload of the site workers.
[0053] The cloud server 400 can output the loading status ("empty" status, "laden" status) based on the load information received from the transport vehicle 110. This allows the loading status of the transport vehicle to be grasped and instructions to the transport vehicle in the "empty" status to allow the transport vehicle to work efficiently.
[0054] The cloud server 400 can manage the status of the haulage vehicle 110 (see FIG. 6) based on the received code and the stored code corresponding to the code information received from the haulage vehicle 110. This allows the user to know the location of the haulage vehicle 110 and whether the haulage vehicle 110 is stuck or not. As a result, the user can give instructions to the stuck haulage vehicle 110, for example, to make the idle haulage vehicle work efficiently.
[0055] The user of the information display device 301 can check the displayed operation status 701 of the transport vehicle, the unloading record 702 of the transport vehicle, and the unloading record by material 703. By checking the operation status 701 of the transport vehicle, the user can understand the loading status over time. Furthermore, by checking the unloading record 702 of the transport vehicle, the user can understand the unloading record over time. Furthermore, by checking the unloading record by material 703, the user can understand the progress and volume of unloading for each material.
[0056] By installing transmitting devices 210-213 in both the loading areas 201-203 and the unloading area 200, it is possible to manage both the materials of the transported goods loaded in the loading areas 201-203 and the materials of the transported goods unloaded in the unloading area 200.
[0057] <Example 2> In the first embodiment, an example has been described in which the transport vehicle 110 installs transmitting devices 210-213 in the loading areas 201-203 and the unloading area 200 at the transport site 100, and manages the unloading record of the transport vehicle 110. In the second embodiment, not only the unloading record of the transport vehicle 110 but also the shipping record of the shipping vehicle 510 is managed.
[0058] FIG. 14 is a diagram showing the overall configuration of a transportation management system 2 of Example 2. In addition to the configuration of Example 1, Example 2 includes a transmitting device 601 installed in a shipping vehicle 510 at a transportation site 500 and a receiving processing device 611 installed on the shipping travel route along which the shipping vehicle 510 travels. The receiving processing device 611 corresponds to the transmitting / receiving device of the present invention. The receiving processing device 611 receives and processes the signal output by the transmitting device 601. Similarly to Example 1, the transportation management system 2 of Example 2 also includes a cloud server 400 having a memory unit 410 and an information processing unit 401, and an information display device 301 installed in a management room 300.
[0059] The transmitting device 601 of the shipping vehicle 510 outputs identification information for identifying the shipping vehicle 510, load information, and time. The receiving processing device 611 receives and processes the information output by the transmitting device 601. The receiving processing device 611 transmits the processed information to the cloud server 400. The cloud server 400 stores the identification information for identifying the shipping vehicle 510, load information, and time received from the receiving processing device 611 in the memory unit 410.
[0060] FIG. 15 is a diagram illustrating information displayed by the information display device 301 of the second embodiment. The cloud server 400 generates a shipping record of the shipping vehicle 510 based on the identification information for identifying the shipping vehicle 510, the load information, and the time stored in the storage unit 410. The information display device 301 installed in the management room 300 transmits a request to the cloud server 400 in response to a user instruction or periodically, and the cloud server 400 transmits information indicating the shipping record to the information display device 301 in response to the request. As illustrated in FIG. 15, the information display device 301 displays a shipping record 801 of the shipping vehicle based on the information received from the cloud server 400. The shipping record 801 of the shipping vehicle is information in which the horizontal axis represents time and the vertical axis represents the weight of the transported goods. The weight of the transported goods is calculated from the load information. A user of the information display device 301 can check the weight of the transported goods shipped by the shipping vehicle 510 in chronological order from the displayed shipping record 801 of the shipping vehicle 510.
[0061] The cloud server 400 of the second embodiment can also generate a shipping record by material. The cloud server 400 stores a table that associates the identification information of the shipping vehicle 510 with the material of the transported item transported by the shipping vehicle 510. The cloud server 400 refers to this table and converts the identification information received from the reception processing device 611 into the material of the transported item. The cloud server 400 then generates a shipping record by material based on the converted material, load information, and time of the transported item. The information display device 301 displays the shipping record by material (not shown) based on the information indicating the shipping record by material received from the cloud server 400.
