WO2023273563A1 - 数据的校验方法、系统和边缘端设备 - Google Patents

数据的校验方法、系统和边缘端设备 Download PDF

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Publication number
WO2023273563A1
WO2023273563A1 PCT/CN2022/089002 CN2022089002W WO2023273563A1 WO 2023273563 A1 WO2023273563 A1 WO 2023273563A1 CN 2022089002 W CN2022089002 W CN 2022089002W WO 2023273563 A1 WO2023273563 A1 WO 2023273563A1
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Prior art keywords
data
cloud
terminal
edge
verification
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PCT/CN2022/089002
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English (en)
French (fr)
Inventor
陈亚迷
荣宾
李晓霞
杨坚
王宏伟
者文明
乔晓强
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北京京东乾石科技有限公司
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Priority to EP22831392.0A priority Critical patent/EP4336349A1/en
Publication of WO2023273563A1 publication Critical patent/WO2023273563A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F8/00Arrangements for software engineering
    • G06F8/60Software deployment
    • G06F8/65Updates
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F21/00Security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F21/30Authentication, i.e. establishing the identity or authorisation of security principals
    • G06F21/44Program or device authentication
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F21/00Security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F21/60Protecting data
    • G06F21/64Protecting data integrity, e.g. using checksums, certificates or signatures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F8/00Arrangements for software engineering
    • G06F8/70Software maintenance or management
    • G06F8/71Version control; Configuration management
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K17/00Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations
    • G06K17/0022Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations arrangements or provisious for transferring data to distant stations, e.g. from a sensing device
    • G06K17/0029Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations arrangements or provisious for transferring data to distant stations, e.g. from a sensing device the arrangement being specially adapted for wireless interrogation of grouped or bundled articles tagged with wireless record carriers
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/08Logistics, e.g. warehousing, loading or distribution; Inventory or stock management
    • G06Q10/087Inventory or stock management, e.g. order filling, procurement or balancing against orders
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/12Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks

Definitions

  • the present disclosure relates to the field of computer technology, and in particular to a data verification method, a data verification system, an edge device, and a non-volatile computer-readable storage medium.
  • RFID Radio Frequency Identification, radio frequency identification
  • the verification calculation can be performed based on terminal devices such as RFID readers; or the verification calculation can be performed based on cloud devices.
  • a method for verifying data including: the edge device receives the cloud data sent by the cloud device and the terminal data collected by the terminal device; the edge device checks the cloud data according to the business processing logic , terminal data for verification; the edge device sends the verification result to at least one of the cloud device or the terminal device.
  • the verification method before receiving cloud data and terminal data, the verification method further includes: the edge device sends a verification activation request to the cloud device; the edge device receives an activation response returned by the cloud device, and the activation response includes business processing Logical related information.
  • the verification activation request includes version information of the edge software currently deployed on the edge device
  • the activation response includes update information of the edge software
  • verifying the cloud data and terminal data according to the business processing logic includes: the edge device uses the terminal data to match the cloud data, and determines whether the verification is passed according to the matching result; or the edge device checks according to the cloud data Verify the terminal data.
  • the verification of cloud data and terminal data according to the business processing logic includes: the edge device judges whether the terminal data contains abnormal data; the edge device determines whether the verification is passed according to the judgment result and the matching result.
  • the cloud data is review list data containing item tag data; judging whether the terminal data is abnormal includes: the edge device judges whether the terminal data contains abnormal data according to at least one of item location information or status information of the tag data .
  • the cloud data includes item tag data; according to the business processing logic, verifying the cloud data and terminal data includes: the edge device judges whether the terminal data matches the location of the terminal device; , the edge device reports the terminal data to the cloud device, so that the cloud device can judge whether the terminal data is abnormal data.
  • the edge device receiving the cloud data sent by the cloud device and the terminal data collected by the terminal device includes: the edge device receives a review request sent by the cloud device, and the review request includes a radio frequency identification RFID data list to be reviewed As cloud data; the edge device receives the RFID data collected by the terminal device as terminal data.
  • sending the verification result to at least one of the cloud device or the terminal device includes: the edge device sends the terminal data that does not match the cloud data to the cloud device; The abnormal data filtering results and verification results of the terminal data are sent to the terminal device; the edge device receives the review completion information returned by the terminal device, and the review completion information includes the review order number; the edge device sends the review completion information to the cloud device , the review completion information includes the review order number, the RFID data list that has completed the review, and the abnormal situation registration information.
  • the edge device receiving the RFID data collected by the terminal device as terminal data includes: the edge device receiving the verification request sent by the terminal device, and the verification request is sent by the terminal device according to the edge-directed address issued by the cloud device.
  • the verification request includes the verification order number; the edge device sends verification confirmation information to the terminal device, and the verification confirmation information includes the verification order number; the edge device receives the RFID data collected by the terminal device as terminal data.
  • the edge device receiving the cloud data sent by the cloud device and the terminal data collected by the terminal device includes: the edge device sends the review request sent by the terminal device to the cloud device, and the review request includes the data to be reviewed Information on the location of the item data; the edge device sends the review response returned by the cloud device to the terminal device, and the review response includes a list of RFID data to be reviewed as cloud data; the edge device receives the RFID data collected by the terminal device as terminal data .
  • the edge device receiving the cloud data sent by the cloud device and the terminal data collected by the terminal device includes: the edge device receives the inventory request sent by the cloud device, and the inventory request includes a list of data to be inventoried as cloud data ; The edge device receives the inventory data collected by the terminal device as terminal data.
  • sending the verification result to at least one of the cloud device or the terminal device includes: the edge device sends the verification result to the terminal device; The resulting data is sent to the cloud device.
  • the edge device receiving the cloud data sent by the cloud device and the terminal data collected by the terminal device includes: the edge device sends the review request sent by the terminal device to the cloud device, and the review request includes items to be reviewed The information of the storage area where the data is located; the edge device sends the review response returned by the cloud device to the terminal device, and the review response includes the list of RFID data to be reviewed as cloud data; the edge device receives the collected RFID data returned by the terminal device as terminal data .
  • the edge device receiving the cloud data sent by the cloud device and the terminal data collected by the terminal device includes: the edge device receives the review request sent by the cloud device, and the review request sent by the cloud device includes the RFID to be reviewed The data list is used as cloud data; the edge device receives the review request sent by the terminal device, and the review request sent by the terminal device includes the information of the storage area where the item data to be reviewed is located; the edge device sends a review response to the terminal device; the edge device The collected RFID data returned by the receiving terminal equipment is used as terminal data.
  • the edge device receiving the cloud data sent by the cloud device and the terminal data collected by the terminal device includes: the edge device receives the terminal device and forwards the RFID data list to be reviewed sent by the cloud device as cloud data, and the cloud data The cloud device responds to the review request sent by the terminal device and sends it to the terminal device; the edge device receives the collected RFID data sent by the terminal device as terminal data.
  • the edge device receiving the cloud data sent by the cloud device and the terminal data collected by the terminal device includes: the edge device receives the terminal device and forwards the list of RFID data to be put on the shelf sent by the cloud device as cloud data, and the cloud data The cloud device sends it to the terminal device in response to the shelf request sent by the terminal device; the edge device receives the collected RFID data sent by the terminal device as terminal data.
  • the terminal device is a gantry hardware device
  • the cloud device is an item management system
  • the cloud data is review form data
  • the terminal data is RFID data
  • verifying the cloud data and terminal data includes: The edge device performs the verification of the recheck data; sending the verification result to at least one of the cloud device or the terminal device includes: sending the recheck data verification result to the application of the item management system, and sending the recheck status to the display device.
  • an edge device including: a receiver, configured to receive cloud data sent by the cloud device and terminal data collected by the terminal device; a processor, configured to process the The cloud data and the terminal data are verified; the sender is used to send the verification result to at least one of the cloud device or the terminal device.
  • a data verification system including: an edge device, configured to execute the data verification method in any of the above embodiments; a cloud device, configured to deliver cloud data; Terminal equipment, used to collect terminal data.
  • an edge device including: a memory; and a processor coupled to the memory, the processor is configured to execute any one of the above-mentioned embodiments based on instructions stored in the memory device. The verification method of the data.
  • a non-volatile computer-readable storage medium on which a computer program is stored, and when the program is executed by a processor, the method for verifying data in any one of the above-mentioned embodiments is implemented.
  • the verification calculation task is delivered to the edge terminal, which reduces the terminal cost and power consumption; and the edge device replaces the cloud for verification processing, which improves the processing efficiency and reduces the network load, thereby improving Check the effect.
  • Fig. 1 shows the flowchart of some embodiments of the verification method of the data of the present disclosure
  • Fig. 2 shows a schematic diagram of some embodiments of an initialization configuration of an edge device of the present disclosure
  • Fig. 3a shows a schematic diagram of some embodiments of collaborative verification of the edge end and the cloud in the present disclosure
  • Fig. 3b shows a schematic diagram of other embodiments of collaborative verification of the edge end and the cloud in the present disclosure
  • Figure 3c shows a schematic diagram of some embodiments of the inventory verification of the present disclosure
  • Figure 3d shows a schematic diagram of some embodiments of the double-check verification of the present disclosure
  • Fig. 3e shows a schematic diagram of other embodiments of the review verification of the present disclosure
  • Fig. 3f shows a schematic diagram of some other embodiments of the review verification of the present disclosure
  • Fig. 3g shows a schematic diagram of some other embodiments of the review verification of the present disclosure
  • Fig. 3h shows a schematic diagram of some embodiments of the warehousing and goods receipt verification of the present disclosure
  • Fig. 3i shows a schematic diagram of some embodiments of the data verification method of the present disclosure
  • Figure 4 shows a block diagram of some embodiments of an edge device of the present disclosure
  • Fig. 5 shows a block diagram of other embodiments of an edge device of the present disclosure
  • Fig. 6 shows a block diagram of some other embodiments of the edge device of the present disclosure
  • FIG. 7 shows a block diagram of some embodiments of the verification system for data of the present disclosure.
