Logistics cargo boxing management method and system based on multimodal transport
Through camera array detection and RFID tag matching, combined with three-dimensional model calculation, the problems of damaged items and inaccurate progress in logistics transportation are solved, and efficient logistics management is achieved.
Patent Information
- Application Number
- CN202510574198.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-06
- Publication Date
- 2025-06-03
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the logistics and transportation, the prior art does not distinguish the type of items, which makes the items easily damaged and squeezed, and at the same time, it is impossible to accurately obtain the cargo delivery progress, which reduces work efficiency and user experience.
The preset camera array detects item information in real time, generates target RFID tags, and matches the appropriate carrier, and calculates the loading progress in combination with the three-dimensional model to realize item classification and transportation management.
实现了物品的快速分类和运输,提高了运输效率和运载进度的准确性,提升了工作效率和用户体验。
Smart Images

Figure CN120087864A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of logistics transportation, and particularly relates to a method and system for packing and managing logistics goods based on multimodal transport. Background Art
[0002] With the progress of technology and the rapid development of productivity, people have also made rapid progress in the field of logistics transportation, thus being able to significantly shorten the time for transporting items.
[0003] Among them, in order to improve the transportation efficiency of items, the prior art has constructed corresponding logistics centers, and has also configured containers for storing items and carrier vehicles for transporting containers, so that each container can be transported by the carrier vehicle correspondingly.
[0004] Furthermore, during the process of packing items in the prior art, most of the time, different types of goods are stored in the same container at the same time. After the container is full, each container is transported in turn by the carrier vehicle. However, this transportation method, due to not distinguishing the types of items, easily causes damage and extrusion of items, and at the same time, it is impossible to accurately obtain the transportation progress of the goods, correspondingly reducing the work efficiency and the user experience. Summary of the Invention
[0005] Based on this, the purpose of the present invention is to provide a method and system for packing and managing logistics goods based on multimodal transport, so as to solve the problems in the prior art that during the transportation process, due to not distinguishing the types of items, it is easy to cause damage and extrusion of items, and at the same time, it is impossible to accurately obtain the transportation progress of the goods.
[0006] The first aspect of the embodiment of the present invention proposes: A method for packing and managing logistics goods based on multimodal transport, wherein the method includes: When it is detected in real time that a target item needs to be warehoused, a physical image corresponding to the target item is detected in real time through a preset camera array, and target item information corresponding to the target item is determined in real time according to the physical image; Based on a preset rule, a target RFID tag corresponding to the target item is generated in real time according to the target item information, and a target carrier vehicle suitable for the target item is matched in real time in a preset database according to the target RFID tag; The target item is correspondingly transferred into the target carrier vehicle, and corresponding loading progress information is generated in real time, and the target RFID tag is unique.
[0007] The beneficial effects of the present invention are as follows: The target item information of the items to be warehoused can be objectively and accurately collected through the pre-set camera array. Based on this, in order to facilitate the subsequent classification and transportation of items, the target RFID tag corresponding to the current target item information can be generated in real time according to the pre-set rules. Based on this, the appropriate target carrier vehicle can be correspondingly matched, so that the classification and transportation of items can be completed quickly and effectively, and at the same time, the logistics progress of the items can be obtained, thereby correspondingly improving the work efficiency.
[0008] Further, the step of generating the target RFID tag corresponding to the target item in real time according to the preset rules based on the target item information includes: When the target item information is obtained in real time, the item type information and item size information included in the target item information are detected in real time, and it is determined in real time whether the target item is a fragile item according to the item type information; If it is determined in real time according to the item type information that the target item is a fragile item, the fragile level corresponding to the target item is determined in real time according to the item type information, and the first tag adapted to the target item is generated in real time according to the fragile level; The target RFID tag is generated correspondingly according to the first tag and the item size information.
