Container storage information communication method and system, storage medium and intelligent terminal

By using wireless and wired communication between mobile monitoring equipment and fixed receiving equipment in the container storage information communication method, real-time monitoring and transmission of container storage information is realized, the problem of inefficient manual inspection in the prior art is solved, and the real-time and effectiveness of information communication is improved.

CN119967372APending Publication Date: 2025-05-09NINGBO BEILUN YONGHE CONTAINER TERMINAL CO LTD
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Patent Information

Application Number
CN202510057083.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2025-05-09

AI Technical Summary

Technical Problem

In the prior art, the monitoring and management of container storage information relies on manual inspection, which is inefficient, untimely data, and lacks real-time and automated information transmission methods.

Method used

A method of storage information communication for containers is adopted. By obtaining the storage area of ​​the container, matching the monitoring range of nodes, and enabling wireless and wired communication between mobile monitoring equipment and fixed receiving equipment, real-time monitoring and transmission of storage information for containers is realized.

Benefits of technology

It improves the real-time and effectiveness of container information communication, enhances the flexibility and timely error correction capabilities of monitoring equipment, and solves the problem of inefficient manual inspections.

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Patent Text Reader

Abstract

The invention relates to a container storage information communication method and system, a storage medium and an intelligent terminal, and relates to the field of container information transmission technologies. Performing matching based on the container placement area and a preset node monitoring range to obtain a node number corresponding to the successfully matched node monitoring range; searching a corresponding current area node number from a preset database based on the current node number; the mobile monitoring device corresponding to the current node number receives container storage information and wirelessly transmits the container storage information to the fixed receiving device corresponding to the current area node number, and the fixed receiving device corresponding to the current area node number transmits the container storage information to the central machine room in a wired optical cable mode. According to the system, through wireless transmission and wired transmission, real-time monitoring can be carried out on the containers in all areas only in the central machine room, and the real-time performance and effectiveness of container information communication are improved.
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Description

Technical Field

[0001] The present application relates to the field of container information transmission technology, and in particular to a container storage information communication method, system, storage medium and intelligent terminal. Background Art

[0002] In modern logistics management, containers, also known as containers, are widely used for cargo transportation and storage. Their design allows goods to be safely transported from one place to another, reduces damage during loading and unloading, and greatly improves logistics efficiency.

[0003] At the dock, during the storage of containers, the location, status and cargo information of the containers are monitored and managed in real time. Usually, users will manually check the labels and other identification on the containers, and then record them in paper form or by telephone, and transmit them to the central computer room for centralized management.

[0004] The existing technology has the following problems: the manual inspection method requires on-site personnel to actively observe and transmit, which is inefficient and the data is not timely, and there is still room for improvement. Summary of the invention

[0005] In order to improve the problem that the manual inspection method requires on-site personnel to actively observe and transmit, which is inefficient and has untimely data, the present application provides a container storage information communication method, system, storage medium and intelligent terminal.

[0006] In a first aspect, the present application provides a container storage information communication method, which adopts the following technical solution: A container storage information communication method, comprising: Get the container placement area; Based on the container placement area and the preset node monitoring range, a node number corresponding to the successfully matched node monitoring range is obtained, wherein the node number is the number of the mobile monitoring device, and a mapping relationship is formed between the node monitoring range and the node number, and the node number is defined as the current node number; Based on the current node number, a corresponding current area node number is searched from a preset inclusion database, and the fixed receiving device corresponding to the current area node number communicates wirelessly with the mobile monitoring device corresponding to the current node number; Enable the mobile monitoring device corresponding to the current node number and the fixed receiving device corresponding to the current area node number, so that the mobile monitoring device corresponding to the current node number receives the container storage information and wirelessly transmits it to the fixed receiving device corresponding to the current area node number, and the fixed receiving device corresponding to the current area node number transmits the container storage information to the central computer room via wired optical cable.

[0007] By adopting the above technical solution, monitoring is carried out by enabling monitoring equipment at the container storage area, and then transmitting the information to the device responsible for receiving the signal through wireless transmission, and then transmitting it to the central computer room through wired transmission, so that only the central computer room is needed to monitor the containers in all areas in real time, thereby improving the real-time and effectiveness of container information communication.

[0008] Optionally, the method for enabling the mobile monitoring device corresponding to the current node ID includes: When the fixed receiving device corresponding to the node number of the current area receives the container storage information transmitted by the mobile monitoring device corresponding to the current node number, the mobile monitoring device corresponding to the current node number is normally activated; When the fixed receiving device corresponding to the current regional node number does not receive the container storage information transmitted by the mobile monitoring device corresponding to the current node number, the current node number is defined as an abnormal node number; Based on the abnormal node number, the corresponding abnormal node number in the same area is found from the preset same area database; Find the corresponding abnormal workflow from the preset work database based on the abnormal node number; Based on the comparison between the abnormal node number in the same area and the current node number, an abnormal node number in the same area that is not the current node number is obtained, and the abnormal node number in the same area is defined as an idle node number in the same area; When an idle abnormal node number exists, a mobile monitoring device corresponding to any idle node number in the same area is enabled to execute the abnormal workflow and transmit it wirelessly to a fixed receiving device; When the idle same-zone node number does not exist, the corresponding abnormal foreign-zone node number is found from the preset foreign-zone database based on the abnormal node number; Based on the comparison between the abnormal foreign zone node number and the current node number, an abnormal foreign zone node number that is not the current node number is obtained, and the abnormal foreign zone node number is defined as an idle abnormal foreign zone node number; Enable the mobile monitoring device corresponding to any idle abnormal different zone node number to execute the abnormal workflow and transmit it wirelessly to the fixed receiving device.

[0009] By adopting the above technical solution, when one of the monitoring devices fails, the nearby monitoring devices in the same area are moved to that location for monitoring. If there is no monitoring device, it is retrieved from another area, which improves the flexibility and timely error correction capability of the monitoring device.

