WO2023274416A1 - 基于数据处理系统的数据处理方法及装置 - Google Patents

基于数据处理系统的数据处理方法及装置 Download PDF

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Publication number
WO2023274416A1
WO2023274416A1 PCT/CN2022/103467 CN2022103467W WO2023274416A1 WO 2023274416 A1 WO2023274416 A1 WO 2023274416A1 CN 2022103467 W CN2022103467 W CN 2022103467W WO 2023274416 A1 WO2023274416 A1 WO 2023274416A1
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WO
WIPO (PCT)
Prior art keywords
electronic shelf
target electronic
label
shelf label
terminal
Prior art date
Application number
PCT/CN2022/103467
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English (en)
French (fr)
Inventor
宋恩亮
喻应芝
赵振宇
Original Assignee
盒马(中国)有限公司
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Publication of WO2023274416A1 publication Critical patent/WO2023274416A1/zh

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    • 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
    • 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

Definitions

  • the present application relates to the field of logistics technology, in particular to a data processing method and device based on a data processing system.
  • This application shows a data processing method and device based on a data processing system.
  • the present application shows a data processing method based on a data processing system.
  • the system includes a cloud, a terminal, and a plurality of electronic shelf labels.
  • the cloud and the terminals are respectively connected by communication.
  • Different electronic The shelf labels are respectively adapted to different storage locations in the warehouse, and each storage location is used to place goods respectively; the method is applied to the cloud, and the method includes:
  • the picking task at least including the label identification of the target electronic shelf label adapted to the storage position of the goods to be picked in the warehouse;
  • the terminal Sending the picking task to the terminal, so that the terminal transmits a first instruction to the target electronic shelf label according to the label identification, the first instruction is used to instruct the target electronic shelf label to output prompt information, to Make the target electronic shelf label output prompt information according to the first instruction.
  • the present application shows a data processing method based on a data processing system.
  • the system includes a cloud, a terminal, and a plurality of electronic shelf labels.
  • the cloud and the terminals are respectively connected by communication.
  • Different electronic The shelf labels are adapted to different storage locations in the warehouse one by one, and each storage location is used to place goods respectively; the method is applied to the terminal, and the method includes:
  • the picking task at least includes the label identification of the target electronic shelf label adapted to the storage position of the goods to be picked in the warehouse;
  • the establishment request for establishing a communication connection between the terminal and the target electronic shelf label;
  • the establishment request carries the label identifier of the target electronic shelf label;
  • the target electronic shelf label determines that the establishment request carries the label identifier of the target electronic shelf label, the information returned by the target electronic shelf label according to the establishment request and used to establish the connection between the terminal and the establishing a communication connection between the target electronic shelf labels, so as to establish a communication connection between the terminal and the target electronic shelf labels;
  • the first instruction is used to instruct the target electronic shelf label to output prompt information, so that the target electronic shelf label outputs according to the first instruction Prompt information.
  • the present application shows a data processing method based on a data processing system.
  • the system includes a cloud, a terminal, and multiple electronic shelf labels.
  • the cloud and the terminals are respectively connected by communication.
  • Different electronic The shelf labels are adapted to different storage locations in the warehouse one by one, and each storage location is used to place goods respectively; the method is applied to the target electronic shelf labels in the plurality of electronic shelf labels, and the method includes:
  • the terminal receives the picking task sent by the cloud, the picking task includes the label identification of the target electronic shelf label adapted to the storage position of the goods to be picked in the warehouse;
  • the establishment request carries the label identifier of the target electronic shelf label
  • the present application shows a data processing method based on a data processing system.
  • the system includes a cloud, a terminal, and a plurality of electronic shelf labels.
  • the cloud and the terminals are respectively connected by communication.
  • Different electronic The shelf labels are adapted to different storage locations in the warehouse one by one, and each storage location is used to place goods respectively; the method is applied to the terminal, and the method includes:
  • the picking task at least includes the label identification of the target electronic shelf label adapted to the storage position of the goods to be picked in the warehouse;
  • the first instruction carrying the label identifier of the target electronic shelf label
  • the first instruction is used to instruct the target electronic shelf label to output prompt information, so that the target electronic shelf label
  • the first instruction carries the label identifier of the target electronic shelf label, output prompt information according to the first instruction.
  • the present application shows a data processing method based on a data processing system.
  • the system includes a cloud, a terminal, and a plurality of electronic shelf labels.
  • the cloud and the terminals are respectively connected by communication.
  • Different electronic The shelf labels are adapted to different storage locations in the warehouse one by one, and each storage location is used to place goods respectively; the method is applied to the target electronic shelf labels in the plurality of electronic shelf labels, and the method includes:
  • the first instruction is used to instruct the target electronic shelf label to output prompt information, wherein the first instruction is broadcast by the terminal when it receives the picking task sent by the cloud Yes, the picking task includes the label identification of the target electronic shelf label adapted to the storage location of the goods to be picked in the warehouse; the first instruction carries the label identification of the target electronic shelf label;
  • the present application shows a data processing device based on a data processing system.
  • the system includes a cloud, a terminal, and a plurality of electronic shelf labels.
  • the cloud and the terminals are respectively connected by communication.
  • Different electronic The shelf labels are adapted to different storage locations in the warehouse one by one, and each storage location is used to place goods respectively; the method is applied to the cloud, and the device includes:
  • An acquisition module configured to acquire a picking task, the picking task at least including the label identification of the target electronic shelf label adapted to the storage position of the goods to be picked in the warehouse;
  • the first sending module is configured to send the picking task to the terminal, so that the terminal transmits a first instruction to the target electronic shelf label according to the label identification, and the first instruction is used to indicate that the target electronic shelf label
  • the shelf label outputs prompt information, so that the target electronic shelf label outputs prompt information according to the first instruction.
  • the present application shows a data processing device based on a data processing system.
  • the system includes a cloud, a terminal, and a plurality of electronic shelf labels.
  • the cloud and the terminals are respectively connected by communication.
  • Different electronic The shelf labels are adapted to different storage locations in the warehouse one by one, and each storage location is used to place goods respectively; the method is applied to the terminal, and the device includes:
  • the first receiving module is used to receive the picking task sent by the cloud, and the picking task includes at least the label identification of the target electronic shelf label adapted to the storage position of the goods to be picked in the warehouse;
  • a first broadcast module configured to broadcast an establishment request for establishing a communication connection between the terminal and the target electronic shelf label; the establishment request carries the label identifier of the target electronic shelf label;
  • the second receiving module is configured to receive, when the target electronic shelf label determines that the establishment request carries the label identifier of the target electronic shelf label, the information returned by the target electronic shelf label according to the establishment request. An establishment response for establishing a communication connection between the terminal and the target electronic shelf label, thereby establishing a communication connection between the terminal and the target electronic shelf label;
  • the second sending module is configured to send a first instruction to the target electronic shelf label based on the communication connection, the first instruction is used to instruct the target electronic shelf label to output prompt information, so that the target electronic shelf label Outputting prompt information according to the first instruction.
  • the present application shows a data processing device based on a data processing system.
  • the system includes a cloud, a terminal, and a plurality of electronic shelf labels.
  • the cloud and the terminals are respectively connected by communication.
  • Different electronic The shelf labels are adapted to different storage locations in the warehouse one by one, and each storage location is used to place goods respectively; the method is applied to the target electronic shelf labels in the plurality of electronic shelf labels, and the device includes:
  • a third receiving module configured to receive an establishment request broadcast by a terminal for establishing a communication connection between the terminal and the target electronic shelf label, where the establishment request carries the label identifier of the target electronic shelf label; wherein, The establishment request is broadcast by the terminal when it receives the picking task sent by the cloud, and the picking task includes the label of the target electronic shelf label adapted to the storage location of the goods to be picked in the warehouse logo;
  • the third sending module is configured to send a message for establishing the connection between the terminal and the target electronic shelf label to the terminal according to the establishment request when it is determined that the establishment request carries the label identifier of the target electronic shelf label.
  • a fourth receiving module configured to receive a first instruction sent by the terminal based on the communication connection, where the first instruction is used to instruct the target electronic shelf label to output prompt information;
  • a first output module configured to output prompt information according to the first instruction.
  • the present application shows a data processing device based on a data processing system.
  • the system includes a cloud, a terminal, and a plurality of electronic shelf labels.
  • the cloud and the terminals are respectively connected by communication.
  • Different electronic The shelf labels are adapted to different storage locations in the warehouse one by one, and each storage location is used to place goods respectively; the method is applied to the terminal, and the device includes:
  • the fifth receiving module is used to receive the picking task sent by the cloud, and the picking task includes at least the label identification of the target electronic shelf label adapted to the storage position of the goods to be picked in the warehouse;
  • the second broadcast module is used to broadcast a first instruction, the first instruction carries the label identification of the target electronic shelf label, and the first instruction is used to instruct the target electronic shelf label to output prompt information, so that the The target electronic shelf label outputs prompt information according to the first instruction when it is determined that the first instruction carries the label identifier of the target electronic shelf label.
  • the present application shows a data processing device based on a data processing system.
  • the system includes a cloud, a terminal, and a plurality of electronic shelf labels.
  • the cloud and the terminals are respectively connected by communication.
  • Different electronic The shelf labels are adapted to different storage locations in the warehouse one by one, and each storage location is used to place goods respectively; the method is applied to the target electronic shelf labels in the plurality of electronic shelf labels, and the device includes:
  • the sixth receiving module is configured to receive a first instruction broadcast by the terminal, the first instruction is used to instruct the target electronic shelf label to output prompt information, wherein the first instruction is received by the terminal from the cloud
  • the picking task includes the label identification of the target electronic shelf label adapted to the storage position of the goods to be picked in the warehouse; the first instruction carries the target electronic shelf label label identification;
  • the second output module is configured to output prompt information according to the first instruction when it is determined that the first instruction carries the label identifier of the target electronic shelf label.
  • the present application shows an electronic device, and the electronic device includes:
  • processor ; memory for storing instructions executable by the processor;
  • the processor is configured to execute the data processing method based on the data processing system as described in the first aspect.
  • the present application shows a non-transitory computer-readable storage medium.
  • the instructions in the storage medium are executed by the processor of the electronic device, the electronic device can execute the method described in the first aspect.
  • a data processing method based on a data processing system.
  • the present application shows a computer program product.
  • the electronic device can execute the data processing system based on the first aspect. data processing method.
  • the present application shows an electronic device, and the electronic device includes:
  • processor ; memory for storing instructions executable by the processor;
  • the processor is configured to execute the data processing method based on the data processing system as described in the second aspect.
  • the present application shows a non-transitory computer-readable storage medium.
  • the instructions in the storage medium are executed by the processor of the electronic device, the electronic device can execute the method described in the second aspect.
  • a data processing method based on a data processing system.
  • the present application shows a computer program product.
  • the electronic device can execute the data processing system based on the second aspect. data processing method.
  • the present application shows an electronic device, and the electronic device includes:
  • processor ; memory for storing instructions executable by the processor;
  • the processor is configured to execute the data processing method based on the data processing system as described in the third aspect.
  • the present application shows a non-transitory computer-readable storage medium.
  • the instructions in the storage medium are executed by the processor of the electronic device, the electronic device can execute the method described in the third aspect.
  • a data processing method based on a data processing system.
  • the present application shows a computer program product.
  • the electronic device can execute the data processing system based on the third aspect. data processing method.
  • the present application shows an electronic device, and the electronic device includes:
  • processor ; memory for storing instructions executable by the processor;
  • the processor is configured to execute the data processing method based on the data processing system as described in the fourth aspect.
  • the present application shows a non-transitory computer-readable storage medium.
  • the instructions in the storage medium are executed by the processor of the electronic device, the electronic device can perform the operations described in the fourth aspect.
  • a data processing method based on a data processing system.
  • the present application shows a computer program product, when the instructions in the computer program product are executed by the processor of the electronic device, the electronic device can perform the data-based processing as described in the fourth aspect Systematic data processing methods.
  • the present application shows an electronic device, and the electronic device includes:
  • processor ; memory for storing instructions executable by the processor;
  • the processor is configured to execute the data processing method based on the data processing system according to the fifth aspect.
  • the present application shows a non-transitory computer-readable storage medium.
  • the instructions in the storage medium are executed by the processor of the electronic device, the electronic device can perform the operations described in the fifth aspect.
  • a data processing method based on a data processing system.
  • the present application shows a computer program product, when the instructions in the computer program product are executed by the processor of the electronic device, the electronic device can perform the data-based processing as described in the fifth aspect Systematic data processing methods.
  • the present application includes the following advantages:
  • the target storage position of the goods to be picked in the warehouse can be indicated to the picker.
  • the target electronic shelf label adapted to the target storage location can be controlled to output prompt information.