[0009] Further, the step of generating the target RFID tag correspondingly according to the first tag and the item size information includes: When the item size information is obtained in real time, the target volume corresponding to the target item is calculated in real time according to the item size information; A corresponding second tag is added to the target item in real time according to the size of the target volume. The item size information includes the three-dimensional size corresponding to the target item; The first tag and the second tag are fused to correspondingly generate the target RFID tag.
[0010] Further, the step of fusing the first tag and the second tag to correspondingly generate the target RFID tag includes: The first string included in the first tag is detected in real time, and the first string is subjected to a first hash operation to generate a corresponding first hash sequence in real time; The second string included in the second tag is detected in real time, and the second string is subjected to a second hash operation to generate a corresponding second hash sequence in real time; Perform a coincidence comparison process on the first hash sequence and the second hash sequence to correspondingly remove the same hash values between the first hash sequence and the second hash sequence, and correspondingly retain the different hash values between the first hash sequence and the second hash sequence, and generate the target RFID tag corresponding to each of the different hash values.
[0011] Further, the step of generating the target RFID tag corresponding to each of the different hash values includes: When each of the different hash values is obtained in real time, combine each of the different hash values into a corresponding target hash sequence in real time; Convert the target hash sequence into a corresponding RFID sequence in real time through a preset algorithm, and convert the RFID sequence into a corresponding target text in real time to correspondingly generate the target RFID tag.
[0012] Further, the step of correspondingly transferring the target item to the target transport vehicle and generating corresponding loading progress information in real time includes: When the target transport vehicle is determined in real time, create a corresponding three-dimensional model of the carriage of the target transport vehicle in real time through a preset three-dimensional program; When the target item is detected, create a corresponding three-dimensional model of the item of the target item in real time through the preset three-dimensional program; Generate the loading progress information according to the three-dimensional model of the item and the three-dimensional model of the carriage, and the loading progress information includes specific values.
[0013] Further, the step of generating the loading progress information according to the three-dimensional model of the item and the three-dimensional model of the carriage includes: When the three-dimensional model of the carriage is obtained in real time, determine the corresponding carriage volume according to the three-dimensional model of the carriage in real time; When the three-dimensional model of the item is obtained in real time, determine the corresponding occupied volume according to the three-dimensional model of the item in real time; During the process of transferring the target item to the target transport vehicle, calculate the target ratio between the occupied volume and the carriage volume in real time, and convert the target ratio into the loading progress information in real time.
[0014] The second aspect of the embodiments of the present invention proposes: A logistics container management system based on multimodal transport, wherein the system includes: A detection module, which is used to, when it is detected in real time that the target item needs to be stored in the warehouse, detect in real time an entity image corresponding to the target item through a preset camera array, and determine in real time target item information corresponding to the target item according to the entity image; A matching module, which is used to generate in real time a target RFID tag corresponding to the target item based on a preset rule according to the target item information, and match in real time a target transport vehicle suitable for the target item in a preset database according to the target RFID tag; A processing module, which is used to transfer the target item to the target transport vehicle correspondingly and generate corresponding loading progress information in real time, and the target RFID tag is unique.
[0015] Further, the matching module is specifically used for: When the target item information is obtained in real time, detect in real time the item type information and item size information contained in the target item information, and judge in real time whether the target item is a fragile item according to the item type information; If it is judged in real time according to the item type information that the target item is a fragile item, determine in real time a fragility level corresponding to the target item according to the item type information, and generate a first tag suitable for the target item in real time according to the fragility level; Generate the target RFID tag according to the first tag and the item size information correspondingly.
[0016] Further, the matching module is specifically used for: When the item size information is obtained in real time, calculate in real time a target volume corresponding to the target item according to the item size information; Add a corresponding second tag to the target item in real time according to the size of the target volume, and the item size information contains three-dimensional dimensions corresponding to the target item; Perform a fusion process on the first tag and the second tag to generate the target RFID tag correspondingly.
