Taxation warehouse networking supervision system based on visual simulation technology
By adopting a networked supervision system based on visual simulation technology in bonded warehouses, the use of warehouse locations and dynamically supervise the goods process in real time, the problem of difficult data authenticity and consistency in the existing technology is solved, and the customs' efficient and accurate supervision of the warehouse is achieved.
Patent Information
- Application Number
- CN202510004375.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2025-05-06
AI Technical Summary
The existing technology is difficult to ensure the authenticity, accuracy, consistency and integrity of goods and related data in bonded warehouses, resulting in customs often discovering differences between records and actual inventory when they write off books, increasing the workload and complexity of verification, reconciliation and write-offs.
The bonded warehouse network supervision system based on visual simulation technology is adopted. Through the warehouse location usage simulation module, document declaration module and cargo inlet/outlet module, real-time monitoring and management of the warehouse location usage in the warehouse, dynamically supervise the cargo inlet and outlet process, and automatically verify the inventory data.
It ensures the reliability, accuracy, consistency and comprehensiveness of goods and related data in bonded warehouses, realizes real-time and efficient supervision of warehouses by customs, reduces the complexity of subsequent verification and reconciliation, and improves overall work efficiency.
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Figure CN119941118A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of customs supervision technology, and more specifically, to a bonded warehouse networking supervision system based on visual simulation technology. Background Art
[0002] According to customs regulations, customs manages bonded warehouses through computer systems and has the right to check the flow of goods and related accounts in the warehouses at any time. Due to various restrictions in actual operations, customs mainly rely on logistics account books, verification lists and customs declarations submitted by enterprises to manage data, and rely on enterprises to report the entry and exit of goods through the network system. However, this practice of relying on enterprises' self-reporting makes it difficult to ensure the authenticity, accuracy, consistency and integrity of data. In addition, the bonded warehouse itself is located in a general area and is used to store customs-supervised goods. However, due to the lack of fences and customs checkpoints, even with a network system, customs cannot achieve effective monitoring, which often leads to the exposure of differences between customs records, system records and actual inventory when the account books are written off, increasing the workload and complexity of subsequent verification, reconciliation and write-off, which makes customs supervision difficult.
[0003] Therefore, a bonded warehouse networking supervision system based on visual simulation technology is provided. Summary of the invention
[0004] In order to solve the above technical problems, this application is proposed.
[0005] According to the first aspect of the present application, a bonded warehouse network supervision system based on visual simulation technology is provided, which includes:
[0006] The storage space usage simulation module is used to monitor and manage the storage space usage in the bonded warehouse through visual simulation technology;
[0007] Document declaration module, used to declare the document information required for goods entering / exiting the warehouse in order to obtain the Customs Release Certificate (CCL);
[0008] The goods in / out module is used to check the information of goods in / out and perform goods in / out operations according to the usage of storage space.
[0009] Preferably, the storage location usage simulation module includes: S11, dividing the warehouse into storage areas according to the distribution of physical columns, and encoding and marking the storage areas; S12, controlling the monitoring camera to regularly collect storage location images in multiple directions of each storage area, and saving each storage location image in the system background memory after watermarking; S13, using the SIFT image feature extraction algorithm to identify each storage location image, and saving the identification result in a structured form to the background database; S14, calibrating the usage of the storage location according to whether the identification of the storage location digital number is successful.
[0010] In particular, the S11 includes: dividing the warehouse into storage areas according to the physical column distribution, and assigning codes to each storage area; using yellow lines to divide each storage area into standard storage locations; using wear-resistant pigments to spray numbers in the middle of each standard storage location to assign storage location numbers.
[0011] Preferably, the bonded warehouse network supervision system based on visual simulation technology also includes data reports, which include inventory reports, receipt tracking record sheets, and shipment tracking record sheets; the receipt tracking record sheet refers to the details of in-transit orders, in-operation order details, and completed warehousing details, which are exported in real time through a time range; the shipment tracking record sheet refers to the details of invoiced items awaiting shipment, in-operation order details, and completed shipment details, which are exported in real time through a time range.