  • the output prompt information of the target electronic shelf label adapted to the target storage location when the picker of the handheld terminal is located in the area where the shelf where the goods to be picked is located in the warehouse (for example, the picker is located near the shelf, etc.), The terminal held by the picker can directly transmit the first instruction to the target electronic shelf label.
  • a point-to-point communication connection between the terminal held by the picker and the target electronic shelf label is established, and the terminal held by the picker can send a first instruction point-to-point to the target electronic shelf label based on the communication connection, so that the target electronic shelf label
  • the first instruction sent by the terminal point-to-point is received.
  • the terminal held by the picker may directly broadcast the first instruction, so that the target electronic shelf label receives the first instruction broadcast by the terminal.
  • the target electronic shelf label can output prompt information according to the first instruction, so that the picker can determine the shelf layer where the target electronic shelf label with prompt information is adapted (such as alignment, etc.) for the goods to be picked on the shelf.
  • the terminal may not forward the first instruction to the target electronic shelf label through intermediate equipment such as background equipment, and the terminal may directly transmit the first instruction to the target electronic shelf label, thereby reducing the communication link and improving the efficiency.
  • Communication efficiency for example, can improve the transmission efficiency of the first instruction, and then can improve the timeliness of the prompt information output by the target electronic shelf label, so that the picking efficiency of the picker can be improved.
  • this application can improve the stability of data transmission, and secondly, it can also save background equipment. Network resources of intermediate devices, etc.
  • the present application does not need to introduce large-scale hardware equipment in the warehouse, and the solution of the present application can be implemented in warehouses equipped with electronic shelf labels, and the cost of the solution of the present application is relatively low.
  • FIG. 1 is a schematic structural diagram of a data processing system of the present application.
  • Fig. 2 is a structural schematic diagram of a shelf of the present application.
  • FIG. 3 is a flow chart of the steps of a data processing method based on the data processing system of the present application.
  • FIG. 4 is a flow chart of the steps of a data processing method based on the data processing system of the present application.
  • FIG. 5 is a flow chart of the steps of a data processing method based on the data processing system of the present application.
  • FIG. 6 is a flowchart of the steps of a data processing method based on the data processing system of the present application.
  • FIG. 7 is a flow chart of the steps of a data processing method based on the data processing system of the present application.
  • FIG. 8 is a flow chart of the steps of a data processing method based on the data processing system of the present application.
  • FIG. 9 is a flow chart of the steps of a data processing method based on the data processing system of the present application.
  • FIG. 10 is a structural block diagram of a data processing device based on the data processing system of the present application.
  • FIG. 11 is a structural block diagram of a data processing device based on the data processing system of the present application.
  • FIG. 12 is a structural block diagram of a data processing device based on the data processing system of the present application.
  • FIG. 13 is a structural block diagram of a data processing device based on the data processing system of the present application.
  • FIG. 14 is a structural block diagram of a data processing device based on the data processing system of the present application.
  • Fig. 15 is a structural block diagram of a device of the present application.
  • a data processing system of the present application includes: a cloud 01, at least one terminal 02, and a plurality of Electronic Shelf Labels (ESL, Electronic Shelf Labe) 03.
  • ESL Electronic Shelf Labels
  • the terminal 02 may include a terminal that can be held by a picker, for example, a terminal that can be held by a picker, which includes a mobile phone or a tablet computer, etc., or may also include a terminal dedicated to the logistics field, which is not limited in this application.
  • the terminal 02 includes: in industries such as retail, a hand-held electronic device with display and input components used by employees when performing operations such as putting on shelves, sorting, replenishing, packing, and moving goods. It is equipped with memory, CPU (Central Processing Unit, central processing unit), screen and buttons, etc. It has wireless data transmission and processing capabilities, and it is equipped with batteries and can be moved.
  • industries such as retail
  • a hand-held electronic device with display and input components used by employees when performing operations such as putting on shelves, sorting, replenishing, packing, and moving goods.
  • CPU Central Processing Unit, central processing unit
  • screen and buttons etc.
  • wireless data transmission and processing capabilities and it is equipped with batteries and can be moved.
  • the electronic shelf label 03 includes: an electronic display device with information sending and receiving function, which is an electronic label that can display price information. It can be applied to supermarkets, convenience stores, pharmacies, etc. It can be set on shelves, and each electronic shelf label can exchange data with the background server of the electronic shelf label through wired or wireless methods to obtain electronic The background server of the shelf label sends the product information (including the name and price of the product) of the product to which the electronic shelf label is adapted, and displays the product information on the screen of the electronic shelf label.
  • an electronic display device with information sending and receiving function which is an electronic label that can display price information. It can be applied to supermarkets, convenience stores, pharmacies, etc. It can be set on shelves, and each electronic shelf label can exchange data with the background server of the electronic shelf label through wired or wireless methods to obtain electronic
  • the background server of the shelf label sends the product information (including the name and price of the product) of the product to which the electronic shelf label is adapted, and displays the product information on the screen of the electronic shelf label.
  • the communication between the cloud 01 and the terminal 02 is connected, so that data interaction can be performed between the cloud 01 and the terminal 02.
  • a communication connection between the terminal 02 and the electronic shelf label 03 can be established, for example, the terminal 02 can establish a communication connection with the electronic shelf label 03, Then, data interaction can be performed between the terminal 02 and the electronic shelf label 03 based on the communication connection.
  • Communication connections may include Bluetooth connections and the like.
  • the communication connection between the terminal 02 and the electronic shelf label 03 may not be established, for example, the terminal 02 can broadcast data, and the electronic shelf label 03 can receive The data broadcast by the terminal 02, and the electronic shelf label 03 can broadcast data, and the terminal 02 can receive the data broadcast by the electronic shelf label 03, so as to realize data interaction between the terminal 02 and the electronic shelf label 03.
  • Different electronic shelf labels are adapted to different storage locations in the warehouse one by one, and each storage location is used to place goods.
  • At least one shelf may be included in the warehouse, and each shelf may include at least one layer, each layer has a shelf laminate, on which goods can be placed on the shelf laminate, in the dimension of the width of the shelf laminate
  • There are multiple storage locations on the shelf and goods can be placed in each storage location, so that multiple different types of goods can be placed side by side on the shelf shelf for pickers to pick goods, etc.
  • each type of goods can be placed on the shelf shelf
  • the electronic shelf label 03 can be fixedly set (such as sticking, etc.) on the side of the width dimension of the shelf layer.
  • the electronic shelf label 03 does not affect the placement of goods on the shelf layer or the removal of goods, etc., and each electronic shelf label 03 is respectively Adapt to each storage position on the dimension of the width of the shelf shelf, for example, each electronic shelf label 03 can be aligned with a storage position on the dimension of the width of the shelf shelf, for example, in the vertical alignment etc.
  • FIG. 2 one of the shelves in the warehouse is illustrated as an example, but it is not intended to limit the scope of protection of the present application.
  • the shelf comprises two layers, ie two shelf laminates.
  • goods n+1, goods n+2 ... and goods 2n are placed in sequence on the dimension of the width of the shelf laminates on the lower floor, and electronic shelf labels are sequentially arranged on the sides of the width dimension of the shelf shelves on the upper floor n+1, electronic shelf label n+2...and electronic shelf label 2n, goods n+1 and electronic shelf label n+1 are aligned in the vertical direction, goods n+2 and electronic shelf label n+2 are vertically aligned Directionally aligned...and the item 2n is vertically aligned with the electronic shelf label 2n.
  • the electronic shelf label has prompting elements, the prompting elements include light emitting elements and sounding elements, etc., the light emitting elements include light emitting indicators, etc.
  • FIG. 3 a kind of data processing method based on the data processing system of the present application is shown, the method is applied in the system described in Fig. 1, and the method includes:
  • step S101 the cloud acquires picking tasks.
  • the picking task at least includes a label identification of a target electronic shelf label adapted to a target storage position of the goods to be picked in the warehouse.
  • the storage location in this application includes: the shelf identification of the shelf in the warehouse, the shelf identification of the shelf laminate in the shelf, and the location identification of the storage location on the shelf laminate, etc.
  • the position identification of the storage position on the shelf layer may include the offset coordinates of the storage position on the width dimension of the shelf layer, and the like.
  • the goods to be picked are located at one of the storage positions on one of the shelf layers of one of the shelves in the warehouse, therefore, the target storage position may include: the shelf identification of the one of the shelves, the layer of the one of the shelf layers board identification and one of the storage locations etc.
  • the customer can submit an order (such as a shopping order) to the cloud, etc., and the order includes the goods identification (may include the name of the goods) of the goods to be picked up (such as the goods purchased by the customer, etc.) or goods number, etc.), after the cloud receives the order, it can obtain the target storage location of the goods to be picked in the warehouse according to the goods identification of the goods to be picked up in the order, and obtain the label identification of the target electronic shelf label adapted to the target storage location .
  • the goods identification may include the name of the goods of the goods of the goods to be picked up (such as the goods purchased by the customer, etc.) or goods number, etc.
  • the cloud can generate a picking task at least according to the label identification of the target electronic shelf label adapted to the target storage position of the goods to be picked in the warehouse, and then can assign the picking task to the picker (for example, to the picker's The terminal sends the picking task, etc.), for the picker to take out the goods to be picked in the warehouse, and pack and mail the goods to be picked to the customer.
  • the cloud can obtain the storage location of the goods in the warehouse and the label identification of the electronic shelf label adapted to the storage location in advance, and then the goods identification of the goods, the goods in the warehouse
  • the storage location of the storage location and the label identification of the electronic shelf label adapted to the storage location form a corresponding table item, and are stored in the corresponding relationship between the cargo identification, the storage location and the label identification.
  • the electronic shelf label adapted to the storage position includes: an electronic shelf label arranged on the side of the shelf laminate in the width dimension and vertically aligned with the electronic shelf label.
  • the cloud when the cloud needs to obtain the target storage location of the goods to be picked in the warehouse according to the goods identification of the goods to be picked, the cloud can find the corresponding relationship between the goods identification, the storage location and the label identification.
  • the corresponding storage location of the cargo identification of the goods is used as the target storage location of the goods to be picked in the warehouse.
  • the label identification corresponding to the target location can be found in the correspondence between the cargo identification, the storage location and the label identification. , and serve as the label identification of the target electronic shelf label adapted to the target storage location.
  • the picking task may also include a target storage location of the goods to be picked in the warehouse.
  • step S102 the cloud sends the picking task to the terminal.
  • the terminal may include a terminal held by the picker, so that after the cloud sends the picking task to the terminal, the picker can know the picking task through the terminal.
  • step S103 the terminal receives the picking task.
  • step S104 the terminal extracts the label identification of the target electronic shelf label that matches the target storage location of the goods to be picked in the warehouse in the picking task.
  • step S105 the terminal broadcasts an establishment request for establishing a communication connection between the terminal and the target electronic shelf label; the establishment request carries the label identifier of the target electronic shelf label.
  • the terminal can also extract the target storage location of the goods to be picked in the warehouse in the picking task, and prompt Pick up the goods at the target storage location in the warehouse.
  • the picking task is used to instruct the picker to take out the goods to be picked from the warehouse.
  • the goods to be picked are stored in a certain storage position on a certain shelf layer in a certain shelf in the warehouse
  • the The target storage location in the picking task can include the shelf ID of the shelf, the shelf ID of the shelf, and the coordinate information of the storage location, etc.
  • the terminal can extract the shelf ID of the shelf, the The shelf label of the shelf and the coordinate information of the storage location, etc., and then obtain the location information of the shelf through the shelf label of the shelf, and guide the picker to the area where the shelf is located according to the location information of the shelf for picking The clerk takes out the goods to be picked from the shelf.
  • the terminal can display on the screen the target storage location of the goods to be picked in the warehouse, or display a path map from the current location of the picker to the target storage location of the goods to be picked in the warehouse, so as to guide the picker to The area where the shelf is located.
  • the target electronic shelf label adapted to the storage position of the goods to be picked on the shelf layer that the goods to be picked are on the storage position on the shelf layer, so that the picker There is no need to manually search for the goods to be picked on the shelf, thereby improving the picking efficiency.
  • the terminal may send a first instruction to the target electronic shelf label adapted to the storage position of the goods to be picked on the shelf, so as to control the output of the target electronic shelf label adapted to the storage position of the goods to be picked on the shelf. Prompt information.
  • a communication connection with the target electronic shelf label can be established first, and then based on the communication connection, the terminal can send an instruction to the target electronic shelf label.
  • the target electronic shelf label matching the storage position of the goods to be picked on the shelf layer sends the first instruction.
  • the terminal may broadcast an establishment request for establishing a communication connection between the terminal and the target electronic shelf label, where the establishment request carries the label identification of the target electronic shelf label.
