WO2020024357A1 - 仓库管理方法、装置、计算机设备及存储介质 - Google Patents

仓库管理方法、装置、计算机设备及存储介质 Download PDF

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Publication number
WO2020024357A1
WO2020024357A1 PCT/CN2018/104070 CN2018104070W WO2020024357A1 WO 2020024357 A1 WO2020024357 A1 WO 2020024357A1 CN 2018104070 W CN2018104070 W CN 2018104070W WO 2020024357 A1 WO2020024357 A1 WO 2020024357A1
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Prior art keywords
rfid tag
tag number
scanned
item
user
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PCT/CN2018/104070
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English (en)
French (fr)
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李占川
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平安科技(深圳)有限公司
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Publication of WO2020024357A1 publication Critical patent/WO2020024357A1/zh

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    • 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
    • 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

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  • the present application relates to the technical field of the Internet of Things, and in particular, to a warehouse management method, device, computer equipment, and storage medium.
  • the embodiments of the present application provide a warehouse management method, device, computer equipment, and storage medium to solve the problem that when employees collect items from the warehouse or return items to the warehouse, a lot of time is wasted in finding the location of the items, and the time is consumed.
  • a warehouse management method includes:
  • a face scanning device is used to scan the inbound user's face, and the inbound user ID is obtained based on the scanned face scan image;
  • the warehouse user ID is a common employee work number, searching a database based on the common employee work number to obtain a receivable RFID tag number corresponding to the common employee work number;
  • An RFID scanning device is used to scan the space between the first barrier and the second barrier to obtain a first scanned RFID tag number, and to obtain based on the obtainable RFID tag number and the first scanned RFID tag number, A first item list, the first item list including a target item position;
  • a motion trajectory interface is invoked to set an optimal route for the item.
  • a warehouse management device includes:
  • the warehousing user ID acquisition module is configured to use a face scanning device to scan the warehousing user in the first barrier, and obtain the warehousing user ID based on the scanned face scan image;
  • Receivable RFID tag number acquisition module configured to obtain a receivable RFID tag number corresponding to the common employee work number based on the common employee work number if it is determined that the warehoused user ID is a common employee work number ;
  • a first item position acquiring module is configured to scan a space between the first barrier and the second barrier by using an RFID scanning device to acquire a first scanned RFID tag number, and based on the obtainable RFID tag number and the The first scanning of the RFID tag number obtains a first item list, and the first item list includes a first item position;
  • An optimal route acquisition module is configured to call a motion trajectory interface based on the second barrier and the target item position to set an optimal route for the item.
  • a computer device includes a memory, a processor, and computer-readable instructions stored in the memory and executable on the processor.
  • the processor executes the computer-readable instructions, the following steps are implemented:
  • a face scanning device is used to scan the inbound user's face, and the inbound user ID is obtained based on the scanned face scan image;
  • the warehouse user ID is a common employee work number, searching a database based on the common employee work number to obtain a receivable RFID tag number corresponding to the common employee work number;
  • An RFID scanning device is used to scan the space between the first barrier and the second barrier to obtain a first scanned RFID tag number, and to obtain based on the obtainable RFID tag number and the first scanned RFID tag number, A first item list, the first item list including a first item location;
  • a motion trajectory interface is invoked to set an optimal route for the first item.
  • One or more non-volatile readable storage media storing computer-readable instructions, which when executed by one or more processors, cause the one or more processors to perform the following steps:
  • a face scanning device is used to scan the inbound user's face, and the inbound user ID is obtained based on the scanned face scan image;
  • the warehouse user ID is a common employee work number, searching a database based on the common employee work number to obtain a receivable RFID tag number corresponding to the common employee work number;
  • An RFID scanning device is used to scan the space between the first barrier and the second barrier to obtain a first scanned RFID tag number, and to obtain based on the obtainable RFID tag number and the first scanned RFID tag number, A first item list, the first item list including a first item location;
  • a motion trajectory interface is invoked to set an optimal route for the first item.
  • FIG. 1 is a schematic diagram of an application environment of a warehouse management warehouse management method according to an embodiment of the present application
  • FIG. 2 is a flowchart of a warehouse management method according to an embodiment of the present application.
  • FIG. 3 is a specific schematic diagram of step S30 in FIG. 2;
  • FIG. 5 is another flowchart of a warehouse management method according to an embodiment of the present application.
  • step S63 in FIG. 5 is a detailed schematic diagram of step S63 in FIG. 5;
  • FIG. 7 is another flowchart of a warehouse management method according to an embodiment of the present application.
  • FIG. 8 is a schematic diagram of a warehouse management device in an embodiment of the present application.
  • FIG. 9 is a schematic diagram of a computer device according to an embodiment of the present application.
  • the warehouse management method provided by the implementation of this application can be applied in the application environment as shown in FIG. 1.
  • the warehouse management method can be applied in a warehouse management system to realize an unmanned warehouse, to solve the problem that employees of an enterprise receive items from the warehouse, or return them. When items arrive in the warehouse, a lot of time is wasted in finding the location of the items, which is a time-consuming problem.
  • the warehouse management system includes a client and a server, and the client communicates with the server through a network. Among them, the client is also called the client, which refers to the program that provides local services to the client corresponding to the server. Clients can be installed on, but not limited to, various personal computers, laptops, smartphones, tablets, and portable wearable devices.
  • the server can be implemented by an independent server or a server cluster.
  • a warehouse management method is provided.
  • the method is applied to the server in FIG. 1 as an example, and includes the following steps:
  • a face scanning device is used to perform face scanning on the warehousing user, and the warehousing user ID is obtained according to the scanned face scan image.
  • the face scan image is a scan image obtained by the face scanning device scanning the face of the user in the warehouse when the user is within the scanable range of the face scanning device.
  • the storage user ID is a unique identifier used to identify the storage user.
  • the storage user is a user who wants to enter the warehouse through the first barrier.
  • a human face scanning device is provided in the first barrier, and the human face scanning device includes a camera for scanning a user's face and a face scanning interface for identifying a face scanned image.
  • the server when the warehousing user is within the scanable range of the face scanning device, the server will call the camera of the face scanning device to scan the face of the warehousing user to obtain a face scan image, and call the face scanning interface to The face scan image is used for identification, and the storage user ID is obtained.
  • the server will call the camera of the face scanning device to scan the face of the warehousing user to obtain the face scan image, and convert the face scan image into base64 encoding.
  • the server will call the camera of the face scanning device to scan the face of the warehousing user to obtain the face scan image, and convert the face scan image into base64 encoding.
  • a digital image to be identified so as to input the digital image to be identified into a face scanning interface for identification, and obtain a user ID corresponding to the face scanned image, that is, a storage user ID.
  • the digital image to be identified is a digital image obtained by base64 encoding a face scanned image.
  • the process of converting a face scanned image into base64 encoding is as follows: the storage path of the face scanned image is converted into a byte array using the byte [] method, and then the obtained byte array is subjected to BASE64 encoding using the BASE64Encoder method to obtain Recognizing digital images, because the face scan image is converted into a base64 encoded digital image to be identified with high security, which can avoid the problem of user information leakage.
  • the common employee's work number refers to the unique identifier of the common employee's permission in the warehouse management system.
  • Receivable RFID tags refer to the RFID tags corresponding to the items that the warehousing user with ordinary employee rights can pick up in the warehouse.
  • the RFID tag is an RFID tag printed based on a bar code, and is a unique index for recording items in a database.
  • RFID (radio frequency identification) technology is a non-contact automatic identification technology. It automatically recognizes target objects and obtains related data through radio frequency signals. It does not need manual intervention and can be applied to various harsh environments.
  • the RFID tag includes, but is not limited to, information such as a shelf number, a warehouse number, and an item code.
  • the item code is a code obtained by encoding items according to the coding rules set by the warehouse manager to distinguish assets or consumables.
  • the coding rule for a notebook is a total of 12 formed by the first three digits (COM) + any number or letter combination.
  • the warehouse number is a unique identifier used to identify the warehouse.
  • a shelf number is a unique identifier used to identify a shelf in a warehouse.
  • a user information table is stored in the database in advance, and the user information table includes a user ID and corresponding user rights.
  • the server looks up the corresponding permissions in the database based on the user ID of the warehouse. If it is determined that the rights of ordinary employees are determined, the server ID is determined to be the ordinary employee ID, and the user item information table stored in the database is searched based on the ordinary employee ID. Obtain the RFID tag number corresponding to the common employee ID.
  • the user item information table includes, but is not limited to, a user ID, a receivable RFID tag number, and item information corresponding to the receivable RFID tag number, and the like.
  • Item information includes item detailed information (such as item name, item type, number of items received, and status of receipt) and item location.
  • S31 Scanning the space between the first barrier and the second barrier with an RFID scanning device to obtain the first scanned RFID tag number, and to obtain the first item list based on the available RFID tag number and the first scanned RFID tag number
  • the first item list includes a first item position.
  • the RFID scanning device is a device installed in a warehouse for scanning RFID tags in advance.
  • the first item position refers to the item position corresponding to the collectable RFID tag number and the item position corresponding to the first scanned RFID tag number included in the item list.
  • an RFID scanning device is installed between the first barrier and the second barrier, and is used to scan items carried by the user entering the warehouse.
  • the first scanned RFID tag number is the RFID tag number of the item carried by the user in the warehouse.
  • the first item list is an item list made by the server based on the available RFID tag number and the first scanned RFID tag number.
  • the first item list contains detailed information of the item corresponding to the available RFID tag number (such as the price and origin of the available item) Etc.), a list of item detailed information corresponding to the first scanned RFID tag number (such as the price and origin of the item to be returned, etc.) and the position of the first item.
  • an RFID scanning device is used to scan the space between the first barrier and the second barrier to obtain the RFID tag number corresponding to the item currently carried by the warehousing user, that is, the first One scans the RFID tag number, and makes a first item list based on the collectable RFID tag number and the first scanned RFID tag number, so that the user can collect items or return the carried items in the warehouse according to the first item list, saving searching time and improving efficiency.
  • the server will default to store the user at the location of the second barrier.
  • the server will now locate the first item and the second barrier.
  • the location of the warehouse is input into the motion trajectory interface, and the optimal route of the first item is set according to the optimal route returned by the motion trajectory interface. The user can find the way to the location of the item according to the optimal route of the first item, saving time.
  • the motion track interface is implemented using, but not limited to, the A * algorithm.
  • the A * algorithm By marking the location points of all the shelves in the warehouse in the electronic map of the warehouse interior, because the shelves are placed in the warehouse instead of being placed randomly, the corresponding location points (item locations) of each adjacent shelf are The interval length is the same.
  • the indoor movable area can be simulated into an indoor navigation map, that is, a static road network map according to a predetermined proportion of the grid. Therefore, the A * algorithm can be used to analyze the second barrier and the location of the first item, which is effective. Get the best route for items.
  • the A * (A-Star) algorithm is a most effective direct search method for solving the shortest path in a static road network graph, and it is also an effective algorithm for solving many search problems.
  • a face scanning device is used to perform face scanning on the warehousing user, and the warehousing user ID is obtained according to the face scan image, so that the server obtains the user warehousing right. If it is determined that the warehouse user ID is an ordinary employee ID, the database is searched based on the ordinary employee ID to obtain a receivable RFID tag number corresponding to the ordinary employee ID, and an RFID scanning device is used for Scan the space between them to obtain the first scanned RFID tag number, and obtain the first item list based on the available RFID tag number and the first scanned RFID tag number.
  • the first item list includes the position of the first item, so that the server can The position of the barrier and the first item calls the motion track interface to set the optimal route of the first item, saves searching time, improves the efficiency of item collection or return, and thereby improves the user experience.
  • the warehouse management method further includes the following steps:
  • the target RFID tag number is the RFID tag number of the item to be returned corresponding to the employee number of the resigned employee.
  • the server obtains corresponding permissions by searching a pre-stored user information table in the database based on the inbound user ID. If it is determined that the inbound user ID is administrator authority, it is determined that the inbound user ID is a management employee number, and management According to the list of pre-assigned employees, when the administrator clicks the "Query Item Information" button, the server can obtain the employee ID based on the employee list and query the user items stored in the database based on the employee ID. Information table to obtain the target RFID tag number corresponding to the employee number of the resigned employee.