[0012] According to a second aspect of the present application, a document declaration method is provided, comprising:
[0013] S21. The enterprise extracts data from the original Inlist entrustment document through the mini program to generate a pre-in and out warehouse order;
[0014] S22. Declare a delivery voucher according to the in / out warehouse number of the goods in the pre-in / out warehouse order to obtain a delivery voucher, wherein the delivery voucher includes in / out warehouse declaration data;
[0015] S23. Enterprises use the delivery voucher to make declarations for inspection and release at checkpoints and declarations on customs declaration forms;
[0016] S24. Declare the loading order according to the checkpoint release order;
[0017] S25. After the goods have been confirmed, the entry / exit data will be sent to the customs;
[0018] S26. Customs will review the declaration form and release it if it passes the review.
[0019] According to a third aspect of the present application, a method for warehousing goods is provided, comprising:
[0020] S31. Check the customs release document (CCL) and obtain the goods to be received list by the warehouse entry number;
[0021] S32. The WMS system compares the list of goods to be received with the warehouse declaration data to determine whether to receive the goods. If the data is inconsistent, it will be suspended for processing; if the data is consistent, an LPN box label (serial number) is automatically generated and printed out through a portable printer. The operator posts it on the physical object. The WMS system automatically binds the LPN box label and the physical pallet information to complete the receiving operation;
[0022] S33. After the receiving operation is completed, the operator scans the storage location number barcode and LPN box label and binds them in the WMS system to complete the physical warehousing operation;
[0023] S34, perform pallet by pallet operation until the CCL whole order warehousing task is completed;
[0024] S35. After receiving the goods, the operator prints out the delivery label in the customer system and replaces the physical delivery label;
[0025] S36. Before the warehouse prepares for shipment and invoicing, the EDP system operator prints out the box labels and box lists in the customer's CMMS system and replaces the physical box labels.
[0026] Preferably, the S35 includes: the operator scans the part number, quantity, supplier barcode label and LPN label of the physical object by handheld RF or finger ring, and performs automatic data comparison in the WMS system. If the verification is correct, the label is affixed. After labeling, the "Serial No" in the lower left corner of the delivery label is scanned and bound to the LPN label in the WMS system; if the verification fails, a warning message is prompted and the label change is cancelled.
[0027] Preferably, the S36 comprises: after the EDP system operator prints out a new box label and box list in the customer's CMMS system, the unique number "Serial No" on the box label is bound to the "Serial No" on the receiving label in the WMS system; the operator again scans the two "Serial No"s by handheld RF or finger ring for WMS system comparison, and completes labeling after the comparison is correct, and at the same time binds the unique number "Serial No" on the box label to the physical pallet system in the WMS system, and uses it as the tracking number of the pallet.
[0028] According to a fourth aspect of the present application, a method for removing goods from a warehouse is provided, comprising:
[0029] S41. Check the customs release document (CCL) and obtain the list of goods to be shipped out by the warehouse number;
[0030] S42. Compare the list of items to be shipped with the shipment declaration data to determine whether to ship the items physically.
[0031] Preferably, the S42 includes: the operator scans the "Serial No" on the cargo box label according to the list to be shipped. If the scanned "Serial No" matches the serial number in the shipping declaration data, the system will allow the shipping operation. Otherwise, it will be suspended and wait for processing.
[0032] Compared with the prior art, the present application provides a bonded warehouse network supervision system based on visual simulation technology, which uses visual simulation technology to monitor and dispatch the occupancy status of the warehouse space in the bonded warehouse in real time. At the same time, it implements dynamic supervision and automated verification of the goods in and out of the warehouse process, and synchronizes and updates the inventory data in real time. The system ensures the reliability, accuracy, consistency and comprehensiveness of the goods and related data in the bonded warehouse, allowing the regulatory agency to achieve real-time and efficient supervision of the warehouse through the network. While ensuring the accuracy of the account book verification, it also significantly improves the overall work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] By describing the embodiments of the present application in more detail in conjunction with the accompanying drawings, the above and other purposes, features and advantages of the present application will become more apparent. The accompanying drawings are used to provide a further understanding of the embodiments of the present application and constitute a part of the specification. Together with the embodiments of the present application, they are used to explain the present application and do not constitute a limitation of the present application. In the accompanying drawings, the same reference numerals generally represent the same components or steps.