  • step S106 the target electronic shelf label receives the establishment request.
  • all electronic shelf labels located within the broadcast range can receive the establishment request, and each electronic shelf label can judge whether the label identification in the establishment request is its own label identification.
  • the establishment request may be discarded, that is, the establishment request is not processed any more, and the process may end.
  • step S107 If the tag identifier in the establishment request is its own tag identifier, continue to process the establishment request, and refer to step S107 for the processing flow.
  • the non-target electronic shelf labels among the multiple electronic shelf labels will determine that the label identification in the establishment request is not their own label identification, and end the process, while the target electronic shelf labels among the multiple electronic shelf labels It will determine that the tag identifier in the establishment request is its own tag identifier, and can send an establishment response for establishing a communication connection between the terminal and the target electronic shelf label to the terminal according to the establishment request, so as to realize the establishment of the terminal and the target electronic shelf label. communication link between tags.
  • step S107 if the target electronic shelf label determines that the establishment request carries the label identification of the target electronic shelf label, it sends to the terminal an establishment request for establishing a communication connection between the terminal and the target electronic shelf label according to the establishment request. response.
  • step S108 the terminal receives the establishment response, thereby completing the establishment of a communication connection between the terminal and the target electronic shelf label.
  • the terminal can send a first instruction to the target electronic shelf label adapted to the storage position of the goods to be picked on the shelf layer, so as to control the target electronic shelf label adapted to the storage position of the goods to be picked on the shelf layer.
  • the label outputs prompt information for details, refer to the subsequent processes of S109-S111, which will not be described in detail here.
  • step S109 the terminal sends a first instruction to the target electronic shelf label based on the communication connection, and the first instruction is used to instruct the target electronic shelf label to output prompt information.
  • the target electronic shelf label has a prompting element
  • the prompting element includes a light emitting element and a sounding element, etc.
  • the first instruction can be used to instruct the target electronic shelf label to output prompt information through the prompt element, for example, the first instruction can be used to instruct the target electronic shelf label to control the light-emitting element to emit light and/or control the sound-emitting element to output sound.
  • step S110 the target electronic shelf label receives a first instruction.
  • step S111 the target electronic shelf label outputs prompt information according to the first instruction.
  • the target electronic shelf label may output prompt information through the prompt element, for example, the target electronic shelf label controls the light-emitting element to emit light and/or controls the sound-emitting element to output sound.
  • the picker if the picker is located in the area where the shelf where the goods to be picked is located (for example, the picker is located next to the shelf where the goods to be picked are located, etc.), the picker can easily It is easy to perceive (by naked eyes or ears, etc.) the prompt information output by the target electronic shelf label (such as the light emitted by the light-emitting element and/or the sound output by the sound-emitting element), so that it can be determined that the goods to be picked are on the shelf, and there is a prompt output.
  • the target electronic shelf label such as the light emitted by the light-emitting element and/or the sound output by the sound-emitting element
  • the target electronic shelf label of the information is adapted (for example, aligned) to the storage position on the shelf layer, so that the goods placed on the storage position (that is, the goods to be picked) can be taken out, thereby completing the picking of the goods to be picked.
  • the target storage position of the goods to be picked in the warehouse can be indicated to the picker.
  • the target electronic shelf label adapted to the target storage location can be controlled to output prompt information.
  • the output prompt information of the target electronic shelf label adapted to the target storage location when the picker of the handheld terminal is located in the area where the shelf where the goods to be picked is located in the warehouse (for example, the picker is located near the shelf, etc.), The terminal held by the picker can directly transmit the first instruction to the target electronic shelf label.
  • a point-to-point communication connection between the terminal held by the picker and the target electronic shelf label is established, and the terminal held by the picker can send a first instruction point-to-point to the target electronic shelf label based on the communication connection, so that the target electronic shelf label
  • the first instruction sent by the terminal point-to-point is received.
  • the target electronic shelf label can output prompt information according to the first instruction, so that the picker can determine the shelf layer where the target electronic shelf label with prompt information is adapted (such as alignment, etc.) for the goods to be picked on the shelf.
  • the storage position on the board so that the goods placed on the storage position (that is, the goods to be picked) can be taken out, thereby completing the picking of the goods to be picked.
  • the terminal may not forward the first instruction to the target electronic shelf label through intermediate equipment such as background equipment, and the terminal may directly transmit the first instruction to the target electronic shelf label, thereby reducing the communication link and improving the efficiency.
  • Communication efficiency for example, can improve the transmission efficiency of the first instruction, and then can improve the timeliness of the prompt information output by the target electronic shelf label, so that the picking efficiency of the picker can be improved.
  • this application can improve the stability of data transmission, and secondly, it can also save background equipment. Network resources of intermediate devices, etc.
  • the present application does not need to introduce large-scale hardware equipment in the warehouse, and the solution of the present application can be implemented in warehouses equipped with electronic shelf labels, and the cost of the solution of the present application is relatively low.
  • the distance between the shelves is small, and the shelves are arranged densely.
  • the picker searches for the location where the goods to be picked are located according to the target storage location of the goods to be picked in the warehouse as prompted by the terminal. Shelves are more difficult, which will reduce the picking efficiency and the picking experience of the pickers.
  • the light-emitting element on the target electronic shelf label can emit a beam of light vertically upwards, for example, a red beam or a green beam, etc., after the beam reaches the ceiling of the warehouse , can display a bright image on the ceiling, for example, a bright circular image, etc., and the picker can roughly determine the position of the shelf where the target electronic shelf label is located through the light displayed on the ceiling, so that It is easier and faster for the picker to find the shelf where the target electronic shelf label is located, and go to the position of the shelf where the target electronic shelf label is located, which can improve the picking efficiency and the picking experience of the picker.
  • a beam of light vertically upwards for example, a red beam or a green beam, etc.
  • the electronic shelf labels that are adapted to the storage locations where the goods that each picker needs to take out may be simultaneously separately separately separately
  • the output prompt information if the prompt information output by the electronic shelf labels adapted to the storage locations of the goods that each picker needs to take out is the same, it will cause interference to these pickers, for example, it will cause picking The pickers take out the goods that they should not have taken out, which will affect each picker to perform their own picking work, which will reduce the picking efficiency and the picking experience of each picker.
  • the target electronic shelf label can also play a voice, and the voice includes the name of the goods to be picked, the name of the picker (or the code name of the picker) and The number of the order to which the item to be picked belongs, etc.
  • the picker can determine the source direction of each voice, and determine which voice is aimed at himself according to the content of each voice, so that he can determine the source direction of his own voice, and can determine the source direction of his own voice.
  • the direction of the target electronic shelf label for the goods to be picked, and then according to the direction of the target electronic shelf label, the target electronic shelf label for the goods to be picked can be quickly and accurately determined, which can improve the picking efficiency and improve the efficiency of the picker. Picking experience.
  • the broadcast power of the broadcast establishment request can be set in advance according to the actual situation, so as to adjust the distance range of the broadcast of the establishment request.
  • the target electronic shelf label Only when the distance between the terminal and the target electronic shelf label is relatively close, the target electronic shelf label can receive the establishment request, and then the communication connection between the terminal and the target electronic shelf label can be established, and then the first instruction can be received, and according to The first instruction outputs prompt information, so that for the picker, the target electronic shelf label will output the prompt information when the distance between the picker and the target electronic shelf label is relatively close, and the target electronic shelf label will output prompt information when the picker and the target electronic shelf label are close.
  • the target electronic shelf label When the distance between the shelf labels is far, the target electronic shelf label will not output prompt information, so as to avoid consuming the energy of the target electronic shelf label and avoid the prompt information output by the target electronic shelf label from causing interference to other pickers. .
  • the picker perceives the prompt information output by the target electronic shelf label, he will determine the storage location of the goods to be picked according to the prompt information, and take out the goods to be picked from the storage location. Pick up goods.
  • the method also includes:
  • step S112 after the prompt information is output, the target electronic shelf label counts the continuous output time of the output prompt information.
  • step S113 when the continuous output duration reaches the preset duration, the target electronic shelf label stops outputting the prompt information.
  • the preset duration can be set according to the actual situation, for example, 3 seconds, 5 seconds or 10 seconds, etc., to avoid interference to other pickers.
  • the picker has not yet perceived the prompt information output by the target electronic shelf label (At this time, it is not determined which storage location the goods to be picked are in), in this case, if the target electronic shelf label stops outputting prompt information, then the user will not be able to determine the storage location of the goods to be picked according to the prompt information afterwards.
  • the clerk can only manually search for the goods to be picked on the shelf, which will reduce the picking efficiency and the picking experience of the picker.
  • the method further includes:
  • step S114 the terminal receives the first preset operation input by the picker; the first preset operation is used to instruct the terminal to send a first instruction to the target electronic shelf label, and the first instruction is used to instruct the target electronic shelf label to output prompt information .
  • the picker when the picker has arrived at the area where the shelf where the goods to be picked is located, if the picker cannot perceive the instruction information, the picker can input the first preset operation in the terminal, the first The preset operation includes clicking a specific button in the terminal, and of course, may also include other forms of operations, which are not limited in this application.
  • step S115 the terminal sends a first instruction to the target electronic shelf label based on the communication connection according to a first preset operation.
  • step S109 For details of this step, refer to step S109, which will not be described in detail here.
  • step S116 the target electronic shelf label receives a first instruction.
  • step S117 the target electronic shelf label outputs prompt information according to the first instruction.
  • step S111 For details of this step, refer to step S111, which will not be described in detail here.
  • the picker is supported to manually control the target electronic shelf label through the terminal to output the prompt information again, so that the picker can determine the storage location of the goods to be picked according to the prompt information, so that the picker does not need to manually search on the shelf
  • the goods to be picked can improve the picking efficiency and improve the picker's picking experience.
  • the target electronic shelf label may send a notification message to the terminal based on the communication connection, the notification message is used to notify the target electronic shelf label that the prompt information has been output according to the first instruction so that the terminal can perceive that the target electronic shelf label has output prompt information according to the first instruction according to the notification message, so as to avoid the situation where the terminal "does not know whether the target electronic shelf label prompts information but in order to ensure the target electronic shelf label prompt information" Repeatedly sending the first instruction to the target electronic shelf label.
  • the method further includes:
  • step S118 when it is determined that the picker has taken out the goods to be picked, the terminal sends a second instruction to the target electronic shelf label based on the communication connection, and the second instruction is used to instruct the target electronic shelf label to stop outputting prompt information.
  • the camera of the terminal can be used to scan the data code (including QR code or barcode, etc.) on the surface of the goods to be picked , obtain the cargo identification of the goods to be picked through the graphic code, and then obtain the acquisition identification of the goods to be picked from the cloud, and then compare whether the cargo identification of the goods to be picked obtained through the graphic code is the same as the cargo identification of the goods to be picked obtained from the cloud , when the two are the same, it is determined that the goods taken out by the picker are the goods to be picked, that is, it can be determined that the picker has already taken out the goods to be picked.
  • the goods to be picked that is, it can be determined that the picker has not taken out the goods to be picked, and an instruction message can be output to instruct the picker to pick the wrong goods, and ask the picker to pick the goods again.
  • the picker can input a second preset operation on the terminal, and the second preset operation includes clicking a preset button on the terminal, sending a message to the terminal.
  • the terminal can learn that the picker has taken out the goods to be picked.
  • the second instruction may correspond to the first instruction.
  • the first instruction is used to instruct the target electronic shelf label to output what kind of prompt information
  • the second instruction may be used to instruct the target electronic shelf label to stop outputting what kind of prompt information.
  • the first instruction may be used to instruct the target electronic shelf label to output prompt information through the prompt element, for example, the first instruction may be used to instruct the target electronic shelf label to control the light-emitting element to emit light and/or control the sound-emitting element to output sound, etc. .
  • the second instruction can be used to instruct the target electronic shelf label to stop outputting prompt information through the prompt element, for example, the second instruction can be used to instruct the target electronic shelf label to control the light-emitting element to stop emitting light and/or control the sound-emitting element to stop outputting sound, etc. .
  • step S119 the target electronic shelf label receives the second instruction.
  • step S120 the target electronic shelf label stops outputting prompt information according to the second instruction.
  • the target electronic shelf label can stop outputting prompt information through the prompting element, for example, the target electronic shelf label controls the light emitting element to stop emitting light and/or controls the sound emitting element to stop outputting sound, etc., for example, the target electronic shelf label turns off the light-emitting indicator or turns off the bee buzzer etc.
  • the picker after the picker takes out the goods to be picked, the picker will often leave the area where the shelf where the goods to be picked is located and go to other places, for example, continue to go to other places to pick other goods or go to The packing place packs the goods that have been taken out, etc.