[0010] Optionally, an information communication method is also included when both the idle abnormal node number and the idle abnormal different-area node number do not exist, the method comprising: Based on the node monitoring range corresponding to the abnormal node number and the node monitoring range corresponding to the abnormal same-area node number or the abnormal different-area node number, an analysis is performed to obtain the abnormal same-area node number or the abnormal different-area node number that is adjacent and belongs to the same direction, and the abnormal same-area node number or the abnormal different-area node number is defined as an adjacent node number; Find the corresponding adjacent workflow from the work database based on the adjacent node number; When no abnormal workflow has been sent to the mobile monitoring device corresponding to the adjacent node number, the abnormal workflow is added to the adjacent workflow to form an actual workflow; Control the mobile monitoring device corresponding to the adjacent node number to execute the actual work process at the same time of startup, and synchronize the mobile monitoring device corresponding to the adjacent node number as the mobile monitoring device corresponding to the abnormal node number to communicate; When an abnormal workflow has been sent to the mobile monitoring device corresponding to the adjacent node number, the adjacent node number in the same area is searched again until the adjacent node number does not exist or no abnormal workflow has been sent to the mobile monitoring device corresponding to the adjacent node number.

[0011] By adopting the above technical solution, if there is no idle mobile monitoring device, then adjacent mobile monitoring devices are directly used for simultaneous monitoring, which further improves the flexibility and timely error correction capability of the monitoring device.

[0012] Optionally, the method for enabling the fixed receiving device corresponding to the node ID of the current area includes: When the central computer room receives the container storage information transmitted by the fixed receiving device corresponding to the current regional node number, the fixed receiving device corresponding to the current regional node number is normally activated; When the central computer room does not receive the container storage information transmitted by the fixed receiving device corresponding to the current regional node number and the fixed receiving device corresponding to the current regional node number does not receive the container storage information transmitted by the mobile monitoring device corresponding to the current node number, any mobile monitoring device corresponding to an idle node number in the same area is activated to execute the abnormal workflow and transmit it wirelessly to the fixed receiving device, or any mobile monitoring device corresponding to an idle abnormal node number in a different area is activated to execute the abnormal workflow and transmit it wirelessly to the fixed receiving device; When the central computer room does not receive the container storage information transmitted by the fixed receiving device corresponding to the current regional node number but the fixed receiving device corresponding to the current regional node number receives the container storage information transmitted by the mobile monitoring device corresponding to the current node number, the current node number is defined as an external node number; Based on the external node number, the corresponding adjacent area node number is found from the preset adjacent database; After establishing a wireless connection between the mobile monitoring device corresponding to the external node number and the node number of the adjacent area, the fixed receiving device corresponding to the node number of the adjacent area is enabled.

[0013] By adopting the above technical solution, when the device responsible for receiving fails, the information is transmitted to the receiving device in the adjacent area, thereby improving the flexibility of the monitoring device.

[0014] Optionally, the method of establishing a wireless connection between a mobile monitoring device corresponding to an external node number and a node number in an adjacent area and then enabling a fixed receiving device corresponding to the node number in the adjacent area includes: Find the corresponding adjacent receiving area from the preset area database based on the adjacent area node number; Find the corresponding external workflow from the work database based on the external node number; When the node monitoring range corresponding to the external node number falls into the adjacent receiving area, the fixed receiving device corresponding to the node number in the adjacent area is enabled, and a wireless connection is directly established between the mobile monitoring device corresponding to the external node number and the node number in the adjacent area; When the node monitoring range corresponding to the external node number partially falls into the adjacent receiving area, the local node monitoring range that falls into is defined as the local node monitoring range; When the mobile monitoring device corresponding to the external node number executes the external workflow and falls within the monitoring range of the local node, the fixed receiving device corresponding to the adjacent area node number is enabled, and a wireless connection is directly established between the mobile monitoring device corresponding to the external node number and the adjacent area node number; When the node monitoring range corresponding to the external node number does not fall into the adjacent receiving area at all, a transmission information flow is formed based on the node monitoring range corresponding to the external node number, the adjacent receiving area and the preset walking area; The mobile monitoring device corresponding to the external node number is controlled to execute the external workflow and then execute the information transmission process, and after executing the information transmission process, the fixed receiving device corresponding to the adjacent area node number is enabled, and a wireless connection is directly established between the mobile monitoring device corresponding to the external node number and the adjacent area node number.

[0015] Optionally, the method of controlling the mobile monitoring device corresponding to the external node number to execute the external workflow and then execute the information transmission process includes: Determine the monitoring range of the adjacent nodes based on the node monitoring range corresponding to the external node number and the path corresponding to the transmission information flow; When a monitoring range of the passing adjacent node exists, determining the number of the passing adjacent node based on the monitoring range of the passing adjacent node; Based on the number of the adjacent node passed, the corresponding adjacent workflow is found from the work database; Control the external node number to execute the external workflow, the adjacent workflow and the information transmission process, and update the adjacent node number to the idle abnormal node number; When the adjacent node monitoring range does not exist, the mobile monitoring device corresponding to the external node number is controlled to execute the external work process and then execute the information transmission process.

[0016] By adopting the above technical solution, when moving to an adjacent area to transmit information, if it passes through a node area in the adjacent area where there are containers that need to be monitored, the monitoring will be carried out incidentally, thereby reducing the waste of resources caused by the action of simply moving on unnecessary paths and improving the resource utilization rate of the mobile monitoring equipment; on the other hand, the devices within the node range that are monitored incidentally can be used as idle devices to go to other areas, thereby improving the flexibility of the monitoring equipment.

