Tobacco box identification analysis and application method
By embedding an RFID chip in the cigarette box and mapping it to the equipment using the No. 1 engineering code, the problems of resource waste and high labor intensity in the recycling of cigarette boxes are solved, achieving intelligent management and green carbon reduction, and reducing the cost of transformation.
Patent Information
- Application Number
- CN202510913288.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-03
- Publication Date
- 2025-11-04
AI Technical Summary
In existing technologies, cigarette boxes require manual removal and pasting of the No. 1 engineering code label when they are recycled, which leads to resource waste, high labor intensity, and low level of intelligent management.
An RFID chip is embedded in the cigarette box. The RFID device reads and maps the associated engineering code, enabling identification without the need for pasting. The RFID chip and the cigarette box can be reused in a cycle, and intelligent management can be achieved in conjunction with the RFID device.
It reduces resource waste, avoids damage to smoke boxes, reduces manual labor intensity, improves intelligent management, achieves green carbon reduction, and is compatible with existing operating procedures with low transformation costs.
Smart Images

Figure CN120893458A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the tobacco technical field, in particular to a method for identifying and analyzing a tobacco box. BACKGROUND
[0002] In the tobacco industry, the cigarette "No. 1 project code" is the "identity card" of the cigarette, and is the basis for realizing the whole process traceability of the cigarette. It is of great significance for the standardized management of cigarettes, the maintenance of the rights and interests of retailers and consumers, etc.
[0003] In the related art, the cigarette "No. 1 project code" is the key throughout the industrial production and commercial logistics. When the cigarette industrial enterprise produces, the No. 1 project code label is pasted on the tobacco box to code the tobacco box, so as to facilitate the subsequent logistics transportation and commercial allocation and operation. At present, with the green transformation of the tobacco industry, the use of recycled tobacco boxes effectively reduces the loss of tobacco boxes, but the current piece of tobacco packaging tobacco box circulation process still uses the physical pasting of "No. 1 project identification code" to identify the cigarette. However, it should be pointed out that when the tobacco box enters the next recycling stage, the No. 1 project code label needs to be manually torn off for secondary use, which causes resource waste and high labor intensity. SUMMARY
[0004] Therefore, it is necessary to provide a method for identifying and analyzing a tobacco box, which can reduce the waste of resources.
[0005] In a first aspect, the embodiments of the present application provide a method for identifying and analyzing a tobacco box, which comprises:
[0006] providing a tobacco box; the tobacco box is provided with a radio frequency identification chip, and the radio frequency identification chip stores a first code;
[0007] reading the first code in the radio frequency identification chip by using a radio frequency identification device; the radio frequency identification device is connected with a No. 1 project code system signal;
[0008] mapping and associating the first code with a No. 1 project code in the No. 1 project code system.
[0009] The identification analysis method of the tobacco box provided by the embodiment of the application, the tobacco box is subjected to coding operation by the cooperation of the radio frequency identification chip and the radio frequency identification device, and can replace the traditional pasted project code No. 1. The radio frequency identification chip and the tobacco box can be recycled together, so that resource waste can be reduced, green carbon reduction can be realized, in addition, the pasting and tearing of the code of the tobacco box can be avoided to cause damage or performance degradation of the tobacco box, secondly, the number of the tobacco box can be actively inspected without carrying the tobacco box by the radio frequency identification method, the degree of intelligent digitization is high, which is beneficial to reduce the labor intensity and cost, realize intensive management, in addition, the pasted project code No. 1 can be changed into the radio frequency identification project code No. 1, the identification method is improved in physics, and the current production operation process is not conflicted in logic, and the transformation cost is relatively low.
[0010] In one of the embodiments, after the first code and the project code No. 1 in the project code No. 1 system are mapped and associated, the method comprises:
[0011] The first code in the radio frequency identification chip is read by the radio frequency identification device, and whether the first code and the project code No. 1 are successfully mapped and associated is checked.
[0012] In one of the embodiments, after whether the first code and the project code No. 1 are successfully mapped and associated is checked, the method comprises: the first code in the radio frequency identification chip is read by the radio frequency identification device, and the project code No. 1 mapped and associated is queried according to the first code.
[0013] In one of the embodiments, the first code in the radio frequency identification chip is read by the radio frequency identification device, and the project code No. 1 mapped and associated is queried according to the first code, which comprises:
[0014] When the tobacco box is in the warehouse-in state, the first code in the radio frequency identification chip is read by the radio frequency identification device, and the project code No. 1 mapped and associated is queried according to the first code of the tobacco box in the warehouse-in state.
[0015] When the tobacco box is in the warehouse-out state, the first code in the radio frequency identification chip is read by the radio frequency identification device, and the project code No. 1 mapped and associated is queried according to the first code of the tobacco box in the warehouse-out state.