[0034] Figure 1 This is a block diagram of a bonded warehouse network supervision system based on visual simulation technology according to an example of the present invention.
[0035] Figure 2 This is a complete flow chart of the bonded warehouse networking supervision system based on visual simulation technology according to an example of the present invention.
[0036] Figure 3 This is a warehouse location division effect diagram of an example of the present invention.
[0037] Figure 4 This is a warehouse location data analysis rendering of an example of the present invention.
[0038] Figure 5 It is a schematic diagram of a document declaration method according to an example of the present invention.
[0039] Figure 6 It is a schematic diagram of a method for warehousing goods according to an example of the present invention.
[0040] Figure 7 The diagram is a schematic diagram of a method for removing goods from a warehouse according to an example of the present invention.
[0041] Figure 8-17 This is a warehouse report display diagram of an example of the present invention. DETAILED DESCRIPTION
[0042] The technical solution of the present application is further described below in conjunction with the accompanying drawings and embodiments. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application, and it should be understood that the present application is not limited to the exemplary embodiments described here.
[0043] Example:
[0044] like Figure 1 and Figure 2 As shown, according to the bonded warehouse network supervision system 10 based on visual simulation technology according to the embodiment of the present application, it includes: a storage space usage simulation module 11, which is used to monitor and manage the storage space usage in the bonded warehouse through visual simulation technology; a document declaration module 12, which is used to declare the document information required for the entry / exit of goods to obtain a customs release document (CCL); a goods entry / exit module 13, which is used to verify the information of the goods entering / exiting the warehouse, and perform entry / exit operations on the goods according to the storage space usage.
[0045] In the embodiment of the present application, the storage location usage simulation module 11 is used to monitor and manage the storage location usage in the bonded warehouse through visual simulation technology. Considering that the operator matches the appropriate storage location for the goods by scanning the storage location number barcode, based on this, in order to accurately match the appropriate storage location, the storage location usage is visually simulated.
[0046] In particular, the visual simulation process of bonded warehouse location usage is as follows:
[0047] S11. Divide the warehouse into areas according to the physical column distribution, and encode and mark the areas. Figure 3 The warehouse location division effect diagram shown divides the warehouse into storage areas according to the physical column distribution and assigns storage area codes: A, B, C, D, E, F... Then each area is divided into standard storage locations of 1300mm*1200mm using yellow lines, and the standard width of the yellow lines is 100mm. Next, numbers are sprayed with wear-resistant paint in the middle of each standard storage location, and the storage location numbers are assigned: 01, 02, 03, 04, 05, 06, 07, 08, 09...
[0048] S12, control the monitoring camera to collect the images of the storage locations in multiple directions of each storage area at regular intervals, and save each storage location image in the system background memory after watermarking. Use vertical poles at a height of six meters in four directions of each storage area, install four monitors, imitate four viewing angles, and assign monitoring codes (storage area code_monitoring sequence number): A_CAM1, A_CAM2, A_CAM3, A_CAM4, B_CAM1, B_CAM2..., the screen faces the storage area, and the angle is adjusted to include all the yellow lines at the edge of the storage area and the digital numbers of the storage locations, which meets the requirements of future image recognition; then control the monitoring camera to take pictures at regular intervals every 30 minutes to collect pictures from various angles, and save them in the system background memory, and watermark each camera-collected picture (monitoring code_year-month-day-hour-minute), A_CAM1_202410120830, A_CAM2_202410120830...
[0049] S13. Use the SIFT image feature extraction algorithm to identify each storage location image, and save the recognition results in a structured form to the backend database. Match the timing acquisition frequency, obtain pictures from various angles, use the SIFT image feature extraction algorithm to identify the image content, including: watermark time, monitoring code, yellow line range, digital number, etc., and save the recognition results in a structured form to the backend database.