  • S32 Acquire a second item list based on the target RFID tag number, where the second item list includes the target item position.
  • the second item list is a list of items to be returned corresponding to the resigned employee, and is a list of items made based on the target RFID tag number.
  • the second item list includes the employee ID, the target RFID tag number, the item detailed information corresponding to the target RFID tag number, and the target item position.
  • the server creates a second item list based on the target RFID tag number.
  • the item information includes item detailed information (price) and item location (such as warehouse number-shelf number)
  • the A * algorithm can be used to target the second barrier and target item. Analyze the location to effectively obtain the optimal route, and set the second item optimal route based on the obtained optimal route, so that the administrator returns the item based on the second item optimal route, saving searching time and improving efficiency.
  • step S31 the first item list is acquired based on the collectable RFID tag number and the first scanned RFID tag number, and specifically includes the following steps:
  • S311 The interactive terminal set between the first barrier and the second barrier displays the collectable RFID tag number and the first scanned RFID tag number.
  • an interactive terminal is set in advance between the first barrier and the second barrier, and the interactive terminal displays that the first scanned RFID tag number read by the RFID scanning device corresponds to the pre-stored user ID stored in the database. Can receive the RFID tag number for users to choose.
  • the collectable RFID tag number and the first scanned RFID tag number on the interactive terminal they are displayed separately in the form of a list. For example, according to the left and right structure, the RFID tag number can be retrieved on the left side of the page, and the item details and corresponding item positions corresponding to the RFID tag number can be retrieved.
  • S312 Obtain a user-selectable request based on the displayable RFID tag number and the first scanned RFID tag number displayed on the interactive terminal.
  • the user selection request includes the RFID tag number to be collected and the RFID tag number to be returned.
  • the RFID tag number to be collected is the RFID tag number selected by the user from the available RFID tag numbers, and the RFID tag number to be collected is the RFID tag number of the item that the user wants to collect this time in the warehouse.
  • the RFID tag number to be returned is the RFID tag number selected by the user from the first scan tag number, and the RFID tag number to be collected is the RFID tag number of the item that the user wants to return this time in the warehouse.
  • the user may make a selection based on the receivable RFID tag number and the first scanned RFID tag number displayed on the interactive terminal.
  • the RFID tag number to be collected and the RFID tag number to be returned will show a selection mark (such as a tick icon). If the user makes a mistake, he can click the withdrawn option again.
  • the user chooses to finish he can click the "Finish” button displayed on the interactive terminal to make the server obtain the user selection request.
  • the "Complete and Print” button will be displayed on the interactive terminal. If the user wants to print the list of items, he can also click this button to enable the server to obtain a print request and print the request to print the list of items so that the user can carry the list of items enter the warehouse.
  • S313 The pre-created document template is used to process the RFID tag number to be collected and the RFID tag number to be returned to obtain the first item list.
  • the server creates a document template in advance, and the document template is used to make the first item list or the second item list.
  • the document template includes an RFID tag number field to be collected and an item detailed information field corresponding to the RFID tag number to be collected, an item location field corresponding to the RFID tag number to be collected, an RFID tag number field to be returned, and an item position corresponding to the RFID tag number to be returned.
  • the item detailed information field includes, but is not limited to, the field such as the item name, item type, number of items received, and status.
  • the server maps the selected to-be-received RFID tag number and the to-be-returned RFID tag number to the to-be-received RFID tag number field and the to-be-returned RFID tag field of the document template respectively according to the to-be-received RFID tag number and the to-be-returned RFID tag number selected by the user.
  • search the database based on the RFID tag number to be collected, obtain the item detailed information field corresponding to the RFID tag number to be collected, and map it to the item detailed information field corresponding to the RFID tag number to be collected; based on the RFID tag number to be collected Search the database to obtain the item location corresponding to the RFID tag number to be collected, and map it to the item location field corresponding to the RFID tag number to be collected; based on the RFID tag number to be returned, search the database to obtain the item detailed information field corresponding to the RFID tag number to be returned , Map it to the item details information field corresponding to the RFID tag number to be returned; based on the RFID tag number to be returned, search the database to obtain the position of the item corresponding to the RFID tag number to be returned, and map it to the item corresponding to the RFID tag number to be returned Location field; to get the first item list, this process does not need to be manual Make a list of items, automated.
  • the interactive terminal set between the first barrier and the second barrier displays a collectable RFID tag number and a first scanned RFID tag number for a user to select.
  • the user can make a selection based on the collectable RFID tag number and the first scanned RFID tag number displayed on the interactive terminal, so that the server obtains the user selection request, and based on the user selection request, the pre-created document template is used to receive the RFID tag number and to be received.
  • the RFID tag number is returned for processing, and the first item list is obtained. This process does not need to manually make the item list, and realizes automation.
  • the warehouse management method further includes the following steps:
  • S51 Use a face scanning device to scan the outbound user's face on the third barrier, and obtain the outbound user ID based on the scanned face scan image.
  • the outbound user ID is a unique identifier for identifying outbound users.
  • Outbound users are users who want to leave the warehouse through a third barrier.
  • a human face scanning device is provided in the third barrier.
  • the human face scanning device includes a camera for scanning a user's face and a face scanning interface for identifying a face scanned image.
  • the server will call the camera of the face scanning device to scan the outbound user's face to obtain the face scanned image, and convert the face scanned image into base64 encoding.
  • S52 Search the database based on the outbound user ID, and obtain a receivable RFID tag number corresponding to the outbound user ID.
  • the user information table stored in the database is searched based on the outbound user ID to obtain a receivable RFID tag number corresponding to the outbound user ID. Since there may be multiple users in the warehouse, the outbound user needs to be obtained when out of the warehouse.
  • the RFID tag number corresponding to the ID can be used to judge the item currently being picked up by the user, that is, to determine whether the item can be picked up, to prevent the user from picking up items that are not within the range of the RFID tag number, and to improve the standardization of warehouse management.
  • S53 Scan with an RFID scanning device provided on the third barrier to obtain a second scanned RFID tag number.
  • the second scanned RFID tag number is the RFID tag number of the item carried by the outbound user scanned by the RFID scanning device.
  • the RFID scanning device when a user performs a face scan, the RFID scanning device is called to scan the area where the user is located at the same time, which saves time for warehouse delivery.
  • the RFID scanning device when the outbound user wants to leave the warehouse, the RFID scanning device is used to scan the area where the user is located to obtain the RFID tag number corresponding to the item currently carried by the outbound user, that is, the second scanned RFID tag number, so that the subsequent based on the second Scan the RFID tag number and obtain the RFID tag number for judgment.
  • the receiving status of the item corresponding to the second scanned RFID tag number that matches the retrievable RFID tag number is updated to the retrieved state This process does not require manual recording to realize the idea of an unmanned warehouse and achieve the purpose of intelligent management of the warehouse.
  • an item collection failure message is generated, and the reminder information includes the second scanned RFID tag number and The corresponding item position reminds the user to return the item corresponding to the mismatched second scan RFID tag number to the original place, thereby improving the standardization of warehouse management.
  • the user when the user leaves the warehouse, the user needs to use a face scanning device in the third barrier to perform a face scan on the user out of the warehouse to obtain the user ID for the warehouse.
  • the server searches the database based on the user ID for the warehouse to obtain and export the database.
  • Receivable RFID tag number corresponding to the library user ID is scanned by an RFID scanning device provided on the third barrier to obtain the second scanned RFID tag number, and the user is judged based on the second scanned RFID tag number and the obtainable RFID tag number Whether the collected items are recyclable items, to prevent users from picking up items that are not within the range of receivable RFID tag numbers, and to improve the standardization of warehouse management.
  • the warehouse management method further includes the following steps:
  • S61 Obtain the first scanned RFID tag number corresponding to the ID of the outbound user.
  • the inbound user ID and the outbound user ID correspond to each other. Because the outbound user has scanned through the RFID scanning device when entering the warehouse, the first scanned RFID tag number is obtained, and the first scanned RFID tag number is stored in the server cache, so that when using, the user directly finds the ID corresponding to the outbound user ID.
  • the storage user ID, and the first scanning RFID tag number can be obtained by searching through the storage user ID.
  • the first scanning RFID tag number can be directly obtained from the server cache, reducing the number of database accesses and improving database performance.
  • each of the first scanned RFID tag numbers matches a second scanned RFID tag number, it proves that the user took the items carried when entering the warehouse out of the warehouse, and determined that the items corresponding to the first scanned RFID tag number were not No return is recorded.
  • each first-scanned RFID tag number does not match a second-scanned RFID tag number, it proves that the user put the item carried in the warehouse into the warehouse, and determines that the item corresponding to the first-scanned RFID tag number has been returned, then Update the collection status of the item corresponding to the first scanned RFID tag number to the returned status. This process does not require manual recording, realizes the idea of an unmanned warehouse, and achieves the purpose of intelligent warehouse management.
  • step S61-step S63 and step S52-step S55 are not in sequence. You can execute step S61-step S63 first, then step S52-step S55; or first execute step S52-step S55, and then execute Steps S61 to S63.
  • step S63 that is, if it is determined that each first scanned RFID tag number does not match a second scanned RFID tag number, the item corresponding to the first scanned RFID tag number has been returned.
  • Updating the collection status of the item corresponding to the first scanned RFID tag number to the returned status which specifically includes the following steps:
  • each first scan RFID tag number does not match a second scan RFID tag number, the item corresponding to the first scan RFID tag number has been returned, and based on the first scan RFID tag number, query the warehouse database to determine the first A scan of the RFID tag number is valid for return.
  • each first scanned RFID tag number does not correspond to a second scanned RFID tag number
  • the item corresponding to the first scanned RFID tag number has been returned, and the warehouse database is queried based on the first scanned RFID tag number to determine the first Upon scanning, the RFID tag number is valid for return, that is, whether it is the item in the warehouse.
  • the warehouse database stores the RFID tags of each item in the warehouse in advance.
  • the labeling operation refers to the operation of attaching an RFID tag to the surface of a warehouse item, that is, generating an RFID tag according to the barcode of the item, and then attaching it to the RFID tag area on the surface of the item.
  • the first scanned RFID tag number is effectively returned, that is, the first The item corresponding to the scanned RFID tag number is an item in this warehouse. If the scanned RFID tag number is valid for return, the status of the item corresponding to the first scanned RFID tag number is updated.
  • the idea of human warehouse achieves the purpose of intelligent warehouse management.
  • the first scanned RFID tag number does not exist in the warehouse database, it proves that the item corresponding to the first scanned RFID tag number is not in the warehouse, that is, the item that does not belong to the warehouse, then the first scanned RFID tag number is Invalid return, generate a reminder message to remind the administrator that the return is invalid.
  • the reminder information includes the RFID tag number corresponding to the invalid returned item, so that the administrator notifies the employee who returned the item to take out the item that does not belong to the warehouse based on the reminder information.
  • each first scanned RFID tag number does not correspond to a second scanned RFID tag number
  • the item corresponding to the first scanned RFID tag number has been returned, and the warehouse database is queried based on the first scanned RFID tag number To determine whether the first scanned RFID tag number is a valid return. If it is determined that the first scanned RFID tag number is a valid return, update the collection status of the item corresponding to the first scanned RFID tag number to a returned state. This process does not require manual recording.
  • an unmanned warehouse achieves the purpose of intelligent warehouse management; if the first scan of the RFID tag number is invalid and returned, a reminder message is generated so that the administrator can notify the employee to take out items that do not belong to the warehouse based on the reminder information to ensure warehouse management Normative.
  • this embodiment also includes a step of judging and recording whether the person returns it.
  • the user who returned the items at that time is notified to remove the items that are not in the warehouse.
  • the warehouse management method further includes the following steps:
  • S71 Query the warehouse database based on the first scanned RFID tag number to obtain the original user ID corresponding to the first scanned RFID tag number.
  • the original user ID refers to the user ID recorded in the user article information table of the first scanned RFID tag number. Specifically, after obtaining the first scanned RFID tag number as a valid return, based on the first scanned RFID tag number, query the warehouse database to obtain the original user ID corresponding to the first scanned RFID tag number, so as to determine the current return operation. Whether to return it for myself.