  • the communication connection between the terminal held by the picker and the target electronic shelf label will be useless afterwards, and there is no need to continue to maintain the communication between the terminal held by the picker and the target electronic shelf label. Otherwise, network resources and terminal port resources occupied by communication connections will be consumed.
  • the distance between the terminal held by the picker and the target electronic shelf label will become farther, and will exceed the terminal held by the picker and the target.
  • the distance that can be supported by the communication connection between the electronic shelf labels in this way, because the distance is too large, data interaction cannot be performed between the terminal held by the picker and the target electronic shelf label.
  • the terminal cannot detect the heartbeat of the target electronic shelf label, and the target electronic shelf label cannot detect the heartbeat of the terminal, so that the terminal or the target electronic shelf label can actively disconnect the communication connection between the terminal and the target electronic shelf label.
  • FIG. 7 a data processing method based on a data processing system of the present application is shown. The method is applied to the system described in FIG. 1 , and the method includes:
  • step S201 the cloud acquires picking tasks.
  • the picking task at least includes a label identification of a target electronic shelf label adapted to a target storage position of the goods to be picked in the warehouse.
  • the storage location in this application includes: the shelf identification of the shelf in the warehouse, the shelf identification of the shelf laminate in the shelf, and the location identification of the storage location on the shelf laminate, etc.
  • the position identification of the storage position on the shelf layer may include the offset coordinates of the storage position in the dimension of the width of the shelf layer, etc.
  • the goods to be picked are located at one of the storage positions on one of the shelf layers of one of the shelves in the warehouse, therefore, the target storage position may include: the shelf identification of the one of the shelves, the layer of the one of the shelf layers board identification and one of the storage locations etc.
  • the customer can submit an order (such as a shopping order) to the cloud, etc., and the order includes the goods identification (may include the name of the goods) of the goods to be picked up (such as the goods purchased by the customer, etc.) or goods number, etc.), after the cloud receives the order, it can obtain the target storage location of the goods to be picked in the warehouse according to the goods identification of the goods to be picked up in the order, and obtain the label identification of the target electronic shelf label adapted to the target storage location .
  • the goods identification may include the name of the goods of the goods of the goods to be picked up (such as the goods purchased by the customer, etc.) or goods number, etc.
  • the cloud can generate a picking task at least according to the label identification of the target electronic shelf label adapted to the target storage position of the goods to be picked in the warehouse, and then can assign the picking task to the picker (for example, to the picker's The terminal sends the picking task, etc.), for the picker to take out the goods to be picked in the warehouse, and pack and mail the goods to be picked to the customer.
  • the cloud can obtain the storage location of the goods in the warehouse and the label identification of the electronic shelf label adapted to the storage location in advance, and then the goods identification of the goods, the goods in the warehouse
  • the storage location of the storage location and the label identification of the electronic shelf label adapted to the storage location form a corresponding table item, and are stored in the corresponding relationship between the cargo identification, the storage location and the label identification.
  • the electronic shelf label adapted to the storage position includes: an electronic shelf label arranged on the side of the shelf laminate in the width dimension and vertically aligned with the electronic shelf label.
  • the cloud when the cloud needs to obtain the target storage location of the goods to be picked in the warehouse according to the goods identification of the goods to be picked, the cloud can find the corresponding relationship between the goods identification, the storage location and the label identification.
  • the corresponding storage location of the cargo identification of the goods is used as the target storage location of the goods to be picked in the warehouse.
  • the label identification corresponding to the target location can be found in the correspondence between the cargo identification, the storage location and the label identification. , and serve as the label identification of the target electronic shelf label adapted to the target storage location.
  • the picking task may also include a target storage location of the goods to be picked in the warehouse.
  • step S202 the cloud sends the picking task to the terminal.
  • the terminal may include a terminal held by the picker, so that after the cloud sends the picking task to the terminal, the picker can know the picking task through the terminal.
  • step S203 the terminal receives the picking task.
  • step S204 the terminal extracts the label identifier of the target electronic shelf label that matches the target storage location of the goods to be picked in the warehouse in the picking task.
  • step S205 the terminal broadcasts a first instruction, the first instruction is used to instruct the target electronic shelf label to output prompt information, and the first instruction carries the label identification of the target electronic shelf label.
  • the terminal can also extract the target storage location of the goods to be picked in the warehouse in the picking task, and prompt Pick up the goods at the target storage location in the warehouse.
  • the picking task is used to instruct the picker to take out the goods to be picked from the warehouse.
  • the goods to be picked are stored in a certain storage position on a certain shelf layer in a certain shelf in the warehouse
  • the The target storage location in the picking task can include the shelf ID of the shelf, the shelf ID of the shelf, and the coordinate information of the storage location, etc.
  • the terminal can extract the shelf ID of the shelf, the The shelf label of the shelf and the coordinate information of the storage location, etc., and then obtain the location information of the shelf through the shelf label of the shelf, and guide the picker to the area where the shelf is located according to the location information of the shelf for picking The clerk takes out the goods to be picked from the shelf.
  • the terminal can display on the screen the target storage location of the goods to be picked in the warehouse, or display a path map from the current location of the picker to the target storage location of the goods to be picked in the warehouse, so as to guide the picker to The area where the shelf is located.
  • the target electronic shelf label adapted to the storage position of the goods to be picked on the shelf layer that the goods to be picked are on the storage position on the shelf layer, so that the picker There is no need to manually search for the goods to be picked on the shelf, thereby improving the picking efficiency.
  • the terminal may send a first instruction to the target electronic shelf label adapted to the storage position of the goods to be picked on the shelf, so as to control the output of the target electronic shelf label adapted to the storage position of the goods to be picked on the shelf. Prompt information.
  • the terminal may broadcast the first instruction
  • the target electronic shelf label may receive the first instruction broadcast by the terminal.
  • the target electronic shelf label has a prompting element
  • the prompting element includes a light emitting element and a sounding element, etc.
  • the first instruction can be used to instruct the target electronic shelf label to output prompt information through the prompt element, for example, the first instruction can be used to instruct the target electronic shelf label to control the light-emitting element to emit light and/or control the sound-emitting element to output sound.
  • all electronic shelf labels located within the broadcast range can receive the first instruction, and each electronic shelf label can determine whether the label identifier in the first instruction is its own label identifier.
  • the first instruction may be discarded, that is, the first instruction is not processed any more, and the process may end.
  • step S207 If the tag identifier in the first instruction is its own tag identifier, continue to process the first instruction, and the processing flow can refer to step S207.
  • the non-target electronic shelf labels among the multiple electronic shelf labels will determine that the label identification in the first instruction is not their own label identification, and end the process, while the target electronic shelf labels among the multiple electronic shelf labels It will be determined that the tag identifier of the first instruction is its own tag identifier, and prompt information can be output according to the first instruction.
  • step S206 the target electronic shelf label receives a first instruction.
  • step S207 the target electronic shelf label outputs prompt information according to the first instruction.
  • the target electronic shelf label may output prompt information through the prompt element, for example, the target electronic shelf label controls the light-emitting element to emit light and/or controls the sound-emitting element to output sound.
  • the picker if the picker is located in the area where the shelf where the goods to be picked is located (for example, the picker is located next to the shelf where the goods to be picked are located, etc.), the picker can easily It is easy to perceive (by naked eyes or ears, etc.) the prompt information output by the target electronic shelf label (such as the light emitted by the light-emitting element and/or the sound output by the sound-emitting element), so that it can be determined that the goods to be picked are on the shelf, and there is a prompt output.
  • the target electronic shelf label such as the light emitted by the light-emitting element and/or the sound output by the sound-emitting element
  • the target electronic shelf label of the information is adapted (for example, aligned) to the storage position on the shelf layer, so that the goods placed on the storage position (that is, the goods to be picked) can be taken out, thereby completing the picking of the goods to be picked.
  • the target storage position of the goods to be picked in the warehouse can be indicated to the picker.
  • the target electronic shelf label adapted to the target storage location can be controlled to output prompt information.
  • the output prompt information of the target electronic shelf label adapted to the target storage location when the picker of the handheld terminal is located in the area where the shelf where the goods to be picked is located in the warehouse (for example, the picker is located near the shelf, etc.), The terminal held by the picker can directly transmit the first instruction to the target electronic shelf label.
  • the terminal held by the picker may directly broadcast the first instruction, so that the target electronic shelf label receives the first instruction broadcast by the terminal.
  • the target electronic shelf label can output prompt information according to the first instruction, so that the picker can determine the shelf layer where the target electronic shelf label with prompt information is adapted (such as alignment, etc.) for the goods to be picked on the shelf.
  • the storage position on the board so that the goods placed on the storage position (that is, the goods to be picked) can be taken out, thereby completing the picking of the goods to be picked.
  • the terminal may not forward the first instruction to the target electronic shelf label through intermediate equipment such as background equipment, and the terminal may directly transmit the first instruction to the target electronic shelf label, thereby reducing the communication link and improving the efficiency.
  • Communication efficiency for example, can improve the transmission efficiency of the first instruction, and then can improve the timeliness of the prompt information output by the target electronic shelf label, so that the picking efficiency of the picker can be improved.
  • this application can improve the stability of data transmission, and secondly, it can also save background equipment. Network resources of intermediate devices, etc.
  • the present application does not need to introduce large-scale hardware equipment in the warehouse, and the solution of the present application can be implemented in warehouses equipped with electronic shelf labels, and the cost of the solution of the present application is relatively low.
  • the distance between the shelves is small, and the shelves are arranged densely.
  • the picker searches for the location where the goods to be picked are located according to the target storage location of the goods to be picked in the warehouse as prompted by the terminal. Shelves are more difficult, which will reduce the picking efficiency and the picking experience of the pickers.
  • the light-emitting element on the target electronic shelf label can emit a beam of light vertically upwards, for example, a red beam or a green beam, etc., after the beam reaches the ceiling of the warehouse , can display a bright image on the ceiling, for example, a bright circular image, etc., and the picker can roughly determine the position of the shelf where the target electronic shelf label is located through the light displayed on the ceiling, so that It is easier and faster for the picker to find the shelf where the target electronic shelf label is located, and go to the position of the shelf where the target electronic shelf label is located, which can improve the picking efficiency and the picking experience of the picker.
  • a beam of light vertically upwards for example, a red beam or a green beam, etc.
  • the electronic shelf labels that are adapted to the storage locations where the goods that each picker needs to take out may be simultaneously separately separately separately
  • the output prompt information if the prompt information output by the electronic shelf labels adapted to the storage locations of the goods that each picker needs to take out is the same, it will cause interference to these pickers, for example, it will cause picking The pickers take out the goods that they should not have taken out, which will affect each picker to perform their own picking work, which will reduce the picking efficiency and the picking experience of each picker.
  • the target electronic shelf label can also play a voice, and the voice includes the name of the goods to be picked, the name of the picker (or the code name of the picker) and The number of the order to which the item to be picked belongs, etc.
  • the picker can determine the source direction of each voice, and determine which voice is aimed at himself according to the content of each voice, so that he can determine the source direction of his own voice, and can determine the source direction of his own voice.
  • the direction of the target electronic shelf label for the goods to be picked, and then according to the direction of the target electronic shelf label, the target electronic shelf label for the goods to be picked can be quickly and accurately determined, which can improve the picking efficiency and improve the efficiency of the picker. Picking experience.
  • the broadcast power of broadcasting the first instruction can be set in advance according to the actual situation, so as to adjust the distance range of the broadcast of the first instruction.
  • the target electronic shelf label can only receive the first instruction when the distance between the picker and the target electronic shelf label is relatively close, and output prompt information according to the first instruction.
  • the target electronic shelf label will output prompt information, but when the distance between the picker and the target electronic shelf label is relatively long, the target electronic shelf label will not output prompt information, so that Avoid consuming the energy of the target electronic shelf label and avoid as much as possible the prompt information output by the target electronic shelf label from causing interference to other pickers.
  • the picker has not yet perceived the prompt information output by the target electronic shelf label (At this time, it is not determined which storage location the goods to be picked are in), in this case, if the target electronic shelf label stops outputting prompt information, then the user will not be able to determine the storage location of the goods to be picked according to the prompt information afterwards.
  • the clerk can only manually search for the goods to be picked on the shelf, which will reduce the picking efficiency and the picking experience of the picker.
  • the method further includes:
  • step S208 the terminal receives a first preset operation input by the picker; the first preset operation is used to instruct the terminal to broadcast a first instruction, and the first instruction is used to instruct the target electronic shelf label to output prompt information.
  • the first instruction carries the label identification of the target electronic shelf label.
  • the picker when the picker has arrived at the area where the shelf where the goods to be picked is located, if the picker cannot perceive the instruction information, the picker can input the first preset operation in the terminal, the first The preset operation includes clicking a specific button in the terminal, and of course, may also include other forms of operations, which are not limited in this application.