[0016] When the tobacco box is in the box-opening state, the first code in the radio frequency identification chip is read by the radio frequency identification device, and the project code No. 1 mapped and associated is queried according to the first code of the tobacco box in the box-opening state.
[0017] In one of the embodiments, after the first code in the radio frequency identification chip is read by the radio frequency identification device, and the project code No. 1 mapped and associated is queried according to the first code, the method comprises:
[0018] The cigarette case in the recycling state adopts the radio frequency identification device to read the first code in the radio frequency identification chip, and queries the first code of the cigarette case in the recycling state to obtain the first engineering code in the mapping association;
[0019] The first code of the cigarette case in the recycling state and the corresponding first engineering code are disassociated.
[0020] In one embodiment, the radio frequency identification device reads the first code in the radio frequency identification chip, and queries the first code to obtain the first engineering code in the mapping association, including:
[0021] The cigarette case in the inventory state adopts the radio frequency identification device to read the first code in the radio frequency identification chip, and queries the first code of the cigarette case in the inventory state to obtain the first engineering code in the mapping association, wherein the inventory state is between the storage state and the delivery state.
[0022] In one embodiment, the cigarette case in the inventory state is located in the warehouse;
[0023] The warehouse includes a plurality of first areas arranged in a horizontal direction; in the same first area, the first area includes a storage area and an isolation area, the isolation area is arranged around the outer periphery of the storage area, a radio frequency identification device is arranged in the storage area, and the radio frequency identification device in the storage area is a first radio frequency identification device, the first radio frequency identification device is located in the center of the storage area, the identification distance of the first radio frequency identification device is equal to the distance from the center to the edge of the storage area, and the first radio frequency identification device is used to identify the number of cigarette cases in the storage area.
[0024] In one embodiment, a transportation device is arranged in the warehouse, the transportation device is used to transport the cigarette case, the first radio frequency identification device and the transportation device are connected to the controller signal, the first radio frequency identification device identifies the number of cigarette cases in the corresponding storage area as a first number, and the controller obtains the information of the first number;
[0025] When the controller determines that the first number of any storage area is greater than or equal to a preset number, the controller is configured to control the transportation device to stop transporting the cigarette case to the storage area.
[0026] In one of the embodiments, the conveying device has a carrying surface for carrying the cigarette cases, a plurality of the second RFID devices are arranged on one side of the carrying surface, the second RFID devices are arranged on the carrying surface, the second RFID devices are arranged along the gravity direction at intervals, the projection of the second RFID devices on the carrying surface overlaps with the center of the carrying surface, the distance between two adjacent second RFID devices along the gravity direction is equal to twice the identification distance of the second RFID device, the distance between each second RFID device and the edge of the carrying surface along the horizontal direction, and the distance between the second RFID device closest to the carrying surface and the carrying surface along the gravity direction are all equal to the identification distance of the second RFID device, the second RFID devices are connected with the controller, the sum of the number of the cigarette cases on the carrying surface identified by all the second RFID devices is a second number, and the controller obtains the information of the second number;
[0027] When the controller determines that the sum of the second number and the first number of any storage area is greater than the preset number, the controller is configured to control the conveying device to stop conveying the cigarette cases to the storage area;
[0028] When the controller determines that the sum of the second number and the first number of any storage area is less than or equal to the preset number, the controller is configured to control the conveying device to continue conveying the cigarette cases to the storage area.
[0029] In one of the embodiments, when the controller determines that the first number is not equal to the actual storage number, the controller is configured to control the alarm to alarm, and the alarm is connected with the controller. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 The structure schematic diagram of the cigarette case after packaging is provided for the embodiments of the present application.
[0031] Figure 2 The structure schematic diagram of the cigarette case after unfolding is provided for the embodiments of the present application.
[0032] Figure 3 The A-A sectional view of Figure 2 .
[0033] Figure 4 The flowchart of the coding operation of the cigarette case is provided for the embodiments of the present application.
[0034] Figure 5 The flowchart of the reading operation of the cigarette case is provided for the embodiments of the present application.
[0035] Figure 6 The flowchart of the recycling operation of the cigarette case is provided for the embodiments of the present application.
[0036] Figure 7 The operation flowchart of the cigarette case is provided for the embodiments of the present application.
[0037] Explanation of reference signs:
[0038] 100, cigarette case;
[0039] 101, mounting portion;
[0040] 200, radio frequency identification chip. DETAILED DESCRIPTION
[0041] In order to make the above objectives, features and advantages of the present application more apparent, specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be practiced in a number of different ways beyond the specific embodiments described and should not be construed as being limited thereto as such modifications are intended to be included within the scope of the present application. Unless otherwise defined, all terms used in disclosing the application, including technical and scientific terms, should be interpreted as is customary in the art or as typically used by one of ordinary skill in the art to which this application pertains. It will be further understood that terms, such as those defined in commonly used dictionaries, should be interpreted as having a meaning that is consistent with their meaning in the context of the relevant art and the present disclosure, and will not be interpreted in an overly literal or overly formal sense unless expressly so defined herein.