[0017] Optionally, the method of controlling the external node number to execute the external workflow, pass through the adjacent workflow and transmit the information flow, and updating the passed adjacent node number to the idle abnormal different zone node number includes: Determine the number of nodes passing through adjacent node numbers; When the number of nodes is 1, the external node number is controlled to execute the external workflow, the adjacent workflow and the information transmission process, and the adjacent node number is updated to the idle abnormal node number in the different area; When the number of nodes is greater than 1 and one of the passing adjacent node numbers is an abnormal node number, the passing adjacent node number is defined as the target adjacent node number, and the corresponding passing adjacent workflow is defined as the target adjacent workflow; Control the external node number to execute the external workflow, target adjacent workflow and transmission information workflow; When the number of nodes is greater than 1 and none of the passing adjacent node numbers is an abnormal node number, a passing adjacent node number is randomly selected, and the external node number is controlled to execute the external workflow, the passing adjacent workflow and the transmission information workflow, and the passing adjacent node number is updated to an idle abnormal different zone node number.

[0018] By adopting the above technical solution, when there are multiple adjacent node areas with containers that need to be monitored, priority is given to monitoring the area with abnormal equipment, which not only solves the problem of abnormal equipment, but also solves the problem of regional receiving equipment, and improves the flexibility of problem solving.

[0019] In a second aspect, the present application provides a container storage information communication system, which adopts the following technical solution: A container storage information communication system, comprising: An acquisition module is used to obtain container placement areas and container storage information; A memory for storing a program of a control method of any of the above container storage information communication methods; The program in the processor and the memory can be loaded and executed by the processor to implement the control method of any of the above container storage information communication methods.

[0020] By adopting the above technical solution, monitoring is performed by enabling monitoring equipment at the container storage area, and then transmitting the information to the device responsible for receiving the signal via wireless transmission, and then transmitting it to the central computer room via wired transmission. This makes it possible to monitor the containers in all areas in real time only in the central computer room, thereby improving the real-time and effectiveness of container information communication.

[0021] In the third aspect, the present application provides a smart terminal, which adopts the following technical solution: The intelligent terminal includes a memory and a processor, wherein the memory stores a computer program that can be loaded by the processor and execute any of the above container storage information communication methods.

[0022] By adopting the above technical solution, monitoring is performed by enabling monitoring equipment at the container storage area, and then transmitting the information to the device responsible for receiving the signal via wireless transmission, and then transmitting it to the central computer room via wired transmission. This makes it possible to monitor the containers in all areas in real time only in the central computer room, thereby improving the real-time and effectiveness of container information communication.

[0023] Fourthly, the present application provides a computer storage medium that can store corresponding programs and has the characteristics of fast interaction with memory big data.

[0024] Computer readable storage medium, using the following technical solution: A computer-readable storage medium stores a computer program that can be loaded by a processor and execute any of the above container storage information communication methods.

[0025] By adopting the above technical solution, monitoring is performed by enabling monitoring equipment at the container storage area, and then transmitting the information to the device responsible for receiving the signal via wireless transmission, and then transmitting it to the central computer room via wired transmission. This makes it possible to monitor the containers in all areas in real time only in the central computer room, thereby improving the real-time and effectiveness of container information communication.

[0026] In summary, the present application includes at least the following beneficial technical effects: 1. Through wireless transmission and wired transmission, real-time monitoring of containers in all areas can be carried out only in the central computer room, which improves the timeliness and effectiveness of container information communication; 2. The nearby monitoring equipment in the same area is moved to the location of the abnormal monitoring equipment for monitoring, which improves the flexibility and timely error correction capability of the monitoring equipment; 3. When the receiving device fails, the information will be transmitted to the receiving device in the adjacent area, which improves the flexibility of the monitoring equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 It is a flow chart of a container storage information communication method in an embodiment of the present application.

[0028] Figure 2 It is a schematic diagram of a container storage area in an embodiment of the present application.

[0029] Figure 3 It is a flowchart of a method for enabling a mobile monitoring device corresponding to a current node number in an embodiment of the present application.

[0030] Figure 4 It is a flowchart of the information communication method in an embodiment of the present application when both the idle abnormal node number and the idle abnormal different-area node number do not exist.

[0031] Figure 5 It is a flowchart of a method for enabling a fixed receiving device corresponding to a current area node number in an embodiment of the present application.

[0032] Figure 6 It is a flowchart of a method for establishing a wireless connection between a mobile monitoring device corresponding to an external node number and a node number in an adjacent area and then enabling a fixed receiving device corresponding to the node number in an adjacent area in an embodiment of the present application.

[0033] Figure 7 It is a flowchart of a method for controlling a mobile monitoring device corresponding to an external node number in an embodiment of the present application to execute an external workflow and then execute a transmission information process.

[0034] Figure 8 It is a flowchart of a method for controlling an external node number in an embodiment of the present application to execute an external workflow, pass through an adjacent workflow and transmit information flow, and update the passed adjacent node number to an idle abnormal different zone node number.

[0035] Fig. 9 It is a system module diagram of a container storage information communication method in an embodiment of the present application. DETAILED DESCRIPTION

[0036] In order to make the purpose, technical solutions and advantages of this application more clear, the following Figure 1-Figure 9It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0037] The present application embodiment discloses a container storage information communication method. Figure 1 , a container storage information communication method includes: Step 100: Obtain the container placement area.

[0038] The container placement area is the area where the containers are placed. Figure 2 As shown, each area has a container placement area, and the middle is a longitudinal and transverse aisle. A container detection device, such as a gravity sensor, can be set at the location of each container placement area. When a container is placed on top, the gravity sensor immediately detects the weight, indicating that this is the container placement area.

[0039] Step 101: Matching is performed based on the container placement area and the preset node monitoring range to obtain a node number corresponding to the successfully matched node monitoring range, and the node number is defined as the current node number.

[0040] The node number is the number of the mobile monitoring device, and the node monitoring range and the node number form a mapping relationship. When the match is successful, the corresponding mapping relationship can be obtained through the matched node monitoring range, and then the corresponding node number can be found.

[0041] Step 102: Based on the current node number, the corresponding current area node number is searched from a preset inclusion database.