[0017] Further, the matching module is specifically used for: Detect in real time a first string contained in the first tag, and perform a first hash operation on the first string to generate a corresponding first hash sequence in real time; Detect in real time a second string contained in the second tag, and perform a second hash operation on the second string to generate a corresponding second hash sequence in real time; Perform a coincidence comparison process on the first hash sequence and the second hash sequence to correspondingly remove the same hash values between the first hash sequence and the second hash sequence, and correspondingly retain the different hash values between the first hash sequence and the second hash sequence, and generate the target RFID tag according to each of the different hash values.
[0018] Further, the matching module is specifically configured to: When each of the different hash values is obtained in real time, combine each of the different hash values into a corresponding target hash sequence in real time; Convert the target hash sequence into a corresponding RFID sequence in real time through a preset algorithm, and convert the RFID sequence into a corresponding target text in real time to correspondingly generate the target RFID tag.
[0019] Further, the processing module is specifically configured to: When the target transport vehicle is determined in real time, create a corresponding three-dimensional model of the carriage in real time through a preset three-dimensional program; When the target item is detected, synchronously create a corresponding three-dimensional model of the item through the preset three-dimensional program; Generate the loading progress information according to the three-dimensional model of the item and the three-dimensional model of the carriage, and the loading progress information includes specific values.
[0020] Further, the processing module is specifically configured to: When the three-dimensional model of the carriage is obtained in real time, determine the corresponding carriage volume in real time according to the three-dimensional model of the carriage; When the three-dimensional model of the item is obtained in real time, determine the corresponding occupied volume in real time according to the three-dimensional model of the item; During the process of transferring the target item to the target transport vehicle, calculate the target ratio between the occupied volume and the carriage volume in real time, and convert the target ratio into the loading progress information in real time.
[0021] The third aspect of the embodiments of the present invention proposes: A computer, including a memory, a processor, and a computer program stored on the memory and executable on the processor, wherein when the processor executes the computer program, it implements the above-mentioned method for managing the loading of logistics goods based on multimodal transport.
[0022] The fourth aspect of the embodiments of the present invention proposes: A readable storage medium, on which a computer program is stored, wherein when the program is executed by a processor, it implements the above-mentioned method for managing the loading of logistics goods based on multimodal transport.
[0023] Additional aspects and advantages of the present invention will be given in part in the following description, become apparent in part from the following description, or be learned through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 A flowchart of a logistics cargo packing management method based on multimodal transport provided for the first embodiment of the present invention; Figure 2 A structural block diagram of a logistics cargo packing management system based on multimodal transport provided for the third embodiment of the present invention.
[0025] The following specific embodiments will further illustrate the present invention in conjunction with the above-mentioned drawings. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] For the convenience of understanding the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. Several embodiments of the present invention are shown in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, these embodiments are provided so that the disclosure of the present invention is thorough and complete.
[0027] It should be noted that when an element is referred to as being "fixedly provided on" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.
[0028] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present invention belongs. The terms used herein in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.
[0029] Please refer to Figure 1 , which shows a logistics cargo packing management method based on multimodal transport provided for the first embodiment of the present invention. The logistics cargo packing management method provided in this embodiment can complete the corresponding classification when the goods are warehoused, match the corresponding transport vehicle at the same time, and can monitor the loading progress of the transport vehicle in real time, thereby correspondingly improving the work efficiency.
[0030] Specifically, this embodiment provides: A logistics cargo packing management method based on multimodal transport, specifically including the following steps: Step S10, when it is detected in real time that the target item needs to be stored in the warehouse, the entity image corresponding to the target item is detected in real time through a preset camera array, and the target item information corresponding to the target item is determined in real time according to the entity image; Step S20, based on a preset rule, a target RFID tag corresponding to the target item is generated in real time according to the target item information, and a target transport vehicle suitable for the target item is matched in real time in a preset database according to the target RFID tag; Step S30, the target item is correspondingly transferred into the target transport vehicle, and a corresponding loading progress information is generated in real time, and the target RFID tag is unique.