[0042] In the description of the present application, it should be understood that, if these terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like appear, these terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0043] In addition, if these terms "first", "second" appear, these terms are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, if the term "a plurality of" appears, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise explicitly specified and limited.
[0044] In the present application, unless otherwise explicitly specified and limited, if the terms "mounting", "connection", "connection", "fixing" and the like appear, these terms should be interpreted broadly. For example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0045] In this application, unless otherwise explicitly specified and limited, if there is a description such as "on" or "under" of the first feature to the second feature, it means that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature "above", "over" and "on" the second feature can be that the first feature is directly above or obliquely above the second feature, or only indicates that the first feature is higher than the second feature in horizontal height. The first feature "below", "under" and "under" the second feature can be that the first feature is directly below or obliquely below the second feature, or only indicates that the first feature is lower than the second feature in horizontal height.
[0046] It should be noted that if an element is referred to as "fixed to" or "provided on" another element, it can be directly on another element or there can be a middle element. If an element is considered to be "connected" to another element, it can be directly connected to another element or there can be a middle element. If present, the terms "vertical", "horizontal", "up", "down", "left", "right" and similar expressions used in this application are only for illustrative purposes and do not represent the only implementation.
[0047] In the related art, a one-number engineering code label is pasted on a tobacco box to perform coding operation on the tobacco box. With the green transformation of the industry and the company, the use of recycled tobacco boxes effectively reduces the loss of tobacco boxes. When the tobacco box enters the next cycle, the one-number engineering code label needs to be torn off and then pasted again.
[0048] However, the pasted label is used only once in a cycle of the tobacco box, resulting in waste of the label. In addition, the tobacco box is easily damaged in the process of repeatedly tearing off and pasting the label. In addition, the one-number engineering code label needs to be pasted one by one, and in the logistics and storage link, the number statistics and the search for a specific tobacco box can only rely on manual processing, and the degree of intelligent digitization is low.
[0049] To solve the above problems, the identification analysis application method of the tobacco box provided in the embodiments of the present application can reduce resource waste.
[0050] The following will be combined with Figures 1-7 The identification analysis application method of the tobacco box provided in the embodiments of the present application will be described.
[0051] The identification analysis application method of the tobacco box 100 provided in the embodiments of the present application, the identification analysis application method of the tobacco box 100 includes:
[0052] S100: providing a tobacco box; the tobacco box is provided with a radio frequency identification chip, and the radio frequency identification chip stores a first code.
[0053] Exemplarily, the providing the cigarette case can include providing a new type of circulating electronic identification cigarette case. Compared with a traditional corrugated paper cigarette case, the new type of circulating electronic identification cigarette case is made of wear-resistant material, and a radio frequency identification chip 200 is implanted in a one-project code pasting code area of the original corrugated paper cigarette case. The radio frequency identification chip 200 stores an unchangeable “first code”, and the radio frequency identification chip 200 is in a read-only mode.
[0054] Referring to Figures 1-3 , a cigarette case 100 is provided, and the cigarette case 100 is provided with a radio frequency identification chip 200, and the radio frequency identification chip 200 stores a first code.
[0055] Specifically, an RFID radio frequency identification technology can be used to implant a radio frequency identification chip 200 in the cigarette case 100. The radio frequency identification chip 200 can communicate with an external radio frequency identification device through a radio frequency signal, and the radio frequency identification device can identify the first code in the radio frequency identification chip 200. The radio frequency identification chip 200 can be used to store various information (such as the first code).
[0056] For example, the cigarette case 100 can be a cigarette piece packaging box, and the cigarette case 100 can be recycled, thereby reducing resource waste.
[0057] Exemplarily, the material of the cigarette case 100 can be a wear-resistant material such as plastic.
[0058] Exemplarily, 50 cigarettes can be placed in one cigarette case 100.
[0059] Exemplarily, the first code can be a fixed identification code (i.e., a MAC code).
[0060] Exemplarily, the inlaid position of the radio frequency identification chip 200 in the cigarette case 100 can be consistent with the current pasted one-project code position, thereby facilitating on-site reconstruction and reducing reconstruction costs.
[0061] Exemplarily, at the beginning of production of the cigarette case 100, a radio frequency identification chip 200 can be implanted in the cigarette case 100, for example, a radio frequency identification chip 200 is implanted in the inner wall of the cigarette case 100 when the cigarette case 100 is formed, and a unique fixed identification code is written in the radio frequency identification chip 200, so that it can be read by a radio frequency identification device (read-only mode).