  • the item corresponding to the first scanned RFID tag number is returned by the user himself, and The item corresponding to the first scanned RFID tag number is recorded as being returned by the person. This recording process does not require manual intervention, which saves manpower.
  • the item corresponding to the first scanned RFID tag number is returned by another person, and the item corresponding to the first scanned RFID tag number is returned by another person. This recording process does not require Human intervention saves manpower.
  • the warehouse database is queried based on the first scanned RFID tag number to obtain the original user ID corresponding to the first scanned RFID tag number. If it is determined that the original user ID matches the outbound user ID, the first scanned RFID tag is The item corresponding to the ID is returned by the user himself, and the item corresponding to the first scanned RFID tag number is recorded as returned by himself; if it is determined that the original user ID does not match the outbound user ID, the item corresponding to the first scanned RFID tag number is someone else Return, and record the items corresponding to the first scanned RFID tag number as return by others, so that when the items that are not in the warehouse are returned to the warehouse, the user who returned the items at that time is notified to take out the items that are not in the warehouse.
  • This record No manual intervention is required in the process to record the outbound and outbound information of each user in detail, saving manpower.
  • a warehouse management device is provided, and the warehouse management device corresponds to the warehouse management method in the embodiment described above.
  • the warehouse management device includes an inbound user ID acquisition module 10, a retrievable tag number acquisition module 21, a first item location acquisition module 31, and a first optimal route acquisition module 41.
  • the detailed description of each function module is as follows:
  • the warehousing user ID acquisition module 10 is configured to use a face scanning device to scan the warehousing user in the first barrier, and obtain the warehousing user ID according to the scanned face scan image.
  • the retrievable tag number acquisition module 21 is configured to, if it is determined that the warehoused user ID is an ordinary employee ID, search the database based on the ordinary employee ID to obtain a receivable RFID tag number corresponding to the ordinary employee ID.
  • a first item position acquisition module 31 is configured to scan a space between the first barrier and the second barrier by using an RFID scanning device to acquire a first scanned RFID tag number, based on the obtainable RFID tag number and the first scanned RFID Tag number to obtain the first item list, and the first item list includes the first item position.
  • the first optimal route acquisition module 41 is configured to call a motion trajectory interface based on the second barrier and the position of the target article to set the optimal route of the article.
  • the warehouse management device further includes a target tag number acquisition module 22, a target item position acquisition module 32, and a second optimal route acquisition module 42.
  • the target tag number acquisition module 22 is configured to obtain the employee ID of the departing employee if it is determined that the ID of the incoming user is a management employee number, query the database based on the employee ID of the departing employee, and obtain the target RFID tag number corresponding to the employee ID of the departing employee.
  • the target item position acquiring module 32 is configured to acquire a second item list based on the target RFID tag number, and the second item list includes the target item position.
  • the second optimal route acquisition module 42 invokes a motion trajectory interface based on the second barrier and the position of the target item to set an optimal route for the second item.
  • the first item position acquisition module 31 includes an RFID tag number display unit 311, a user selection request acquisition unit 312, and a first item position acquisition unit 313.
  • the RFID tag number display unit 311 is configured to display a receivable RFID tag number and a first scanned RFID tag number on an interactive terminal provided between the first barrier and the second barrier.
  • the user selection request obtaining unit 312 is configured to obtain a user selection request based on the displayable collectable RFID tag number and the first scanned RFID tag number on the interactive terminal.
  • the user selection request includes the RFID tag number to be collected and the RFID tag number to be returned.
  • the first item position acquiring unit 313 is configured to process the RFID tag number to be collected and the RFID tag number to be returned by using a pre-created document template to obtain a first item list, where the first item list includes the first item position.
  • the warehouse management method further includes an outbound user ID obtaining unit 51, a retrievable tag number obtaining unit 52, a second scanning tag number obtaining unit 53, a status update unit 54, and a collection failure information obtaining unit 55.
  • the outbound user ID obtaining unit 51 is configured to use a face scanning device to scan the outbound user's face at the third barrier, and obtain an outbound user ID based on the scanned face scan image.
  • the retrievable tag number obtaining unit 52 is configured to search a database based on the outbound user ID, and obtain a retrievable RFID tag number corresponding to the outbound user ID.
  • the second scanning tag number obtaining unit 53 is configured to perform scanning by using an RFID scanning device provided on the third barrier to obtain a second scanning RFID tag number.
  • the status update unit 54 is configured to update the receiving status of the item corresponding to the second scanned RFID tag number to the already received status if it is determined that each second scanned RFID tag number matches a receivable RFID tag number.
  • the collection failure information acquisition unit 55 is configured to generate collection failure information if it is determined that each second scanned RFID tag number does not match a retrievable RFID tag number.
  • the warehouse management device further includes a first scanning tag number acquisition unit 61, a first processing unit 62, and a second processing unit 63.
  • the first scanning tag number obtaining unit 61 is configured to obtain a first scanning RFID tag number corresponding to the ID of the outbound user.
  • the first processing unit 62 is configured to, if it is determined that each first scanned RFID tag number matches a second scanned RFID tag number, the item corresponding to the first scanned RFID tag number is not returned.
  • the second processing unit 63 is configured to, if it is determined that each first scanned RFID tag number does not match a second scanned RFID tag number, the item corresponding to the first scanned RFID tag number has been returned, and update the first scanned RFID tag number corresponding The collection status of the item is returned.
  • the second processing unit 63 includes a tag number judging subunit 631, a tag number status updating subunit 632, and a reminder information generating subunit 633.
  • a tag number judging subunit 631 is configured to, if it is determined that each first scanned RFID tag number does not match a second scanned RFID tag number, the item corresponding to the first scanned RFID tag number has been returned, and based on the first scanned RFID tag Query the warehouse database to determine whether the first scanned RFID tag number is a valid return.
  • the tag number status update subunit 632 if it is determined that the first scanned RFID tag number is valid for return, updates the collection status of the item corresponding to the first scanned RFID tag number to be returned.
  • the reminder information generating subunit 633 is configured to generate reminder information if it is determined that the first scanned RFID tag number is invalid and returned.
  • the warehouse management apparatus further includes an original user ID acquisition unit 71, a first recording unit 72, and a second recording unit 73.
  • the original user ID obtaining unit 71 is configured to query a warehouse database based on the first scanned RFID tag number, and obtain an original user ID corresponding to the first scanned RFID tag number.
  • the first recording unit 72 is configured to: if it is determined that the original user ID matches the outbound user ID, the item corresponding to the first scanned RFID tag number is returned by the user himself, and the item corresponding to the first scanned RFID tag number is recorded as himself return.
  • the second recording unit 73 is configured to return an item corresponding to the first scanned RFID tag number to another person if it is determined that the original user ID does not match the outbound user ID, and record the item corresponding to the first scanned RFID tag number to be returned .
  • Each module in the above-mentioned warehouse management device may be implemented in whole or in part by software, hardware, and a combination thereof.
  • the above-mentioned modules may be embedded in the hardware form or independent of the processor in the computer device, or may be stored in the memory of the computer device in the form of software, so that the processor calls and performs the operations corresponding to the above modules.
  • a computer device is provided.
  • the computer device may be a server, and its internal structure diagram may be as shown in FIG. 7.
  • the computer device includes a processor, a memory, a network interface, and a database connected through a system bus.
  • the processor of the computer device is used to provide computing and control capabilities.
  • the memory of the computer device includes a non-volatile storage medium and an internal memory.
  • the non-volatile storage medium stores an operating system, computer-readable instructions, and a database.
  • the internal memory provides an environment for operating the operating system and computer-readable instructions in a non-volatile storage medium.
  • the database of the computer equipment is used to store data generated or obtained during the execution of the warehouse management method, such as user information tables.
  • the network interface of the computer device is used to communicate with an external terminal through a network connection.
  • the computer-readable instructions are executed by a processor to implement a warehouse management method.
  • a computer device including a memory, a processor, and computer-readable instructions stored on the memory and executable on the processor.
  • the processor executes the computer-readable instructions, the following steps are implemented:
  • a face scanning device is used to scan the warehousing user's face, and the warehousing user ID is obtained based on the scanned face scan image; if it is determined that the warehousing user ID is an ordinary employee ID, it is based on the ordinary employee ID Search the database to obtain the RFID tag number corresponding to the employee number of the common employee; use the RFID scanning device to scan the space between the first barrier and the second barrier to obtain the first scanned RFID tag number, based on the available RFID The tag number and the first scanned RFID tag number are used to obtain the first item list, and the first item list includes the first item position; based on the second barrier and the first item position, the movement track interface is called to set the optimal route of the first item .
  • the processor executes the computer-readable instructions, the following steps are further implemented: displaying the receivable RFID tag number and the first scanned RFID tag number on an interactive terminal provided between the first barrier and the second barrier; Based on the display of the interactive RFID tag number and the first scanned RFID tag number, a user selection request is obtained.
  • the user selection request includes the RFID tag number to be collected and the RFID tag number to be returned; the pre-created document template is used to receive the RFID tag number And and the RFID tag number to be returned are processed to obtain a first item list, and the first item list includes the first item location.
  • the processor when the processor executes the computer-readable instructions, the processor further implements the following steps: if the storage user ID is a management employee number, obtaining the employee ID of the resigning employee, querying the database based on the employee ID of the departing employee, and obtaining the employee ID of the departing employee The corresponding target RFID tag number; based on the target RFID tag number, the second item list is obtained; the second item list includes the target item position; based on the second barrier and the target item position, the motion track interface is called to obtain the second item optimal route.
  • a face scanning device is used to scan the outbound user at the third barrier, and the outbound user is obtained according to the scanned face scan image ID; searching the database based on the outbound user ID to obtain a receivable RFID tag number corresponding to the outbound user ID; scanning with an RFID scanning device provided on the third barrier to obtain a second scanned RFID tag number; If a second scanned RFID tag number matches a retrievable RFID tag number, the receiving status of the item corresponding to the second scanned RFID tag number is updated to the received state; if it is determined that each second scanned RFID tag number matches a retrievable RFID tag number If the RFID tag numbers do not match, a collection failure message is generated.
  • the processor executes the computer-readable instructions, the following steps are further implemented: acquiring the first scan RFID tag number corresponding to the ID of the outbound user; if it is determined that each first scan RFID tag number and a second scan If the RFID tag numbers match, the item corresponding to the first scanned RFID tag number is not returned; if it is determined that each first scanned RFID tag number does not match a second scanned RFID tag number, the first scanned RFID tag number corresponds to the item It has been returned, and the collection status of the item corresponding to the first scanned RFID tag number is updated to the returned status.
  • the processor executes the computer-readable instructions: if it is determined that each first scanned RFID tag number does not match a second scanned RFID tag number, then the item corresponding to the first scanned RFID tag number Returned, and query the warehouse database based on the first scanned RFID tag number to determine whether the first scanned RFID tag number is valid for return; if it is determined that the first scanned RFID tag number is valid for return, update the item corresponding to the first scanned RFID tag number The receiving status is the returned status; if it is determined that the first scanned RFID tag number is invalid and returned, a reminder message is generated.
  • the processor executes the computer-readable instructions, the following steps are further implemented: querying the warehouse database based on the first scanned RFID tag number to obtain the original user ID corresponding to the first scanned RFID tag number; if the original user ID is determined If it matches the outbound user ID, the item corresponding to the first scanned RFID tag number will be returned by the user himself, and the item corresponding to the first scanned RFID tag number will be returned by himself; if it is determined that the original user ID and the outbound user ID are not the same If they match, the item corresponding to the first scanned RFID tag number is returned by others, and the item corresponding to the first scanned RFID tag number is returned to others.
  • one or more non-volatile readable storage media storing computer-readable instructions, and when the computer-readable instructions are executed by one or more processors, cause the one or more processors to perform the following steps :
  • a face scanning device is used to scan the warehousing user's face, and the warehousing user ID is obtained based on the scanned face scan image; if it is determined that the warehousing user ID is an ordinary employee ID, it is based on the general employee ID.
  • Employee ID search database to obtain the RFID tag number corresponding to the common employee ID; use the RFID scanning device to scan the space between the first barrier and the second barrier to obtain the first scanned RFID tag number, based on Can receive the RFID tag number and the first scanned RFID tag number to obtain the first item list, the first item list includes the first item position; based on the second barrier and the first item position, call the motion track interface to set the first item Optimal route.