  • step S209 the terminal broadcasts the first instruction.
  • step S205 For details of this step, refer to step S205, which will not be described in detail here.
  • step S210 the target electronic shelf label receives a first instruction.
  • step S211 the target electronic shelf label outputs prompt information according to the first instruction.
  • step S207 For details of this step, refer to step S207, which will not be described in detail here.
  • the picker is supported to manually control the target electronic shelf label through the terminal to output the prompt information again, so that the picker can determine the storage location of the goods to be picked according to the prompt information, so that the picker does not need to manually search on the shelf
  • the goods to be picked can improve the picking efficiency and improve the picker's picking experience.
  • the target electronic shelf label After the target electronic shelf label outputs prompt information according to the first instruction, the target electronic shelf label broadcasts a notification message, which is used to notify the target electronic shelf label that the prompt information has been output according to the first instruction, and the terminal can receive the notification message , and according to the notification message, it can be perceived that the target electronic shelf label has output prompt information according to the first instruction, so as to prevent the terminal from repeating to A first command is broadcast.
  • the method further includes:
  • step S212 when it is determined that the picker has taken out the goods to be picked, the terminal broadcasts a second instruction, the second instruction is used to instruct the target electronic shelf label to stop outputting prompt information, and the first instruction carries the target electronic shelf label label identification.
  • the camera of the terminal can be used to scan the data code (including QR code or barcode, etc.) on the surface of the goods to be picked , obtain the cargo identification of the goods to be picked through the graphic code, and then obtain the acquisition identification of the goods to be picked from the cloud, and then compare whether the cargo identification of the goods to be picked obtained through the graphic code is the same as the cargo identification of the goods to be picked obtained from the cloud , when the two are the same, it is determined that the goods taken out by the picker are the goods to be picked, that is, it can be determined that the picker has already taken out the goods to be picked.
  • the goods to be picked that is, it can be determined that the picker has not taken out the goods to be picked, and an instruction message can be output to instruct the picker to pick the wrong goods, and ask the picker to pick the goods again.
  • the picker can input a second preset operation on the terminal, and the second preset operation includes clicking a preset button on the terminal, sending a message to the terminal.
  • the terminal can learn that the picker has taken out the goods to be picked.
  • the second instruction may correspond to the first instruction.
  • the first instruction is used to instruct the target electronic shelf label to output what kind of prompt information
  • the second instruction may be used to instruct the target electronic shelf label to stop outputting what kind of prompt information.
  • the first instruction may be used to instruct the target electronic shelf label to output prompt information through the prompt element, for example, the first instruction may be used to instruct the target electronic shelf label to control the light-emitting element to emit light and/or control the sound-emitting element to output sound, etc. .
  • the second instruction can be used to instruct the target electronic shelf label to stop outputting prompt information through the prompt element, for example, the second instruction can be used to instruct the target electronic shelf label to control the light-emitting element to stop emitting light and/or control the sound-emitting element to stop outputting sound, etc. .
  • step S213 the target electronic shelf label receives the second instruction.
  • step S214 the target electronic shelf label stops outputting prompt information according to the second instruction.
  • the target electronic shelf label can stop outputting prompt information through the prompting element, for example, the target electronic shelf label controls the light emitting element to stop emitting light and/or controls the sound emitting element to stop outputting sound, etc., for example, the target electronic shelf label turns off the light-emitting indicator or turns off the bee buzzer etc.
  • FIG. 10 shows a structural block diagram of a data processing device based on a data processing system of the present application.
  • the method is applied to the cloud shown in FIG. 1 , and the device may specifically include the following modules:
  • the obtaining module 11 is used to obtain the picking task, and the picking task includes at least the label identification of the target electronic shelf label adapted to the storage position of the goods to be picked in the warehouse; the first sending module 12 is used to send to the terminal The picking task, so that the terminal transmits a first instruction to the target electronic shelf label according to the label identification, the first instruction is used to instruct the target electronic shelf label to output prompt information, so that the The target electronic shelf label outputs prompt information according to the first instruction.
  • the target storage position of the goods to be picked in the warehouse can be indicated to the picker.
  • the target electronic shelf label adapted to the target storage location can be controlled to output prompt information.
  • the output prompt information of the target electronic shelf label adapted to the target storage location when the picker of the handheld terminal is located in the area where the shelf where the goods to be picked is located in the warehouse (for example, the picker is located near the shelf, etc.), The terminal held by the picker can directly transmit the first instruction to the target electronic shelf label.
  • a point-to-point communication connection between the terminal held by the picker and the target electronic shelf label is established, and the terminal held by the picker can send a first instruction point-to-point to the target electronic shelf label based on the communication connection, so that the target electronic shelf label
  • the first instruction sent by the terminal point-to-point is received.
  • the terminal held by the picker may directly broadcast the first instruction, so that the target electronic shelf label receives the first instruction broadcast by the terminal.
  • the target electronic shelf label can output prompt information according to the first instruction, so that the picker can determine the shelf layer where the target electronic shelf label with prompt information is adapted (such as alignment, etc.) for the goods to be picked on the shelf.
  • the terminal may not forward the first instruction to the target electronic shelf label through intermediate equipment such as background equipment, and the terminal may directly transmit the first instruction to the target electronic shelf label, thereby reducing the communication link and improving the efficiency.
  • Communication efficiency for example, can improve the transmission efficiency of the first instruction, and then can improve the timeliness of the prompt information output by the target electronic shelf label, so that the picking efficiency of the picker can be improved.
  • this application can improve the stability of data transmission, and secondly, it can also save background equipment. Network resources of intermediate devices, etc.
  • the present application does not need to introduce large-scale hardware equipment in the warehouse, and the solution of the present application can be implemented in warehouses equipped with electronic shelf labels, and the cost of the solution of the present application is relatively low.
  • the data processing method based on the data processing system in this application can be applied in the field of logistics and warehousing, of course, it can also be used in other feasible fields, and this application does not limit the specific application field.
  • FIG. 11 shows a structural block diagram of a data processing device based on a data processing system of the present application.
  • the method is applied to the terminal shown in FIG. 1 , and the device may specifically include the following modules:
  • the first receiving module 21 is used to receive the picking task sent by the cloud, and the picking task includes at least the label identification of the target electronic shelf label adapted to the storage position of the goods to be picked in the warehouse; the first broadcasting module 22, Used to broadcast an establishment request for establishing a communication connection between the terminal and the target electronic shelf label; the establishment request carries the label identification of the target electronic shelf label; the second receiving module 23 is configured to receive the communication connection between the terminal and the target electronic shelf label; When the target electronic shelf label determines that the establishment request carries the label identifier of the target electronic shelf label, the target electronic shelf label returns the information used to establish the connection between the terminal and the target according to the establishment request.
  • the label sends a first instruction, where the first instruction is used to instruct the target electronic shelf label to output prompt information, so that the target electronic shelf label outputs prompt information according to the first instruction.
  • the target storage position of the goods to be picked in the warehouse can be indicated to the picker.
  • the target electronic shelf label adapted to the target storage location can be controlled to output prompt information.
  • the output prompt information of the target electronic shelf label adapted to the target storage location when the picker of the handheld terminal is located in the area where the shelf where the goods to be picked is located in the warehouse (for example, the picker is located near the shelf, etc.), The terminal held by the picker can directly transmit the first instruction to the target electronic shelf label.
  • a point-to-point communication connection between the terminal held by the picker and the target electronic shelf label is established, and the terminal held by the picker can send a first instruction point-to-point to the target electronic shelf label based on the communication connection, so that the target electronic shelf label
  • the first instruction sent by the terminal point-to-point is received.
  • the target electronic shelf label can output prompt information according to the first instruction, so that the picker can determine the shelf layer where the target electronic shelf label with prompt information is adapted (such as alignment, etc.) for the goods to be picked on the shelf.
  • the storage position on the board so that the goods placed on the storage position (that is, the goods to be picked) can be taken out, thereby completing the picking of the goods to be picked.
  • the terminal may not forward the first instruction to the target electronic shelf label through intermediate equipment such as background equipment, and the terminal may directly transmit the first instruction to the target electronic shelf label, thereby reducing the communication link and improving the efficiency.
  • Communication efficiency for example, can improve the transmission efficiency of the first instruction, and then can improve the timeliness of the prompt information output by the target electronic shelf label, so that the picking efficiency of the picker can be improved.
  • this application can improve the stability of data transmission, and secondly, it can also save background equipment. Network resources of intermediate devices, etc.
  • the present application does not need to introduce large-scale hardware equipment in the warehouse, and the solution of the present application can be implemented in warehouses equipped with electronic shelf labels, and the cost of the solution of the present application is relatively low.
  • FIG. 12 shows a structural block diagram of a data processing device based on a data processing system of the present application.
  • the method is applied to a target electronic shelf label among the plurality of electronic shelf labels shown in FIG. 1 , and the device may specifically include The following modules:
  • the third receiving module 31 is configured to receive an establishment request broadcast by a terminal for establishing a communication connection between the terminal and the target electronic shelf label, where the establishment request carries the label identifier of the target electronic shelf label; wherein , the establishment request is broadcast by the terminal when it receives the picking task sent by the cloud, and the picking task includes the target electronic shelf label adapted to the storage location of the goods to be picked in the warehouse Label identification; the third sending module 32 is configured to, in a case where it is determined that the establishment request carries the label identification of the target electronic shelf label, send a message for establishing the connection between the terminal and the electronic shelf label to the terminal according to the establishment request.
  • the sent first instruction is used to instruct the target electronic shelf label to output prompt information; the first output module 34 is configured to output prompt information according to the first instruction.
  • the target storage position of the goods to be picked in the warehouse can be indicated to the picker.
  • the target electronic shelf label adapted to the target storage location can be controlled to output prompt information.
  • the output prompt information of the target electronic shelf label adapted to the target storage location when the picker of the handheld terminal is located in the area where the shelf where the goods to be picked is located in the warehouse (for example, the picker is located near the shelf, etc.), The terminal held by the picker can directly transmit the first instruction to the target electronic shelf label.
  • a point-to-point communication connection between the terminal held by the picker and the target electronic shelf label is established, and the terminal held by the picker can send a first instruction point-to-point to the target electronic shelf label based on the communication connection, so that the target electronic shelf label
  • the first instruction sent by the terminal point-to-point is received.
  • the terminal may not forward the first instruction to the target electronic shelf label through intermediate equipment such as background equipment, and the terminal may directly transmit the first instruction to the target electronic shelf label, thereby reducing the communication link and improving the efficiency.
  • Communication efficiency for example, can improve the transmission efficiency of the first instruction, and then can improve the timeliness of the prompt information output by the target electronic shelf label, so that the picking efficiency of the picker can be improved.
  • this application can improve the stability of data transmission, and secondly, it can also save background equipment. Network resources of intermediate devices, etc.
  • the present application does not need to introduce large-scale hardware equipment in the warehouse, and the solution of the present application can be implemented in warehouses equipped with electronic shelf labels, and the cost of the solution of the present application is relatively low.
  • FIG. 13 shows a structural block diagram of a data processing device based on a data processing system of the present application.
  • the method is applied to the terminal shown in FIG. 1 , and the device may specifically include the following modules:
  • the fifth receiving module 41 is used to receive the picking task sent by the cloud, and the picking task includes at least the label identification of the target electronic shelf label adapted to the storage position of the goods to be picked in the warehouse; the second broadcasting module 42, For broadcasting a first instruction, the first instruction carries the label identifier of the target electronic shelf label, and the first instruction is used to instruct the target electronic shelf label to output prompt information, so that the target electronic shelf label is When it is determined that the first instruction carries the label identifier of the target electronic shelf label, output prompt information according to the first instruction.
  • the target storage position of the goods to be picked in the warehouse can be indicated to the picker.
  • the target electronic shelf label adapted to the target storage location can be controlled to output prompt information.
  • the output prompt information of the target electronic shelf label adapted to the target storage location when the picker of the handheld terminal is located in the area where the shelf where the goods to be picked is located in the warehouse (for example, the picker is located near the shelf, etc.), The terminal held by the picker can directly transmit the first instruction to the target electronic shelf label.
  • the terminal held by the picker may directly broadcast the first instruction, so that the target electronic shelf label receives the first instruction broadcast by the terminal.
  • the target electronic shelf label can output prompt information according to the first instruction, so that the picker can determine the shelf layer where the target electronic shelf label with prompt information is adapted (such as alignment, etc.) for the goods to be picked on the shelf.
  • the storage position on the board so that the goods placed on the storage position (that is, the goods to be picked) can be taken out, thereby completing the picking of the goods to be picked.
  • the terminal may not forward the first instruction to the target electronic shelf label through intermediate equipment such as background equipment, and the terminal may directly transmit the first instruction to the target electronic shelf label, thereby reducing the communication link and improving the efficiency.