[0062] Exemplarily, referring to Figure 1 and Figure 2 , the radio frequency identification chip 200 can be installed on the mounting portion 101 of the cigarette case 100.
[0063] S200: using a radio frequency identification device to read the first code in the radio frequency identification chip; the radio frequency identification device is connected to a one-project code system signal.
[0064] The line code reader (i.e. radio frequency identification device) reads the fixed code in the radio frequency identification chip in the new cycle electronic identification cigarette case S100, and transmits the code data to the "No. 1 project code" system.
[0065] After providing the cigarette case 100, the first code in the radio frequency identification chip 200 can be read by using a radio frequency identification device, and the radio frequency identification device is connected to the No. 1 project code system signal, and the radio frequency identification device can transmit the read first code to the No. 1 project code system.
[0066] S300: Map and associate the first code and the No. 1 project code in the No. 1 project code system.
[0067] Referring to Figure 4 Map and associate the first code and the No. 1 project code in the No. 1 project code system, one first code can correspond to one No. 1 project code, and there is no need to paste the No. 1 project code on the cigarette case 100. After the cigarette is completed and packaged, the cigarette case 100 reads the first code in the cigarette case 100 through the radio frequency identification device, the read first code is the unique fixed code written by the radio frequency identification chip 200 at the factory and cannot be changed, then the fixed code of the radio frequency identification chip 200 is associated with the carton of the cigarette, and a No. 1 project code is mapped in the No. 1 project system, the No. 1 project code and the first code are mapped and associated, the No. 1 project code system and the industry carton condition system (i.e. industry "carton condition" platform) complete data interaction, so that the carton information is associated with the No. 1 project code of the cigarette. The No. 1 project code and the first code can correspond one by one, the corresponding No. 1 project code is taken as the "identity" of the cigarette case 100 after completion of packaging, and the first code of the cigarette case 100 is recorded in the No. 1 project code system, the code association action is completed, so that the operation of physically pasting the No. 1 project code can be omitted.
[0068] Thus, the tobacco box 100 can be coded by the cooperation of the radio frequency identification chip 200 and the radio frequency identification device, which can replace the traditional pasting type No. 1 engineering code. The radio frequency identification chip 200 can be recycled together with the tobacco box 100, so as to reduce resource waste and realize green carbon reduction. In addition, the pasting and tearing of the code of the tobacco box 100 can be avoided to prevent the tobacco box 100 from being damaged or the performance of the tobacco box 100 from being reduced. Further, the number of the tobacco box 100 can be actively inspected by the radio frequency identification method without moving the tobacco box 100, and the degree of intelligent digitization is high, which is beneficial to reduce labor cost, reduce labor intensity, realize intensive management, and be compatible with the current operation process. The pasting type No. 1 engineering code is changed into the radio frequency identification type No. 1 engineering code, which improves the identification method in physics and does not conflict with the current production operation process in logic, and the transformation cost is relatively low. Further, the radio frequency identification chip 200 can be used to replace the pasting type one-dimensional code label for multiple times, and the marginal effect of the cost is obvious when the recycling number of the tobacco box 100 is sufficient.
[0069] S400: The radio frequency identification device is used to read the first code in the radio frequency identification chip, and it is checked whether the first code and the No. 1 engineering code are successfully mapped and associated.
[0070] In some embodiments, after the first code and the No. 1 engineering code in the system are mapped and associated, quality detection can be performed, and the first code (i.e., the MAC code) in the tobacco box is read again to check whether the first code has been associated with the No. 1 engineering code.
[0071] In some embodiments, after step S400, step S500 can be included: the radio frequency identification device is used to read the first code in the radio frequency identification chip, and the No. 1 engineering code mapped and associated according to the first code is queried. Through step S500, the code reading and identification can be integrated into the content of the warehouse management.
[0072] In some embodiments, referring to Figure 5 and Figure 7 After the first code and the No. 1 engineering code in the system are mapped and associated, the radio frequency identification device can be used to read the first code in the radio frequency identification chip 200, and the No. 1 engineering code mapped and associated according to the first code can be queried. In each transfer process, the first code can be obtained by scanning the radio frequency identification chip 200, and the corresponding No. 1 engineering code can be queried according to the first code, so as to realize the digital management of the tobacco box 100. Since tobacco is a monopoly product, the new type of recycling tobacco box 100 according to the present application can use the radio frequency identification technology to realize physical perception at the piece level in the cigarette inventory and logistics transportation links, which is convenient for warehouse inventory and monopoly product management. At the same time, the RFID mapping and association can facilitate the recycling of the tobacco box 100 among multiple companies, and the low-value consumables such as the tobacco box 100 can also be intensively managed.