[0031] Specifically, in this embodiment, it should be noted first that in order to quickly and effectively complete the classification of each item and complete the corresponding transportation at the same time, it is necessary to obtain the item information corresponding to each item in real time. Based on this, subsequent parsing and processing can be carried out. Specifically, in order to accurately collect the item information corresponding to each item, the present invention will pre-set a corresponding camera array in the warehouse. In the actual application process, when the sensor detects in real time that a certain target item needs to be stored in the warehouse, the camera array will be enabled at this time. Specifically, the camera array can collect the images corresponding to the current target item from different angles respectively, and can perform corresponding combination inside it, so as to finally generate an entity image proportional to the current target item. Based on this, corresponding recognition processing can be carried out on the current entity image. Specifically, the type, material, size, color and other information of the target item can be correspondingly recognized. Based on this, the present invention can obtain the target item information corresponding to the current target item in real time, and can perform corresponding analysis on the current target item information for subsequent processing.
[0032] Further, after the required target item information is obtained in real time through the above steps, the corresponding classification can be completed according to the target item information at this time. Specifically, the present invention can immediately generate a corresponding target RFID tag in real time according to the preset rules based on the target item information. Among them, according to the content contained in the target RFID tag, the corresponding target transport vehicle can be directly matched in real time in the preset database. Specifically, for the sake of easy understanding, for example, when the target item is detected in real time to be a fragile item, a transport vehicle capable of loading fragile items will be specifically matched, so as to ensure the integrity of the item. On this basis, the present invention can transfer the current target item to the interior of the current target transport vehicle in real time through the existing transmission system or robot, and can generate corresponding loading progress information in real time during the transfer process. And after detecting that the target transport vehicle is full, notify the target transport vehicle to transport the goods, thereby greatly improving the work efficiency.
[0033] Second Embodiment Further, the step of generating a target RFID tag corresponding to the target item in real time according to the preset rules based on the target item information includes: When the target item information is obtained in real time, the item type information and item size information correspondingly included in the target item information are detected in real time, and it is determined in real time whether the target item is a fragile item according to the item type information; If it is determined in real time according to the item type information that the target item is a fragile item, the fragile level corresponding to the target item is determined in real time according to the item type information, and a first tag adapted to the target item is generated in real time according to the fragile level; The target RFID tag is generated correspondingly according to the first tag and the item size information.
[0034] Further, the step of generating the target RFID tag correspondingly according to the first tag and the item size information includes: When the item size information is obtained in real time, the target volume corresponding to the target item is calculated in real time according to the item size information; A corresponding second tag is added to the target item in real time according to the size of the target volume. The item size information includes three-dimensional dimensions corresponding to the target item; The first tag and the second tag are fused to correspondingly generate the target RFID tag.
[0035] Further, the step of fusing the first tag and the second tag to correspondingly generate the target RFID tag includes: The first string included in the first tag is detected in real time, and the first string is subjected to a first hash operation to generate a corresponding first hash sequence in real time; The second string included in the second tag is detected in real time, and the second string is subjected to a second hash operation to generate a corresponding second hash sequence in real time; The first hash sequence and the second hash sequence are subjected to a coincidence comparison process to correspondingly remove the same hash values between the first hash sequence and the second hash sequence, and the different hash values between the first hash sequence and the second hash sequence are correspondingly retained, and the target RFID tag is generated correspondingly according to each of the different hash values.
[0036] Further, the step of generating the target RFID tag correspondingly according to each of the different hash values includes: When each of the different hash values is obtained in real time, a corresponding target hash sequence is combined in real time according to each of the different hash values; The target hash sequence is converted into a corresponding RFID sequence in real time through a preset algorithm, and the RFID sequence is converted into a corresponding target text in real time to generate the target RFID tag correspondingly.
[0037] Further, the step of correspondingly transferring the target item to the target transport vehicle and generating corresponding loading progress information in real time includes: When the target transport vehicle is determined in real time, a three-dimensional model of the carriage corresponding to the target transport vehicle is created in real time through a preset three-dimensional program; When the target item is detected, a three-dimensional model of the item corresponding to the target item is created synchronously through the preset three-dimensional program; The loading progress information is generated correspondingly according to the three-dimensional model of the item and the three-dimensional model of the carriage, and the loading progress information includes specific values.