[0050] S14. Determine the usage of the storage location based on whether the storage location number is successfully identified. Figure 4 As shown, N is the storage location number that is not identified, that is, goods are stored in the storage location, and Y is the storage location number that is normally identified, indicating that no goods are stored in the storage location.
[0051] In the embodiment of the present application, the document declaration module 12 is used to declare the document information required for the entry / exit of goods to obtain the customs release document (CCL). It should be understood that document declaration is an indispensable part of international trade, which involves the preparation and submission of a series of legal instruments and related certification documents. These documents are an important basis for customs review, taxation, statistics and supervision of the entry and exit of goods. At the same time, the correctness and timeliness of document declaration are crucial to the international trade process. It not only affects the smooth circulation of goods, but also is related to the compliance operation and cost control of the enterprise. Therefore, in order to more reasonably supervise the bonded warehouse, the enterprise must first declare document information to the customs.
[0052] Specifically, Figure 2 and Figure 5As shown, a document declaration method is provided, which includes: S21, the enterprise extracts data from the Inlist original entrustment document through the mini program to generate a pre-entry and exit list; S22, the delivery voucher is declared according to the entry / exit number of the goods in the pre-entry and exit list to obtain the delivery voucher, and the delivery voucher includes the entry / exit declaration data; S23, the enterprise uses the delivery voucher to declare the checkpoint inspection and customs declaration; S24, the loading list is declared according to the checkpoint inspection and release list; S25, the entry / exit data of the goods is sent to the customs after the goods are confirmed to have passed the checkpoint; S26, the customs reviews the customs declaration and releases it if the review is passed.
[0053] In the embodiment of the present application, the goods in / out module 13 is used to check the information of the goods in / out and perform goods in / out operations according to the usage of the storage space.
[0054] Specifically, Figure 2 and Figure 6 As shown, a method for warehousing goods is provided, and the specific steps of the warehousing method are:
[0055] S31. Check the customs clearance (CCL) and obtain the goods to be received list by the warehouse entry number. Specifically, the operator uses a handheld RF scanner or finger ring to enter the corresponding goods receipt list task according to the goods warehouse entry number, scans the part number and quantity barcode on the supplier label on the physical pallet, and uses it as the goods to be received list.
[0056] S32. The WMS system compares the list of goods to be received with the warehouse declaration data to determine whether to receive the goods. If the data is inconsistent, it will be suspended for processing; if the data is consistent, the LPN box label (serial number) will be automatically generated and printed out through a portable printer. The operator will then post it on the physical object and automatically bind the LPN box label and the physical pallet information through the WMS system to complete the receiving operation. The comparison data includes material number, quantity, direction, etc.
[0057] S33. After the receiving operation is completed, the operator scans the storage location number barcode (e.g. C1-3-01) and the LPN box label and binds them in the WMS system to complete the physical warehousing operation.
[0058] S34, perform the operation pallet by pallet until the CCL whole order warehousing task is completed.
[0059] S35. After receiving the goods, the operator prints out the delivery label in the customer system and replaces the physical delivery label. Specifically, the operator scans the physical part number, quantity, supplier barcode label and LPN label through a handheld RF or finger ring, and automatically compares the data in the WMS system. If the verification is correct, the label is affixed. After labeling, scan the "Serial No" in the lower left corner of the delivery label and bind it to the LPN label in the WMS system; if the verification fails, a warning message is prompted and the label change is canceled. Among them, the physical objects that have replaced the box labels cannot be cancelled.
[0060] The "Serial No" on the lower left corner of the delivery label is used to bind with the LPN in the WMS system to ensure the tracking and identification of goods. It helps to manage and track goods within the warehouse and ensure the accuracy of inventory records.
[0061] S36. Before the warehouse prepares to ship and issue invoices, the EDP system operator prints out new box labels and box lists in the customer's CMMS system, and replaces the physical box labels. Specifically, after the EDP system operator prints out the box labels and box lists in the customer's CMMS system, the unique number "Serial No" on the box label is bound to the "Serial No" on the receiving label in the WMS system; the operator once again uses a handheld RF or finger ring to scan the two "Serial No"s for comparison in the WMS system, and completes the labeling after the comparison is correct. At the same time, the unique number "Serial No" on the box label is bound to the physical pallet system in the WMS system, and it is used as the tracking number of the pallet. Among them, when the unique number "Serial No" on the box label is bound to the "Serial No" on the receiving label in the WMS system, if the "Serial No" on the receiving label has been bound, an early warning message is returned.