[0073] S500 can specifically include:
[0074] S510: the tobacco box is in the warehouse-in state, the first code in the radio frequency identification chip is read by the radio frequency identification device, and the first code of the tobacco box in the warehouse-in state is used to query the mapping associated one engineering code.
[0075] S520: the tobacco box is in the warehouse-in state, the first code in the radio frequency identification chip is read by the radio frequency identification device, and the first code of the tobacco box in the warehouse-in state is used to query the mapping associated one engineering code.
[0076] S530: the tobacco box is in the warehouse-out state, the first code in the radio frequency identification chip is read by the radio frequency identification device, and the first code of the tobacco box in the warehouse-out state is used to query the mapping associated one engineering code.
[0077] S540: the tobacco box is in the allocation state, the first code in the radio frequency identification chip is read by the radio frequency identification device, and the first code of the tobacco box in the allocation state is used to query the mapping associated one engineering code.
[0078] S550: the tobacco box is in the opening state, the first code in the radio frequency identification chip is read by the radio frequency identification device, and the first code of the tobacco box in the opening state is used to query the mapping associated one engineering code.
[0079] In some embodiments, referring to Figure 7 , step S510 can include that the tobacco box 100 is in the warehouse-in state, the first code in the radio frequency identification chip 200 is read by the radio frequency identification device, and the first code of the tobacco box 100 in the warehouse-in state is used to query the mapping associated one engineering code.
[0080] Specifically, after the mapping association of the tobacco box 100 and the one engineering code is completed, the warehouse-in operation can be performed. When the warehouse-in operation is performed, the radio frequency identification device of the warehouse can read the first code of the tobacco box 100, so as to identify the information of the tobacco box 100, and achieve the same effect as the one engineering code of the label type (i.e. the paste type). In addition, compared with the traditional paste type one engineering code, the RFID type one engineering code provided by the embodiment has the effect of facilitating identification and inspection after stacking. Through radio frequency identification, the warehouse stock of the tobacco box 100 can be actively inspected without moving the tobacco box 100. In addition, through the cooperation of the warehouse electronic fence and the radio frequency identification chip 200 of the tobacco box 100, the storage safety of the tobacco monopoly products can be effectively guaranteed.
[0081] In some embodiments, referring to Figure 7 , step S530 can include that when the industrial side warehouse-out delivery is performed, the tobacco box 100 is in the warehouse-out state, the first code in the radio frequency identification chip 200 is read by the radio frequency identification device, and the first code of the tobacco box 100 in the warehouse-out state is used to query the mapping associated one engineering code.
[0082] Specifically, after the storage, the warehouse can be read out of the operation of the radio frequency identification device can read the first code of the cigarette box 100, so as to identify the information of the cigarette box 100.
[0083] For example, referring to Figure 7 , step S540 can include, after the warehouse, the cigarette allocation operation can be carried out, and the cigarette is allocated to other warehouses. When the warehouse is allocated, the radio frequency identification device can read the first code of the cigarette box 100, so as to identify the information of the cigarette box 100.
[0084] Some embodiments, referring to Figure 7 , step S550 can include, the cigarette box 100 in the open box state, using radio frequency identification device to read the first code in the radio frequency identification chip 200, according to the first code of the cigarette box 100 in the open box state to query the mapping associated with the first code of the first code.
[0085] Specifically, after the cigarette allocation, the cigarette scanning open box can be carried out to carry out the retail wholesale sorting of the cigarette in the cigarette box 100. When the box is opened, the scanning open box can be carried out, and the radio frequency identification device can read the first code of the cigarette box 100, so as to identify the information of the cigarette box 100. Wherein, when the logistics sorting is carried out, the use of the first code is consistent with the existing logic, and the reading method of the first code is different, that is, the reading device is changed from one-dimensional code scanning reading to RFID radio frequency reading. After the first code is read by the radio frequency identification device, the first code obtained is matched with the first code in use in the first code system, so as to map the first code to the first code, and the cigarette sorting is used.
[0086] Some embodiments, step S500 can include:
[0087] S610: the cigarette box in the recycling state, using radio frequency identification device to read the first code in the radio frequency identification chip, according to the first code of the cigarette box in the recycling state to query the mapping associated with the first code of the first code.
[0088] S620: the first code of the cigarette box in the recycling state and the corresponding first code are disassociated with the first code.
[0089] Some embodiments, referring to Figure 6 and Figure 7After step S500, the cigarette case 100 in the recycling state can be read by the radio frequency identification device to read the first code in the radio frequency identification chip 200, and the first code of the cigarette case 100 in the recycling state is queried according to the first code of the cigarette case 100 in the recycling state, and then the first code of the cigarette case 100 in the recycling state and the corresponding first engineering code are disassociated, and then the cigarette case 100 is put into use again and the coding operation is performed again to realize the recycling of the cigarette case 100.