[0038] Further, the step of generating the loading progress information correspondingly according to the three-dimensional model of the item and the three-dimensional model of the carriage includes: When the three-dimensional model of the carriage is obtained in real time, the corresponding carriage volume is determined in real time according to the three-dimensional model of the carriage; When the three-dimensional model of the item is obtained in real time, the corresponding occupied volume is determined in real time according to the three-dimensional model of the item; During the process of transferring the target item to the target transport vehicle, the target ratio between the occupied volume and the carriage volume is calculated in real time, and the target ratio is converted into the loading progress information in real time.
[0039] In addition, in this embodiment, it should also be noted that after the required target item information is obtained in real time through the above steps, it is necessary to immediately perform corresponding analysis and processing on the current target item information. Specifically, in order to objectively and reasonably complete the transportation of the current target item, the present invention will again extract the required item type information and item size information in real time according to the current target item information. Among them, it should be noted that according to this item type information, it is possible to determine in real time whether the target item is a fragile item. Specifically, for the sake of easy understanding, if it is determined in real time according to this item type information that the target item is a ceramic product or a glass product, etc., it can be determined in real time that the target item is a fragile item. Correspondingly, if not, it is determined that it is not a fragile item. At the same time, for the convenience of subsequent classification and transportation, among them, the present invention will define glass products as the first-level fragile grade, ceramic products as the second-level fragile grade, and other products with higher hardness as the third-level fragile grade. Based on this, the present invention can generate a first label corresponding to the current target item in real time according to this fragile grade. Similarly, after the required item size information is obtained in real time, the present invention can extract the length, width, and height corresponding to the above target item from this item size information. Based on this, the corresponding target volume can be directly calculated. Among them, it should be pointed out that during the transportation of the item, the volume of the item is one of the main factors affecting transportation. Based on this, the present invention will generate a second label corresponding to the current target item in real time according to this target volume. Based on this, the present invention can again perform a fusion process on the current first label and the second label. Specifically, after the first label is obtained in real time, the present invention will first extract the first string contained in this first label. At the same time, in order to improve the uniqueness of the subsequent created target RFID label, the present invention will first perform a hash operation on the current first string to generate a corresponding first hash sequence. Similarly, the present invention will detect in real time the second string contained in the current second label and perform a second hash operation on this second string to generate a corresponding second hash sequence in real time. Based on this, in order to avoid generating redundant data, the present invention will also perform a coincidence comparison process on the current first hash sequence and the second hash sequence, so as to be able to detect a number of identical hash values and a number of different hash values in real time between the current first hash sequence and the second hash sequence. Specifically, the present invention will remove the existing identical hash values and correspondingly retain the current number of different hash values. At the same time, the present invention can combine the current number of different hash values into a corresponding target hash sequence in real time, and will convert the current target hash sequence into a corresponding RFID sequence in real time through the existing DTW algorithm. On this basis, it can finally convert this RFID sequence into the required target text, so as to generate the above target RFID label.
[0040] Further, after the required RFID tags are generated in real time through the above steps, the target carrier vehicle suitable for the current target item can be quickly and accurately matched at this time, so that the transfer and loading of the target item can be carried out. Specifically, in order to accurately know the loading progress of the current target carrier vehicle, after the item is loaded in the present invention, a three-dimensional model of the carriage corresponding to the current target carrier vehicle will be created in real time through existing 3D software such as ug or solidworks. Similarly, a three-dimensional model of the item corresponding to the current target item can be created synchronously. Based on this, the present invention will simulate the loading process of the current target item in real time in the above 3D software. Specifically, the present invention will first determine the carriage volume corresponding to the interior of the current carriage three-dimensional model. Correspondingly, before the target item is transferred to the interior of the current carriage three-dimensional model, the present invention will determine the corresponding occupied volume in real time according to the three-dimensional model of the item. Based on this, during the actual loading process, when each target item is loaded into the interior of the current carriage three-dimensional model, the target ratio between the occupied volume of the target item and the carriage volume will be calculated once. Based on this, by performing an accumulation process on each target ratio calculated in real time, the loading progress of the current target carrier vehicle can be calculated in real time, so that the loading progress information can be generated correspondingly, thus significantly improving the work efficiency.