[0042] The current regional node number is the number of the fixed receiving device that can receive data from the mobile monitoring device in the area. Figure 2 As shown, a fixed receiving device is installed on one side of an area, and the fixed receiving device corresponding to the node number of the current area communicates wirelessly with the mobile monitoring device corresponding to the current node number.

[0043] The database stores the mapping relationship between the current node number and the current regional node number, which is obtained by recording and associating the actual numbers after the mobile monitoring equipment and fixed receiving equipment are actually installed. When the system receives the corresponding current node number, it automatically searches for the corresponding current regional node number from the database.

[0044] Step 103: Enable the mobile monitoring device corresponding to the current node number and the fixed receiving device corresponding to the current area node number, so that the mobile monitoring device corresponding to the current node number receives the container storage information and wirelessly transmits it to the fixed receiving device corresponding to the current area node number, and the fixed receiving device corresponding to the current area node number transmits the container storage information to the central computer room via wired optical cable.

[0045] The container storage information is the information during the container storage process, including the container storage time, storage content and storage location.

[0046] Here, since the mobile monitoring equipment is always moving, it is not easy to restrain the mobile monitoring equipment if the information is transmitted by wired optical cable. The fixed receiving equipment does not need to move, so the data transmission can be more stable through wired optical cable.

[0047] Reference Figure 3 , the method of enabling the mobile monitoring device corresponding to the current node number includes: Step 200: When the fixed receiving device corresponding to the current regional node number receives the container storage information transmitted by the mobile monitoring device corresponding to the current node number, the mobile monitoring device corresponding to the current node number is normally activated.

[0048] When the fixed receiving device corresponding to the current area node number receives the container storage information transmitted by the mobile monitoring device corresponding to the current node number, it means that the mobile monitoring device is working normally and can be enabled normally.

[0049] Step 201: When the fixed receiving device corresponding to the current regional node number does not receive the container storage information transmitted by the mobile monitoring device corresponding to the current node number, the current node number is defined as an abnormal node number.

[0050] When the fixed receiving device corresponding to the current regional node number does not receive the container storage information transmitted by the mobile monitoring device corresponding to the current node number, it means that the mobile monitoring device corresponding to the current node number is abnormal, because the rest of the container storage information is received normally, so it can only be the current node number. Once it is defined as an abnormal node number here, it means that the corresponding mobile monitoring device is abnormal.

[0051] If all are abnormal, it means that the mobile monitoring equipment is normal, but the fixed receiving equipment is abnormal.

[0052] Step 202: Based on the abnormal node number, the corresponding abnormal node number in the same area is searched from a preset same area database.

[0053] The abnormal node number in the same area is the node number in the same area as the abnormal node number. The database stores the mapping relationship between the abnormal node number and the abnormal node number in the same area. The staff in this field counts the node numbers in the same area, and then randomly selects one to form a mapping relationship with the remaining ones. When the system receives the corresponding abnormal node number, it automatically finds the corresponding abnormal node number in the same area from the database and outputs it.

[0054] Step 203: Find the corresponding abnormal workflow from the preset work database based on the abnormal node number.

[0055] The abnormal workflow is the process of monitoring and moving during the process of receiving container storage information when the mobile monitoring device corresponding to the abnormal node number works normally. The mapping relationship between the abnormal node number and the abnormal workflow is stored in the database. It is recorded by the staff in this field after rehearsals and tests based on the actual content that each mobile monitoring device needs to monitor and the paths and steps required in the monitoring process. When the system receives the corresponding abnormal node number, it automatically finds the corresponding abnormal workflow from the database and outputs it.

[0056] Step 204: Based on the comparison between the abnormal node number in the same area and the current node number, an abnormal node number in the same area that is not the current node number is obtained, and the abnormal node number in the same area is defined as an idle node number in the same area.

[0057] The comparison method is to compare the numbers corresponding to the abnormal node number in the same area with the current node number. If they are different, it means that there is no monitoring, and it is the idle node number in the same area.

[0058] Step 205: When an idle abnormal node number exists, enable a mobile monitoring device corresponding to any idle node number in the same area to execute the abnormal workflow and transmit it wirelessly to the fixed receiving device.

[0059] When an idle abnormal node number exists, it means that the device is not monitoring the container corresponding to itself, so the abnormal mobile monitoring device can be moved to replace the mobile monitoring device corresponding to the abnormal node number for monitoring.

[0060] Step 206: When there is no idle same-zone node number, the corresponding abnormal foreign-zone node number is searched from the preset foreign-zone database based on the abnormal node number.

[0061] The abnormal node number in different regions is the node number in different regions. The database stores the mapping relationship between the abnormal node number and the abnormal node number in different regions. The staff in this field can count the node numbers that are not in the same region and then form a mapping relationship. When the system receives the corresponding abnormal node number, it automatically finds the corresponding abnormal node number in different regions from the database and outputs it.

[0062] When there is no idle node number in the same area, it means that monitoring cannot be performed through the mobile monitoring device in the same area, and the corresponding mobile monitoring device needs to be called from other areas.

[0063] Step 207: Based on the comparison between the abnormal foreign zone node number and the current node number, an abnormal foreign zone node number that is not the current node number is obtained, and the abnormal foreign zone node number is defined as an idle abnormal foreign zone node number.

[0064] The comparison method is to compare the numbers corresponding to the abnormal foreign zone node number and the current node number. If they are different, it means that there is no monitoring, and it is the idle foreign zone node number.

[0065] Step 208: Enable the mobile monitoring device corresponding to any idle abnormal different-zone node number to execute the abnormal workflow and wirelessly transmit it to the fixed receiving device.

[0066] Reference Figure 4 , and also includes an information communication method when both the idle abnormal node number and the idle abnormal different zone node number do not exist, the method comprising: Step 300: Based on the node monitoring range corresponding to the abnormal node number and the node monitoring range corresponding to the abnormal same-area node number or the abnormal different-area node number, analysis is performed to obtain the abnormal same-area node number or abnormal different-area node number that is adjacent and belongs to the same direction, and the abnormal same-area node number or abnormal different-area node number is defined as an adjacent node number.