  • Communication efficiency for example, can improve the transmission efficiency of the first instruction, and then can improve the timeliness of the prompt information output by the target electronic shelf label, so that the picking efficiency of the picker can be improved.
  • this application can improve the stability of data transmission, and secondly, it can also save background equipment. Network resources of intermediate devices, etc.
  • the present application does not need to introduce large-scale hardware equipment in the warehouse, and the solution of the present application can be implemented in warehouses equipped with electronic shelf labels, and the cost of the solution of the present application is relatively low.
  • FIG. 14 it shows a structural block diagram of a data processing device based on a data processing system of the present application.
  • the method is applied to the target electronic shelf label among the multiple electronic shelf labels shown in FIG. 1 , and the device can specifically Including the following modules:
  • the sixth receiving module 51 is configured to receive a first instruction broadcast by the terminal, the first instruction is used to instruct the target electronic shelf label to output prompt information, wherein the first instruction is sent by the terminal after receiving the cloud
  • the picking task includes the label identification of the target electronic shelf label adapted to the storage position of the goods to be picked in the warehouse; the first instruction carries the target electronic shelf label The label identification of the label; the second output module 52 is configured to output prompt information according to the first instruction when it is determined that the first instruction carries the label identification of the target electronic shelf label.
  • the target storage position of the goods to be picked in the warehouse can be indicated to the picker.
  • the target electronic shelf label adapted to the target storage location can be controlled to output prompt information.
  • the output prompt information of the target electronic shelf label adapted to the target storage location when the picker of the handheld terminal is located in the area where the shelf where the goods to be picked is located in the warehouse (for example, the picker is located near the shelf, etc.), The terminal held by the picker can directly transmit the first instruction to the target electronic shelf label.
  • the terminal held by the picker may directly broadcast the first instruction, so that the target electronic shelf label receives the first instruction broadcast by the terminal. Afterwards, the target electronic shelf label can output prompt information according to the first instruction, so that the picker can determine the shelf layer where the target electronic shelf label with prompt information is adapted (such as alignment, etc.) for the goods to be picked on the shelf.
  • the storage position on the board so that the goods placed on the storage position (that is, the goods to be picked) can be taken out, thereby completing the picking of the goods to be picked.
  • the terminal may not forward the first instruction to the target electronic shelf label through intermediate equipment such as background equipment, and the terminal may directly transmit the first instruction to the target electronic shelf label, thereby reducing the communication link and improving the efficiency.
  • Communication efficiency for example, can improve the transmission efficiency of the first instruction, and then can improve the timeliness of the prompt information output by the target electronic shelf label, so that the picking efficiency of the picker can be improved.
  • this application can improve the stability of data transmission, and secondly, it can also save background equipment. Network resources of intermediate devices, etc.
  • the present application does not need to introduce large-scale hardware equipment in the warehouse, and the solution of the present application can be implemented in warehouses equipped with electronic shelf labels, and the cost of the solution of the present application is relatively low.
  • the description is relatively simple, and for related parts, please refer to the part of the description of the method embodiment.
  • the embodiment of the present application also provides a non-volatile readable storage medium, and one or more modules (programs) are stored in the storage medium.
  • the device can execute Instructions for each method step in the embodiments of the present application.
  • the embodiments of the present application provide one or more machine-readable media, on which instructions are stored, and when executed by one or more processors, the electronic device executes the method described in one or more of the above embodiments.
  • the electronic device includes a server, a gateway, a sub-device, etc., and the sub-device is an Internet of Things device or the like.
  • Embodiments of the present disclosure can be implemented as devices using any appropriate hardware, firmware, software, or any combination thereof to perform desired configurations, and the devices can include electronic devices such as servers (clusters) and terminal devices such as IoT devices.
  • electronic devices such as servers (clusters) and terminal devices such as IoT devices.
  • Figure 15 schematically illustrates an exemplary apparatus 1300 that may be used to implement various embodiments described in this application.
  • FIG. 15 shows an exemplary apparatus 1300 having one or more processors 1302, a control module (chipset) 1304 coupled to at least one of the processor(s) 1302 , memory 1306 coupled to control module 1304, non-volatile memory (NVM)/storage device 1308 coupled to control module 1304, one or more input/output devices 1310 coupled to control module 1304, and Coupled to the network interface 1312 of the control module 1306 .
  • processors 1302 a control module (chipset) 1304 coupled to at least one of the processor(s) 1302 , memory 1306 coupled to control module 1304, non-volatile memory (NVM)/storage device 1308 coupled to control module 1304, one or more input/output devices 1310 coupled to control module 1304, and Coupled to the network interface 1312 of the control module 1306 .
  • NVM non-volatile memory
  • the processor 1302 may include one or more single-core or multi-core processors, and the processor 1302 may include any combination of general-purpose processors or special-purpose processors (such as graphics processors, application processors, baseband processors, etc.).
  • the apparatus 1300 can serve as a server device such as a gateway in the embodiments of this application.
  • apparatus 1300 may include one or more computer-readable media (e.g., memory 1306 or NVM/storage 1308) having instructions 1314 and in combination with the one or more computer-readable media configured to The one or more processors 1302 execute instructions 1314 to implement modules to perform the actions described in this disclosure.
  • computer-readable media e.g., memory 1306 or NVM/storage 1308
  • the one or more processors 1302 execute instructions 1314 to implement modules to perform the actions described in this disclosure.
  • control module 1304 may include any suitable interface controller to provide any suitable Interface.
  • the control module 1304 may include a memory controller module to provide an interface to the memory 1306 .
  • a memory controller module may be a hardware module, a software module and/or a firmware module.
  • Memory 1306 may be used, for example, to load and store data and/or instructions 1314 for apparatus 1300 .
  • memory 1306 may comprise any suitable volatile memory, such as suitable DRAM.
  • memory 1306 may include Double Data Rate Type Quad Synchronous Dynamic Random Access Memory (DDR4 SDRAM).
  • DDR4 SDRAM Double Data Rate Type Quad Synchronous Dynamic Random Access Memory
  • control module 1304 may include one or more input/output controllers to provide interfaces to NVM/storage device(s) 1308 and input/output device(s) 1310 .
  • NVM/storage 1308 may be used to store data and/or instructions 1314 .
  • NVM/storage 1308 may include any suitable non-volatile memory (e.g., flash memory) and/or may include any suitable non-volatile storage device(s) (e.g., one or more hard drives (HDD), one or more compact disc (CD) drives, and/or one or more digital versatile disc (DVD) drives).
  • suitable non-volatile memory e.g., flash memory
  • suitable non-volatile storage device(s) e.g., one or more hard drives (HDD), one or more compact disc (CD) drives, and/or one or more digital versatile disc (DVD) drives.
  • HDD hard drives
  • CD compact disc
  • DVD digital versatile disc
  • NVM/storage 1308 may include storage resources that are physically part of the device on which apparatus 1300 is installed, or may not necessarily be part of the device that are accessible by the device. For example, NVM/storage 1308 may be accessed over a network via input/output device(s) 1310 .
  • the input/output device(s) 1310 may provide an interface for the apparatus 1300 to communicate with any other suitable device, and the input/output device 1310 may include a communication component, a pinyin component, a sensor component, and the like.
  • Network interface 1312 may provide an interface for device 1300 to communicate over one or more networks, and device 1300 may communicate with one or more wireless networks according to any of one or more wireless network standards and/or protocols.
  • the components perform wireless communication, for example, access to a wireless network based on communication standards, such as WiFi, 2G, 3G, 4G, 5G, etc., or a combination of them for wireless communication.
  • At least one of the processor(s) 1302 may be packaged with the logic of one or more controllers of the control module 1304 (eg, a memory controller module). For one embodiment, at least one of the processor(s) 1302 may be packaged with the logic of one or more controllers of the control module 1304 to form a system-in-package (SiP). For one embodiment, at least one of the processor(s) 1302 may be integrated on the same die as the logic of the one or more controllers of the control module 1304 . For one embodiment, at least one of the processor(s) 1302 may be integrated on the same die with the logic of the one or more controllers of the control module 1304 to form a system on chip (SoC).
  • SoC system on chip
  • the apparatus 1300 may be, but not limited to, a terminal device such as a server, a desktop computing device, or a mobile computing device (eg, a laptop computing device, a handheld computing device, a tablet computer, a netbook, etc.).
  • device 1300 may have more or fewer components and/or a different architecture.
  • device 1300 includes one or more cameras, a keyboard, a liquid crystal display (LCD) screen (including a touchscreen display), a non-volatile memory port, multiple antennas, a graphics chip, an application-specific integrated circuit ( ASIC) and speakers.
  • LCD liquid crystal display
  • ASIC application-specific integrated circuit
  • An embodiment of the present application provides an electronic device, including: one or more processors; and one or more machine-readable media having instructions stored thereon, when executed by the one or more processors, The electronic device is made to execute the data processing method based on the data processing system described in one or more of the present application.
  • the description is relatively simple, and for related parts, please refer to the part of the description of the method embodiment.
  • Embodiments of the present application are described with reference to flowcharts and/or block diagrams of methods, terminal devices (systems), and computer program products according to the embodiments of the present application. It should be understood that each procedure and/or block in the flowchart and/or block diagram, and a combination of procedures and/or blocks in the flowchart and/or block diagram can be realized by computer program instructions. These computer program instructions may be provided to a general purpose computer, special purpose computer, embedded processor or processor of other programmable data processing terminal equipment to produce a machine such that instructions executed by the computer or processor of other programmable data processing terminal equipment Produce means for realizing the functions specified in one or more procedures of the flowchart and/or one or more blocks of the block diagram.
  • These computer program instructions may also be stored in a computer-readable memory capable of directing a computer or other programmable data processing terminal to operate in a specific manner, such that the instructions stored in the computer-readable memory produce an article of manufacture comprising instruction means, the The instruction means implements the functions specified in one or more procedures of the flowchart and/or one or more blocks of the block diagram.