  • RFID-based warehousing operations are facing new challenges: warehousing operations often involve the verification of labels or barcodes, including warehousing, inventory, and out-of-warehouse review, etc., to ensure the consistency of items; batch identification based on RFID The warehousing operation needs to perform large concurrent verification at the same time, which brings challenges to terminal verification and cloud verification.
  • Such a verification method has the following problems: the terminal is required to have strong storage and computing power, which increases the power consumption and cost of the terminal and a single node. Experience, but also affect production efficiency; a large amount of verification data is sent to a fully distributed terminal, potentially posing hidden dangers to data security.
  • the cloud has abundant storage and computing power, which can relieve the burden on the terminal in computing and storage.
  • the cloud network chain is too long, the system response delay is long, and once the network is unstable, the response will fail.
  • a large amount of data is uploaded in real time, which also poses greater challenges to the network.
  • RFID batch data collection and verification based on the terminal side or cloud side cannot take into account terminal cost, data security and quick job response.
  • the warehousing, inventory and outbound links of warehouse management all involve RFID batch data collection and verification.
  • the experience and cost reduction of RFID applications in these links will directly improve the ROI (Return On Investment) of RFID applications, including reducing terminal costs and improving operating experience and operating efficiency.
  • the present disclosure proposes a data verification technical solution, which can reduce equipment cost, improve verification efficiency, and thereby improve verification effect.
  • the following embodiments can be used to implement the technical solution of the present disclosure.
  • FIG. 1 shows a flow chart of some embodiments of the data verification method of the present disclosure.
  • the edge device receives cloud data delivered by the cloud device and terminal data collected by the terminal device.
  • the terminal device can be an RFID reader-writer, including a handheld reader-writer, a PDA (Personal Digital Assistant) that supports RFID collection, a fixed-installed RFID reader-writer (including access doors, etc.), a read-only Written RFID acquisition equipment, RFID excitation and acquisition data receiving separate RFID acquisition devices, etc.
  • RFID reader-writer including a handheld reader-writer, a PDA (Personal Digital Assistant) that supports RFID collection, a fixed-installed RFID reader-writer (including access doors, etc.), a read-only Written RFID acquisition equipment, RFID excitation and acquisition data receiving separate RFID acquisition devices, etc.
  • RFID readers are connected to edge devices through local lines such as WiFi (Wireless-Fidelity, wireless fidelity), wired, USB (Universal Serial Bus, Universal Serial Bus), or can be connected by means of cellular networks, etc. .
  • local lines such as WiFi (Wireless-Fidelity, wireless fidelity), wired, USB (Universal Serial Bus, Universal Serial Bus), or can be connected by means of cellular networks, etc. .
  • the relationship between the edge device and the RFID reader can be one-to-one or one-to-many.
  • edge devices and RFID readers can also have a many-to-many relationship, and load balancing scheduling is performed through multiple edge devices.
  • the cloud device actively pushes the data to be verified (cloud data) to the edge device in response to triggering of corresponding events. For example, after a picking task or picking merge is completed, the WMS (Warehouse Management System, Warehouse Management System) as a cloud device sends a review sheet containing the RFID list to the edge device of the warehouse corresponding to the picking task.
  • WMS Warehouse Management System, Warehouse Management System
  • a cloud device can be an item management system.
  • the item management system can be WMS, store system, asset management system, etc., and the items can include pallets, material boxes, storage products, etc.
  • the cloud device pushes the data to be verified to the edge device; or the data to be verified is forwarded to the edge device through the terminal side device.
  • the verification method before step 110, further includes: the edge device sends a verification activation request to the cloud device; the edge device receives an activation response returned by the cloud device, and the activation response includes information about business processing logic .
  • the verification activation request includes version information of the edge software currently deployed on the edge device, and the activation response includes update information of the edge software.
  • Edge software can be edge software related to business processing logic.
  • verifying an activation request may include verifying an activation update request.
  • the cloud device sends a verification activation request or a verification activation update to the edge device; the cloud device receives an activation response returned by the edge device, and the activation response includes a verification activation or verification activation update confirmation.
  • the verification activation update includes version information of edge software related to business processing logic currently supported by the cloud device.
  • the activation response may contain a download confirmation and link request for the edge software.
  • software for verification processing can be deployed on edge devices in advance, and the software includes business processing logic.
  • the business processing logic includes verification order number parsing methods, verification rules and algorithms, and may also include verification input data format, verification output data format, event-driven interaction methods, etc.
  • business processing logic can be set as follows:
  • the status information of the label data includes the status of the bound warehouse goods, which can be the initialization status (completed printing, not put on the shelf), in-warehouse status (successfully put on the shelf), out-of-warehouse status (reviewed out of the warehouse), off-shelf status ( pending review), etc.
  • the detection of abnormal data may include: during the review process, it is found that there are a large number of tags in a certain storage location in the review list; combined with auxiliary information (such as the map of the storage location), it is found that some of these tags are near the review area
  • auxiliary information such as the map of the storage location
  • the initial configuration of the edge device can be performed through the embodiment in FIG. 2 .
  • FIG. 2 shows a schematic diagram of some embodiments of an initialization configuration of an edge device of the present disclosure.
  • the edge device downloads the edge SDK (Software Development Kit, software development kit) and certificate to be deployed in advance; the edge device sends a registration request to the cloud device, and the registration request Contains the certificate; the cloud device performs authentication and activation processing; the cloud device returns a registration response to the edge device, and the registration response includes the number and token of the edge device.
  • edge SDK Software Development Kit, software development kit
  • the cloud device sends a device update request to the edge device; the cloud device generates a new token for the edge device; the edge device returns a device update confirmation message.
  • the edge device sends an RFID verification activation request to the cloud device, including the currently deployed software version; the cloud device returns an activation response.
  • the activation response is activation confirmation information or software update information, including business processing logic (such as verification order number rules, verification rules, verification algorithms, verification input data format, verification output data format, event-driven interaction methods, etc. ).
  • business processing logic such as verification order number rules, verification rules, verification algorithms, verification input data format, verification output data format, event-driven interaction methods, etc.
  • continuous heartbeat signals can be sent between the edge device and the cloud device to reduce the response delay.
  • step 120 the edge device verifies the cloud data and terminal data according to the business processing logic.
  • the verification may include the verification of the validity of RFID in batches of warehouse goods, the verification of RFID inventory in the warehouse, the verification of RFID in batches and accurate outbound, and the verification of RFID re-checking.
  • the above verification process can be used for the inventory of RFID assets such as pallets. It can also be used in scenarios such as store batch receipt scenarios, batch settlement verification, etc.
  • the edge device uses the terminal data to match the cloud data; the edge device determines whether the verification is passed according to the matching result. For example, the edge device judges whether the terminal data contains abnormal data; the edge device determines whether the verification is passed according to the judgment result and the matching result.
  • the cloud data is checklist data including item tag data.
  • the edge device judges whether the terminal data contains abnormal data according to at least one of item location information or tag data status information.
  • item location information may be item storage location information of a warehouse.
  • the cloud data includes item tag data.
  • the edge device judges whether the terminal data matches the storage area where the terminal device is located; if it does not match, the edge device reports the terminal data to the cloud device, so that the cloud device can judge whether the terminal data is abnormal data.
  • the edge device receives the review request sent by the cloud device, and the review request includes a list of RFID data to be reviewed as cloud data; the edge device receives the RFID data collected by the terminal device as terminal data.
  • the edge device sends the verification result to at least one of the cloud device or the terminal device.
  • the edge device directly or indirectly synchronizes the verification results to the operation terminal (which can be integrated with the RFID reader), the cloud, and possibly the display terminal to realize the synchronization of business status.
  • the operation terminal can be notified to complete the interaction between the operation terminal and the cloud; or after the verification of the edge end is completed, the cloud can be notified to be synchronized from the cloud to the operation terminal or the relevant display end; it can also be the edge end Synchronize directly to the operating terminal, cloud and other display terminals.
  • the cloud device distributes the business data that needs to be verified by the RFID reader (terminal device) to the edge device; after the RFID reader collects the RFID data, it performs verification via the edge device; The verification results are directly or indirectly synchronized to the operation terminal equipment (for example, it can be integrated with the RFID reader), cloud equipment, and possible display terminals to realize the synchronization of business status.
  • the verification calculation at the edge side of the RFID is introduced, and a public storage and computing device can be provided for the RFID reader at a place close to the RFID reader (terminal device). Therefore, the power consumption and cost of the reader are reduced, and real-time computing response is provided.
  • collaborative verification between the edge and the cloud can be performed. In this way, it can avoid sending a large amount of data to the edge end, resulting in a large demand for occupying the edge end; it can also improve data security.