[0041] Please refer to Figure 2 , the third embodiment of the present invention provides: A logistics cargo packing management system based on multimodal transport, wherein the system includes: A detection module, configured to, when it is detected in real time that a target item needs to be warehoused, detect a physical image corresponding to the target item in real time through a preset camera array, and determine target item information corresponding to the target item in real time according to the physical image; A matching module, configured to generate a target RFID tag corresponding to the target item in real time based on a preset rule according to the target item information, and match a target carrier vehicle suitable for the target item in a preset database in real time according to the target RFID tag; A processing module, configured to transfer the target item to the target carrier vehicle correspondingly and generate corresponding loading progress information in real time, and the target RFID tag is unique.
[0042] Further, the matching module is specifically configured to: When the target item information is obtained in real time, detect the item type information and item size information included in the target item information in real time, and determine whether the target item is a fragile item in real time according to the item type information; If it is determined in real time according to the item type information that the target item is a fragile item, then the fragility level corresponding to the target item is determined in real time according to the item type information, and a first label adapted to the target item is generated in real time according to the fragility level; Generate the target RFID tag according to the first label and the item size information.
[0043] Further, the matching module is specifically configured to: When the item size information is obtained in real time, calculate the target volume corresponding to the target item in real time according to the item size information; Add a corresponding second label to the target item in real time according to the size of the target volume. The item size information includes the three-dimensional size corresponding to the target item; Perform a fusion process on the first label and the second label to correspondingly generate the target RFID tag.
[0044] Further, the matching module is specifically configured to: Detect the first string included in the first label in real time, and perform a first hash operation on the first string to generate a corresponding first hash sequence in real time; Detect the second string included in the second label in real time, and perform a second hash operation on the second string to generate a corresponding second hash sequence in real time; Perform a coincidence comparison process on the first hash sequence and the second hash sequence to correspondingly remove the same hash values between the first hash sequence and the second hash sequence, and correspondingly retain the different hash values between the first hash sequence and the second hash sequence, and generate the target RFID tag according to each of the different hash values.
[0045] Further, the matching module is specifically configured to: When each of the different hash values is obtained in real time, combine each of the different hash values into a corresponding target hash sequence in real time; Convert the target hash sequence into a corresponding RFID sequence in real time through a preset algorithm, and convert the RFID sequence into a corresponding target text in real time to generate the target RFID tag correspondingly.
[0046] Further, the processing module is specifically configured to: When the target transport vehicle is determined in real time, create a three-dimensional model of the carriage corresponding to the target transport vehicle in real time through a preset three-dimensional program; When the target item is detected, create a three-dimensional model of the item corresponding to the target item in real time through the preset three-dimensional program; Generate the loading progress information according to the three-dimensional model of the article and the three-dimensional model of the carriage, and the loading progress information includes specific values.
[0047] Further, the processing module is specifically configured to: When the three-dimensional model of the carriage is obtained in real time, the corresponding carriage volume is determined in real time according to the three-dimensional model of the carriage; When the three-dimensional model of the article is obtained in real time, the corresponding occupied volume is determined in real time according to the three-dimensional model of the article; During the process of transferring the target article to the target carrier vehicle, the target ratio between the occupied volume and the carriage volume is calculated in real time, and the target ratio is converted into the loading progress information in real time.
[0048] The fourth embodiment of the present invention provides a computer, including a memory, a processor, and a computer program stored on the memory and executable on the processor. When the processor executes the computer program, the method for packing and managing logistics goods based on multimodal transport as described above is implemented.