[0067] The analysis method here is to compare the values ​​between the two. If there is an overlapping position and the position is at the edge of the monitoring range of the two nodes, then the two monitoring ranges are adjacent, and the corresponding node number is the adjacent node number that meets the requirements.

[0068] Step 301: Find the corresponding adjacent workflow from the work database based on the adjacent node number.

[0069] The adjacent workflow is the process that the mobile monitoring device corresponding to the adjacent node number needs to monitor. The establishment of the database is introduced in step 203 and will not be repeated here. When the system receives the adjacent node number, it automatically finds the corresponding adjacent workflow from the database and outputs it.

[0070] Step 302: When no abnormal workflow has been sent to the mobile monitoring device corresponding to the adjacent node number, the abnormal workflow is added to the adjacent workflow to form an actual workflow.

[0071] The actual workflow is the specific workflow of the mobile monitoring device corresponding to the adjacent node number.

[0072] When no abnormal workflow has been sent to the mobile monitoring device corresponding to the adjacent node number, it means that the mobile monitoring device corresponding to the adjacent node number is only performing its own work, that is, there is no redundant work, so one more abnormal workflow work can be done.

[0073] Step 303: Control the mobile monitoring device corresponding to the adjacent node number to execute the actual workflow while starting, and synchronize the mobile monitoring device corresponding to the adjacent node number as the mobile monitoring device corresponding to the abnormal node number to communicate.

[0074] Step 304: When an abnormal workflow has been sent to the mobile monitoring device corresponding to the adjacent node number, the adjacent node number in the same area is searched again until the adjacent node number does not exist or no abnormal workflow has been sent to the mobile monitoring device corresponding to the adjacent node number.

[0075] When an abnormal workflow is sent to the mobile monitoring device corresponding to the adjacent node number, it means that the mobile monitoring device corresponding to the adjacent node number has been moved to other areas for concurrent monitoring. In order to avoid unnecessary return trips and waste of time, you can look for mobile monitoring devices on the other side or other adjacent ones.

[0076] Reference Figure 5 , the method of enabling the fixed receiving device corresponding to the node number of the current area includes: Step 400: When the central computer room receives the container storage information transmitted by the fixed receiving device corresponding to the current regional node number, the fixed receiving device corresponding to the current regional node number is normally activated.

[0077] When the central computer room receives the container storage information transmitted by the fixed receiving device corresponding to the current regional node number, it indicates that the transmission is normal at this time, and the fixed receiving device is normal.

[0078] Step 401: When the central computer room does not receive the container storage information transmitted by the fixed receiving device corresponding to the current area node number and the fixed receiving device corresponding to the current area node number does not receive the container storage information transmitted by the mobile monitoring device corresponding to the current node number, enable any idle mobile monitoring device corresponding to the same area node number to execute the abnormal workflow and wirelessly transmit it to the fixed receiving device, or enable any idle mobile monitoring device corresponding to the abnormal different area node number to execute the abnormal workflow and wirelessly transmit it to the fixed receiving device.

[0079] The fact that the central computer room does not receive the container storage information transmitted by the fixed receiving device corresponding to the current area node number indicates that an abnormality has occurred at the front end. Furthermore, the fixed receiving device corresponding to the current area node number does not receive the container storage information transmitted by the mobile monitoring device corresponding to the current node number, which indicates that an abnormality has occurred at the front end. The front end is the mobile monitoring device, so only the problem of the mobile monitoring device needs to be solved, that is, steps 300-304.

[0080] Step 402: When the central computer room does not receive the container storage information transmitted by the fixed receiving device corresponding to the current regional node number but the fixed receiving device corresponding to the current regional node number receives the container storage information transmitted by the mobile monitoring device corresponding to the current node number, the current node number is defined as an external node number.

[0081] The central computer room did not receive the container storage information transmitted by the fixed receiving device corresponding to the current area node number, indicating that an abnormality occurred at the front end. Furthermore, the fixed receiving device corresponding to the current area node number received the container storage information transmitted by the mobile monitoring device corresponding to the current node number, indicating that the mobile monitoring device at the front end is normal, so the problem can only be on the fixed receiving device.

[0082] Step 403: searching for the corresponding adjacent area node number from a preset adjacent database based on the external node number.

[0083] The adjacent area node number is the number of the fixed receiving device in the area closest to the node monitoring range corresponding to the external node number. The database stores the mapping relationship between the external node number and the adjacent area node number. The staff in this field compares the distance between the actual node monitoring range and the location of the fixed receiving device installed in each area to obtain the number of the closest fixed receiving device. When the system receives the corresponding external node number, it automatically finds the corresponding adjacent area node number from the database and outputs it.

[0084] Step 404: After establishing a wireless connection between the mobile monitoring device corresponding to the external node number and the node number in the adjacent area, the fixed receiving device corresponding to the node number in the adjacent area is enabled.

[0085] A wireless connection is established between the mobile monitoring device corresponding to the external node number and the adjacent area node number, so that the mobile monitoring device corresponding to the external node number can send the corresponding container storage information to the fixed receiving device corresponding to the adjacent area node number.

[0086] Reference Figure 6 , a method for enabling a fixed receiving device corresponding to an adjacent area node number after establishing a wireless connection between a mobile monitoring device corresponding to an external node number and an adjacent area node number includes: Step 500: Find the corresponding adjacent receiving area from a preset area database based on the adjacent area node number.

[0087] The adjacent receiving area is the area where the fixed receiving device corresponding to the adjacent area node number can receive the container storage information, generally a circle with the fixed receiving device as the center. The mapping relationship between the adjacent area node number and the adjacent receiving area is stored in the database. It is set by the staff in this field based on experiments, that is, walking from the fixed receiving device to the outside until the wireless signal is interrupted, at this time it is a point on the boundary line of the adjacent receiving area, and the area inside after the boundary line is formed in sequence is the adjacent receiving area. When the system receives the corresponding adjacent area node number, it automatically finds the corresponding adjacent receiving area from the database for output.