  • the one or more processors when the computer-readable instructions are executed by one or more processors, the one or more processors cause the following steps to be performed: an interactive terminal set between the first barrier and the second barrier displays Obtain the RFID tag number and the first scanned RFID tag number; based on the display on the interactive terminal, you can obtain the RFID tag number and the first scanned RFID tag number to obtain a user selection request.
  • the user selection request includes the RFID tag number to be collected and the RFID tag number to be returned ;
  • Use a pre-created document template to process the RFID tag number to be collected and the RFID tag number to be returned to obtain the first item list, and the first item list includes the first item location.
  • the one or more processors when the computer-readable instructions are executed by one or more processors, the one or more processors are caused to perform the following steps: if it is determined that the storage user ID is a management employee number, obtain the employee number of the resigned employee, based on The employee ID of the resigned employee queries the database to obtain the target RFID tag number corresponding to the employee ID of the resigned employee; based on the target RFID tag number, obtain a second item list; the second item list includes the position of the target item; based on the second barrier and the target item Position, call the motion track interface, and set the optimal route for the second item.
  • the one or more processors execute the following steps: using a face scanning device to scan the face of the outbound user at the third barrier, Obtain the outbound user ID based on the scanned face scan image; search the database based on the outbound user ID to obtain a receivable RFID tag number corresponding to the outbound user ID; use an RFID scanning device set on the third barrier to scan To obtain the second scanned RFID tag number; if it is determined that each second scanned RFID tag number matches a receivable RFID tag number, update the receiving status of the item corresponding to the second scanned RFID tag number to the already received state; if judged Each second scanning RFID tag number does not match a retrievable RFID tag number, and then a collection failure message is generated.
  • the one or more processors when the computer-readable instructions are executed by one or more processors, the one or more processors are caused to perform the following steps: obtaining a first scanned RFID tag number corresponding to the outbound user ID; if it is determined that each A first scanned RFID tag number matches a second scanned RFID tag number, the item corresponding to the first scanned RFID tag number is not returned; if it is determined that each first scanned RFID tag number does not match a second scanned RFID tag number If they match, the item corresponding to the first scanned RFID tag number has been returned, and the collection status of the item corresponding to the first scanned RFID tag number is updated to the returned state.
  • the one or more processors execute the following steps: if each first scanned RFID tag number does not match a second scanned RFID tag number , The item corresponding to the first scanned RFID tag number has been returned, and the warehouse database is queried based on the first scanned RFID tag number to determine whether the first scanned RFID tag number is a valid return; if it is determined that the first scanned RFID tag number is a valid return, Update the collection status of the item corresponding to the first scanned RFID tag number to the returned status; if it is determined that the first scanned RFID tag number is invalid and returned, a reminder message is generated.
  • the one or more processors when the computer-readable instructions are executed by one or more processors, the one or more processors are caused to perform the following steps: query the warehouse database based on the first scanned RFID tag number, and obtain the first scanned RFID tag number Corresponding original user ID; if it is determined that the original user ID matches the outbound user ID, the item corresponding to the first scanned RFID tag number is returned by the user himself, and the item corresponding to the first scanned RFID tag number is returned by himself If it is determined that the original user ID does not match the outbound user ID, the item corresponding to the first scanned RFID tag number is returned by another person, and the item corresponding to the first scanned RFID tag number is returned by another person.
  • Non-volatile memory may include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory.
  • Volatile memory can include random access memory (RAM) or external cache memory.
  • RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), dual data rate SDRAM (DDRSDRAM), enhanced SDRAM (ESDRAM), synchronous chain Synchlink DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM).
  • SRAM static RAM
  • DRAM dynamic RAM
  • SDRAM synchronous DRAM
  • DDRSDRAM dual data rate SDRAM
  • ESDRAM enhanced SDRAM
  • SLDRAM synchronous chain Synchlink DRAM
  • Rambus direct RAM
  • DRAM direct memory bus dynamic RAM
  • RDRAM memory bus dynamic RAM

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Abstract

一种仓库管理方法、装置、计算机设备及存储介质,该仓库管理方法包括:在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据人脸扫描图像获取入库用户ID(S10);若确定所述入库用户ID为普通员工工号,则基于所述普通员工工号查找数据库,获取与所述普通员工工号对应的可领取RFID标签号(S21);采用RFID扫描设备对所述第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于可领取RFID标签号和第一扫描RFID标签号,获取第一物品清单;所述第一物品清单包括第一物品位置(S31);基于第二道屏障和第一物品位置,调用运动轨迹接口,设定物品最优路线(S41)。该仓库管理方法可有效减少仓库寻找的时间,提高效率。

Description

仓库管理方法、装置、计算机设备及存储介质
本专利申请以2018年8月2日提交的申请号为201810869832.5,名称为“仓库管理方法、装置、计算机设备及存储介质”的中国发明专利申请为基础,并要求其优先权。
技术领域
本申请涉及物联网技术领域,尤其涉及一种仓库管理方法、装置、计算机设备及存储介质。
背景技术
随着企业的快速发展,企业规模也在逐渐壮大,企业的仓库管理方面的需求也日益增多。目前,企业员工从仓库中领取物品,或者归还物品到仓库时,往往由于找不到物品位置,而将大量时间浪费在寻找物品位置上,浪费时间,且目前仓库管理还需要人工记录员工出入仓库的信息,耗费时间和成本。
发明内容