[0090] Specifically, after the cigarette wholesale sorting in the cigarette case 100 is completed, the cigarette case 100 can be recycled, and the code can be read during recycling. For example, after the logistics sorting of the recycled cigarette case 100 is completed, the first code written in the radio frequency identification chip 200 of the recycled cigarette case 100 is read by the radio frequency identification device, and then the first code and the first engineering code are disassociated in the first engineering code system (equivalent to tearing off the pasted first engineering code). After that, the cigarette case 100 can be put into secondary use. In this way, the first engineering code can replace the one-time use of the pasted first engineering code after the first engineering code is electrified, and is naturally combined with the recycling cigarette case 100, avoiding the work of manually tearing off the pasted first engineering code after one cycle, and automatically completing the disassociation of the mapping relationship. Green and low carbon.
[0091] In some embodiments, after step S510, step S520 can be included, after the warehousing operation, the cigarette case 100 can be put into the warehouse to make the cigarette case in the inventory state.
[0092] For example, the warehouse includes a plurality of first areas, and the plurality of first areas are arranged along the horizontal direction. In the same first area, the first area includes a storage area and an isolation area, the isolation area is arranged around the outer periphery of the storage area, a radio frequency identification device is arranged in the storage area, and the radio frequency identification device in the storage area is a first radio frequency identification device. The first radio frequency identification device is located at the center of the storage area, the first radio frequency identification device and the center of the storage area overlap along the normal projection in the gravity direction, the identification distance of the first radio frequency identification device is equal to the distance from the center to the edge of the storage area, the working area of the first radio frequency identification device can be consistent with the size of the storage area, and the first radio frequency identification device is used to identify the number of cigarette cases 100 in the storage area. In this way, in the first area and the corresponding first radio frequency identification device, the first radio frequency identification device can identify the number of cigarette cases 100 in the corresponding storage area, so that the storage area can be inspected without moving the cigarette case 100. In addition, the isolation area can prevent the first radio frequency identification device from misidentifying the cigarette cases 100 in the adjacent storage area, and can improve the identification accuracy of the first radio frequency identification device.
[0093] In some embodiments, a transport device is arranged in the warehouse, and the transport device is used to transport the tobacco cases 100 in the warehouse. The first radio frequency identification device and the transport device are both connected to the controller signal. The controller can control the working state of the first radio frequency identification device and the transport device. For example, the controller can control the transport trajectory and the on-off state of the transport device.
[0094] For example, the controller can refer to a master device that controls the start, speed regulation, braking and reverse of the motor by changing the wiring of the main circuit or control circuit and changing the resistance value in the circuit according to a predetermined sequence. It is composed of a program counter, an instruction register, an instruction decoder, a timing generator and an operation controller. It is the "decision-making mechanism" that issues commands and can coordinate and command the operation of the entire system.
[0095] For example, the first radio frequency identification device identifies that the number of the tobacco cases 100 in the corresponding storage area is a first number. The first number is the number of the tobacco cases 100 stored in the corresponding storage area. The controller can obtain the information of the first number through the signal transmission between the first radio frequency identification device and the controller. When the controller determines that the first number of any storage area is greater than or equal to a preset number (the preset number can be the maximum storage number allowed by the storage area), the controller is configured to control the transport device to stop transporting the tobacco cases 100 to the storage area, so as to prevent the storage area from storing too many tobacco cases 100, avoid the transport device transporting the tobacco cases 100 to the storage area and finding that the storage area is full of tobacco cases 100, and thus the tobacco cases 100 need to be transported to other storage areas, thereby improving the storage efficiency.
[0096] In some embodiments, the transport device has a carrying surface for carrying the tobacco cases 100, a plurality of the second RFID devices are arranged on one side of the carrying surface, and the second RFID devices arranged on the carrying surface are the second RFID devices. The second RFID devices are arranged along the gravity direction at intervals, and the projection of the second RFID devices on the carrying surface along the gravity direction overlaps with the center of the carrying surface. The distance between two adjacent second RFID devices along the gravity direction is equal to twice the identification distance of the second RFID device. The distance between the second RFID device closest to the carrying surface and the carrying surface along the gravity direction is equal to the identification distance of the second RFID device. The distance between each second RFID device and the edge of the carrying surface along the horizontal direction is equal to the identification distance of the second RFID device. In this way, the working area of each second RFID device along the horizontal direction can be consistent with the size of the carrying surface. In addition, the space above the carrying surface can be divided into a plurality of carrying areas along the gravity direction, and one carrying area corresponds to one second RFID device. The second RFID device can identify the number of tobacco cases 100 in the corresponding carrying area. The size of one carrying area along the gravity direction can be equal to twice the identification distance of the second RFID device. The sum of the number of tobacco cases 100 identified by all second RFID devices, i.e., the number of tobacco cases 100 on the carrying surface, can be identified by the plurality of second RFID devices.