  • the edge device can receive the data to be verified in two adjacent lanes; if there are terminals beyond these two lanes to collect RFID data, it will report to the cloud device; the cloud device judges whether the operation data is abnormal.
  • Data anomalies can be tags drifting far away, or tags not in the library. In this way, the edge device does not need to consider the abnormal label state, which reduces the processing pressure.
  • the edge device performs verification based on the data list to be reviewed; filters batches of abnormal data in the same storage location, and reports abnormal RFID tag data to the cloud; and the cloud performs filtering and confirmation based on a larger amount of data.
  • Collaborative verification between the edge and the cloud is suitable for the scenario of local verification of a large amount of data, such as inventory, and the scene of review, which requires the cloud to assist in filtering abnormal data if the surrounding environment is not very clean.
  • the cloud can assist the edge to perform abnormal auxiliary verification.
  • Fig. 3a shows a schematic diagram of some embodiments of collaborative verification of the edge end and the cloud according to the present disclosure.
  • the edge device receives the review request issued by the cloud device (such as the RFID engine server or WMS), and the review request includes the RFID data list to be reviewed as cloud data, and can also include the review order number, etc.;
  • the end device returns a demand confirmation message.
  • the edge device receives the review request sent by the terminal device (such as PDA), and the review request includes the platform number of the cargo area to be reviewed; the edge device returns a review response.
  • the edge device receives the RFID data collected by the terminal device as terminal data, and performs real-time verification feedback.
  • the edge device returns RFID verification feedback to the terminal device, and returns unrecognized RFID collection data (terminal data that does not match the cloud data) to the cloud device; after the cloud device performs data filtering and verification on these collected data, it returns the RFID verification data. test feedback.
  • the edge device sends the abnormal data filtering results (such as data with over-picking) and verification results of the cloud device to the unmatched terminal data to the terminal device; the edge device receives the review completion information returned by the terminal device, The review completion information includes the review order number; the edge device sends the review completion information to the cloud device, and the review completion information includes the review order number, the RFID data list that completed the review, and the abnormal situation registration information.
  • Fig. 3b shows a schematic diagram of other embodiments of collaborative verification between the edge end and the cloud in the present disclosure.
  • the edge device sends the review request sent by the terminal device to the cloud device, and the review request includes the information of the storage area (such as the platform number) where the item data to be reviewed is located; the edge device returns the cloud device The review response is sent to the terminal device, and the review response includes a list of RFID data to be reviewed as cloud data; the edge device receives the RFID data collected by the terminal device as terminal data.
  • the review request includes the information of the storage area (such as the platform number) where the item data to be reviewed is located
  • the edge device returns the cloud device
  • the review response is sent to the terminal device, and the review response includes a list of RFID data to be reviewed as cloud data; the edge device receives the RFID data collected by the terminal device as terminal data.
  • Figure 3c shows a schematic diagram of some embodiments of the inventory verification of the present disclosure.
  • the edge device receives an inventory request sent by the cloud device, and the inventory request includes a list of data to be inventoried as cloud data, and returns an inventory task response. For example, the ID of the counting area can also be returned.
  • the edge device sends an inventory task to the terminal device, and receives the inventory data collected by the terminal device as terminal data for verification.
  • inventory data may include a list of RFID data.
  • the edge device sends the verification result to the terminal device, and the terminal device can display it visually; after receiving the inventory completion information returned by the terminal device, the edge device sends the inventory result data to the cloud device.
  • the inventory result data includes at least one of an inventory data list and a corresponding verification result.
  • Figure 3d shows a schematic diagram of some embodiments of the review check of the present disclosure.
  • the terminal device sends a review request to the server device, including the review order number (such as the platform number waiting for the identification of the storage location for review); the server device returns the review confirmation information, including pointing to the edge corresponding to the review order number The edge-directed address of the end device, and the verification order number.
  • the review order number such as the platform number waiting for the identification of the storage location for review
  • the server device returns the review confirmation information, including pointing to the edge corresponding to the review order number The edge-directed address of the end device, and the verification order number.
  • the edge device receives the verification request sent by the terminal device.
  • the verification request is sent by the terminal device according to the edge-directed address issued by the cloud device.
  • the verification request includes the verification order number; the edge device sends the verification request to the terminal device.
  • Confirmation information, the verification confirmation information includes the verification order number; the edge device receives the RFID data collected by the terminal device as terminal data.
  • Fig. 3e shows a schematic diagram of some other embodiments of the review check of the present disclosure.
  • the edge device sends the review request sent by the terminal device to the cloud device, and the review request includes the information of the storage area where the item data to be reviewed is located; the edge device sends the review response returned by the cloud device to the terminal For the device, the review response includes the list of RFID data to be reviewed as cloud data; the edge device receives the collected RFID data returned by the terminal device as terminal data.
  • Fig. 3f shows a schematic diagram of some other embodiments of the double-check verification of the present disclosure.
  • the edge device receives the review request sent by the cloud device, and the review request sent by the cloud device includes the RFID data list to be reviewed as cloud data; the edge device receives the review request sent by the terminal device, and the terminal device
  • the review request sent includes information on the storage area where the item data to be reviewed is located; the edge device sends a review response to the terminal device; the edge device receives the collected RFID data returned by the terminal device as terminal data.
  • the terminal device can send registration exception information and review completion information to the edge device; the edge device sends the registration exception information and review completion information to the cloud device.
  • Fig. 3g shows a schematic diagram of some further embodiments of the double-check verification of the present disclosure.
  • the terminal device sends a review request to the cloud device, and the review request includes the platform number of the goods to be reviewed; the cloud device returns a review response, including a list of RFID data to be reviewed.
  • the edge device receives the terminal device and forwards the RFID data list to be reviewed issued by the cloud device as cloud data, and the cloud data is sent to the terminal device by the cloud device in response to the review request sent by the terminal device; the edge device receives the RFID data sent by the terminal device The collected RFID data is used as terminal data.
  • Fig. 3h shows a schematic diagram of some embodiments of the warehousing and goods receipt verification of the present disclosure.
  • the terminal device sends a put-on request to the cloud device, and the put-on request includes the container number of the goods to be put on the shelf; the cloud device returns a put-on-shelf response, including a list of RFID data to be put on the shelf.
  • the edge device receives the terminal device and forwards the list of RFID data to be put on the shelf sent by the cloud device as cloud data, and the cloud data is sent to the terminal device by the cloud device in response to the put request sent by the terminal device;
  • the collected RFID data is used as terminal data.
  • the edge device returns the collection completion information to the terminal device; the terminal device sends the list of RIID data on the shelf to the cloud device.
  • Fig. 3i shows a schematic diagram of some embodiments of the data verification method of the present disclosure.
  • the terminal device is a gantry hardware device
  • the cloud device is a WMS
  • the cloud data is review form data
  • the terminal data is RFID data.
  • the edge device receives the review form (review task) sent by the WMS, and receives the RFID data (reading and writing data) sent by the gantry hardware device; the edge device performs the review data verification.
  • the edge device sends the verification result of the verification data to the WMS application, and sends the verification status to the display device of the terminal device.
  • the review status can also be sent to the cloud device, or the display device on the warehouse site.
  • the cost and power consumption of the RFID acquisition equipment are reduced; the speed of the RFID verification response is accelerated, and the service experience is improved; through device-cloud collaboration and device-side collaboration, the distribution of verification data is controlled on demand, and the system is improved. Safety.
  • Figure 4 shows a block diagram of some embodiments of an edge device of the present disclosure.
  • the edge device 4 includes: a receiver 41 for receiving cloud data sent by the cloud device and terminal data collected by the terminal device; a processor 42 for processing the cloud data, terminal The data is verified; the sender 43 is configured to send the verification result to at least one of the cloud device or the terminal device.
  • the sender 43 sends a verification activation request to the cloud device; the receiver 41 receives the activation response returned by the cloud device, and the activation response includes information related to business processing logic.
  • the verification activation request includes version information of the edge software currently deployed on the edge device
  • the activation response includes update information of the edge software
  • the processor 42 uses the terminal data to match the cloud data; the processor 42 determines whether the verification is passed according to the matching result.
  • the processor 42 judges whether the terminal data contains abnormal data; the processor 42 determines whether the check is passed according to the judgment result and the matching result.
  • the cloud data is review sheet data including item tag data; the processor 42 judges whether the terminal data includes abnormal data according to at least one of item location information or tag data status information.
  • the cloud data includes item tag data; the processor 42 judges whether the terminal data matches the location of the terminal device; if there is no match, the transmitter 43 reports the terminal data to the cloud device, so that the cloud device can judge whether the terminal Whether the data is abnormal data.
  • the receiver 41 receives the review request issued by the cloud device, and the review request includes a radio frequency identification (RFID) data list to be reviewed as cloud data; receives the RFID data collected by the terminal device as terminal data.
  • RFID radio frequency identification
  • the transmitter 43 sends the terminal data that does not match the cloud data to the cloud device; sends the abnormal data filtering results and verification results performed by the cloud device on the mismatched terminal data to the terminal device;
  • the review completion information returned by the terminal device includes the review order number; the review completion information is sent to the cloud device, and the review completion information includes the review order number, the RFID data list that completed the review and the abnormal situation registration information.