[0049] The fifth embodiment of the present invention provides a readable storage medium, on which a computer program is stored. When the program is executed by a processor, the method for packing and managing logistics goods based on multimodal transport as described above is implemented.
[0050] In summary, the method and system for packing and managing logistics goods based on multimodal transport provided by the above embodiments of the present invention can complete the corresponding classification when the articles are warehoused, match the corresponding carrier vehicle at the same time, monitor the loading progress of the carrier vehicle, and correspondingly improve the work efficiency.
[0051] It should be noted that the above-mentioned each module can be a functional module or a program module, and can be implemented by software or hardware. For the modules implemented by hardware, the above-mentioned each module can be located in the same processor; or the above-mentioned each module can also be located in different processors in any combination form.
[0052] The logic and / or steps represented in the flowchart or otherwise described herein can, for example, be considered a definitional sequence of executable instructions for implementing logical functions, which can be embodied in any computer-readable medium for use by or in connection with an instruction execution system, apparatus, or device, such as a computer-based system, a system including a processor, or other systems that can fetch and execute instructions from the instruction execution system, apparatus, or device. As used in this specification, a "computer-readable medium" can be any device that can contain, store, communicate, propagate, or transport the program for use by or in connection with the instruction execution system, apparatus, or device.
[0053] More specific examples (a non-exhaustive list) of the computer-readable medium include the following: an electrical connection part (electronic device) having one or more wirings, a portable computer diskette (magnetic device), a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber device, and a portable compact disc read-only memory (CDROM). Additionally, the computer-readable medium can even be paper or other suitable media on which the program can be printed, as the program can be obtained electronically, for example, by optically scanning the paper or other media, followed by editing, interpretation, or otherwise processing as appropriate, and then storing it in a computer memory.
[0054] It should be understood that the various parts of the present invention can be implemented by hardware, software, firmware, or a combination thereof. In the above-described embodiments, multiple steps or methods can be implemented by software or firmware stored in a memory and executed by a suitable instruction execution system. For example, if implemented in hardware, as in another embodiment, any one or a combination of the following techniques well known in the art can be used: discrete logic circuits having logic gate circuits for implementing logical functions on data signals, application specific integrated circuits having appropriate combinational logic gate circuits, programmable gate arrays (PGAs), field programmable gate arrays (FPGAs), etc.
[0055] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples", etc. means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0056] The above-described embodiments merely represent several implementation manners of the present invention. The description thereof is relatively specific and detailed, but it should not be construed as a limitation on the scope of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several modifications and improvements can still be made, and these all fall within the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the appended claims.
Claims
1. A logistics cargo packing management method based on multimodal transport, characterized in that: The method comprises: When it is detected in real time that a target item needs to be put into storage, a physical image corresponding to the target item is detected in real time through a preset camera array, and target item information corresponding to the target item is determined in real time based on the physical image; Generate a target RFID tag corresponding to the target item in real time according to the target item information based on a preset rule, and match a target carrier vehicle adapted to the target item in real time in a preset database according to the target RFID tag; The target items are transferred to the target transport vehicle accordingly, and corresponding loading progress information is generated in real time. The target RFID tag is unique.
2. The method for managing the cargo packing of multimodal transport logistics according to claim 1 is characterized by: The step of generating a target RFID tag corresponding to the target object in real time according to the target object information based on a preset rule comprises: When the target item information is acquired in real time, the item type information and item size information corresponding to the target item information are detected in real time, and whether the target item is a fragile item is determined in real time according to the item type information; If the target item is determined to be fragile in real time according to the item type information, a fragility level corresponding to the target item is determined in real time according to the item type information, and a first label adapted to the target item is generated in real time according to the fragility level; The target RFID tag is generated according to the first tag and the object size information.