本申请实施例提供一种仓库管理方法、装置、计算机设备及存储介质,以解决企业员工从仓库中领取物品或者归还物品到仓库时,将大量时间浪费在寻找物品位置上,耗费时间的问题。
一种仓库管理方法,包括:
在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID;
若确定所述入库用户ID为普通员工工号,则基于所述普通员工工号查找数据库,获取与所述普通员工工号对应的可领取RFID标签号;
采用RFID扫描设备对所述第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于所述可领取RFID标签号和所述第一扫描RFID标签号,获取第一物品清单,所述第一物品清单包括目标物品位置;
基于所述第二道屏障和所述目标物品位置,调用运动轨迹接口,设定物品最优路线。
一种仓库管理装置,包括:
入库用户ID获取模块,用于在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID;
可领取RFID标签号获取模块,用于若确定所述入库用户ID为普通员工工号,则基于所述普通员工工号查找数据库,获取与所述普通员工工号对应的可领取RFID标签号;
第一物品位置获取模块,用于采用RFID扫描设备对所述第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于所述可领取RFID标签号和所述第一扫描RFID标签号,获取第一物品清单,所述第一物品清单包括第一物品位置;
最优路线获取模块,用于基于所述第二道屏障和所述目标物品位置,调用运动轨迹接口,设定物品最优路线。
一种计算机设备,包括存储器、处理器以及存储在所述存储器中并可在所述处理器上运行的计算机可读指令,所述处理器执行所述计算机可读指令时实现如下步骤:
在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID;
若确定所述入库用户ID为普通员工工号,则基于所述普通员工工号查找数据库,获 取与所述普通员工工号对应的可领取RFID标签号;
采用RFID扫描设备对所述第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于所述可领取RFID标签号和所述第一扫描RFID标签号,获取第一物品清单,所述第一物品清单包括第一物品位置;
基于所述第二道屏障和所述第一物品位置,调用运动轨迹接口,设定第一物品最优路线。
一个或多个存储有计算机可读指令的非易失性可读存储介质,所述计算机可读指令被一个或多个处理器执行时,使得所述一个或多个处理器执行如下步骤:
在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID;
若确定所述入库用户ID为普通员工工号,则基于所述普通员工工号查找数据库,获取与所述普通员工工号对应的可领取RFID标签号;
采用RFID扫描设备对所述第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于所述可领取RFID标签号和所述第一扫描RFID标签号,获取第一物品清单,所述第一物品清单包括第一物品位置;
基于所述第二道屏障和所述第一物品位置,调用运动轨迹接口,设定第一物品最优路线。
本申请的一个或多个实施例的细节在下面的附图和描述中提出,本申请的其他特征和优点将从说明书、附图以及权利要求变得明显。
附图说明
为了更清楚地说明本申请实施例的技术方案,下面将对本申请实施例的描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1是本申请一实施例中仓库管理仓库管理方法的一应用环境示意图;
图2是本申请一实施例中仓库管理方法的一流程图;
图3是图2中步骤S30的一具体示意图;
图4是本申请一实施例中仓库管理方法的另一流程图;
图5是本申请一实施例中仓库管理方法的又一流程图;
图6是图5中步骤S63的一具体示意图;
图7是本申请一实施例中仓库管理方法的再一流程图;
图8是本申请一实施例中仓库管理装置的一示意图;
图9是本申请一实施例中计算机设备的一示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
本申请实施提供的仓库管理方法,可应用在如图1的应用环境中,该仓库管理方法可应用在仓库管理系统中,用于实现无人仓库,解决企业员工从仓库中领取物品,或者归还物品到仓库时,将大量时间浪费在寻找物品位置上,耗费时间的问题。其中,该仓库管理系统包括客户端和服务器,客户端通过网络与服务器进行通信。其中,客户端又称为用户端,是指与服务器相对应,为客户提供本地服务的程序。客户端可安装在但不限于各种个人计算机、笔记本电脑、智能手机、平板电脑和便携式可穿戴设备上。服务器可以采用独立的服务器来实现,也可采用服务器集群来实现。
在一实施例中,如图2所示,提供一种仓库管理方法,以该方法应用在图1中的服务器为例进行说明,包括如下步骤:
S10:在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID。
其中,人脸扫描图像是当用户处于人脸扫描设备可扫描范围时,由人脸扫描设备扫描入库用户的脸部所获取的扫描图像。入库用户ID是用于识别入库用户的唯一标识,其中,入库用户是想要通过第一道屏障进入仓库的用户。具体地,在第一道屏障中设置有人脸扫描设备,该人脸扫描设备中包括用于扫描用户脸部的摄像头和用于对人脸扫描图像进行识别的人脸扫描接口。本实施例中,当入库用户处于人脸扫描设备可扫描范围时,服务器会调用人脸扫描设备的摄像头对入库用户脸部进行扫描以获取人脸扫描图像,并调用人脸扫描接口对该人脸扫描图像进行识别,获取入库用户ID。
具体地,当入库用户处于人脸扫描设备可扫描范围时,服务器会调用人脸扫描设备的摄像头对入库用户脸部进行扫描以获取人脸扫描图像,将人脸扫描图像转换成base64编码,获取待识别数字图像,以便将该待识别数字图像输入到人脸扫描接口中进行识别,获取与人脸扫描图像对应的用户ID即入库用户ID。其中,待识别数字图像是对人脸扫描图像进行base64编码后获取的数字图像。
其中,将人脸扫描图像转换为base64编码的过程如下:将人脸扫描图像的存储路径采用byte[]方法转换为字节数组,然后采用BASE64Encoder方法对得到的字节数组进行BASE64编码,获取待识别数字图像,由于将人脸扫描图像转换为base64编码的待识别数字图像的安全性较高,可避免用户信息泄露的问题。
S21:若确定入库用户ID为普通员工工号,则基于普通员工工号查找数据库,获取与普通员工工号对应的可领取RFID标签号。
其中,普通员工工号是指仓库管理系统中权限为普通员工权限的唯一标识。可领取RFID标签是指该具有普通员工权限的入库用户能够在仓库中领取的物品对应的RFID标签。其中,RFID标签是基于条形码打印的RFID标签,是用于记录物品在数据库中的唯一索引。RFID(射频识别)技术是一种非接触式的自动识别技术,它通过射频信号自动识别目标对象并获取相关数据,无须人工干预,可适用于各种恶劣环境。本实施例中,RFID标签中包括但不限于货架号、仓库号和物品编码等信息。物品编码是依据仓库管理人员预先设置的对资产或者耗材进行区分的编码规则对物品进行编码所得到的编码,例如笔记本的编码规则是前三位(COM)+任意数字或字母组合形成的总共12位的编码。仓库号是用于识别仓库的唯一标识。货架号是用于识别仓库中货架的唯一标识。
具体地,数据库中会预先存储有用户信息表,该用户信息表中包括用户ID和对应的用户权限。服务器基于入库用户ID通过查找数据库中对应的权限,若确定为普通员工权限,则认定该入库用户ID为普通员工工号,基于普通员工工号查找数据库中预先存储的用户物品信息表,获取与普通员工工号对应的可领取RFID标签号。可理解地,该用户物品信息表包括但不限于用户ID、可领取RFID标签号和该可领取RFID标签号对应的物品信息等。物品信息包括物品详细信息(如物品名称、物品种类、物品领取数量和领取状态等信息)和物品位置。
S31:采用RFID扫描设备对第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于可领取RFID标签号和第一扫描RFID标签号,获取第一物品清单,该第一物品清单包括第一物品位置。
其中,RFID扫描设备是预先在仓库中安装好的用于扫描RFID标签的设备。第一物品位置是指物品清单上所包含的可领取RFID标签号对应的物品位置和第一扫描RFID标签号对应的物品位置。本实施例中,将RFID扫描设备安装在第一道屏障和第二道屏障之间,用于对入库用户所携带的物品进行扫描。第一扫描RFID标签号是入库用户携带物品的RFID 标签号。第一物品清单是服务器基于可领取RFID标签号和第一扫描RFID标签号进行制作的物品清单,该第一物品清单包含可领取RFID标签号对应的物品详细信息(如可领取物品的价格和产地等)、第一扫描RFID标签号对应的物品详细信息(如待归还物品的价格和产地等)的清单和第一物品位置。
具体地,当入库用户进入仓库时,采用RFID扫描设备对第一道屏障和第二道屏障之间的空间进行扫描,获取入库用户当前携带入库的物品对应的RFID标签号,即第一扫描RFID标签号,基于可领取RFID标签号和第一扫描RFID标签号制作第一物品清单,以便用户根据第一物品清单入库领取物品或归还所携带的物品,节省寻找时间,提高效率。
S41:基于第二道屏障和第一物品位置,调用运动轨迹接口,设定第一物品最优路线。
本实施例中,服务器会默认入库用户在第二道屏障所在位置,当用户点击客户端上显示的“获取最优路线”时,服务器此时会将第一物品位置和第二道屏障所处仓库位置输入到运动轨迹接口中,根据运动轨迹接口返回的最佳路线以设定第一物品最优路线,用户可根据第一物品最优路线,寻路到物品位置,节省时间。
本实施例中,运动轨迹接口采用但不限于A*算法实现。具体地,通过在仓库室内电子地图中标记仓库中所有货架的位置点,由于仓库中的货架摆放位置标准而非随意摆放,因此,每个相邻货架对应的位置点(物品位置)的间隔长度相同,可将室内可移动区域按照预定比例的网格模拟成一张室内导航图即静态路网图,因此可采用A*算法对第二道屏障和第一物品位置进行进行分析,可有效获取物品最优路线。其中,A*(A-Star)算法是一种静态路网图中求解最短路径最有效的直接搜索方法,也是解决许多搜索问题的有效算法。
本实施例中,在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据人脸扫描图像获取入库用户ID,以便服务器获取用户入库权限。若确定入库用户ID为普通员工工号,则基于普通员工工号查找数据库,获取与普通员工工号对应的可领取RFID标签号,采用RFID扫描设备对第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于可领取RFID标签号和第一扫描RFID标签号,获取第一物品清单,第一物品清单包括第一物品位置,以便服务器基于第二道屏障和第一物品位置,调用运动轨迹接口,设定第一物品最优路线,节省寻找时间,提高物品领取或归还的效率,进而提高用户体验。
在一实施例中,在步骤S10之后,该仓库管理方法还包括如下步骤:
S22:若确定入库用户ID为管理员工号,则获取离职员工工号,基于离职员工工号查询数据库,获取与离职员工工号相对应的目标RFID标签号。
在员工离职之后,该离职员工的物品(如电话和电脑)需由管理员归还到仓库中。其中,目标RFID标签号是与离职员工工号对应的待归还物品的RFID标签号。
具体地,服务器基于入库用户ID通过查找数据库中预先存储的用户信息表,获取对应的权限,若确定入库用户ID为管理员权限,则认定该入库用户ID为管理员工号,则管理员可根据预先分配的离职员工清单,当管理员点击“查询物品信息”的按钮时,使服务器基于离职员工清单,获取离职员工工号,并基于离职员工工号查询数据库中预先存储的用户物品信息表,获取与离职员工工号相对应的目标RFID标签号。
S32:基于目标RFID标签号,获取第二物品清单,该第二物品清单包括目标物品位置。
其中,第二物品清单是离职员工对应的待归还物品的清单,是基于目标RFID标签号进行制作的物品清单。该第二物品清单中包括离职员工工号、目标RFID标签号、与目标RFID标签号对应的物品详细信息和目标物品位置。
S42:基于第二道屏障和目标物品位置,调用运动轨迹接口,设定第二物品最优路线。
具体地,服务器基于目标RFID标签号创建第二物品清单,由于物品信息包括物品详细信息(价格)和物品位置(如仓库号-货架号),可采用A*算法对第二道屏障和目标物 品位置进行进行分析,有效获取最优路线,并基于获取的最优路线设定第二物品最优路线,以便管理员基于第二物品最优路线归还物品,节省寻找时间,提高效率。
在一实施例中,如图3所示,步骤S31中,基于可领取RFID标签号和第一扫描RFID标签号,获取第一物品清单,具体包括如下步骤:
S311:在第一道屏障和第二道屏障之间设置的交互终端上显示可领取RFID标签号和第一扫描RFID标签号。
具体地,在第一道屏障和第二道屏障之间预先设置一交互终端,该交互终端上显示RFID扫描设备读取到的第一扫描RFID标签号和数据库中预先存储的入库用户ID对应的可领取RFID标签号,以供用户选择。在交互终端上显示可领取RFID标签号和第一扫描RFID标签号时,是以列表的形式分别进行显示。例如:按照左右结构的方式,在页面左侧显示可领取RFID标签号以、可领取RFID标签号对应的物品详细信息和对应的物品位置,在页面右侧显示第一扫描RFID标签号、第一扫描RFID标签号对应的物品详细信息和对应的物品位置,方便用户查看。
S312:基于交互终端上显示可领取RFID标签号和第一扫描RFID标签号,获取用户选择请求,用户选择请求包括待领取RFID标签号和待归还RFID标签号。