  • the receiver 41 receives the verification request sent by the terminal device, the verification request is sent by the terminal device according to the edge-directed address sent by the cloud device, and the verification request includes the verification order number; the transmitter 43 Send verification confirmation information to the terminal device, the verification confirmation information includes the verification order number; the receiver 41 receives the RFID data collected by the terminal device as terminal data.
  • the transmitter 43 sends the review request sent by the terminal device to the cloud device, and the review request includes information on the location of the item data to be reviewed; the review response returned by the cloud device is sent to the terminal device, The review response includes a list of RFID data to be reviewed as cloud data; the receiver 41 receives the RFID data collected by the terminal device as terminal data.
  • the receiver 41 receives an inventory request issued by the cloud device, and the inventory request includes a list of data to be inventoried as cloud data; the receiver 41 receives the inventory data collected by the terminal device as terminal data.
  • the transmitter 43 sends the verification result to the terminal device; after the receiver 41 receives the inventory completion information returned by the terminal device, the transmitter 43 sends the inventory result data to the cloud device.
  • the sender 43 sends the review request sent by the terminal device to the cloud device, and the review request includes the information of the storage area where the item data to be reviewed is located; sends the review response returned by the cloud device to the terminal device, and the review request The response includes a list of RFID data to be reviewed as cloud data; the receiver 41 receives the collected RFID data returned by the terminal device as terminal data.
  • the receiver 41 receives the review request sent by the cloud device, and the review request sent by the cloud device includes a list of RFID data to be reviewed as cloud data;
  • the review request includes information on the storage area where the item data to be reviewed is located;
  • the transmitter 43 sends a review response to the terminal device;
  • the edge device receives the collected RFID data returned by the terminal device as terminal data.
  • the receiver 41 receives the RFID data list to be reviewed issued by the terminal device forwarded by the cloud device as cloud data, and the cloud data is sent to the terminal device by the cloud device in response to the review request sent by the terminal device; the receiver 41 Receive the collected RFID data sent by the terminal equipment as terminal data.
  • the receiver 41 receives the RFID data list to be put on the shelf sent by the cloud device forwarded by the terminal device as the cloud data, and the cloud data is sent to the terminal device by the cloud device in response to the shelf request sent by the terminal device; the receiver 41 Receive the collected RFID data sent by the terminal equipment as terminal data.
  • the terminal device is a gantry hardware device
  • the cloud device is an article management system
  • the cloud data is the review sheet data
  • the terminal data is RFID data
  • the processor 42 performs the verification of the review data
  • the transmitter 43 verifies the review data
  • the inspection result is sent to the application of the item management system, and the review status is sent to the display device.
  • Fig. 5 shows a block diagram of other embodiments of edge devices of the present disclosure.
  • the edge device 5 of this embodiment includes: a memory 51 and a processor 52 coupled to the memory 51.
  • the processor 52 is configured to execute any of the present disclosure based on instructions stored in the memory 51.
  • a verification method for data in one embodiment.
  • the memory 51 may include, for example, a system memory, a fixed non-volatile storage medium, and the like.
  • the system memory stores, for example, an operating system, an application program, a Boot Loader, a database, and other programs.
  • FIG. 6 shows a block diagram of still other embodiments of edge devices of the present disclosure.
  • the edge device 6 of this embodiment includes: a memory 610 and a processor 620 coupled to the memory 610 , and the processor 620 is configured to execute any one of the aforementioned implementations based on instructions stored in the memory 610 .
  • the verification method of the data in the example includes: a memory 610 and a processor 620 coupled to the memory 610 , and the processor 620 is configured to execute any one of the aforementioned implementations based on instructions stored in the memory 610 .
  • the verification method of the data in the example.
  • the memory 610 may include, for example, a system memory, a fixed non-volatile storage medium, and the like.