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Abstract

本申请提供了一种基于数据处理系统的数据处理方法及装置。通过本申请,可以控制目标存放位置适配的目标电子货架标签输出提示信息,例如,在手持终端的拣货员位于仓库中的待捡货物所在的货架所在的区域的情况下,拣货员手持的终端可以直接向目标电子货架标签传输第一指令。可见,在本申请中,终端可以不通过后台的设备等中间设备向目标电子货架标签转发第一指令,而终端可以直接向目标电子货架标签传输第一指令,从而可以缩减通信链路,提高了通信效率,例如,可以提高第一指令的传输效率,进而可以提高目标电子货架标签输出提示信息的时效性,如此可以提高拣货员的拣货效率。

Description

基于数据处理系统的数据处理方法及装置
本公开要求于2021年07月02日提交中国专利局、申请号为CN202110754598.3、申请名称为“基于数据处理系统的数据处理方法及装置”的中国专利申请的优先权,其全部内容通过引用结合在本公开中。
技术领域
本申请涉及物流技术领域,特别是涉及一种基于数据处理系统的数据处理方法及装置。
背景技术
随着物流技术的不断发展,越来越多的商品可以快速便捷地从仓库发往用户家中。在用户在网上购买商品之后,订单会转发给拣货员,拣货员可以在仓库中拣货,例如寻找用户购买的商品,然后可以将寻找到的商品打包,并通过快递邮寄给用户。
发明内容
本申请示出了一种基于数据处理系统的数据处理方法及装置。
第一方面,本申请示出了一种基于数据处理系统的数据处理方法,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述云端,所述方法包括:
获取拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;
向终端发送所述拣货任务,以使所述终端根据所述标签标识向所述目标电子货架标签传输第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签根据所述第一指令输出提示信息。
第二方面,本申请示出了一种基于数据处理系统的数据处理方法,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述终端,所述方法包括:
接收云端发送的拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;
广播用于建立所述终端与所述目标电子货架标签之间的通信连接的建立请求;所述建立请求携带所述目标电子货架标签的标签标识;
接收在所述目标电子货架标签确定出所述建立请求携带所述目标电子货架标签的标签标识的情况下、所述目标电子货架标签根据所述建立请求返回的、用于建立所述终端与所述目标电子货架标签之间的通信连接的建立响应,从而实现建立所述终端与所述目标电子货架标签之间的通信连接;
基于所述通信连接向所述目标电子货架标签发送第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签根据所述第一指令输出提示信息。
第三方面,本申请示出了一种基于数据处理系统的数据处理方法,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述多个电子货架标签中的目标电子货架标签,所述方法包括:
接收终端广播的用于建立所述终端与所述目标电子货架标签之间的通信连接的建立请求,所述建立请求携带所述目标电子货架标签的标签标识;其中,所述建立请求是所述终端在接收到云端发送的拣货任务的情况下广播的,所述拣货任务中包括待捡货物在仓库中的存放位置适配的所述目标电子货架标签的标签标识;
在确定出所述建立请求携带所述目标电子货架标签的标签标识的情况下,根据所述建立请求向所述终端发送用于建立所述终端与所述目标电子货架标签之间的通信连接的建立响应,从而实现建立所述终端与所述目标电子货架标签之间的通信连接;
接收所述终端基于所述通信连接发送的第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息;
根据所述第一指令输出提示信息。
第四方面,本申请示出了一种基于数据处理系统的数据处理方法,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述终端, 所述方法包括:
接收云端发送的拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;
广播第一指令,所述第一指令携带所述目标电子货架标签的标签标识,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签在确定出所述第一指令携带所述目标电子货架标签的标签标识的情况下,根据所述第一指令输出提示信息。
第五方面,本申请示出了一种基于数据处理系统的数据处理方法,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述多个电子货架标签中的目标电子货架标签,所述方法包括:
接收终端广播的第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,其中,所述第一指令是所述终端在接收到云端发送的拣货任务的情况下广播的,所述拣货任务中包括待捡货物在仓库中的存放位置适配的所述目标电子货架标签的标签标识;所述第一指令携带所述目标电子货架标签的标签标识;
在确定出所述第一指令携带所述目标电子货架标签的标签标识的情况下,根据所述第一指令输出提示信息。
第六方面,本申请示出了一种基于数据处理系统的数据处理装置,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述云端,所述装置包括:
获取模块,用于获取拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;
第一发送模块,用于向终端发送所述拣货任务,以使所述终端根据所述标签标识向所述目标电子货架标签传输第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签根据所述第一指令输出提示信息。
第七方面,本申请示出了一种基于数据处理系统的数据处理装置,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述终端,所述装置包括:
第一接收模块,用于接收云端发送的拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;
第一广播模块,用于广播用于建立所述终端与所述目标电子货架标签之间的通信连接的建立请求;所述建立请求携带所述目标电子货架标签的标签标识;
第二接收模块,用于接收在所述目标电子货架标签确定出所述建立请求携带所述目标电子货架标签的标签标识的情况下、所述目标电子货架标签根据所述建立请求返回的、用于建立所述终端与所述目标电子货架标签之间的通信连接的建立响应,从而实现建立所述终端与所述目标电子货架标签之间的通信连接;
第二发送模块,用于基于所述通信连接向所述目标电子货架标签发送第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签根据所述第一指令输出提示信息。
第八方面,本申请示出了一种基于数据处理系统的数据处理装置,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述多个电子货架标签中的目标电子货架标签,所述装置包括:
第三接收模块,用于接收终端广播的用于建立所述终端与所述目标电子货架标签之间的通信连接的建立请求,所述建立请求携带所述目标电子货架标签的标签标识;其中,所述建立请求是所述终端在接收到云端发送的拣货任务的情况下广播的,所述拣货任务中包括待捡货物在仓库中的存放位置适配的所述目标电子货架标签的标签标识;
第三发送模块,用于在确定出所述建立请求携带所述目标电子货架标签的标签标识的情况下,根据所述建立请求向所述终端发送用于建立所述终端与所述目标电子货架标签之间的通信连接的建立响应,从而实现建立所述终端与所述目标电子货架标签之间的通信连接;
第四接收模块,用于接收所述终端基于所述通信连接发送的第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息;
第一输出模块,用于根据所述第一指令输出提示信息。
第九方面,本申请示出了一种基于数据处理系统的数据处理装置,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述终端,所述装置包括:
第五接收模块,用于接收云端发送的拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;
第二广播模块,用于广播第一指令,所述第一指令携带所述目标电子货架标签的标签标识,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签在确定出所述第一指令携带所述目标电子货架标签的标签标识的情况下,根据所述第一指令输出提示信息。
第十方面,本申请示出了一种基于数据处理系统的数据处理装置,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述多个电子货架标签中的目标电子货架标签,所述装置包括:
第六接收模块,用于接收终端广播的第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,其中,所述第一指令是所述终端在接收到云端发送的拣货任务的情况下广播的,所述拣货任务中包括待捡货物在仓库中的存放位置适配的所述目标电子货架标签的标签标识;所述第一指令携带所述目标电子货架标签的标签标识;
第二输出模块,用于在确定出所述第一指令携带所述目标电子货架标签的标签标识的情况下,根据所述第一指令输出提示信息。
第十一方面,本申请示出了一种电子设备,所述电子设备包括:
处理器;用于存储处理器可执行指令的存储器;
所述处理器被配置为执行如第一方面所述的基于数据处理系统的数据处理方法。
第十二方面,本申请示出了一种非临时性计算机可读存储介质,当所述存储介质中的指令由电子设备的处理器执行时,使得电子设备能够执行如第一方面所述的基于数据处理系统的数据处理方法。
第十三方面,本申请示出了一种计算机程序产品,当所述计算机程序产品中的指令由电子设备的处理器执行时,使得电子设备能够执行如第一方面所述的基于数据处理系统的数据处理方法。
第十四方面,本申请示出了一种电子设备,所述电子设备包括:
处理器;用于存储处理器可执行指令的存储器;
所述处理器被配置为执行如第二方面所述的基于数据处理系统的数据处理方法。
第十五方面,本申请示出了一种非临时性计算机可读存储介质,当所述存储介质中的指令由电子设备的处理器执行时,使得电子设备能够执行如第二方面所述的基于数据处理系统的数据处理方法。
第十六方面,本申请示出了一种计算机程序产品,当所述计算机程序产品中的指令由电子设备的处理器执行时,使得电子设备能够执行如第二方面所述的基于数据处理系统的数据处理方法。
第十七方面,本申请示出了一种电子设备,所述电子设备包括:
处理器;用于存储处理器可执行指令的存储器;
所述处理器被配置为执行如第三方面所述的基于数据处理系统的数据处理方法。
第十八方面,本申请示出了一种非临时性计算机可读存储介质,当所述存储介质中的指令由电子设备的处理器执行时,使得电子设备能够执行如第三方面所述的基于数据处理系统的数据处理方法。
第十九方面,本申请示出了一种计算机程序产品,当所述计算机程序产品中的指令由电子设备的处理器执行时,使得电子设备能够执行如第三方面所述的基于数据处理系统的数据处理方法。
第二十方面,本申请示出了一种电子设备,所述电子设备包括:
处理器;用于存储处理器可执行指令的存储器;
所述处理器被配置为执行如第四方面所述的基于数据处理系统的数据处理方法。
第二十一方面,本申请示出了一种非临时性计算机可读存储介质,当所述存储介质中的指令由电子设备的处理器执行时,使得电子设备能够执行如第四方面所述的基于数据处理系统的数据处理方法。
第二十二方面,本申请示出了一种计算机程序产品,当所述计算机程序产品中的指令由电子设备的处理器执行时,使得电子设备能够执行如第四方面所述的基于数据处理系统的数据处理方法。
第二十三方面,本申请示出了一种电子设备,所述电子设备包括:
处理器;用于存储处理器可执行指令的存储器;
所述处理器被配置为执行如第五方面所述的基于数据处理系统的数据处理方法。
第二十四方面,本申请示出了一种非临时性计算机可读存储介质,当所述存储介质中的指令由电子设备的处理器执行时,使得电子设备能够执行如第五方面所述的基于数据处理系统的数据处理方法。
第二十五方面,本申请示出了一种计算机程序产品,当所述计算机程序产品中的指令由电子设备的处理器执行时,使得电子设备能够执行如第五方面所述的基于数据处理系统的数据处理方法。
与现有技术相比,本申请包括以下优点:
通过本申请,为了提高拣货员的拣货效率,可以向拣货员指示待捡货物在仓库中的目标存放位置。为了向拣货员指示待捡货物在仓库中的目标存放位置,可以控制目标存放位置适配的目标电子货架标签输出提示信息。为了控制目标存放位置适配的目标电子货架标签输出提示信息,在手持终端的拣货员位于仓库中的待捡货物所在的货架所在的区域(例如拣货员位于货架附近等)的情况下,拣货员手持的终端可以直接向目标电子货架标签传输第一指令。例如,建立拣货员手持的终端与目标电子货架标签之间的点对点的通信连接,拣货员手持的终端可以基于通信连接点对点地向目标电子货架标签发送第一指令,以使目标电子货架标签接收终端点对点发送的第一指令。或者,拣货员手持的终端可以直接广播第一指令,以使目标电子货架标签接收终端广播的第一指令。之后目标电子货架标签可以根据第一指令输出提示信息,这样,拣货员就可以确定出待捡货物在货架上的、输出有提示信息的目标电子货架标签适配(例如对齐等)的货架层板上的存放位置,从而可以取出放置该存放位置上的货物(即待捡货物),从而完成对待捡货物的拣货。可见,在本申请中,终端可以不通过后台的设备等中间设备向目标电子货架标签转发第一指令,而终端可以直接向目标电子货架标签传输第一指令,从而可以缩减通信链路,提高了通信效率,例如,可以提高第一指令的传输效率,进而可以提高目标电子货架标签输出提示信息的时效性,如此可以提高拣货员的拣货效率。另外,由于可以不依赖涉及后台的设备等中间设备的长链路,从而可以规避长链路带来的不稳定性,因此本申请可以提高数据传输的稳定性,其次,还可以节省后台的设备等中间设备的网络资源等。其次,本申请不需要在仓库中引入大规模的硬件设备,在具备电子货架标签的仓库中均可实现本申请的方案,本申请的方案的成本较低。
附图说明
图1是本申请的一种数据处理系统的结构示意图。
图2是本申请的一种货架的结构示意图。