[0088] Step 501: Find the corresponding external workflow from the work database based on the external node number.

[0089] The external workflow is the current workflow corresponding to the external node number. The establishment of the database is introduced in step 203. When the system receives the external node number, it automatically searches the database for the corresponding external workflow and outputs it.

[0090] Step 502: When the node monitoring range corresponding to the external node number falls into the adjacent receiving area, the fixed receiving device corresponding to the adjacent area node number is enabled, and a wireless connection is directly established between the mobile monitoring device corresponding to the external node number and the adjacent area node number.

[0091] When the node monitoring range corresponding to the external node number falls into the adjacent receiving area, it means that a wireless connection can be directly established within the monitoring range of the own node, and then a wireless connection is directly established between the mobile monitoring device corresponding to the external node number and the node number in the adjacent area.

[0092] Step 503: When the node monitoring range corresponding to the external node number partially falls into the adjacent receiving area, define the local node monitoring range that falls into as the local node monitoring range.

[0093] When the node monitoring range corresponding to the external node number partially falls into the adjacent receiving area, it means that only some areas within the node monitoring range are wirelessly connected, and other areas cannot be connected. In this case, it is necessary to connect in the connectable area and not connect in the rest of the time.

[0094] Step 504: When the mobile monitoring device corresponding to the external node number executes the external workflow and falls within the local node monitoring range, the fixed receiving device corresponding to the adjacent area node number is enabled, and a wireless connection is directly established between the mobile monitoring device corresponding to the external node number and the adjacent area node number.

[0095] When the mobile monitoring device corresponding to the external node number executes the external workflow and falls within the monitoring range of the local node, wireless connection transmission can be achieved.

[0096] Step 505: When the node monitoring range corresponding to the external node number does not fall into the adjacent receiving area at all, a transmission information flow is formed based on the node monitoring range corresponding to the external node number, the adjacent receiving area and the preset walking area.

[0097] The information transmission process is the process of moving from the node monitoring range to the adjacent receiving area and transmitting data. The walking area is the area where the mobile monitoring device can walk. The formation method is the process of extending the node monitoring range according to the walking area until it enters the adjacent receiving area.

[0098] When the node monitoring range corresponding to the external node number does not fall into the adjacent receiving area at all, it means that a connection cannot be established directly when performing an external workflow, and it needs to be moved to the adjacent receiving area, so a transmission information flow needs to be formed.

[0099] Step 506: Control the mobile monitoring device corresponding to the external node number to execute the external workflow and then execute the information transmission process, and after executing the information transmission process, enable the fixed receiving device corresponding to the adjacent area node number, and directly establish a wireless connection between the mobile monitoring device corresponding to the external node number and the adjacent area node number.

[0100] Reference Figure 7 , the method of controlling the mobile monitoring device corresponding to the external node number to execute the external workflow and then execute the information transmission process includes: Step 600: Determine the monitoring range of the adjacent nodes based on the node monitoring range corresponding to the external node number and the path corresponding to the transmission information flow.

[0101] The passing adjacent node monitoring range is the node monitoring range in the adjacent receiving area, and the node monitoring range and the path corresponding to the transmission information flow overlap. The determination method is a comparison method, that is, if the two coordinates are the same, it is the passing adjacent node monitoring range.

[0102] Step 601: Determine the number of the passing adjacent node based on the passing adjacent node monitoring range when the passing adjacent node monitoring range exists.

[0103] The number of the passing adjacent node is the number of the mobile monitoring device corresponding to the monitoring range of the passing adjacent node. The determination method can be a database search method.

[0104] When the monitoring range of the adjacent node exists, it means that the device will pass through this monitoring area, so the original monitoring device may not be needed at all.

[0105] Step 602: Based on the adjacent node number passed, the corresponding adjacent workflow is searched from the work database.

[0106] The passing adjacent workflow is the workflow corresponding to the passing adjacent node number. The establishment of the database is introduced in step 203 and will not be repeated here. When the system receives the corresponding passing adjacent node number, it automatically searches the database for the corresponding passing adjacent workflow and outputs it.

[0107] Step 603: Control the external node number to execute the external workflow, the adjacent workflow and the information transmission process, and update the adjacent node number to the idle abnormal different zone node number.

[0108] The process of controlling the external node number to execute the adjacent workflow is interspersed in the middle of the information transmission process, that is, it starts to execute when it reaches the monitoring range of the adjacent node. At this time, a mobile monitoring device can be moved while monitoring the container storage information on the road, and a mobile monitoring device can be vacated for emergency use.

[0109] Step 604: When the neighboring node monitoring range does not exist, the mobile monitoring device corresponding to the external node number is controlled to execute the external workflow and then execute the information transmission process.

[0110] If it does not exist, it means that there is no need to undertake the monitoring tasks of other areas at this time, and the information transmission process can be directly executed.

[0111] Reference Figure 8 , the method of controlling the external node number to execute the external work process, pass through the adjacent work process and transmit the information process, and updating the passed adjacent node number to the idle abnormal different area node number includes: Step 700: Determine the number of nodes passing through the adjacent node number.

[0112] The number of nodes is the number of adjacent node numbers passed through. This is the possibility of the transmission information flow. Generally, there is only one path corresponding to a transmission information flow, because the node range corresponding to the adjacent node number passed through must be able to connect wirelessly. Therefore, once the first adjacent node number passed through exists in a transmission information flow, it means that the node range corresponding to this adjacent node number passed through can already be connected wirelessly, so there is no need to move further. The method of determination is to count the adjacent node numbers that appear.

[0113] Step 701: When the number of nodes is 1, the external node number is controlled to execute the external workflow, the adjacent workflow and the information transmission workflow, and the adjacent node number is updated to the idle abnormal different zone node number.