  • the system memory stores, for example, an operating system, an application program, a Boot Loader program, and other programs.
  • the edge device 6 may further include an input and output interface 630, a network interface 640, a storage interface 650, and the like. These interfaces 630 , 640 , and 650 , as well as the memory 610 and the processor 620 may be connected through a bus 660 , for example.
  • the input and output interface 630 provides a connection interface for input and output devices such as a display, a mouse, a keyboard, a touch screen, a microphone, and a speaker.
  • the network interface 640 provides a connection interface for various networked devices.
  • the storage interface 650 provides connection interfaces for external storage devices such as SD cards and U disks.
  • FIG. 7 shows a block diagram of some embodiments of the verification system for data of the present disclosure.
  • the data verification system 7 includes: an edge device 71, which is used to execute the data verification method in any of the above embodiments; a cloud device 72, which is used to send cloud data; a terminal device 73, Used to collect terminal data.
  • the embodiments of the present disclosure may be provided as methods, systems, or computer program products. Accordingly, the present disclosure can take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, the present disclosure may take the form of a computer program product embodied on one or more computer-usable non-transitory storage media including, but not limited to, disk storage, CD-ROM, optical storage, etc., having computer-usable program code embodied therein.
  • the methods and systems of the present disclosure may be implemented in many ways.
  • the methods and systems of the present disclosure may be implemented by software, hardware, firmware, or any combination of software, hardware, and firmware.
  • the above-mentioned order for the steps of the method is for illustration only, and the steps of the method of the present disclosure are not limited to the order specifically described above, unless otherwise specifically stated.
  • the present disclosure can also be implemented as programs recorded in recording media, the programs including machine-readable instructions for realizing the method according to the present disclosure.
  • the present disclosure also covers a recording medium storing a program for executing the method according to the present disclosure.

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Abstract

本公开涉及一种数据的校验方法、系统和边缘端设备,涉及计算机技术领域。该数据的校验包括:边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据;边缘端设备根据业务处理逻辑,对云端数据、终端数据进行校验;边缘端设备将校验结果,发送给云端设备或者终端设备的至少一个。

Description

数据的校验方法、系统和边缘端设备
相关申请的交叉引用
本申请是以CN申请号为202110737908.0,申请日为2021年6月30日的申请为基础,并主张其优先权,该CN申请的公开内容在此作为整体引入本申请中。
技术领域
本公开涉及计算机技术领域,特别涉及一种数据的校验方法、数据的校验系统、边缘端设备和非易失性计算机可读存储介质。
背景技术
近年来,RFID(Radio Frequency Identification,射频识别)以其无接触、批量读取、易盘点等优点,受到了各大领域以及仓储门店的青睐。
在相关技术中,可以基于RFID读写器等终端设备进行校验计算;或者基于云端设备进行校验计算。
发明内容
根据本公开的一些实施例,提供了一种数据的校验方法,包括:边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据;边缘端设备根据业务处理逻辑,对云端数据、终端数据进行校验;边缘端设备将校验结果,发送给云端设备或者终端设备的至少一个。
在一些实施例中,在接收云端数据和终端数据之前,校验方法还包括:边缘端设备向云端设备发送校验激活请求;边缘端设备接收云端设备返回的激活响应,激活响应中包括业务处理逻辑的相关信息。
在一些实施例中,校验激活请求包括边缘端设备当前部署的边缘软件的版本信息,激活响应包括边缘软件的更新信息。
在一些实施例中,根据业务处理逻辑,对云端数据、终端数据进行校验包括:边缘端设备利用终端数据去匹配云端数据,并根据匹配结果确定是否通过校验;或边缘端设备根据云端数据对终端数据进行校验。
在一些实施例中,根据业务处理逻辑,对云端数据、终端数据进行校验包括:边 缘端设备判断终端数据是否包含异常数据;边缘端设备根据判断结果和匹配结果,确定是否通过校验。
在一些实施例中,云端数据为包含物品标签数据的复核单数据;判断终端数据是否异常包括:边缘端设备根据物品位置信息或标签数据的状态信息中的至少一个,判断终端数据是否包含异常数据。
在一些实施例中,云端数据包括物品标签数据;根据业务处理逻辑,对云端数据、终端数据进行校验包括:边缘端设备判断终端数据是否与终端设备所在的位置匹配;在不匹配的情况下,边缘端设备将终端数据上报云端设备,以便云端设备判断终端数据是否为异常数据。
在一些实施例中,边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据包括:边缘端设备接收云端设备下发的复核请求,复核请求中包括待复核的射频识别RFID数据列表作为云端数据;边缘端设备接收终端设备采集的RFID数据作为终端数据。
在一些实施例中,将校验结果,发送给云端设备或者终端设备的至少一个包括:边缘端设备将与云端数据不匹配的终端数据,发送给云端设备;边缘端设备将云端设备对不匹配的终端数据进行的异常数据过滤结果和校验结果,发送给终端设备;边缘端设备接收终端设备返回的复核完成信息,复核完成信息包括复核单号;边缘端设备将复核完成信息发送给云端设备,复核完成信息包括复核单号、完成复核的RFID数据列表和异常情况登记信息。
在一些实施例中,边缘端设备接收终端设备采集的RFID数据作为终端数据包括:边缘端设备接收终端设备发来的校验请求,校验请求为终端设备根据云端设备下发的边缘定向地址发来,校验请求中包括校验单号;边缘端设备向终端设备发送校验确认信息,校验确认信息中包括校验单号;边缘端设备接收终端设备采集的RFID数据作为终端数据。
在一些实施例中,边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据包括:边缘端设备将终端设备发来的复核请求,发送给云端设备,复核请求中包括待复核的物品数据所在位置的信息;边缘端设备将云端设备返回的复核响应,发送给终端设备,复核响应中包括待复核的RFID数据列表作为云端数据;边缘端设备接收终端设备采集的RFID数据作为终端数据。
在一些实施例中,边缘端设备接收云端设备下发的云端数据和终端设备采集的终 端数据包括:边缘端设备接收云端设备下发的盘点请求,盘点请求中包括待盘点的数据列表作为云端数据;边缘端设备接收终端设备采集的盘点数据作为终端数据。
在一些实施例中,将校验结果,发送给云端设备或者终端设备的至少一个包括:边缘端设备将校验结果发送给终端设备;边缘端设备接收终端设备返回的盘点结束信息后,将盘点结果数据发送给云端设备。
在一些实施例中,边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据包括:边缘端设备将终端设备发来的复核请求发送给云端设备,复核请求中包括待复核的物品数据所在仓储区域的信息;边缘端设备将云端设备返回的复核响应发送给终端设备,复核响应包括待复核的RFID数据列表作为云端数据;边缘端设备接收终端设备返回的采集的RFID数据作为终端数据。
在一些实施例中,边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据包括:边缘端设备接收云端设备发来的复核请求,云端设备发来的复核请求包括待复核的RFID数据列表作为云端数据;边缘端设备接收终端设备发来的复核请求,终端设备发来的复核请求包括待复核的物品数据所在仓储区域的信息;边缘端设备向终端设备发送复核响应;边缘端设备接收终端设备返回的采集的RFID数据作为终端数据。