[0097] For example, the second RFID device is connected to the controller, and the controller can control the working state of the second RFID device and transmit signals between them. The sum of the number of tobacco cases 100 on the carrying surface identified by all second RFID devices is the second number, and the controller obtains the information of the second number. When the controller determines that the sum of the second number and the first number of any storage area is greater than the preset number, the controller is configured to control the transport device to stop transporting the tobacco cases 100 to the storage area, thereby preventing the storage area from storing too many tobacco cases 100, avoiding the transport device from transporting the tobacco cases 100 to the storage area and finding that the storage area cannot store the tobacco cases 100 on the carrying surface, and thus the storage efficiency can be improved. When the controller determines that the sum of the second number and the first number of any storage area is less than or equal to the preset number, the controller is configured to control the transport device to continue transporting the tobacco cases 100 to the storage area, thereby controlling the transport device to directly transport the tobacco cases 100 on the carrying surface to the storage area with sufficient remaining space, preventing the transport device from running to the wrong storage area, and improving the storage efficiency.
[0098] In some embodiments, when the controller determines that the first quantity is less than or greater than the actual quantity of the tobacco cases 100 stored in the corresponding storage area, the controller is configured to control the alarm to alarm, and the alarm is connected to the controller signal. The controller can control the working state of the alarm. The actual quantity of the tobacco cases 100 stored in the corresponding storage area can be the actual quantity of the tobacco cases 100 stored in the corresponding storage area. When the first quantity identified by the first radio frequency identification device does not match the actual quantity, for example, when the controller determines that the first quantity is less than the actual quantity, the tobacco cases 100 in the storage area may have collapsed and rolled into other storage areas. When the controller determines that the first quantity is greater than the actual quantity, the tobacco cases 100 in the adjacent storage area may have collapsed and rolled into the storage area. The alarm sends an alarm signal to remind the staff of the abnormal situation of the storage area, so that the abnormal situation can be handled in time.
[0099] For example, the alarm signal can be a sound, light, text, etc.
[0100] It should be noted that the radio frequency identification device used by the tobacco case 100 in each flow process can be different. For example, the third radio frequency identification device can be used for coding operation, the fourth radio frequency identification device can be used for warehouse entry and exit, the fifth radio frequency identification device can be used for opening the case, and the sixth radio frequency identification device can be used for recycling. Any two of the first to sixth radio frequency identification devices can be different radio frequency identification devices.
[0101] For example, when the tobacco case 100 with the radio frequency identification chip 200 enters the working area of the radio frequency identification device, the radio frequency identification device can read the radio frequency identification chip 200 to obtain the first code of the tobacco case 100. The radio frequency identification device can read multiple radio frequency identification chips 200 at the same time, and can identify the radio frequency identification chips 200 in batches, so that the number of radio frequency identification chips 200 in the working area of the radio frequency identification device can be obtained without scanning one by one, and the number of tobacco cases 100 in the working area can be obtained.
[0102] It should be noted that the radio frequency identification device has an identification distance, which is the farthest distance at which the radio frequency identification device can identify the radio frequency identification chip 200. The distance from the center to the edge of the working area of the radio frequency identification device can be equal to the identification distance of the radio frequency identification device.
[0103] The tobacco industry No. 1 project code system (i.e. the tobacco industry "No. 1 project") is a tobacco industry cigarette production and operation decision management system, which is the largest information engineering project in the tobacco industry in recent years, and is a large-scale wide area network management platform covering the entire industry and covering all parts of the country. The tobacco No. 1 project code refers to a set of data codes used to identify cigarette products. These codes are the unique "identity" code of cigarettes, which can identify the origin and circulation date of cigarettes.
[0104] Any combination of the technical features in the above-described embodiments can be made. For the sake of brevity, the foregoing description is not intended to be exhaustive or to limit the scope of the application to the precise form disclosed. Modifications and alterations can occur to others upon reading and understanding the disclosure. Accordingly, the scope of the application is intended to be limited only by the appended claims.
[0105] The above-described embodiments are merely illustrative of several embodiments of the present application, and the description is relatively specific and detailed, but should not be construed as limiting the scope of the patent application. It should be noted that for those skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are all within the scope of the present application. Therefore, the scope of the patent of the present application should be subject to the appended claims.
Claims
1. A method for resolving the markings on cigarette boxes, characterized in that, The method for resolving the markings on the cigarette boxes includes: A cigarette box is provided; the cigarette box is equipped with a radio frequency identification (RFID) chip, and the RFID chip stores a first code. The first code in the RFID chip is read using an RFID device; the RFID device is used to connect to the No. 1 engineering code system signal. The first code and the first engineering code in the first engineering code system are mapped and associated.