其中,待领取RFID标签号是用户从可领取RFID标签号中选择的RFID标签号,该待领取RFID标签号为用户本次入库想领取的物品的RFID标签号。待归还RFID标签号是用户从第一扫描标签号中选择的RFID标签号,该待领取RFID标签号为用户本次入库想归还的物品的RFID标签号。具体地,用户可基于交互终端上显示的可领取RFID标签号和第一扫描RFID标签号进行选择,当用户选择所需的可领取RFID标签号和/或第一扫描RFID标签号(即待领取RFID标签号和/或待归还RFID标签号)时,该待领取RFID标签号和待归还RFID标签号会呈现选择标记(如打勾图标),若用户选错也可再次点击已撤回选择,当用户选择完成可点击交互终端上显示的“完成”按钮,即可使服务器获取用户选择请求。并且,在交互终端上还会显示“完成并打印”按钮,若用户想要打印物品清单也可点击此按钮,以使服务器获取打印请求,并打印请求打印物品清单,以使用户可携带物品清单进入仓库。
S313:采用预先创建的单据模板对待领取RFID标签号和待归还RFID标签号进行处理,获取第一物品清单。
具体地,服务器会预先创建单据模板,该单据模板用于制作第一物品清单或第二物品清单。该单据模板包括待领取RFID标签号字段以及待领取RFID标签号对应的物品详细信息字段、待领取RFID标签号对应的物品位置字段、待归还RFID标签号字段、待归还RFID标签号对应的物品位置字段以及待归还RFID标签号对应的物品详细信息字段,该物品详细信息字段包括但不限于物品名称、物品种类、物品领取数量和领取状态等字段。具体地,服务器根据用户选择的待领取RFID标签号和待归还RFID标签号,将选择的待领取RFID标签号和待归还RFID标签号分别映射到单据模板的待领取RFID标签号字段和待归还RFID标签号字段中,基于待领取RFID标签号查找数据库,获取待领取RFID标签号对应的物品详细信息字段,将其映射到待领取RFID标签号对应的物品详细信息字段中;基于待领取RFID标签号查找数据库,获取待领取RFID标签号对应的物品位置,将其映射到待领取RFID标签号对应的物品位置字段;基于待归还RFID标签号查找数据库,获取待归还RFID标签号对应的物品详细信息字段,将其映射到待归还RFID标签号对应的物品详细信息字段中;基于待归还RFID标签号查找数据库,获取待归还RFID标签号对应的物品位置,将其映射到待归还RFID标签号对应的物品位置字段;以获取第一物品清单,该过程无需人工制作物品清单,实现自动化。
本实施例中,在第一道屏障和第二道屏障之间设置的交互终端上显示可领取RFID标签号和第一扫描RFID标签号,以供用户选择。用户可基于交互终端上显示的可领取RFID 标签号和第一扫描RFID标签号进行选择,以使服务器获取用户选择请求,并基于用户选择请求,采用预先创建的单据模板对待领取RFID标签号和待归还RFID标签号进行处理,获取第一物品清单,该过程无需人工制作物品清单,实现自动化。
在一实施例中,如图4所示,该仓库管理方法还包括如下步骤:
S51:在第三道屏障采用人脸扫描设备对出库用户进行脸部扫描,根据扫描到的人脸扫描图像获取出库用户ID。
其中,出库用户ID是用于识别出库用户的唯一标识。出库用户是想要通过第三道屏障离开仓库的用户。具体地,在第三道屏障中设置有人脸扫描设备,该人脸扫描设备中包括用于扫描用户脸部的摄像头和用于对人脸扫描图像进行识别的人脸扫描接口。具体地,当出库用户处于人脸扫描设备可扫描范围时,服务器会调用人脸扫描设备的摄像头对出库用户脸部进行扫描以获取人脸扫描图像,将人脸扫描图像转换成base64编码,获取待识别数字图像,以便将该待识别数字图像输入到人脸扫描接口中进行识别,获取与人脸扫描图像对应的用户ID即出库用户ID。其中,将人脸扫描图像转换成base64编码的过程步骤S10一致,为避免重复,在此不再赘述。
S52:基于出库用户ID查找数据库,获取与出库用户ID对应的可领取RFID标签号。
具体地,基于出库用户ID查找数据库中预先存储的用户信息表,获取与出库用户ID对应的可领取RFID标签号,由于仓库中可能进入多个用户,因此出库时需要获取出库用户ID对应的可领取RFID标签号,以便对用户当前所领取的物品进行判断,即判断是否可以领取该物品,防止用户领取不在可领取RFID标签号范围内的物品,提高仓库管理的规范性。
S53:采用设置在第三道屏障上的RFID扫描设备进行扫描,获取第二扫描RFID标签号。
其中,第二扫描RFID标签号是RFID扫描设备扫描的出库用户携带物品的RFID标签号。本实施例中,当用户在进行人脸扫描时,会同时调用RFID扫描设备对用户所在区域进行扫描,节省出库时间。具体地,当出库用户想要离开仓库时,采用RFID扫描设备对用户所在区域进行扫描,获取出库用户当前携带的物品对应的RFID标签号即第二扫描RFID标签号,以便后续基于第二扫描RFID标签号和可领取RFID标签号进行判断。
S54:若判断每一第二扫描RFID标签号与一可领取RFID标签号相匹配,则更新第二扫描RFID标签号对应的物品的领取状态为已领取状态。
具体地,若判断每一第二扫描RFID标签号与可领取RFID标签号相匹配,则更新该与可领取RFID标签号相匹配的第二扫描RFID标签号对应的物品的领取状态为已领取状态,该过程无需人工记录,以实现无人仓库的思想,达到仓库智能管理的目的。
S55:若判断每一第二扫描RFID标签号与一可领取RFID标签号不相匹配,则生成领取失败信息。
具体地,若判断每一第二扫描RFID标签号与可领取RFID标签号不相匹配,则生成物品领取失败信息,该提醒信息包括与领域RFID标签号不相匹配的第二扫描RFID标签号和对应的物品位置,提醒用户将不相匹配的第二扫描RFID标签号对应的物品放回原处,提高仓库管理的规范性。
本实施例中,用户在出库时,需在第三道屏障中采用人脸扫描设备对出库用户进行脸部扫描,获取出库用户ID,服务器基于出库用户ID查找数据库,获取与出库用户ID对应的可领取RFID标签号,采用设置在第三道屏障上的RFID扫描设备进行扫描,获取第二扫描RFID标签号,基于第二扫描RFID标签号和可领取RFID标签号判断用户当前所领取的物品是否为可领取的物品,防止用户领取不在可领取RFID标签号范围内的物品,提高仓库管理的规范性。
在一实施例中,如图5所示,在步骤S51之后,该仓库管理方法还包括如下步骤:
S61:获取与出库用户ID相对应的第一扫描RFID标签号。
本实施例中,入库用户ID和出库用户ID相对应。由于出库用户在入库时已经通过RFID扫描设备扫描,获取第一扫描RFID标签号,并将第一扫描RFID标签号存储到服务器缓存中,以便使用时直接查找与出库用户ID相对应的入库用户ID,并通过该入库用户ID查找获取第一扫描RFID标签号,该第一扫描RFID标签号可直接从服务器缓存中获取,减少访问数据库次数,提高数据库性能。
S62:若确定每一第一扫描RFID标签号与一第二扫描RFID标签号相匹配,则第一扫描RFID标签号对应的物品未归还。
具体地,若确定每一第一扫描RFID标签号与一第二扫描RFID标签号相匹配,则证明用户将入库时携带的物品又带出仓库,认定第一扫描RFID标签号对应的物品未归还,则不做记录。
S63:若确定每一第一扫描RFID标签号与一第二扫描RFID标签号不匹配,则第一扫描RFID标签号对应的物品已归还,更新第一扫描RFID标签号对应的物品的领取状态为已归还状态。
若确定每一第一扫描RFID标签号与一第二扫描RFID标签号不匹配,则证明用户将入库时携带的物品放入仓库中,认定第一扫描RFID标签号对应的物品已归还,则更新第一扫描RFID标签号对应的物品的领取状态为已归还状态,该过程无需人工记录,实现无人仓库的思想,达到仓库智能管理的目的。
可理解地,步骤S61-步骤S63与步骤S52-步骤S55并无前后顺序之分,即可先执行步骤S61-步骤S63,再执行步骤S52-步骤S55;或者先执行S52-步骤S55,再执行步骤S61-步骤S63。
在一实施例中,如图6所示,步骤S63中,即若确定每一第一扫描RFID标签号与一第二扫描RFID标签号不匹配,则第一扫描RFID标签号对应的物品已归还,更新第一扫描RFID标签号对应的物品的领取状态为已归还状态,具体包括如下步骤:
S631:若确定每一第一扫描RFID标签号与一第二扫描RFID标签号不匹配,则第一扫描RFID标签号对应的物品已归还,并基于第一扫描RFID标签号查询仓库数据库,确定第一扫描RFID标签号是否为有效归还。
具体地,若每一第一扫描RFID标签号与一第二扫描RFID标签号不对应,则第一扫描RFID标签号对应的物品已归还,并基于第一扫描RFID标签号查询仓库数据库,确定第一扫描RFID标签号是否为有效归还,即是否归还的是本仓库的物品。其中,仓库数据库预先存储有仓库中每一物品的RFID标签。
进一步地,在物品首次入库时,需要预先对仓库物品进行加签操作。加签操作是指将仓库物品表面贴上RFID标签的操作,即根据物品的条形码生成RFID标签,然后贴到物品表面上的RFID标签区域。通过条形码扫描设备扫描首次入库的物品对应的物品条形码,以获取物品详细信息(如:价格、厂商和规格),并将该物品详细信息通过RFID扫描设备的写入接口写入到RFID标签中,并打印该RFID标签,通过预先设置的自动臂将打印好的RFID取出,贴到物品表面上对应的RFID标签区域,以完成加签操作,该过程无需人工干预即可完成加签操作,减少人力成本。
S632:若确定第一扫描RFID标签号为有效归还,更新第一扫描RFID标签号对应的物品的领取状态为已归还状态。
具体地,通过将第一扫描RFID标签号与仓库数据库中存储的RFID标签号进行对比,若在仓库数据库中存在第一扫描RFID标签号,则第一扫描RFID标签号为有效归还,即第一扫描RFID标签号对应的物品是本仓库中的物品,若一扫描RFID标签号为有效归还,更新第一扫描RFID标签号对应的物品的领取状态为已归还状态,该过程无需人工记录,实现无人仓库的思想,达到仓库智能管理的目的。
S633:若确定第一扫描RFID标签号为无效归还,则生成提醒信息。
具体地,若在仓库数据库中不存在第一扫描RFID标签号,则证明第一扫描RFID标签号对应的物品不在本仓库中,即不属于本仓库的物品,则该第一扫描RFID标签号为无效归还,生成提醒信息,提醒管理员归还无效。该提醒信息包括无效归还的物品对应的RFID标签号,以便管理员基于该提醒信息通知归还物品的员工将不属于本仓库的物品取出。
本实施例中,若确定每一第一扫描RFID标签号与一第二扫描RFID标签号不对应,则第一扫描RFID标签号对应的物品已归还,并基于第一扫描RFID标签号查询仓库数据库,确定第一扫描RFID标签号是否为有效归还,若确定第一扫描RFID标签号为有效归还,更新第一扫描RFID标签号对应的物品的领取状态为已归还状态,该过程无需人工记录,实现无人仓库的思想,达到仓库智能管理的目的;若第一扫描RFID标签号为无效归还,则生成提醒信息,以便管理员基于提醒信息通知员工将不属于本仓库的物品取出,以保证仓库管理的规范性。
在一实施例中,由于归还物品时有可能是他人归还,并且在他人归还时将不是该仓库的物品归还到此仓库,因此本实施例中还包括对是否本人归还进行判断并记录的步骤,以便出现将不是本仓库的物品归还到本仓库的情况时,通知当时归还物品的用户将不是本仓库的物品取出,具体地,如图7所示,步骤S632之前,即第一扫描RFID标签号为有效归还之前,该仓库管理方法还包括如下步骤:
S71:基于第一扫描RFID标签号查询仓库数据库,获取与第一扫描RFID标签号相对应的原始用户ID。
其中,原始用户ID是指第一扫描RFID标签号在用户物品信息表中记载的用户ID。具体地,在获取到第一扫描RFID标签号为有效归还后,基于第一扫描RFID标签号,查询仓库数据库,获取与第一扫描RFID标签号相对应的原始用户ID,以便判断本次归还操作是否为本人归还。
S72:若确定原始用户ID与出库用户ID相匹配,则第一扫描RFID标签号对应的物品为用户本人归还,并将第一扫描RFID标签号对应的物品记为本人归还。
具体地,若确定原始用户ID与出库用户ID相匹配,由于本实施例中的出库用户ID与入库用户ID相匹配,则第一扫描RFID标签号对应的物品为用户本人归还,并将第一扫描RFID标签号对应的物品记为本人归还,该记录过程无需人工干预,节省人力。
S73:若确定原始用户ID与出库用户ID不匹配,则第一扫描RFID标签号对应的物品为他人归还,并将第一扫描RFID标签号对应的物品记为他人归还。
具体地,若确定原始用户ID与出库用户ID不匹配,则第一扫描RFID标签号对应的物品为他人归还,并将第一扫描RFID标签号对应的物品记为他人归还,该记录过程无需人工干预,节省人力。
本实施例中,基于第一扫描RFID标签号查询仓库数据库,获取与第一扫描RFID标签号相对应的原始用户ID,若确定原始用户ID与出库用户ID相匹配,则第一扫描RFID标签号对应的物品为用户本人归还,并将第一扫描RFID标签号对应的物品记为本人归还;若确定原始用户ID与出库用户ID不匹配,则第一扫描RFID标签号对应的物品为他人归还,并将第一扫描RFID标签号对应的物品记为他人归还,以便出现将不是本仓库的物品归还到本仓库的情况时,通知当时归还物品的用户将不是本仓库的物品取出,该记录过程无需人工干预,即可详细记录每一用户的出入库信息,节省人力。
应理解,上述实施例中各步骤的序号的大小并不意味着执行顺序的先后,各过程的执行顺序应以其功能和内在逻辑确定,而不应对本申请实施例的实施过程构成任何限定。
在一实施例中,提供一种仓库管理装置,该仓库管理装置与上述实施例中仓库管理方法一一对应。如图8所示,该仓库管理装置包括入库用户ID获取模块10、可领取标签号获取模块21、第一物品位置获取模块31和第一最优路线获取模块41。各功能模块详细说 明如下:
入库用户ID获取模块10,用于在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID。
可领取标签号获取模块21,用于若确定入库用户ID为普通员工工号,则基于普通员工工号查找数据库,获取与普通员工工号对应的可领取RFID标签号。
第一物品位置获取模块31,用于采用RFID扫描设备对第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于可领取RFID标签号和第一扫描RFID标签号,获取第一物品清单,第一物品清单包括第一物品位置。
第一最优路线获取模块41,用于基于第二道屏障和目标物品位置,调用运动轨迹接口,设定物品最优路线。
具体地,该仓库管理装置还包括目标标签号获取模块22、目标物品位置获取模块32和第二最优路线获取模块42。