[0114] When the number of nodes is 1, it means there is only one information transmission process, so there is no other choice. You can directly control the external node number to execute the external workflow, pass through the adjacent workflow and transmit information process, and update the adjacent node number to the idle abnormal different zone node number.

[0115] Step 702: When the number of nodes is greater than 1 and one of the passing adjacent node numbers is an abnormal node number, the passing adjacent node number is defined as the target adjacent node number, and the corresponding passing adjacent workflow is defined as the target adjacent workflow.

[0116] When the number of points is greater than 1 and one of the adjacent nodes is an abnormal node number, it means that when passing through the node range corresponding to the abnormal node number, the task required to be performed by the idle abnormal node number in different areas can be completed at the same time, and there is no need to determine the idle abnormal node number in different areas separately.

[0117] Step 703: Control the external node number to execute the external workflow, target adjacent workflow and transmission information workflow.

[0118] Step 704: When the number of nodes is greater than 1 and none of the transit adjacent node numbers is an abnormal node number, a transit adjacent node number is arbitrarily selected, and the external node number is controlled to execute the external workflow, the transit adjacent workflow and the transmission information workflow, and the transit adjacent node number is updated to an idle abnormal different zone node number.

[0119] When the number of nodes is greater than 1 and none of the adjacent nodes passed through is an abnormal node number, it means that all transmission information processes are the same at this time, so you can directly choose any one.

[0120] Based on the same inventive concept, an embodiment of the present invention provides a container storage information communication system.

[0121] Reference Fig. 9 , a container storage information communication system, comprising: An acquisition module is used to obtain container placement areas and container storage information; A memory for storing a program of a control method of a container storage information communication method; The program in the memory can be loaded and executed by the processor to implement a control method for a container storage information communication method.

[0122] Those skilled in the art can clearly understand that for the convenience and simplicity of description, only the division of the above-mentioned functional modules is used as an example. In actual applications, the above-mentioned functions can be assigned to different functional modules as needed, that is, the internal structure of the device is divided into different functional modules to complete all or part of the functions described above. The specific working process of the system, device and unit described above can refer to the corresponding process in the aforementioned method embodiment, and will not be repeated here.

[0123] An embodiment of the present invention provides a computer-readable storage medium storing a computer program that can be loaded by a processor and executed by a container storage information communication method.

[0124] Computer storage media include, for example, various media that can store program codes, such as USB flash drives, mobile hard disks, read-only memories (ROM), random access memories (RAM), magnetic disks or optical disks.

[0125] Based on the same inventive concept, an embodiment of the present invention provides an intelligent terminal, including a memory and a processor, wherein the memory stores a computer program that can be loaded by the processor and executed by a container storage information communication method.

[0126] The above are all preferred embodiments of the present application, and are not intended to limit the protection scope of the present application. Any feature disclosed in this specification (including the abstract and drawings), unless otherwise stated, can be replaced by other equivalent or alternative features with similar purposes. That is, unless otherwise stated, each feature is only an example of a series of equivalent or similar features.

Claims

1. A container storage information communication method, characterized in that: include: Get the container placement area; Based on the container placement area and the preset node monitoring range, a node number corresponding to the successfully matched node monitoring range is obtained, wherein the node number is the number of the mobile monitoring device, and a mapping relationship is formed between the node monitoring range and the node number, and the node number is defined as the current node number; Based on the current node number, a corresponding current area node number is searched from a preset inclusion database, and the fixed receiving device corresponding to the current area node number communicates wirelessly with the mobile monitoring device corresponding to the current node number; Enable the mobile monitoring device corresponding to the current node number and the fixed receiving device corresponding to the current area node number, so that the mobile monitoring device corresponding to the current node number receives the container storage information and wirelessly transmits it to the fixed receiving device corresponding to the current area node number, and the fixed receiving device corresponding to the current area node number transmits the container storage information to the central computer room via wired optical cable.

2. A container storage information communication method according to claim 1, characterized in that: Methods for enabling the mobile monitoring device corresponding to the current node number include: When the fixed receiving device corresponding to the node number of the current area receives the container storage information transmitted by the mobile monitoring device corresponding to the current node number, the mobile monitoring device corresponding to the current node number is normally activated; When the fixed receiving device corresponding to the current regional node number does not receive the container storage information transmitted by the mobile monitoring device corresponding to the current node number, the current node number is defined as an abnormal node number; Based on the abnormal node number, the corresponding abnormal node number in the same area is found from the preset same area database; Find the corresponding abnormal workflow from the preset work database based on the abnormal node number; Based on the comparison between the abnormal node number in the same area and the current node number, an abnormal node number in the same area that is not the current node number is obtained, and the abnormal node number in the same area is defined as an idle node number in the same area; When an idle abnormal node number exists, a mobile monitoring device corresponding to any idle node number in the same area is enabled to execute the abnormal workflow and transmit it wirelessly to a fixed receiving device; When the idle same-zone node number does not exist, the corresponding abnormal foreign-zone node number is found from the preset foreign-zone database based on the abnormal node number; Based on the comparison between the abnormal foreign zone node number and the current node number, an abnormal foreign zone node number that is not the current node number is obtained, and the abnormal foreign zone node number is defined as an idle abnormal foreign zone node number; Enable the mobile monitoring device corresponding to any idle abnormal different zone node number to execute the abnormal workflow and transmit it wirelessly to the fixed receiving device.

3. A container storage information communication method according to claim 2, characterized in that: Also included is an information communication method when both the idle abnormal node number and the idle abnormal different-area node number do not exist, the method comprising: Based on the node monitoring range corresponding to the abnormal node number and the node monitoring range corresponding to the abnormal same-area node number or the abnormal different-area node number, an analysis is performed to obtain the abnormal same-area node number or the abnormal different-area node number that is adjacent and belongs to the same direction, and the abnormal same-area node number or the abnormal different-area node number is defined as an adjacent node number; Find the corresponding adjacent workflow from the work database based on the adjacent node number; When no abnormal workflow has been sent to the mobile monitoring device corresponding to the adjacent node number, the abnormal workflow is added to the adjacent workflow to form an actual workflow; Control the mobile monitoring device corresponding to the adjacent node number to execute the actual work process at the same time of startup, and synchronize the mobile monitoring device corresponding to the adjacent node number as the mobile monitoring device corresponding to the abnormal node number to communicate; When an abnormal workflow has been sent to the mobile monitoring device corresponding to the adjacent node number, the adjacent node number in the same area is searched again until the adjacent node number does not exist or no abnormal workflow has been sent to the mobile monitoring device corresponding to the adjacent node number.