在一些实施例中,边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据包括:边缘端设备接收终端设备转发云端设备下发的待复核的RFID数据列表作为云端数据,云端数据为云端设备响应于终端设备发送的复核请求下发给终端设备;边缘端设备接收终端设备发来的采集的RFID数据作为终端数据。
在一些实施例中,边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据包括:边缘端设备接收终端设备转发云端设备下发的待上架的RFID数据列表作为云端数据,云端数据为云端设备响应于终端设备发送的上架请求下发给终端设备;边缘端设备接收终端设备发来的采集的RFID数据作为终端数据。
在一些实施例中,终端设备为龙门架硬件设备,云端设备为物品管理系统,云端数据为复核单数据,终端数据为RFID数据;根据业务处理逻辑,对云端数据、终端数据进行校验包括:边缘端设备进行复核数据校验;将校验结果,发送给云端设备或者终端设备的至少一个包括:将复核数据校验结果发送给物品管理系统的应用,将复核状态发送给显示设备。
根据本公开的另一些实施例,提供一种边缘端设备,包括:接收器,用于接收云 端设备下发的云端数据和终端设备采集的终端数据;处理器,用于根据业务处理逻辑,对云端数据、终端数据进行校验;发送器,用于将校验结果,发送给云端设备或者终端设备的至少一个。
根据本公开的又一些实施例,提供一种数据的校验系统,包括:边缘端设备,用于执行上述任一个实施例中的数据的校验方法;云端设备,用于下发云端数据;终端设备,用于采集终端数据。
根据本公开的又一些实施例,提供一种边缘端设备,包括:存储器;和耦接至存储器的处理器,处理器被配置为基于存储在存储器装置中的指令,执行上述任一个实施例中的数据的校验方法。
根据本公开的再一些实施例,提供一种非易失性计算机可读存储介质,其上存储有计算机程序,该程序被处理器执行时实现上述任一个实施例中的数据的校验方法。
在上述实施例中,将校验计算任务下发到边缘端被,降低了终端成本和功耗;且边缘端设备替代了云端进行校验处理,提高了处理效率、降低了网络负荷,从而提高了校验效果。
附图说明
构成说明书的一部分的附图描述了本公开的实施例,并且连同说明书一起用于解释本公开的原理。
参照附图,根据下面的详细描述,可以更加清楚地理解本公开:
图1示出本公开的数据的校验方法的一些实施例的流程图;
图2示出本公开的边缘端设备的初始化配置的一些实施例的示意图;
图3a示出本公开的边缘端和云端的协同校验的一些实施例的示意图;
图3b示出本公开的边缘端和云端的协同校验的另一些实施例的示意图;
图3c示出本公开的盘点校验的一些实施例的示意图;
图3d示出本公开的复核校验的一些实施例的示意图;
图3e示出本公开的复核校验的另一些实施例的示意图;
图3f示出本公开的复核校验的又一些实施例的示意图;
图3g示出本公开的复核校验的再一些实施例的示意图;
图3h示出本公开的入库、收货校验的一些实施例的示意图;
图3i示出本公开的数据的校验方法的一些实施例的示意图;
图4示出本公开的边缘端设备的一些实施例的框图;
图5示出本公开的边缘端设备的另一些实施例的框图;
图6示出本公开的边缘端设备的又一些实施例的框图;
图7示出本公开的数据的校验系统的一些实施例的框图。
具体实施方式
现在将参照附图来详细描述本公开的各种示例性实施例。应注意到:除非另外具体说明,否则在这些实施例中阐述的部件和步骤的相对布置、数字表达式和数值不限制本公开的范围。
同时,应当明白,为了便于描述,附图中所示出的各个部分的尺寸并不是按照实际的比例关系绘制的。
以下对至少一个示例性实施例的描述实际上仅仅是说明性的,决不作为对本公开及其应用或使用的任何限制。
对于相关领域普通技术人员已知的技术、方法和设备可能不作详细讨论,但在适当情况下,技术、方法和设备应当被视为授权说明书的一部分。
在这里示出和讨论的所有示例中,任何具体值应被解释为仅仅是示例性的,而不是作为限制。因此,示例性实施例的其它示例可以具有不同的值。
应注意到:相似的标号和字母在下面的附图中表示类似项,因此,一旦某一项在一个附图中被定义,则在随后的附图中不需要对其进行进一步讨论。
如前所述,基于RFID的仓储作业面临新的挑战:仓储作业往往涉及到标签或者条码的校验,包括入库、盘点、出库复核等等,以保障物品的一致性;基于RFID批量识别进行的仓储作业需要同时进行大并发的校验,从而给终端校验和云端校验带来挑战。
例如,对于基于RFID读写器终端校验计算的RFID仓储管理系统,考虑作业现场网络的不可控因素,有不少校验计算会分发到终端,包括RFID固定读写器站点等形态。
这样的校验方式存在如下问题:要求终端在存储和算力能力较强,增加终端和单节点的功耗和成本,一旦终端或者节点能力不足,则造成系统卡顿、反应慢等现象,影响体验、更影响生产效率;大量的校验数据发送到完全分布式的终端,潜在存在数据安全隐患。
例如,对于基于云校验计算的RFID仓储管理系统,云端具备丰富的存储和算力, 在计算和存储能够缓解终端负担。但是,由于云端网络链条太长,系统响应时延较长,并且一旦网络不稳定,会导致响应失败。大批量数据实时上传,也对网络造成更大的挑战。
也就是说,在面向仓储管理时,基于终端侧或者云端侧的RFID批量数据采集和校验,不能很好地兼顾终端成本、数据安全和作业快速响应。
仓储管理的入库、盘点以及出库环节,均涉及RFID批量数据采集和校验。这些环节RFID应用的体验以及成本的下降将直接提升RFID应用的ROI(Return On Investment,投资回报率),包括削减终端成本,提升作业体验和作业效率。
本公开的发明人发现上述相关技术中存在如下问题:无法兼顾设备成本、校验效率等因素,导致校验效果下降。
鉴于此,本公开提出了一种数据的校验技术方案,能够降低设备成本、提高校验效率,从而提高校验效果。针对上述技术问题,可以利用如下的实施例实现本公开的技术方案。
图1示出本公开的数据的校验方法的一些实施例的流程图。
如图1所示,在步骤110中,边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据。
例如,终端设备可以为RFID读写器,包含手持的读写器、支持RFID采集的PDA(Personal Digital Assistant,个人掌上助手)、固定安装的RFID读写器(包括通道门等)、只读不写的RFID采集设备、RFID激励和采集数据接收分离的RFID采集装置等。
例如,RFID读写器通过WiFi(Wireless-Fidelity,无线保真)、有线、USB(Universal Serial Bus,通用串行总线)等局域线路与边缘端设备进行连接,也可以利用蜂窝网络等方式连接。
例如,边缘端设备和RFID读写器可以是一对一的关系,也可以是一对多的关系。从作业调度来说,边缘端设备和RFID读写器也可以是多对多的关系,通过多个边缘端设备进行负载均衡调度。
在一些实施例中,云端设备响应于相应事件的触发,主动推送待校验数据(云端数据)到边缘端设备。例如,在一个拣货任务或者拣货合流完成之后,作为云端设备的WMS(Warehouse Management System,仓库管理系统)向该拣货任务对应仓储的边缘端设备发送包含RFID列表的复核单。
例如,云端设备可以是物品管理系统。物品管理系统可以为WMS、门店系统、资产管理系统等,物品可以包括托盘、料箱、仓储商品等。
在一些实施例中,在作业终端侧设备发起复核请求的时候,云端设备推送待校验数据到边缘端设备;或者待校验数据经过终端侧设备转发到边缘端设备。
在一些实施例中,在步骤110之前,校验方法还包括:边缘端设备向云端设备发送校验激活请求;边缘端设备接收云端设备返回的激活响应,激活响应中包括业务处理逻辑的相关信息。
例如,校验激活请求包括边缘端设备当前部署的边缘软件的版本信息,激活响应包括边缘软件的更新信息。边缘软件可以为业务处理逻辑相关的边缘软件。
例如,校验激活请求可以包括校验激活更新请求。
在一些实施例中,云端设备向边缘端设备发送校验激活请求或者校验激活更新;云端设备接收边缘端设备返回的激活响应,激活响应中包含校验激活或者校验激活更新确认。
例如,校验激活更新包括云端设备当前支持的业务处理逻辑相关的边缘软件的版本信息。激活响应可以包含边缘软件的下载确认和链接请求。
在一些实施例中,可以提前在边缘端设备部署用于校验处理的软件,软件包含了业务处理逻辑。例如,业务处理逻辑包括校验单号解析方法、校验规则和算法,还可以包括校验输入数据格式、校验输出数据格式、事件驱动交互方法等。
例如,业务处理逻辑可以如下表进行设置:
Figure PCTCN2022089002-appb-000001
Figure PCTCN2022089002-appb-000002
例如,标签数据的状态信息包括绑定仓库货物的状态,可以是初始化状态(完成打印,没有上架)、在库状态(已经上架成功)、出库状态(已经复核出库)、下架状态(待复核)等。
例如,对于异常的数据的检测可以包括:在复核过程中,发现在某个储位有大量的标签在复核单里;结合辅助信息(如储位的地图),发现这些标签有些为复核区附近的在库货物的标签,这些货物并没有拉到仓库复核的月台;确定这部分标签数据是异常数据,为复核区旁边储位漂移(被误识别)来的标签数据。
在一些实施例中,可以通过图2的实施例进行边缘端设备的初始化配置。
图2示出本公开的边缘端设备的初始化配置的一些实施例的示意图。
如图2所示,在边缘端设备注册过程中,边缘端设备提前下载需要部署的边缘SDK(Software Development Kit,软件开发工具包)和证书;边缘端设备向云端设备发送注册请求,注册请求中包含证书;云端设备进行鉴权和激活处理;云端设备向边缘端设备返回注册响应,注册响应包括边缘端设备的编号和token(令牌)。
在边缘端设备更新的过程中,云端设备向边缘端设备发送设备更新请求;云端设备为边缘端设备生成新的token;边缘端设备返回设备更新确认信息。
在软件同步过程中,边缘端设备向云端设备发送RFID校验激活请求,包括当前部署的软件版本;云端设备返回激活响应。
例如,激活响应为激活确认信息或者软件更新信息,包含业务处理逻辑(如校验单号规则、校验规则、校验算法、校验输入数据格式,校验输出数据格式、事件驱动交互方法等)。
在长连接过程中,边缘端设备和云端设备之间可以通过发送连续心跳信号,降低响应时延。
在接收了云端和终端的数据后,可以通过图1中的其余步骤进行继续处理。
在步骤120中,边缘端设备根据业务处理逻辑,对云端数据、终端数据进行校验。
在一些实施例中,在仓储环境中,校验可以包括仓库货物批量入库RFID合法性校验、在库RFID盘点校验、批量精准出库RFID校验、RFID复核校验等。
例如,对于仓库资产的场景,上述校验过程可以用于托盘等RFID资产的盘点。也可以用于门店批量收货场景、批量结算校验等场景。
在一些实施例中,边缘端设备利用终端数据去匹配云端数据;边缘端设备根据匹配结果,确定是否通过校验。例如,边缘端设备判断终端数据是否包含异常数据;边缘端设备根据判断结果和匹配结果,确定是否通过校验。
例如,在判断终端数据是否异常之后,还可以进一步判断物品位置是否异常。
在一些实施例中,云端数据为包含物品标签数据的复核单数据。边缘端设备根据物品位置信息或标签数据的状态信息中的至少一个,判断终端数据是否包含异常数据。例如,物品可以为仓储商品。例如,物品位置信息可以为仓库的物品储位信息。
在一些实施例中,云端数据包括物品标签数据。边缘端设备判断终端数据是否与终端设备所在的仓储区域匹配;在不匹配的情况下,边缘端设备将终端数据上报云端设备,以便云端设备判断终端数据是否为异常数据。
例如,除了对仓储区域的信息进行匹配,还可以针对门店场景,对物品的位置信息进行匹配。