3. The method for managing the packing of goods in logistics based on multimodal transport according to claim 2 is characterized by: The step of generating the target RFID tag according to the first tag and the object size information includes: When the object size information is acquired in real time, a target volume corresponding to the target object is calculated in real time according to the object size information; Adding a corresponding second tag to the target object in real time according to the size of the target volume, wherein the object size information includes a three-dimensional size corresponding to the target object; The first tag and the second tag are fused to generate the target RFID tag accordingly.
4. The method for managing the packing of goods for logistics based on multimodal transport according to claim 3 is characterized by: The step of fusing the first tag and the second tag to generate the target RFID tag accordingly includes: Detecting a first character string contained in the first tag in real time, and performing a hash operation on the first character string to generate a corresponding first hash sequence in real time; Detecting the second character string contained in the second tag in real time, and performing a secondary hash operation on the second character string to generate a corresponding second hash sequence in real time; The first hash sequence and the second hash sequence are subjected to overlap comparison processing to remove the same hash values between the first hash sequence and the second hash sequence, retain the different hash values between the first hash sequence and the second hash sequence, and generate the target RFID tag according to each of the different hash values.
5. The method for managing the packing of goods for logistics based on multimodal transport according to claim 4 is characterized by: The step of generating the target RFID tag according to each of the different hash values comprises: When each of the different hash values is obtained in real time, a corresponding target hash sequence is formed in real time according to each of the different hash values; The target hash sequence is converted into a corresponding RFID sequence in real time through a preset algorithm, and the RFID sequence is converted into a corresponding target text in real time to generate the target RFID tag accordingly.
6. The method for managing the packing of goods in logistics based on multimodal transport according to claim 1 is characterized by: The step of transferring the target objects to the target transport vehicle and generating corresponding loading progress information in real time includes: When the target transport vehicle is determined in real time, a three-dimensional model of a carriage corresponding to the target transport vehicle is created in real time through a preset three-dimensional program; When the target object is detected, a three-dimensional model of an object corresponding to the target object is synchronously created through the preset three-dimensional program; The loading progress information is generated according to the three-dimensional model of the object and the three-dimensional model of the carriage, and the loading progress information includes specific numerical values.
7. The method for managing the packing of goods for logistics based on multimodal transport according to claim 6 is characterized by: The step of correspondingly generating the loading progress information according to the three-dimensional model of the object and the three-dimensional model of the carriage comprises: When the three-dimensional model of the carriage is acquired in real time, the corresponding volume of the carriage is determined in real time according to the three-dimensional model of the carriage; When the three-dimensional model of the object is acquired in real time, the corresponding occupied volume is determined in real time according to the three-dimensional model of the object; During the process of transferring the target object to the target transport vehicle, a target ratio between the occupied volume and the compartment volume is calculated in real time, and the target ratio is converted into the loading progress information in real time.
8. A logistics cargo packing management system based on multimodal transport, characterized in that: The system comprises: A detection module is used to detect a physical image corresponding to the target object in real time through a preset camera array when it is detected in real time that the target object needs to be put into storage, and to determine the target object information corresponding to the target object in real time according to the physical image; A matching module, configured to generate a target RFID tag corresponding to the target item in real time according to the target item information based on a preset rule, and to match a target carrier vehicle adapted to the target item in real time in a preset database according to the target RFID tag; The processing module is used to transfer the target items to the target transport vehicle and generate corresponding loading progress information in real time. The target RFID tag is unique.
9. A computer comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that: When the processor executes the computer program, the multimodal logistics cargo packing management method according to any one of claims 1 to 7 is implemented.
10. A readable storage medium having a computer program stored thereon, characterized in that: When the program is executed by a processor, it implements the multimodal logistics cargo packing management method as described in any one of claims 1 to 7.
Citation Information
Patent Citations
Emergency logistics management system for acquiring state information of cargos
CN108038650A
Logistics cargo wireless tracking method and system based on RFID
CN110569929A
Goods storage method and system, readable storage medium and equipment
CN114331268A
Digital twinning-based logistics distribution vehicle three-dimensional loading method and system
CN117371737A
Management method and system for comprehensively recycling warehousing data
CN119203204A
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