4. A container storage information communication method according to claim 3, characterized in that: Methods for enabling the fixed receiving device corresponding to the node number of the current area include: When the central computer room receives the container storage information transmitted by the fixed receiving device corresponding to the current regional node number, the fixed receiving device corresponding to the current regional node number is normally activated; When the central computer room does not receive the container storage information transmitted by the fixed receiving device corresponding to the current regional node number and the fixed receiving device corresponding to the current regional node number does not receive the container storage information transmitted by the mobile monitoring device corresponding to the current node number, any mobile monitoring device corresponding to an idle node number in the same area is activated to execute the abnormal workflow and transmit it wirelessly to the fixed receiving device, or any mobile monitoring device corresponding to an idle abnormal node number in a different area is activated to execute the abnormal workflow and transmit it wirelessly to the fixed receiving device; When the central computer room does not receive the container storage information transmitted by the fixed receiving device corresponding to the current regional node number but the fixed receiving device corresponding to the current regional node number receives the container storage information transmitted by the mobile monitoring device corresponding to the current node number, the current node number is defined as an external node number; Based on the external node number, the corresponding adjacent area node number is found from the preset adjacent database; After establishing a wireless connection between the mobile monitoring device corresponding to the external node number and the node number of the adjacent area, the fixed receiving device corresponding to the node number of the adjacent area is enabled.

5. A container storage information communication method according to claim 4, characterized in that: The method of establishing a wireless connection between a mobile monitoring device corresponding to an external node number and a node number in an adjacent area and then enabling a fixed receiving device corresponding to the node number in the adjacent area includes: Find the corresponding adjacent receiving area from the preset area database based on the adjacent area node number; Find the corresponding external workflow from the work database based on the external node number; When the node monitoring range corresponding to the external node number falls into the adjacent receiving area, the fixed receiving device corresponding to the node number in the adjacent area is enabled, and a wireless connection is directly established between the mobile monitoring device corresponding to the external node number and the node number in the adjacent area; When the node monitoring range corresponding to the external node number partially falls into the adjacent receiving area, the local node monitoring range that falls into is defined as the local node monitoring range; When the mobile monitoring device corresponding to the external node number executes the external workflow and falls within the monitoring range of the local node, the fixed receiving device corresponding to the adjacent area node number is enabled, and a wireless connection is directly established between the mobile monitoring device corresponding to the external node number and the adjacent area node number; When the node monitoring range corresponding to the external node number does not fall into the adjacent receiving area at all, a transmission information flow is formed based on the node monitoring range corresponding to the external node number, the adjacent receiving area and the preset walking area; The mobile monitoring device corresponding to the external node number is controlled to execute the external workflow and then execute the information transmission process, and after executing the information transmission process, the fixed receiving device corresponding to the adjacent area node number is enabled, and a wireless connection is directly established between the mobile monitoring device corresponding to the external node number and the adjacent area node number.

6. A container storage information communication method according to claim 5, characterized in that: The method of controlling the mobile monitoring device corresponding to the external node number to execute the external workflow and then execute the information transmission process includes: Determine the monitoring range of the adjacent nodes based on the node monitoring range corresponding to the external node number and the path corresponding to the transmission information flow; When a monitoring range of the passing adjacent node exists, determining the number of the passing adjacent node based on the monitoring range of the passing adjacent node; Based on the number of the adjacent node passed, the corresponding adjacent workflow is found from the work database; Control the external node number to execute the external workflow, the adjacent workflow and the information transmission process, and update the adjacent node number to the idle abnormal node number; When the adjacent node monitoring range does not exist, the mobile monitoring device corresponding to the external node number is controlled to execute the external work process and then execute the information transmission process.

7. A container storage information communication method according to claim 6, characterized in that: The method of controlling the external node number to execute the external work process, pass through the adjacent work process and transmit the information process, and updating the passed adjacent node number to the idle abnormal different area node number includes: Determine the number of nodes passing through adjacent node numbers; When the number of nodes is 1, the external node number is controlled to execute the external workflow, the adjacent workflow and the information transmission process, and the adjacent node number is updated to the idle abnormal node number in the different area; When the number of nodes is greater than 1 and one of the passing adjacent node numbers is an abnormal node number, the passing adjacent node number is defined as the target adjacent node number, and the corresponding passing adjacent workflow is defined as the target adjacent workflow; Control the external node number to execute the external workflow, target adjacent workflow and transmission information workflow; When the number of nodes is greater than 1 and none of the passing adjacent node numbers is an abnormal node number, a passing adjacent node number is randomly selected, and the external node number is controlled to execute the external workflow, the passing adjacent workflow and the transmission information workflow, and the passing adjacent node number is updated to an idle abnormal different zone node number.

8. A container storage information communication system, characterized in that: include: An acquisition module is used to obtain container placement areas and container storage information; A memory for storing a program of a control method of a container storage information communication method according to any one of claims 1 to 7; The program in the processor memory can be loaded and executed by the processor to implement the control method of the container storage information communication method as described in any one of claims 1 to 7.

9. Intelligent terminal, characterized in that: The method comprises a memory and a processor, wherein the memory stores a computer program that can be loaded by the processor and executes a container storage information communication method as claimed in any one of claims 1 to 7.

10. A computer-readable storage medium, characterized in that A computer program is stored which can be loaded by a processor and executes a container storage information communication method as claimed in any one of claims 1 to 7.