在一些实施例中,边缘端设备接收云端设备下发的复核请求,复核请求中包括待复核的RFID数据列表作为云端数据;边缘端设备接收终端设备采集的RFID数据作为终端数据。
在步骤130中,边缘端设备将校验结果,发送给云端设备或者终端设备的至少一个。
在一些实施例中,边缘端设备将校验结果直接或者间接同步给作业终端(可和RFID读写器集成一体化)和云端、以及可能的显示端,实现业务状态的同步。
例如,边缘端校验完成之后,可以告知作业终端,由作业终端与云端完成交互;或者边缘端校验完成之后,告知云端,由云端同步到作业终端或者相关的显示端;也可以是边缘端直接同步到作业终端、云端和其他显示端。
在上述实施例中,云端设备将RFID读写器(终端设备)需要校验的业务数据分发到边缘端设备;RFID读写器采集RFID数据后,经由边缘端设备进行校验;边缘端设备将校验结果直接或者间接同步给作业终端设备(如可以与RFID读写器集成一体化)和云端设备、以及可能的显示端,实现业务状态的同步。
这样,引入了RFID边缘侧的校验计算,可以在靠近RFID读写器(终端设备)的地方,为RFID读写器提供公共的存储和计算设备。从而,降低了读写器功耗和成本,并提供实时的计算响应。
在一些实施例中,可以进行边缘端和云端的协同校验。这样,可以避免将大量的数据下发到边缘端,导致产生大量占用边缘端的需求;还可以提高数据的安全性。
例如,在盘点过程中,边缘端设备可以收到邻近两个巷道的待校验数据;如果存在超出这两个巷道的终端采集RFID数据,则上报云端设备;云端设备判断是否操作数据异常。数据异常可以为距离很远的标签漂移,或者非在库标签。这样,边缘端设备不用考虑异常标签状态,降低了处理压力。
例如,在复核过程中,边缘端设备基于待复核的数据列表进行校验;过滤批量的同储位在库异常数据,上报云端异常RFID标签数据;由云端基于更大量的数据,进行过滤确认。
边缘端和云端的协同校验适合于盘点这种特别大量数据局部校验的场景,以及复核这种如果周围环境不是很干净,需要由云端辅助异常数据过滤的场景。
这样,云端基于更大的数据量可以辅助边缘端,进行异常的辅助校验。
图3a示出本公开的边缘端和云端的协同校验的一些实施例的示意图。
如图3a所示,边缘端设备接收云端设备(如RFID引擎服务端或者WMS)下发的复核请求,复核请求中包括待复核的RFID数据列表作为云端数据,还可以包括复核单号等;边缘端设备返回需求确认信息。
边缘端设备接收终端设备(如PDA)发来的复核请求,复核请求中包括待复核的货区所在的月台号;边缘端设备返回复核响应。边缘端设备接收终端设备采集的RFID数据作为终端数据;进行实时校验反馈。
边缘端设备向终端设备返回RFID校验反馈,向云端设备返回未识别的RFID采集数据(与云端数据不匹配的终端数据);云端设备对这些采集数据进行数据过滤和校验后,返回RFID校验反馈。
边缘端设备将云端设备对不匹配的终端数据进行的异常数据过滤结果(如存在多 拣情况的数据等)和校验结果,发送给终端设备;边缘端设备接收终端设备返回的复核完成信息,复核完成信息包括复核单号;边缘端设备将复核完成信息发送给云端设备,复核完成信息包括复核单号、完成复核的RFID数据列表和异常情况登记信息。
图3b示出本公开的边缘端和云端的协同校验的另一些实施例的示意图。
如图3b所示,边缘端设备将终端设备发来的复核请求,发送给云端设备,复核请求中包括待复核的物品数据所在仓储区域的信息(如月台号);边缘端设备将云端设备返回的复核响应,发送给终端设备,复核响应中包括待复核的RFID数据列表作为云端数据;边缘端设备接收终端设备采集的RFID数据作为终端数据。
图3c示出本公开的盘点校验的一些实施例的示意图。
如图3c所示,边缘端设备接收云端设备下发的盘点请求,盘点请求中包括待盘点的数据列表作为云端数据,返回盘点任务响应。例如,还可以返回盘点区域标识。
边缘端设备向终端设备下方盘点任务,接收终端设备采集的盘点数据作为终端数据进行校验。例如,盘点数据可以包括RFID数据列表。
边缘端设备将校验结果发送给终端设备,终端设备可以进行可视化显示;边缘端设备接收终端设备返回的盘点结束信息后,将盘点结果数据发送给云端设备。
例如,盘点结果数据包括盘点数据列表、对应的校验结果中的至少一项。
图3d示出本公开的复核校验的一些实施例的示意图。
如图3d所示,终端设备向服务端设备发送复核请求,包括复核单号(如月台号等待复核仓储位置的标识);服务端设备返回复核确认信息,包括指向与该复核单号相应的边缘端设备的边缘定向地址,以及校验单号。
边缘端设备接收终端设备发来的校验请求,校验请求为终端设备根据云端设备下发的边缘定向地址发来,校验请求中包括校验单号;边缘端设备向终端设备发送校验确认信息,校验确认信息中包括校验单号;边缘端设备接收终端设备采集的RFID数据作为终端数据。
图3e示出本公开的复核校验的另一些实施例的示意图。
如图3e所示,边缘端设备将终端设备发来的复核请求发送给云端设备,复核请求中包括待复核的物品数据所在仓储区域的信息;边缘端设备将云端设备返回的复核响应发送给终端设备,复核响应包括待复核的RFID数据列表作为云端数据;边缘端设备接收终端设备返回的采集的RFID数据作为终端数据。
图3f示出本公开的复核校验的又一些实施例的示意图。
如图3f所示,边缘端设备接收云端设备发来的复核请求,云端设备发来的复核请求包括待复核的RFID数据列表作为云端数据;边缘端设备接收终端设备发来的复核请求,终端设备发来的复核请求包括待复核的物品数据所在仓储区域的信息;边缘端设备向终端设备发送复核响应;边缘端设备接收终端设备返回的采集的RFID数据作为终端数据。
终端设备可以向边缘端设备发送登记异常信息和复核完成信息;边缘端设备将登记异常信息和复核完成信息发送给云端设备。
图3g示出本公开的复核校验的再一些实施例的示意图。
如图3g所示,终端设备向云端设备发送复核请求,复核请求中包括待复核的货物所在月台号;云端设备返回复核响应,包括待复核的RFID数据列表。
边缘端设备接收终端设备转发云端设备下发的待复核的RFID数据列表作为云端数据,云端数据为云端设备响应于终端设备发送的复核请求下发给终端设备;边缘端设备接收终端设备发来的采集的RFID数据作为终端数据。
图3h示出本公开的入库、收货校验的一些实施例的示意图。
如图3h所示,终端设备向云端设备发送上架请求,上架请求中包括待上架的货物所在容器号;云端设备返回上架响应,包括待上架的RFID数据列表。
边缘端设备接收终端设备转发云端设备下发的待上架的RFID数据列表作为云端数据,云端数据为云端设备响应于终端设备发送的上架请求下发给终端设备;边缘端设备接收终端设备发来的采集的RFID数据作为终端数据。
边缘端设备向终端设备返回采集完成信息;终端设备将上架的RIID数据列表发送给云端设备。
图3i示出本公开的数据的校验方法的一些实施例的示意图。
如图3i所示,终端设备为龙门架硬件设备,云端设备为WMS,云端数据为复核单数据,终端数据为RFID数据。
边缘端设备接收WMS发来的复核单(复核任务),接收龙门架硬件设备发来的RFID数据(读写数据);边缘端设备进行复核数据校验。
边缘端设备将复核数据校验结果发送给WMS的应用,将复核状态发送给终端设备的显示设备。
例如,也可以将复核状态发送给云端设备,或者仓库现场的显示设备。
上述实施例中,降低了RFID采集设备的成本和功耗;加速了RFID校验响应的速 度,提升了业务体验;通过端云协同、端边协同,按需控制校验数据分发,提升了系统安全。
图4示出本公开的边缘端设备的一些实施例的框图。
如图4所示,边缘端设备4包括:接收器41,用于接收云端设备下发的云端数据和终端设备采集的终端数据;处理器42,用于根据业务处理逻辑,对云端数据、终端数据进行校验;发送器43,用于将校验结果,发送给云端设备或者终端设备的至少一个。
在一些实施例中,发送器43向云端设备发送校验激活请求;接收器41接收云端设备返回的激活响应,激活响应中包括业务处理逻辑的相关信息。
在一些实施例中,校验激活请求包括边缘端设备当前部署的边缘软件的版本信息,激活响应包括边缘软件的更新信息。
在一些实施例中,处理器42利用终端数据去匹配云端数据;处理器42根据匹配结果,确定是否通过校验。
在一些实施例中,处理器42判断终端数据是否包含异常数据;处理器42根据判断结果和匹配结果,确定是否通过校验。
在一些实施例中,云端数据为包含物品标签数据的复核单数据;处理器42根据物品位置信息或标签数据的状态信息中的至少一个,判断终端数据是否包含异常数据。
在一些实施例中,云端数据包括物品标签数据;处理器42判断终端数据是否与终端设备所在的位置匹配;在不匹配的情况下,发送器43将终端数据上报云端设备,以便云端设备判断终端数据是否为异常数据。
在一些实施例中,接收器41接收云端设备下发的复核请求,复核请求中包括待复核的射频识别RFID数据列表作为云端数据;接收终端设备采集的RFID数据作为终端数据。
在一些实施例中,发送器43将与云端数据不匹配的终端数据,发送给云端设备;将云端设备对不匹配的终端数据进行的异常数据过滤结果和校验结果,发送给终端设备;接收终端设备返回的复核完成信息,复核完成信息包括复核单号;将复核完成信息发送给云端设备,复核完成信息包括复核单号、完成复核的RFID数据列表和异常情况登记信息。
在一些实施例中,接收器41接收终端设备发来的校验请求,校验请求为终端设备根据云端设备下发的边缘定向地址发来,校验请求中包括校验单号;发送器43向终端 设备发送校验确认信息,校验确认信息中包括校验单号;接收器41接收终端设备采集的RFID数据作为终端数据。
在一些实施例中,发送器43将终端设备发来的复核请求,发送给云端设备,复核请求中包括待复核的物品数据所在位置的信息;将云端设备返回的复核响应,发送给终端设备,复核响应中包括待复核的RFID数据列表作为云端数据;接收器41接收终端设备采集的RFID数据作为终端数据。
在一些实施例中,接收器41接收云端设备下发的盘点请求,盘点请求中包括待盘点的数据列表作为云端数据;接收器41接收终端设备采集的盘点数据作为终端数据。
在一些实施例中,发送器43将校验结果发送给终端设备;接收器41接收终端设备返回的盘点结束信息后,发送器43将盘点结果数据发送给云端设备。
在一些实施例中,发送器43将终端设备发来的复核请求发送给云端设备,复核请求中包括待复核的物品数据所在仓储区域的信息;将云端设备返回的复核响应发送给终端设备,复核响应包括待复核的RFID数据列表作为云端数据;接收器41接收终端设备返回的采集的RFID数据作为终端数据。
在一些实施例中,接收器41接收云端设备发来的复核请求,云端设备发来的复核请求包括待复核的RFID数据列表作为云端数据;接收终端设备发来的复核请求,终端设备发来的复核请求包括待复核的物品数据所在仓储区域的信息;发送器43向终端设备发送复核响应;边缘端设备接收终端设备返回的采集的RFID数据作为终端数据。
在一些实施例中,接收器41接收终端设备转发云端设备下发的待复核的RFID数据列表作为云端数据,云端数据为云端设备响应于终端设备发送的复核请求下发给终端设备;接收器41接收终端设备发来的采集的RFID数据作为终端数据。
在一些实施例中,接收器41接收终端设备转发云端设备下发的待上架的RFID数据列表作为云端数据,云端数据为云端设备响应于终端设备发送的上架请求下发给终端设备;接收器41接收终端设备发来的采集的RFID数据作为终端数据。
在一些实施例中,终端设备为龙门架硬件设备,云端设备为物品管理系统,云端数据为复核单数据,终端数据为RFID数据;处理器42进行复核数据校验;发送器43将复核数据校验结果发送给物品管理系统的应用,将复核状态发送给显示设备。
图5示出本公开的边缘端设备的另一些实施例的框图。
如图5所示,该实施例的边缘端设备5包括:存储器51以及耦接至该存储器51的处理器52,处理器52被配置为基于存储在存储器51中的指令,执行本公开中任意 一个实施例中的数据的校验方法。