目标标签号获取模块22,用于若确定入库用户ID为管理员工号,则获取离职员工工号,基于离职员工工号查询数据库,获取与离职员工工号相对应的目标RFID标签号。
目标物品位置获取模块32,用于基于目标RFID标签号,获取第二物品清单,第二物品清单包括目标物品位置。
第二最优路线获取模块42,基于所述第二道屏障和所述目标物品位置,调用运动轨迹接口,设定第二物品最优路线
具体地,第一物品位置获取模块31包括RFID标签号显示单元311、用户选择请求获取单元312和第一物品位置获取单元313。
RFID标签号显示单元311,用于在第一道屏障和第二道屏障之间设置的交互终端上显示可领取RFID标签号和第一扫描RFID标签号。
用户选择请求获取单元312,用于基于交互终端上显示可领取RFID标签号和第一扫描RFID标签号,获取用户选择请求,用户选择请求包括待领取RFID标签号和待归还RFID标签号。
第一物品位置获取单元313,用于采用预先创建的单据模板对待领取RFID标签号和和待归还RFID标签号进行处理,获取第一物品清单,该第一物品清单包括第一物品位置。
具体地,该仓库管理方法还包括出库用户ID获取单元51、可领取标签号获取单元52、第二扫描标签号获取单元53、状态更新单元54和领取失败信息获取单元55。
出库用户ID获取单元51,用于在第三道屏障采用人脸扫描设备对出库用户进行脸部扫描,根据扫描到的人脸扫描图像获取出库用户ID。
可领取标签号获取单元52,用于基于出库用户ID查找数据库,获取与出库用户ID对应的可领取RFID标签号。
第二扫描标签号获取单元53,用于采用设置在第三道屏障上的RFID扫描设备进行扫描,获取第二扫描RFID标签号。
状态更新单元54,用于若判断每一第二扫描RFID标签号与一可领取RFID标签号相匹配,则更新第二扫描RFID标签号对应的物品的领取状态为已领取状态。
领取失败信息获取单元55,用于若判断每一第二扫描RFID标签号与一可领取RFID标签号不相匹配,则生成领取失败信息。
具体地,该仓库管理装置还包括第一扫描标签号获取单元61、第一处理单元62和第二处理单元63。
第一扫描标签号获取单元61,用于获取与出库用户ID相对应的第一扫描RFID标签号。
第一处理单元62,用于若确定每一第一扫描RFID标签号与一第二扫描RFID标签号相匹配,则第一扫描RFID标签号对应的物品未归还。
第二处理单元63,用于若确定每一第一扫描RFID标签号与一第二扫描RFID标签号不 匹配,则第一扫描RFID标签号对应的物品已归还,更新第一扫描RFID标签号对应的物品的领取状态为已归还状态。
具体地,第二处理单元63包括标签号判断子单元631、标签号状态更新子单元632和提醒信息生成子单元633。
标签号判断子单元631,用于若确定每一第一扫描RFID标签号与一第二扫描RFID标签号不匹配,则第一扫描RFID标签号对应的物品已归还,并基于第一扫描RFID标签号查询仓库数据库,确定第一扫描RFID标签号是否为有效归还。
标签号状态更新子单元632,若确定第一扫描RFID标签号为有效归还,更新第一扫描RFID标签号对应的物品的领取状态为已归还状态。
提醒信息生成子单元633,用于若确定第一扫描RFID标签号为无效归还,则生成提醒信息。
具体地,该仓库管理装置还包括原始用户ID获取单元71、第一记录单元72和第二记录单元73。
原始用户ID获取单元71,用于基于第一扫描RFID标签号查询仓库数据库,获取与第一扫描RFID标签号相对应的原始用户ID。
第一记录单元72,用于若确定原始用户ID与出库用户ID相匹配,则第一扫描RFID标签号对应的物品为用户本人归还,并将第一扫描RFID标签号对应的物品记为本人归还。
第二记录单元73,用于若确定原始用户ID与出库用户ID不匹配,则第一扫描RFID标签号对应的物品为他人归还,并将第一扫描RFID标签号对应的物品记为他人归还。
关于仓库管理装置的具体限定可以参见上文中对于仓库管理方法的限定,在此不再赘述。上述仓库管理装置中的各个模块可全部或部分通过软件、硬件及其组合来实现。上述各模块可以硬件形式内嵌于或独立于计算机设备中的处理器中,也可以以软件形式存储于计算机设备中的存储器中,以便于处理器调用执行以上各个模块对应的操作。
在一个实施例中,提供了一种计算机设备,该计算机设备可以是服务器,其内部结构图可以如图7所示。该计算机设备包括通过系统总线连接的处理器、存储器、网络接口和数据库。其中,该计算机设备的处理器用于提供计算和控制能力。该计算机设备的存储器包括非易失性存储介质、内存储器。该非易失性存储介质存储有操作系统、计算机可读指令和数据库。该内存储器为非易失性存储介质中的操作系统和计算机可读指令的运行提供环境。该计算机设备的数据库用于存储执行仓库管理方法过程中生成或获取的数据,如用户信息表。该计算机设备的网络接口用于与外部的终端通过网络连接通信。该计算机可读指令被处理器执行时以实现一种仓库管理方法。
在一个实施例中,提供了一种计算机设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机可读指令,处理器执行计算机可读指令时实现以下步骤:在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID;若确定入库用户ID为普通员工工号,则基于普通员工工号查找数据库,获取与普通员工工号对应的可领取RFID标签号;采用RFID扫描设备对第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于可领取RFID标签号和第一扫描RFID标签号,获取第一物品清单,第一物品清单包括第一物品位置;基于第二道屏障和第一物品位置,调用运动轨迹接口,设定第一物品最优路线。
在一个实施例中,处理器执行计算机可读指令时还实现以下步骤:在第一道屏障和第二道屏障之间设置的交互终端上显示可领取RFID标签号和第一扫描RFID标签号;基于交互终端上显示可领取RFID标签号和第一扫描RFID标签号,获取用户选择请求,用户选择请求包括待领取RFID标签号和待归还RFID标签号;采用预先创建的单据模板对待领取RFID标签号和和待归还RFID标签号进行处理,获取第一物品清单,第一物品清单包括第一物品位置。
在一个实施例中,处理器执行计算机可读指令时还实现以下步骤:若入库用户ID为管理员工号,则获取离职员工工号,基于离职员工工号查询数据库,获取与离职员工工号相对应的目标RFID标签号;基于目标RFID标签号,获取第二物品清单;第二物品清单包括目标物品位置;基于第二道屏障和目标物品位置,调用运动轨迹接口,获取第二物品最优路线。
在一个实施例中,处理器执行计算机可读指令时还实现以下步骤:在第三道屏障采用人脸扫描设备对出库用户进行脸部扫描,根据扫描到的人脸扫描图像获取出库用户ID;基于出库用户ID查找数据库,获取与出库用户ID对应的可领取RFID标签号;采用设置在第三道屏障上的RFID扫描设备进行扫描,获取第二扫描RFID标签号;若判断每一第二扫描RFID标签号与一可领取RFID标签号相匹配,则更新第二扫描RFID标签号对应的物品的领取状态为已领取状态;若判断每一第二扫描RFID标签号与一可领取RFID标签号不相匹配,则生成领取失败信息。
在一个实施例中,处理器执行计算机可读指令时还实现以下步骤:获取与出库用户ID相对应的第一扫描RFID标签号;若确定每一第一扫描RFID标签号与一第二扫描RFID标签号相匹配,则第一扫描RFID标签号对应的物品未归还;若确定每一第一扫描RFID标签号与一第二扫描RFID标签号不匹配,则第一扫描RFID标签号对应的物品已归还,更新第一扫描RFID标签号对应的物品的领取状态为已归还状态。
在一个实施例中,处理器执行计算机可读指令时还实现以下步骤:若确定每一第一扫描RFID标签号与一第二扫描RFID标签号不匹配,则第一扫描RFID标签号对应的物品已归还,并基于第一扫描RFID标签号查询仓库数据库,确定第一扫描RFID标签号是否为有效归还;若确定第一扫描RFID标签号为有效归还,更新第一扫描RFID标签号对应的物品的领取状态为已归还状态;若确定第一扫描RFID标签号为无效归还,则生成提醒信息。
在一个实施例中,处理器执行计算机可读指令时还实现以下步骤:基于第一扫描RFID标签号查询仓库数据库,获取与第一扫描RFID标签号相对应的原始用户ID;若确定原始用户ID与出库用户ID相匹配,则第一扫描RFID标签号对应的物品为用户本人归还,并将第一扫描RFID标签号对应的物品记为本人归还;若确定原始用户ID与出库用户ID不匹配,则第一扫描RFID标签号对应的物品为他人归还,并将第一扫描RFID标签号对应的物品记为他人归还。
在一个实施例中,一个或多个存储有计算机可读指令的非易失性可读存储介质,计算机可读指令被一个或多个处理器执行时,使得一个或多个处理器执行如下步骤:在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID;若确定入库用户ID为普通员工工号,则基于普通员工工号查找数据库,获取与普通员工工号对应的可领取RFID标签号;采用RFID扫描设备对第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于可领取RFID标签号和第一扫描RFID标签号,获取第一物品清单,第一物品清单包括第一物品位置;基于第二道屏障和第一物品位置,调用运动轨迹接口,设定第一物品最优路线。
在一个实施例中,计算机可读指令被一个或多个处理器执行时,使得一个或多个处理器执行如下步骤:在第一道屏障和第二道屏障之间设置的交互终端上显示可领取RFID标签号和第一扫描RFID标签号;基于交互终端上显示可领取RFID标签号和第一扫描RFID标签号,获取用户选择请求,用户选择请求包括待领取RFID标签号和待归还RFID标签号;采用预先创建的单据模板对待领取RFID标签号和和待归还RFID标签号进行处理,获取第一物品清单,第一物品清单包括第一物品位置。
在一个实施例中,计算机可读指令被一个或多个处理器执行时,使得一个或多个处理器执行如下步骤:若确定入库用户ID为管理员工号,则获取离职员工工号,基于离职员工工号查询数据库,获取与离职员工工号相对应的目标RFID标签号;基于目标RFID标签 号,获取第二物品清单;第二物品清单包括目标物品位置;基于第二道屏障和目标物品位置,调用运动轨迹接口,设定第二物品最优路线。
在一个实施例中,计算机可读指令被一个或多个处理器执行时,使得一个或多个处理器执行如下步骤:在第三道屏障采用人脸扫描设备对出库用户进行脸部扫描,根据扫描到的人脸扫描图像获取出库用户ID;基于出库用户ID查找数据库,获取与出库用户ID对应的可领取RFID标签号;采用设置在第三道屏障上的RFID扫描设备进行扫描,获取第二扫描RFID标签号;若判断每一第二扫描RFID标签号与一可领取RFID标签号相匹配,则更新第二扫描RFID标签号对应的物品的领取状态为已领取状态;若判断每一第二扫描RFID标签号与一可领取RFID标签号不相匹配,则生成领取失败信息。
在一个实施例中,计算机可读指令被一个或多个处理器执行时,使得一个或多个处理器执行如下步骤:获取与出库用户ID相对应的第一扫描RFID标签号;若确定每一第一扫描RFID标签号与一第二扫描RFID标签号相匹配,则第一扫描RFID标签号对应的物品未归还;若确定每一第一扫描RFID标签号与一第二扫描RFID标签号不匹配,则第一扫描RFID标签号对应的物品已归还,更新第一扫描RFID标签号对应的物品的领取状态为已归还状态。
在一个实施例中,计算机可读指令被一个或多个处理器执行时,使得一个或多个处理器执行如下步骤:若每一第一扫描RFID标签号与一第二扫描RFID标签号不匹配,则第一扫描RFID标签号对应的物品已归还,并基于第一扫描RFID标签号查询仓库数据库,确定第一扫描RFID标签号是否为有效归还;若确定第一扫描RFID标签号为有效归还,更新第一扫描RFID标签号对应的物品的领取状态为已归还状态;若确定第一扫描RFID标签号为无效归还,则生成提醒信息。
在一个实施例中,计算机可读指令被一个或多个处理器执行时,使得一个或多个处理器执行如下步骤:基于第一扫描RFID标签号查询仓库数据库,获取与第一扫描RFID标签号相对应的原始用户ID;若确定原始用户ID与出库用户ID相匹配,则第一扫描RFID标签号对应的物品为用户本人归还,并将第一扫描RFID标签号对应的物品记为本人归还;若确定原始用户ID与出库用户ID不匹配,则第一扫描RFID标签号对应的物品为他人归还,并将第一扫描RFID标签号对应的物品记为他人归还。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机可读指令来指令相关的硬件来完成,所述的计算机可读指令可存储于一非易失性计算机可读取存储介质中,该计算机可读指令在执行时,可包括如上述各方法的实施例的流程。其中,本申请所提供的各实施例中所使用的对存储器、存储、数据库或其它介质的任何引用,均可包括非易失性和/或易失性存储器。非易失性存储器可包括只读存储器(ROM)、可编程ROM(PROM)、电可编程ROM(EPROM)、电可擦除可编程ROM(EEPROM)或闪存。易失性存储器可包括随机存取存储器(RAM)或者外部高速缓冲存储器。作为说明而非局限,RAM以多种形式可得,诸如静态RAM(SRAM)、动态RAM(DRAM)、同步DRAM(SDRAM)、双数据率SDRAM(DDRSDRAM)、增强型SDRAM(ESDRAM)、同步链路(Synchlink)DRAM(SLDRAM)、存储器总线(Rambus)直接RAM(RDRAM)、直接存储器总线动态RAM(DRDRAM)、以及存储器总线动态RAM(RDRAM)等。
以上所述实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的精神和范围,均应包含在本申请的保护范围之内。

Claims (20)

  1. 一种仓库管理方法,其特征在于,包括:
    在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID;
    若确定所述入库用户ID为普通员工工号,则基于所述普通员工工号查找数据库,获取与所述普通员工工号对应的可领取RFID标签号;