[0062] Specifically, Figure 2 and Figure 7 As shown, a method for cargo outbound is provided, and the specific process of the method for cargo outbound is as follows:
[0063] S41, check the customs clearance document (CCL), and obtain the list to be shipped out through the warehouse number. Specifically, the operator finds the corresponding list information as the list to be shipped out according to the warehouse number.
[0064] S42: Compare the list of goods to be shipped with the data of the shipment declaration to determine whether to ship the goods out; the comparison data includes material number, quantity, direction, etc. Specifically, when shipping out, the operator scans the "Serial No" on the label of the cargo box according to the list of goods to be shipped. If the scanned "Serial No" matches the serial number in the shipment declaration data, the system will allow the shipment operation. Otherwise, it will be suspended and wait for processing.
[0065] In addition, the bonded warehouse network supervision system based on visual simulation technology of the embodiment of the present application also has the function of real-time export of warehouse data reports, specifically including inventory reports, receipt tracking record sheets (details of in-transit orders, details of orders in operation, and details of completed warehousing, exported in real time by time range), and shipment tracking record sheets (details of invoiced items awaiting shipment, details of orders in operation, and details of completed outbound shipments, exported in real time by time range).
[0066] In particular, if Figure 8-17 As shown, the specific implementation of the warehouse report is:
[0067] 1. Select "Receipt Label", click Query, enter the warehouse entry number, and click OK to bring up the receipt record under the warehouse entry number;
[0068] 2. Select "Inventory Report" and enter the inventory query conditions. You can query according to the conditions; if you do not enter, all the latest inventory records will be queried.
[0069] 3. Select "Outbound Report" and enter the outbound query conditions. You can query according to the conditions; if you do not enter, all the latest outbound records will be queried.
[0070] 4. Select "Inventory Report", enter the material number, and you can query according to the conditions; if you do not enter it, the inventory information of all material numbers will be queried.
[0071] 5. Click "Inventory Details" to display the inventory record details of the material number.
[0072] 6. Click "Outgoing Warehouse Details" to display the outgoing warehouse record details of the material number.
[0073] In summary, the bonded warehouse network supervision system based on visual simulation technology according to the embodiment of the present application is explained, which includes a storage space usage simulation module, which is used to monitor and manage the storage space usage in the bonded warehouse through visual simulation technology; a document declaration module, which is used to declare the document information required for the goods to enter / exit the warehouse to obtain the customs release document (CCL); the goods entry / exit module, which is used to verify the information of the goods entering / exiting the warehouse, and perform entry / exit operations on the goods according to the storage space usage. This application monitors and manages the storage space usage in the bonded warehouse and updates the inventory information in real time through visual simulation technology, realizes the automation and intelligence of bonded warehouse supervision, and provides an efficient, accurate and transparent supervision platform for customs and enterprises.
[0074] It is obvious to those skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention.
[0075] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the present invention rather than to limit it. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solution of the present invention can be modified or replaced by equivalents without departing from the spirit of the technical solution of the present invention.
Claims
1. A bonded warehouse network supervision system based on visual simulation technology, characterized in that: include: The storage space usage simulation module is used to monitor and manage the storage space usage in the bonded warehouse through visual simulation technology; Document declaration module, used to declare the document information required for goods entering / exiting the warehouse in order to obtain the Customs Release Certificate (CCL); The goods in / out module is used to check the information of goods in / out and perform goods in / out operations according to the storage space usage; Wherein, the storage location usage simulation module includes: S11. Divide the warehouse into areas according to the physical column distribution, and encode and mark the areas; S12, controlling the surveillance camera to regularly collect images of storage locations in multiple directions of each storage area, adding watermarks to each storage location image and saving them in the system background memory; S13, using SIFT image feature extraction algorithm to identify each storage location image, and save the identification results in a structured form to the backend database; S14. According to whether the digital number of the storage location is successfully identified, the usage of the storage location is marked.