2. The method for resolving and analyzing the markings on cigarette boxes according to claim 1, characterized in that, The step of mapping and associating the first code with the first project code in the first project code system includes: The first code in the RFID chip is read using an RFID device, and it is checked whether the first code and the first engineering code are successfully mapped and associated.
3. The method for resolving and analyzing the markings on cigarette boxes according to claim 2, characterized in that, After checking whether the first code and the first project code are successfully mapped and associated, the process includes: The first code in the RFID chip is read using an RFID device, and the associated engineering code is queried based on the first code.
4. The method for resolving the markings on cigarette boxes according to claim 3, characterized in that, The step of using an RFID device to read the first code in the RFID chip and querying the associated engineering code based on the first code includes: When the cigarette box is in the warehouse state, the first code in the radio frequency identification chip is read using a radio frequency identification device, and the first code associated with the mapping is queried based on the first code of the cigarette box in the warehouse state. When the cigarette box is in the out-of-warehouse state, the first code in the RFID chip is read using an RFID device, and the first project code associated with the mapping is queried based on the first code of the cigarette box in the out-of-warehouse state. When the cigarette box is in the unopened state, the first code in the RFID chip is read using an RFID device, and the first engineering code associated with the mapping is queried based on the first code of the cigarette box in the unopened state.
5. The method for resolving the markings on cigarette boxes according to claim 3, characterized in that, The step of using an RFID device to read the first code in the RFID chip and querying the associated engineering code based on the first code includes: When the cigarette box is in the recycling state, the first code in the RFID chip is read using an RFID device, and the first code associated with the mapping is queried based on the first code of the cigarette box in the recycling state. The first code and the corresponding engineering code of the cigarette box in the recycling state will be de-mapped and associated.
6. The method for resolving the markings on cigarette boxes according to claim 4, characterized in that, The step of using an RFID device to read the first code in the RFID chip and querying the associated engineering code based on the first code includes: When the cigarette box is in inventory, the first code in the RFID chip is read using an RFID device, and the first code associated with the mapped code is queried based on the first code of the cigarette box in inventory. The inventory status is between the inbound status and the outbound status.
7. The method for resolving the markings on cigarette boxes according to claim 6, characterized in that, The cigarette boxes are in stock and are located in a warehouse. The warehouse includes multiple first zones arranged horizontally. Within each first zone, there is a storage area and an isolation area. The isolation area surrounds the outer perimeter of the storage area. A radio frequency identification (RFID) device is installed in the storage area. The RFID device located in the storage area is a first RFID device, which is located at the center of the storage area. The identification distance of the first RFID device is equal to the distance from the center to the edge of the storage area. The first RFID device is used to identify the number of cigarette boxes located in the storage area.
8. The method for resolving the markings on cigarette boxes according to claim 7, characterized in that, The warehouse is equipped with a transport device for transporting cigarette boxes. The first radio frequency identification device and the transport device are both connected to the controller signal. The first radio frequency identification device identifies the number of cigarette boxes in the corresponding storage area as a first quantity, and the controller obtains the information of the first quantity. When the controller determines that the first quantity in any of the storage areas is greater than or equal to a preset quantity, the controller is configured to control the transport device to stop transporting cigarette boxes to the storage area.
9. The method for resolving the markings on cigarette boxes according to claim 8, characterized in that, The transport device has a bearing surface for supporting the cigarette boxes. Multiple radio frequency identification (RFID) devices are disposed on one side of the bearing surface, and these RFID devices are second RFID devices. The multiple second RFID devices are arranged at intervals along the direction of gravity. The orthographic projection of each second RFID device on the bearing surface overlaps with the center of the bearing surface. The distance between two adjacent second RFID devices along the direction of gravity is equal to twice the recognition distance of the second RFID device. The horizontal distance between each second RFID device and the edge of the bearing surface, and the horizontal distance between the second RFID device closest to the bearing surface and the bearing surface, are both equal to the recognition distance of the second RFID device. The second RFID devices are signal-connected to the controller. The sum of the number of cigarette boxes identified by all the second RFID devices on the bearing surface is a second quantity, and the controller acquires this second quantity information. When the controller determines that the sum of the second quantity and the first quantity in any of the storage areas is greater than the preset quantity, the controller is configured to control the transport device to stop transporting cigarette boxes to the storage area. When the controller determines that the sum of the second quantity and the first quantity in any of the storage areas is less than or equal to the preset quantity, the controller is configured to control the transport device to continue transporting cigarette boxes to the storage area.
10. The method for resolving the markings on cigarette boxes according to claim 8, characterized in that, When the controller determines that the first quantity is not equal to the actual quantity received, the controller is configured to activate the alarm, and the alarm is connected to the controller signal.