[0062] (Effects of Example 2) A user of the information display device 301 of the second embodiment can check the weight of the shipped goods in chronological order from the shipping record 801 of the shipping vehicle 510.
[0063] The user of the information display device 301 of the second embodiment can check the weight of the shipped goods for each material from the shipping record for each material. Other effects are the same as those of the first embodiment.
[0064] It should be noted that the present invention is not limited to the above-described embodiment, and includes various modifications. The above-described embodiment has been described in detail to clearly explain the present invention, and the present invention is not necessarily limited to an embodiment having all of the described configurations.
[0065] It is also possible to replace part of the configuration of one embodiment with the configuration of another embodiment, or to add the configuration of another embodiment to the configuration of one embodiment, or to add, delete, or replace part of the configuration of each embodiment with the configuration of another embodiment. [Explanation of symbols]
[0066] 1, 2: Transportation management system 110: Transportation vehicle 111: Receiving device 112: Encoding device 113: Control unit 114: Signal code conversion table 200: Unloading area 201-203: Loading area 210-213: Transmitting device 300: Control room 301: Information display device 400: Cloud server 401: Information processing unit 410: Memory unit 411: Code material comparison table 412: Code storage area 413: Status judgment table 414: Information storage area 510: Shipping vehicle
Claims
1. A first transmitting device that is installed in a loading area where transported goods are stored and that transmits first information indicating the loading area via wireless communication to a transport vehicle that has entered the loading area; an information processing device that communicates wirelessly with the transport vehicle and manages the contents of the transported goods transported by the transport vehicle; the transport vehicle transmits, to the information processing device by wireless communication, first code information corresponding to the first information received from the first transmitting device and identification information for identifying the transport vehicle; The information processing device has a code material comparison table in which code information and the contents of the transported item are associated with each other, and specifies the contents of the transported item transported by the transport vehicle identified by the received identification information based on the received first code information and the code material comparison table. A transportation management system characterized by:
2. the transport vehicle transmits load information indicating the weight of the transported goods loaded on the transport vehicle; The transportation management system according to claim 1, characterized in that the information processing device receives the load information transmitted by the transportation vehicle and manages the loading status of the transportation vehicle based on the received load information.
3. The transportation management system described in claim 1, characterized in that the information processing device stores multiple past code information received from the transportation vehicle, and manages the status of the transportation vehicle based on the stored past code information and the current code information received from the transportation vehicle.
4. the information processing device transmits information indicating the contents of the transported item; The transportation management system according to claim 1, further comprising an information display device that receives information indicating the contents of the transported item sent by the information processing device and displays the received contents of the transported item.
5. A second transmitting device is installed in an unloading area where unloading of transported goods is carried out, and transmits second information indicating the unloading area to the transport vehicle that has entered the unloading area by wireless communication; the transport vehicle transmits, via wireless communication to the information processing device, second code information corresponding to the second information received from the second transmitting device and identification information for identifying the transport vehicle; The information processing device identifies the contents of the transported goods unloaded by the transport vehicle identified by the received identification information based on the received second code information and the code material comparison table.
2. The transportation management system according to claim 1.
6. a shipping vehicle that ships a loaded cargo, the shipping vehicle transmitting identification information that identifies the shipping vehicle and load information that indicates the weight of the transported goods loaded on the shipping vehicle; a transmitting / receiving device that is provided on a travel route of the shipping vehicle, receives the identification information and the load information transmitted by the shipping vehicle, and transmits the received identification information and the load information to the information processing device, The transportation management system according to claim 1 , wherein the information processing device manages the shipping performance of the shipping vehicle based on the identification information and the load information received from the transmitting / receiving device.
7. The transportation management system includes a plurality of transportation vehicles, The transportation management system according to claim 1, characterized in that the information processing device receives the identification information from each of the plurality of transportation vehicles and manages the contents of the transportation item in association with the identification information of the transportation vehicle that transports the transportation item.
Citation Information
Patent Citations
Kinzokuno tosohoho
JP1976058431A
Load storage device and recording medium
JP2001287814A
JPP3230215B
JPP4739580B
JPP7240038B