2. The bonded warehouse network monitoring system based on visual simulation technology according to claim 1 is characterized in that: The S11 includes: Distribute the warehouse according to physical columns, divide the warehouse into areas, and assign codes to each area; Use yellow lines to divide each storage area into standard storage locations; Assign location numbers in the middle of each standard location using abrasion-resistant paint spray numbers.
3. The bonded warehouse network monitoring system based on visual simulation technology according to claim 2 is characterized in that: Also included are data reports, which include an inventory report, a receipt tracking record sheet, and a delivery tracking record sheet; The goods receipt tracking record table refers to the details of in-transit orders, in-operation orders and completed warehousing, which are exported in real time by time range; The delivery tracking record table refers to the details of invoiced items waiting to be shipped, the details of orders in operation, and the details of completed shipments, which are exported in real time by time range.
4. A document declaration method, comprising: S21. The enterprise extracts data from the original Inlist entrustment document through the mini program to generate a pre-in and out warehouse order; S22. Declare a delivery voucher according to the in / out warehouse number of the goods in the pre-in / out warehouse order to obtain a delivery voucher, wherein the delivery voucher includes in / out warehouse declaration data; S23. Enterprises use the delivery voucher to make declarations for inspection and release at checkpoints and declarations for customs declarations; S24. Declare the loading order according to the checkpoint release order; S25. After the goods have been confirmed, the entry / exit data will be sent to the customs; S26. Customs will review the declaration form and release it if it passes the review.
5. A method for warehousing goods, comprising: S31. Check the customs release document (CCL) and obtain the goods to be received list by the warehouse entry number; S32. The WMS system compares the list of goods to be received with the warehouse declaration data to determine whether to receive the goods. If the data is inconsistent, it will be suspended for processing; if the data is consistent, an LPN box label (serial number) is automatically generated and printed out through a portable printer. The operator posts it on the physical object. The WMS system automatically binds the LPN box label and the physical pallet information to complete the receiving operation; S33. After the receiving operation is completed, the operator scans the storage location number barcode and LPN box label and binds them in the WMS system to complete the physical warehousing operation; S34, perform pallet by pallet operation until the CCL whole order warehousing task is completed; S35. After receiving the goods, the operator prints out the delivery label in the customer system and replaces the physical delivery label; S36. Before the warehouse prepares for shipment and invoicing, the EDP system operator prints out the box labels and box lists in the customer's CMMS system and replaces the physical box labels.
6. The method for warehousing goods according to claim 5, characterized in that: The S35 comprises: The operator uses a handheld RF or finger ring to scan the part number, quantity, supplier barcode label and LPN label of the physical object, and automatically compares the data in the WMS system. If the verification is correct, the label is affixed. After labeling, scan the "Serial No" in the lower left corner of the receiving label and bind it to the LPN label in the WMS system; if the verification fails, a warning message is prompted and the label change is canceled.
7. The method for warehousing goods according to claim 6, characterized in that: The S36 comprises: After the EDP system operator prints out the new box label and box list in the customer's CMMS system, the unique number "Serial No" on the box label is bound to the "Serial No" on the receiving label in the WMS system; the operator once again uses a handheld RF or finger ring to scan the two "Serial No"s for comparison in the WMS system. After the comparison is correct, the labeling is completed. At the same time, the unique number "Serial No" on the box label is bound to the physical pallet system in the WMS system and used as the tracking number of the pallet.
8. A method for removing goods from a warehouse, comprising: S41. Check the customs release document (CCL) and obtain the list of goods to be shipped out by the warehouse number; S42, comparing the list of items to be shipped with the shipment declaration data to determine whether to ship the items out of the warehouse; The S42 includes: The operator scans the "Serial No" on the cargo box label according to the list to be shipped. If the scanned "Serial No" matches the serial number in the shipping declaration data, the system will allow the shipping operation. Otherwise, it will be suspended and wait for processing.