    采用RFID扫描设备对所述第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于所述可领取RFID标签号和所述第一扫描RFID标签号,获取第一物品清单,所述第一物品清单包括第一物品位置;
    基于所述第二道屏障和所述第一物品位置,调用运动轨迹接口,设定第一物品最优路线。
  2. 如权利要求1所述的仓库管理方法,其特征在于,所述基于所述可领取RFID标签号和所述第一扫描RFID标签号,获取第一物品清单,包括:
    在所述第一道屏障和第二道屏障之间设置的交互终端上显示所述可领取RFID标签号和所述第一扫描RFID标签号;
    基于所述交互终端上显示所述可领取RFID标签号和所述第一扫描RFID标签号,获取用户选择请求,所述用户选择请求包括待领取RFID标签号和待归还RFID标签号;
    采用预先创建的单据模板对所述待领取RFID标签号和所述和待归还RFID标签号进行处理,获取第一物品清单。
  3. 如权利要求1所述的仓库管理方法,其特征在于,在所述在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID的步骤之后,所述仓库管理方法还包括:
    若确定所述入库用户ID为管理员工号,则获取离职员工工号,基于所述离职员工工号查询数据库,获取与所述离职员工工号相对应的目标RFID标签号;
    基于所述目标RFID标签号,获取第二物品清单;所述第二物品清单包括目标物品位置;
    基于所述第二道屏障和所述目标物品位置,调用运动轨迹接口,设定第二物品最优路线。
  4. 如权利要求1所述的仓库管理方法,其特征在于,所述仓库管理方法还包括:
    在第三道屏障采用人脸扫描设备对出库用户进行脸部扫描,根据扫描到的人脸扫描图像获取出库用户ID;
    基于出库用户ID查找数据库,获取与所述出库用户ID对应的可领取RFID标签号;
    采用设置在所述第三道屏障上的RFID扫描设备进行扫描,获取第二扫描RFID标签号;
    若判断每一所述第二扫描RFID标签号与一所述可领取RFID标签号相匹配,则更新所述第二扫描RFID标签号对应的物品的领取状态为已领取状态;
    若判断每一所述第二扫描RFID标签号与一所述可领取RFID标签号不相匹配,则生成领取失败信息。
  5. 如权利要求4所述的仓库管理方法,其特征在于,在所述根据人脸扫描图像获取出库用户ID的步骤之后,所述仓库管理方法还包括:
    获取与所述出库用户ID相对应的第一扫描RFID标签号;
    若确定每一所述第一扫描RFID标签号与一所述第二扫描RFID标签号相匹配,则所述第一扫描RFID标签号对应的物品未归还;
    若确定每一所述第一扫描RFID标签号与一所述第二扫描RFID标签号不匹配,则所述第一扫描RFID标签号对应的物品已归还,更新所述第一扫描RFID标签号对应的物品的领 取状态为已归还状态。
  6. 如权利要求5所述的仓库管理方法,其特征在于,所述若确定每一所述第一扫描RFID标签号与一所述第二扫描RFID标签号不匹配,则所述第一扫描RFID标签号对应的物品已归还,更新所述第一扫描RFID标签号对应的物品的领取状态为已归还状态,包括:
    若确定每一所述第一扫描RFID标签号与一所述第二扫描RFID标签号不匹配,则所述第一扫描RFID标签号对应的物品已归还,并基于所述第一扫描RFID标签号查询仓库数据库,确定所述第一扫描RFID标签号是否为有效归还;
    若确定所述第一扫描RFID标签号为有效归还,更新所述第一扫描RFID标签号对应的物品的领取状态为已归还状态;
    若确定所述第一扫描RFID标签号为无效归还,则生成提醒信息。
  7. 如权利要求6所述的仓库管理方法,其特征在于,在所述第一扫描RFID标签号为有效归还的步骤之前,所述仓库管理方法还包括:
    基于所述第一扫描RFID标签号查询仓库数据库,获取与所述第一扫描RFID标签号相对应的原始用户ID;
    若确定所述原始用户ID与所述出库用户ID相匹配,则所述第一扫描RFID标签号对应的物品为用户本人归还,并将所述第一扫描RFID标签号对应的物品记为本人归还;
    若确定所述原始用户ID与所述出库用户ID不匹配,则所述第一扫描RFID标签号对应的物品为他人归还,并将所述第一扫描RFID标签号对应的物品记为他人归还。
  8. 一种仓库管理装置,其特征在于,包括:
    入库用户ID获取模块,用于在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID;
    可领取RFID标签号获取模块,用于若确定所述入库用户ID为普通员工工号,则基于所述普通员工工号查找数据库,获取与所述普通员工工号对应的可领取RFID标签号;
    第一物品位置获取模块,用于采用RFID扫描设备对所述第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于所述可领取RFID标签号和所述第一扫描RFID标签号,获取第一物品清单,所述第一物品清单包括目标物品位置;
    最优路线获取模块,用于基于所述第二道屏障和所述目标物品位置,调用运动轨迹接口,设定物品最优路线。
  9. 一种计算机设备,包括存储器、处理器以及存储在所述存储器中并可在所述处理器上运行的计算机可读指令,其特征在于,所述处理器执行所述计算机可读指令时实现如下步骤:
    在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID;
    若确定所述入库用户ID为普通员工工号,则基于所述普通员工工号查找数据库,获取与所述普通员工工号对应的可领取RFID标签号;
    采用RFID扫描设备对所述第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于所述可领取RFID标签号和所述第一扫描RFID标签号,获取第一物品清单,所述第一物品清单包括第一物品位置;
    基于所述第二道屏障和所述第一物品位置,调用运动轨迹接口,设定第一物品最优路线。
  10. 如权利要求9所述的计算机设备,其特征在于,所述基于所述可领取RFID标签号和所述第一扫描RFID标签号,获取第一物品清单,包括:
    在所述第一道屏障和第二道屏障之间设置的交互终端上显示所述可领取RFID标签号和所述第一扫描RFID标签号;
    基于所述交互终端上显示所述可领取RFID标签号和所述第一扫描RFID标签号,获取 用户选择请求,所述用户选择请求包括待领取RFID标签号和待归还RFID标签号;
    采用预先创建的单据模板对所述待领取RFID标签号和所述和待归还RFID标签号进行处理,获取第一物品清单。
  11. 如权利要求9所述的计算机设备,其特征在于,在所述在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID的步骤之后,所述处理器执行所述计算机可读指令时还实现如下步骤:
    若确定所述入库用户ID为管理员工号,则获取离职员工工号,基于所述离职员工工号查询数据库,获取与所述离职员工工号相对应的目标RFID标签号;
    基于所述目标RFID标签号,获取第二物品清单;所述第二物品清单包括目标物品位置;
    基于所述第二道屏障和所述目标物品位置,调用运动轨迹接口,设定第二物品最优路线。
  12. 如权利要求9所述的计算机设备,其特征在于,所述处理器执行所述计算机可读指令时还实现如下步骤:
    在第三道屏障采用人脸扫描设备对出库用户进行脸部扫描,根据扫描到的人脸扫描图像获取出库用户ID;
    基于出库用户ID查找数据库,获取与所述出库用户ID对应的可领取RFID标签号;
    采用设置在所述第三道屏障上的RFID扫描设备进行扫描,获取第二扫描RFID标签号;
    若判断每一所述第二扫描RFID标签号与一所述可领取RFID标签号相匹配,则更新所述第二扫描RFID标签号对应的物品的领取状态为已领取状态;
    若判断每一所述第二扫描RFID标签号与一所述可领取RFID标签号不相匹配,则生成领取失败信息。
  13. 如权利要求12所述的计算机设备,其特征在于,在所述根据人脸扫描图像获取出库用户ID的步骤之后,所述处理器执行所述计算机可读指令时还实现如下步骤:
    获取与所述出库用户ID相对应的第一扫描RFID标签号;
    若确定每一所述第一扫描RFID标签号与一所述第二扫描RFID标签号相匹配,则所述第一扫描RFID标签号对应的物品未归还;
    若确定每一所述第一扫描RFID标签号与一所述第二扫描RFID标签号不匹配,则所述第一扫描RFID标签号对应的物品已归还,更新所述第一扫描RFID标签号对应的物品的领取状态为已归还状态。
  14. 如权利要求13所述的计算机设备,其特征在于,所述若确定每一所述第一扫描RFID标签号与一所述第二扫描RFID标签号不匹配,则所述第一扫描RFID标签号对应的物品已归还,更新所述第一扫描RFID标签号对应的物品的领取状态为已归还状态,包括:
    若确定每一所述第一扫描RFID标签号与一所述第二扫描RFID标签号不匹配,则所述第一扫描RFID标签号对应的物品已归还,并基于所述第一扫描RFID标签号查询仓库数据库,确定所述第一扫描RFID标签号是否为有效归还;
    若确定所述第一扫描RFID标签号为有效归还,更新所述第一扫描RFID标签号对应的物品的领取状态为已归还状态;
    若确定所述第一扫描RFID标签号为无效归还,则生成提醒信息。
  15. 一个或多个存储有计算机可读指令的非易失性可读存储介质,其特征在于,所述计算机可读指令被一个或多个处理器执行时,使得所述一个或多个处理器执行如下步骤:
    在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID;
    若确定所述入库用户ID为普通员工工号,则基于所述普通员工工号查找数据库,获取与所述普通员工工号对应的可领取RFID标签号;
    采用RFID扫描设备对所述第一道屏障和第二道屏障之间的空间进行扫描,获取第一扫描RFID标签号,基于所述可领取RFID标签号和所述第一扫描RFID标签号,获取第一物品清单,所述第一物品清单包括第一物品位置;
    基于所述第二道屏障和所述第一物品位置,调用运动轨迹接口,设定第一物品最优路线。
  16. 如权利要求15所述的非易失性可读存储介质,其特征在于,所述基于所述可领取RFID标签号和所述第一扫描RFID标签号,获取第一物品清单,包括:
    在所述第一道屏障和第二道屏障之间设置的交互终端上显示所述可领取RFID标签号和所述第一扫描RFID标签号;
    基于所述交互终端上显示所述可领取RFID标签号和所述第一扫描RFID标签号,获取用户选择请求,所述用户选择请求包括待领取RFID标签号和待归还RFID标签号;
    采用预先创建的单据模板对所述待领取RFID标签号和所述和待归还RFID标签号进行处理,获取第一物品清单。
  17. 如权利要求15所述的非易失性可读存储介质,其特征在于,在所述在第一道屏障中采用人脸扫描设备对入库用户进行脸部扫描,根据扫描到的人脸扫描图像获取入库用户ID的步骤之后,所述计算机可读指令被一个或多个处理器执行时,使得所述一个或多个处理器还执行如下步骤:
    若确定所述入库用户ID为管理员工号,则获取离职员工工号,基于所述离职员工工号查询数据库,获取与所述离职员工工号相对应的目标RFID标签号;
    基于所述目标RFID标签号,获取第二物品清单;所述第二物品清单包括目标物品位置;
    基于所述第二道屏障和所述目标物品位置,调用运动轨迹接口,设定第二物品最优路线。
  18. 如权利要求15所述的非易失性可读存储介质,其特征在于,所述计算机可读指令被一个或多个处理器执行时,使得所述一个或多个处理器还执行如下步骤:
    在第三道屏障采用人脸扫描设备对出库用户进行脸部扫描,根据扫描到的人脸扫描图像获取出库用户ID;
    基于出库用户ID查找数据库,获取与所述出库用户ID对应的可领取RFID标签号;
    采用设置在所述第三道屏障上的RFID扫描设备进行扫描,获取第二扫描RFID标签号;
    若判断每一所述第二扫描RFID标签号与一所述可领取RFID标签号相匹配,则更新所述第二扫描RFID标签号对应的物品的领取状态为已领取状态;
    若判断每一所述第二扫描RFID标签号与一所述可领取RFID标签号不相匹配,则生成领取失败信息。
  19. 如权利要求18所述的非易失性可读存储介质,其特征在于,在所述根据人脸扫描图像获取出库用户ID的步骤之后,所述计算机可读指令被一个或多个处理器执行时,使得所述一个或多个处理器还执行如下步骤:
    获取与所述出库用户ID相对应的第一扫描RFID标签号;
    若确定每一所述第一扫描RFID标签号与一所述第二扫描RFID标签号相匹配,则所述第一扫描RFID标签号对应的物品未归还;
    若确定每一所述第一扫描RFID标签号与一所述第二扫描RFID标签号不匹配,则所述第一扫描RFID标签号对应的物品已归还,更新所述第一扫描RFID标签号对应的物品的领取状态为已归还状态。
  20. 如权利要求19所述的非易失性可读存储介质,其特征在于,所述若确定每一所述第一扫描RFID标签号与一所述第二扫描RFID标签号不匹配,则所述第一扫描RFID标签号对应的物品已归还,更新所述第一扫描RFID标签号对应的物品的领取状态为已归还状 态,包括:
    若确定每一所述第一扫描RFID标签号与一所述第二扫描RFID标签号不匹配,则所述第一扫描RFID标签号对应的物品已归还,并基于所述第一扫描RFID标签号查询仓库数据库,确定所述第一扫描RFID标签号是否为有效归还;
    若确定所述第一扫描RFID标签号为有效归还,更新所述第一扫描RFID标签号对应的物品的领取状态为已归还状态;
    若确定所述第一扫描RFID标签号为无效归还,则生成提醒信息。
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