其中,存储器51例如可以包括系统存储器、固定非易失性存储介质等。系统存储器例如存储有操作系统、应用程序、引导装载程序Boot Loader、数据库以及其他程序等。
图6示出本公开的边缘端设备的又一些实施例的框图。
如图6所示,该实施例的边缘端设备6包括:存储器610以及耦接至该存储器610的处理器620,处理器620被配置为基于存储在存储器610中的指令,执行前述任意一个实施例中的数据的校验方法。
存储器610例如可以包括系统存储器、固定非易失性存储介质等。系统存储器例如存储有操作系统、应用程序、引导装载程序Boot Loader以及其他程序等。
边缘端设备6还可以包括输入输出接口630、网络接口640、存储接口650等。这些接口630、640、650以及存储器610和处理器620之间例如可以通过总线660连接。其中,输入输出接口630为显示器、鼠标、键盘、触摸屏、麦克、音箱等输入输出设备提供连接接口。网络接口640为各种联网设备提供连接接口。存储接口650为SD卡、U盘等外置存储设备提供连接接口。
图7示出本公开的数据的校验系统的一些实施例的框图。
如图7所示,数据的校验系统7包括:边缘端设备71,用于执行上述任一个实施例中的数据的校验方法;云端设备72,用于下发云端数据;终端设备73,用于采集终端数据。
本领域内的技术人员应当明白,本公开的实施例可提供为方法、系统、或计算机程序产品。因此,本公开可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本公开可采用在一个或多个其中包含有计算机可用程序代码的计算机可用非瞬时性存储介质包括但不限于磁盘存储器、CD-ROM、光学存储器等上实施的计算机程序产品的形式。
至此,已经详细描述了根据本公开的数据的校验方法、数据的校验系统、边缘端设备和非易失性计算机可读存储介质。为了避免遮蔽本公开的构思,没有描述本领域所公知的一些细节。本领域技术人员根据上面的描述,完全可以明白如何实施这里公开的技术方案。
可能以许多方式来实现本公开的方法和系统。例如,可通过软件、硬件、固件或者软件、硬件、固件的任何组合来实现本公开的方法和系统。用于方法的步骤的上述 顺序仅是为了进行说明,本公开的方法的步骤不限于以上具体描述的顺序,除非以其它方式特别说明。此外,在一些实施例中,还可将本公开实施为记录在记录介质中的程序,这些程序包括用于实现根据本公开的方法的机器可读指令。因而,本公开还覆盖存储用于执行根据本公开的方法的程序的记录介质。
虽然已经通过示例对本公开的一些特定实施例进行了详细说明,但是本领域的技术人员应该理解,以上示例仅是为了进行说明,而不是为了限制本公开的范围。本领域的技术人员应该理解,可在不脱离本公开的范围和精神的情况下,对以上实施例进行修改。本公开的范围由所附权利要求来限定。

Claims (22)

  1. 一种数据的校验方法,包括:
    边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据;
    所述边缘端设备根据业务处理逻辑,对所述云端数据、所述终端数据进行校验;
    所述边缘端设备将校验结果,发送给所述云端设备或者终端设备的至少一个。
  2. 根据权利要求1所述的校验方法,在接收云端数据和终端数据之前,还包括:
    所述边缘端设备向所述云端设备发送校验激活请求;
    所述边缘端设备接收所述云端设备返回的激活响应,所述激活响应中包括所述业务处理逻辑的相关信息。
  3. 根据权利要求2所述的校验方法,其中,
    所述校验激活请求包括所述边缘端设备当前部署的边缘软件的版本信息,所述激活响应包括所述边缘软件的更新信息。
  4. 根据权利要求1所述的校验方法,其中,所述根据业务处理逻辑,对所述云端数据、所述终端数据进行校验包括:
    所述边缘端设备利用所述终端数据去匹配所述云端数据,并根据匹配结果确定是否通过校验;或
    所述边缘端设备根据所述云端数据对所述终端数据进行校验。
  5. 根据权利要求4所述的校验方法,其中,所述根据业务处理逻辑,对所述云端数据、所述终端数据进行校验包括:
    所述边缘端设备判断所述终端数据是否包含异常数据;
    所述边缘端设备根据判断结果和所述匹配结果,确定是否通过校验。
  6. 根据权利要求5所述的校验方法,其中,
    所述云端数据为包含物品标签数据的复核单数据;
    所述判断所述终端数据是否包含异常数据包括:
    所述边缘端设备根据物品位置信息或标签数据的状态信息中的至少一个,判断所述终端数据是否包含异常数据。
  7. 根据权利要求1所述的校验方法,其中,
    所述云端数据包括物品标签数据;
    所述根据业务处理逻辑,对所述云端数据、所述终端数据进行校验包括:
    所述边缘端设备判断所述终端数据是否与所述终端设备所在的位置匹配;
    在不匹配的情况下,所述边缘端设备将所述终端数据上报所述云端设备,以便所述云端设备判断所述终端数据是否为异常数据。
  8. 根据权利要求1-7任一项所述的校验方法,其中,所述边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据包括:
    所述边缘端设备接收所述云端设备下发的复核请求,所述复核请求中包括待复核的射频识别RFID数据列表作为所述云端数据;
    所述边缘端设备接收所述终端设备采集的RFID数据作为所述终端数据。
  9. 根据权利要求8所述的校验方法,其中,所述将校验结果,发送给所述云端设备或者终端设备的至少一个包括:
    所述边缘端设备将与所述云端数据不匹配的终端数据,发送给所述云端设备;
    所述边缘端设备将所述云端设备对所述不匹配的终端数据进行的异常数据过滤结果和校验结果,发送给所述终端设备;
    所述边缘端设备接收所述终端设备返回的复核完成信息,所述复核完成信息包括复核单号;
    所述边缘端设备将复核完成信息发送给所述云端设备,所述复核完成信息包括复核单号、完成复核的RFID数据列表和异常情况登记信息。
  10. 根据权利要求8所述的校验方法,其中,所述边缘端设备接收所述终端设备采集的RFID数据作为所述终端数据包括:
    所述边缘端设备接收所述终端设备发来的校验请求,所述校验请求为所述终端设备根据所述云端设备下发的边缘定向地址发来,所述校验请求中包括校验单号;
    所述边缘端设备向所述终端设备发送校验确认信息,所述校验确认信息中包括校验单号;
    所述边缘端设备接收所述终端设备采集的RFID数据作为所述终端数据。
  11. 根据权利要求1-7任一项所述的校验方法,其中,所述边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据包括:
    所述边缘端设备将所述终端设备发来的复核请求,发送给所述云端设备,所述复核请求中包括待复核的物品数据所在位置的信息;
    所述边缘端设备将所述云端设备返回的复核响应,发送给所述终端设备,所述复核响应中包括待复核的RFID数据列表作为所述云端数据;
    所述边缘端设备接收所述终端设备采集的RFID数据作为所述终端数据。
  12. 根据权利要求1-7任一项所述的校验方法,其中,所述边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据包括:
    所述边缘端设备接收所述云端设备下发的盘点请求,所述盘点请求中包括待盘点的数据列表作为所述云端数据;
    所述边缘端设备接收所述终端设备采集的盘点数据作为所述终端数据。
  13. 根据权利要求12所述的校验方法,其中,所述将校验结果,发送给所述云端设备或者终端设备的至少一个包括:
    所述边缘端设备将校验结果发送给所述终端设备;
    所述边缘端设备接收所述终端设备返回的盘点结束信息后,将盘点结果数据发送给所述云端设备。
  14. 根据权利要求1-7任一项所述的校验方法,其中,所述边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据包括:
    所述边缘端设备将所述终端设备发来的复核请求发送给所述云端设备,所述复核请求中包括待复核的物品数据所在仓储区域的信息;
    所述边缘端设备将所述云端设备返回的复核响应发送给所述终端设备,所述复核响应包括待复核的RFID数据列表作为所述云端数据;
    所述边缘端设备接收所述终端设备返回的采集的RFID数据作为所述终端数据。
  15. 根据权利要求1-7任一项所述的校验方法,其中,所述边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据包括:
    所述边缘端设备接收所述云端设备发来的复核请求,所述云端设备发来的复核请求包括待复核的RFID数据列表作为所述云端数据;
    所述边缘端设备接收所述终端设备发来的复核请求,所述终端设备发来的复核请求包括待复核的物品数据所在仓储区域的信息;
    所述边缘端设备向所述终端设备发送复核响应;
    所述边缘端设备接收所述终端设备返回的采集的RFID数据作为所述终端数据。
  16. 根据权利要求1-7任一项所述的校验方法,其中,所述边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据包括:
    所述边缘端设备接收所述终端设备转发所述云端设备下发的待复核的RFID数据列表作为所述云端数据,所述云端数据为所述云端设备响应于所述终端设备发送的复 核请求下发给所述终端设备;
    所述边缘端设备接收所述终端设备发来的采集的RFID数据作为所述终端数据。
  17. 根据权利要求1-7任一项所述的校验方法,其中,所述边缘端设备接收云端设备下发的云端数据和终端设备采集的终端数据包括:
    所述边缘端设备接收所述终端设备转发所述云端设备下发的待上架的RFID数据列表作为所述云端数据,所述云端数据为所述云端设备响应于所述终端设备发送的上架请求下发给所述终端设备;
    所述边缘端设备接收所述终端设备发来的采集的RFID数据作为所述终端数据。
  18. 根据权利要求1-7任一项所述的校验方法,其中,所述终端设备为龙门架硬件设备,所述云端设备为物品管理系统,所述云端数据为复核单数据,所述终端数据为RFID数据;
    所述根据业务处理逻辑,对所述云端数据、所述终端数据进行校验包括:
    所述边缘端设备进行复核数据校验;
    将所述校验结果,发送给所述云端设备或者终端设备的至少一个包括:
    将复核数据校验结果发送给所述物品管理系统的应用,将复核状态发送给显示设备。
  19. 一种边缘端设备,包括:
    接收器,用于接收云端设备下发的云端数据和终端设备采集的终端数据;
    处理器,用于根据业务处理逻辑,对所述云端数据、所述终端数据进行校验;
    发送器,用于将校验结果,发送给所述云端设备或者终端设备的至少一个。
  20. 一种数据的校验系统,包括:
    边缘端设备,用于执行权利要求1-18任一项所述的数据的校验方法;
    云端设备,用于下发云端数据;
    终端设备,用于采集终端数据。
  21. 一种边缘端设备,包括:
    存储器;和
    耦接至所述存储器的处理器,所述处理器被配置为基于存储在所述存储器中的指令,执行权利要求1-18任一项所述的数据的校验方法。
  22. 一种非易失性计算机可读存储介质,其上存储有计算机程序,该程序被处理器执行时实现权利要求1-18任一项所述的数据的校验方法。
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