图3是本申请的一种基于数据处理系统的数据处理方法的步骤流程图。
图4是本申请的一种基于数据处理系统的数据处理方法的步骤流程图。
图5是本申请的一种基于数据处理系统的数据处理方法的步骤流程图。
图6是本申请的一种基于数据处理系统的数据处理方法的步骤流程图。
图7是本申请的一种基于数据处理系统的数据处理方法的步骤流程图。
图8是本申请的一种基于数据处理系统的数据处理方法的步骤流程图。
图9是本申请的一种基于数据处理系统的数据处理方法的步骤流程图。
图10是本申请的一种基于数据处理系统的数据处理装置的结构框图。
图11是本申请的一种基于数据处理系统的数据处理装置的结构框图。
图12是本申请的一种基于数据处理系统的数据处理装置的结构框图。
图13是本申请的一种基于数据处理系统的数据处理装置的结构框图。
图14是本申请的一种基于数据处理系统的数据处理装置的结构框图。
图15是本申请的一种装置的结构框图。
具体实施方式
为使本申请的上述目的、特征和优点能够更加明显易懂,下面结合附图和具体实施方式对本申请作进一步详细的说明。
参照图1,示出了本申请的一种数据处理系统,该系统包括:云端01、至少一个终端02以及多个电子货架标签(ESL,Electronic Shelf Labe)03。
终端02可以包括可以手持的终端,例如,拣货员可以手持的终端等,其包括手机或平板电脑等,或者,还可以包括专用于物流领域的终端等,本申请对此不加以限定。
在一个例子中,终端02包括:在零售等行业中,针对商品等执行上架、分拣、补货、打包以及移库等操作时员工所使用的带有显示和输入部件的手持电子设备,其配置有内存、CPU(Central Processing Unit,中央处理器)、屏幕和按键等,其具备无线数据传输和处理能力,自身配有电池,可以移动。
电子货架标签03包括:带有信息收发功能的电子显示设备,其是一种可以显示价格信息的电子类标签。其可以应用于超市、便利店以及药房等,其可以设置在货架上,每一个电子货架标签可以与电子货架标签的后台服务端之间通过有线的方式或者无线的方式进行数据交互,以得到电子货架标签的后台服务端发送的电子货架标签适配的商品的商品信息(包括商品的名称以及价格等),并将商品的商品信息在电子货架标签的屏幕上显示。
云端01与终端02之间通信连接,如此,云端01与终端02之间可以进行数据交互。
在终端02与电子货架标签03之间需要进行数据交互的情况下,可以建立终端02与电子货架标签03之间的通信连接,例如,终端02可以建立与电子货架标签03之间的通信连接,然后终端02与电子货架标签03之间可以基于该通信连接进行数据交互。通信连接可以包括蓝牙连接等。
或者,在终端02与电子货架标签03之间需要进行数据交互的情况下,可以不建立终端02与电子货架标签03之间的通信连接,例如,终端02可以广播数据,电子货架标签03可以接收终端02广播的数据,以及,电子货架标签03可以广播数据,终端02可以接收电子货架标签03广播的数据,从而实现终端02与电子货架标签03之间进行数据交互。
不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物。
例如,在本申请中,仓库中可以包括至少一个货架,每一个货架可以包括至少一层,每一层都有货架层板,在货架层板上可以放置货物,在货架层板的宽度的维度上具有多个存放位置,各个存放位置均可以放置货物,如此可以在货架层板上并排放置多个不同种类的货物以供拣货员拣货等,这样,每一个种类的货物在货架层板的宽度的维度上都具有各自的存放位置,且各自的存放位置不同。
可以将电子货架标签03固定设置(例如粘贴等)在货架层板的宽度的维度上的侧面,电子货架标签03不影响在货架层板上放置货物或取出货物等,每一个电子货架标签03分别与在货架层板的宽度的维度上的各个存放位置一一适配,例如,每一个电子货架标签03可以分别与在货架层板的宽度的维度上的一个存放位置对齐,例如,在竖直方向上对齐等。
参见图2,对仓库中的其中一个货架进行举例说明,但不作为对本申请的保护范围的限制。
在图2中,货架包括两层,也即,包括两个货架层板。
在上层的货架层板的宽度的维度上依次放置有货物1、货物2……以及货物n,且上层的货架层板的宽度的维度上的侧面依次设置有电子货架标签1、电子货架标签2……以及电子货架标签n,货物1与电子货架标签1在竖直方向上对齐,货物2与电子货架标签2在竖直方向上对齐……以及货物n与电子货架标签n在竖直方向上对齐。
以及,在下层的货架层板的宽度的维度上依次放置有货物n+1、货物n+2……以及货物2n,且上层的货架层板的宽度的维度上的侧面依次设置有电子货架标签n+1、电子货架标签n+2……以及电子货架标签2n,货物n+1与电子货架标签n+1在竖直方向上对齐,货物n+2与电子货架标签n+2在竖直方向上对齐……以及货物2n与电子货架标签2n在竖直方向上对齐。
电子货架标签上具有提示元件,提示元件包括发光元件以及发声元件等,发光元件包括发光指示灯等,发光指示灯包括发光二极管等,发声元件可以包括蜂鸣器或音箱等。
在实际应用中,在从某一个货架中的某一个货架层板上的某一个电子货架标签上的提示元件输出提示信息的情况下,即指示拣货员其需要取出的货物在该货架上的、该货架层板上的、该电子货架标签适配(例如对齐等)的存放位置上,这样,拣货员就可以获知需要取出该货架上的、该货架层板上的、该电子货架标签适配的存放位置上放置的货物。如此拣货员就可以取出该货架上的、该货架层板上的、该电子货架标签适配的存放位置上放置的货物。具体流程可以参见之后的实施例,在此不做详述。
参照图3,示出了本申请的一种基于数据处理系统的数据处理方法,该方法应用于图1所述的系统中,该方法包括:
在步骤S101中,云端获取拣货任务。该拣货任务中至少包括待捡货物在仓库中的目标存放位置适配的目标电子货架标签的标签标识。
本申请中的存放位置包括:仓库中的货架的货架标识、货架中的货架层板的层板标识以及货架层板上的存放位置的位置标识等。货架层板上的存放位置的位置标识可以包括存放位置在货架层板上的宽度的维度上的偏移坐标等。
其中,仓库中的不同的货架的货架标识不同,同一个货架中的不同的货架层板的层板标识不同,同一个货架层板上的不同的存放位置的位置标识不同。
其中,待捡货物位于仓库中的其中一个货架中的其中一个货架层板上的其中一个存放位置,因此,目标存放位置可以包括:该其中一个货架的货架标识、该其中一个货架层板的层板标识以及该其中一个存放位置等。
在本申请中,在客户在线上购物的情况下,客户可以向云端提交订单(例如购物订单)等,订单中包括待捡货物(例如包括客户购买的货物等)的货物标识(可以包括货物名称或货物编号等),云端接收到订单之后,可以根据订单中的待捡货物的货物标识获取待捡货物在仓库中的目标存放位置,以及获取目标存放位置适配的目标电子货架标签的标签标识。
之后云端可以至少根据待捡货物在仓库中的目标存放位置适配的目标电子货架标签的标签标识生成拣货任务,然后可以将该拣货任务分配给拣货员(例如,向拣货员的终端发送该拣货任务等),以供拣货员在仓库中取出待捡货物,并将待捡货物打包邮寄给客户。
其中,对于仓库中存放的任意一个货物,云端事先可以获取该货物在仓库中的存放位置以及该存放位置适配的电子货架标签的标签标识,然后将该货物的货物标识、该货物在仓库中的存放位置以及该存放位置适配的电子货架标签的标签标识组成对应表项,并存储在货物标识、存放位置与标签标识的三者之间的对应关系中。
其中,该存放位置适配的电子货架标签包括:在货架层板的宽度的维度上的侧面上设置的、与电子货架标签在竖直方向上对齐的电子货架标签等。
其中,不同的货物的货物标识不同,不同的电子货架标签的标签标识不同。
如此,在云端需要根据待捡货物的货物标识获取待捡货物在仓库中的目标存放位置时,云端可以在货物标识、存放位置与标签标识的三者之间的对应关系中,查找与待捡货物的货物标识相对应的存放位置,并作为待捡货物在仓库中的目标存放位置。
以及,在云端需要获取目标存放位置适配的目标电子货架标签的标签标识时,可以在货物标识、存放位置与标签标识的三者之间的对应关系中,查找与目标位置相对应的标签标识,并作为目标存放位置适配的目标电子货架标签的标签标识。
在本申请另一实施例中,该拣货任务中还可以包括待捡货物在仓库中的目标存放位置。
在步骤S102中,云端向终端发送该拣货任务。
其中,终端可以包括拣货员手持的终端等,如此,云端向终端发送该拣货任务之后,拣货员通过终端可以得知该拣货任务。
在步骤S103中,终端接收该拣货任务。
在步骤S104中,终端在该拣货任务中提取出待捡货物在仓库中的目标存放位置适配的目标电子货架标签的标签标识。
在步骤S105中,终端广播用于建立终端与目标电子货架标签之间的通信连接的建立请求;该建立请求携带目标电子货架标签的标签标识。
进一步地,在该拣货任务中还包括待捡货物在仓库中的目标存放位置的情况下,终端还可以在该拣货任务中提取出待捡货物在仓库中的目标存放位置,并提示待捡货物在仓库中的目标存放位置。
在本申请中,该拣货任务用于指示拣货员从仓库中取出待捡货物,假设待捡货物在仓库中的某一个货架中的某一货架层板上的某一存放位置,则该拣货任务中的目标存放位置可以包括该货架的货架标识、该货架层板的层板标识以及该存放位置的坐标信息等,终端可以从该拣货任务中提取出该货架的货架标识、该货架层板的层板标识以及该存放位置的坐标信息等,然后通过该货架的货架标识获取该货架的位置信息,并根据该货架的位置信息指引拣货员前往该货架所在区域,以便拣货员从该货架上取出待捡货物。
例如,终端可以在屏幕上显示待捡货物在仓库中的目标存放位置,或者,显示从拣货员的当前位置前往待捡货物在仓库中的目标存放位置的路径图,以指引拣货员前往该货架所在区域。
另外,为了通过待捡货物在货架层板上的存放位置适配的目标电子货架标签以向拣货员指示:待捡货物是在该货架层板上的该存放位置上,以使拣货员不用在货架上人工寻找待捡货物,进而提高拣货效率,在本申请中,需要使得待捡货物在货架层板上的存放位置适配的目标电子货架标签输出提示信息,以使拣货员根据提示信息可以迅速获知待捡货物在该货架层板上的该存放位置上,并可以迅速从该存放位置上取出待捡货物。
具体地,终端可以向待捡货物在货架层板上的存放位置适配的目标电子货架标签发送第一指令,以控制待捡货物在货架层板上的存放位置适配的目标电子货架标签输出提示信息。
为了使得终端可以向待捡货物在货架层板上的存放位置适配的目标电子货架标签发送第一指令,可以先建立与目标电子货架标签之间的通信连接,然后终端基于该通信连接可以向待捡货物在货架层板上的存放位置适配的目标电子货架标签发送第一指令。
为了建立与目标电子货架标签之间的通信连接,终端可以广播用于建立终端与目标电子货架标签之间的通信连接的建立请求,该建立请求携带目标电子货架标签的标签标识。
在步骤S106中,目标电子货架标签接收该建立请求。
在本申请中,位于广播范围内的电子货架标签均可以接收到该建立请求,各个电子货架标签 可以判断该建立请求中的标签标识是否是自己的标签标识。
如果该建立请求中的标签标识不是自己的标签标识,可以丢弃该建立请求,也即,不再对该建立请求处理,可以结束流程。
如果该建立请求中的标签标识是自己的标签标识,则继续对该建立请求处理,处理流程可以参见步骤S107。
在本申请中,多个电子货架标签中的非目标电子货架标签均会确定出该建立请求中的标签标识不是自己的标签标识,会结束流程,而多个电子货架标签中的目标电子货架标签会确定出该建立请求中的标签标识是自己的标签标识,可以根据该建立请求向终端发送用于建立终端与目标电子货架标签之间的通信连接的建立响应,从而实现建立终端与目标电子货架标签之间的通信连接。
在步骤S107中,目标电子货架标签在确定出该建立请求携带目标电子货架标签的标签标识的情况下,根据该建立请求向终端发送用于建立终端与目标电子货架标签之间的通信连接的建立响应。
在步骤S108中,终端接收该建立响应,从而完成建立终端与目标电子货架标签之间的通信连接。
之后终端基于该通信连接可以向待捡货物在货架层板上的存放位置适配的目标电子货架标签发送第一指令,以控制待捡货物在货架层板上的存放位置适配的目标电子货架标签输出提示信息,具体可以参见之后S109~S111的流程,在此不做详述。
在步骤S109中,终端基于该通信连接向目标电子货架标签发送第一指令,第一指令用于指示目标电子货架标签输出提示信息。
例如,目标电子货架标签上具有提示元件,提示元件包括发光元件以及发声元件等,发光元件包括发光指示灯等,发光指示灯包括发光二极管等,发声元件可以包括蜂鸣器或音箱等。
如此,第一指令可以用于指示目标电子货架标签通过提示元件输出提示信息,例如,第一指令可以用于指示目标电子货架标签控制发光元件发出光线和/或控制发声元件输出声音等。
在步骤S110中,目标电子货架标签接收第一指令。
在步骤S111中,目标电子货架标签根据第一指令输出提示信息。
在本申请中,目标电子货架标签可以通过提示元件输出提示信息,例如,目标电子货架标签控制发光元件发出光线和/或控制发声元件输出声音等。
在本申请中,对于拣货员而言,在拣货员位于待捡货物所在的货架所在的区域(例如拣货员位于待捡货物所在的货架旁边等)的情况下,拣货员可以很容易感知到(通过肉眼或者耳朵等)目标电子货架标签输出的提示信息(例如发光元件发出的光线和/或发声元件输出的声音),从而可以确定出待捡货物在货架上的、输出有提示信息的目标电子货架标签适配(例如对齐等)的货架层板上的存放位置,从而可以取出放置该存放位置上的货物(即待捡货物),从而完成对待捡货物的拣货。
通过本申请,为了提高拣货员的拣货效率,可以向拣货员指示待捡货物在仓库中的目标存放位置。为了向拣货员指示待捡货物在仓库中的目标存放位置,可以控制目标存放位置适配的目标电子货架标签输出提示信息。为了控制目标存放位置适配的目标电子货架标签输出提示信息,在手持终端的拣货员位于仓库中的待捡货物所在的货架所在的区域(例如拣货员位于货架附近等)的情况下,拣货员手持的终端可以直接向目标电子货架标签传输第一指令。例如,建立拣货员手持的终端与目标电子货架标签之间的点对点的通信连接,拣货员手持的终端可以基于通信连接点对点地向目标电子货架标签发送第一指令,以使目标电子货架标签接收终端点对点发送的第一指令。之后目标电子货架标签可以根据第一指令输出提示信息,这样,拣货员就可以确定出待捡货物在货架上的、输出有提示信息的目标电子货架标签适配(例如对齐等)的货架层板上的存放位置,从而可以取出放置该存放位置上的货物(即待捡货物),从而完成对待捡货物的拣货。
可见,在本申请中,终端可以不通过后台的设备等中间设备向目标电子货架标签转发第一指令,而终端可以直接向目标电子货架标签传输第一指令,从而可以缩减通信链路,提高了通信效率,例如,可以提高第一指令的传输效率,进而可以提高目标电子货架标签输出提示信息的时效性,如此可以提高拣货员的拣货效率。
另外,由于可以不依赖涉及后台的设备等中间设备的长链路,从而可以规避长链路带来的不稳定性,因此本申请可以提高数据传输的稳定性,其次,还可以节省后台的设备等中间设备的网络资源等。
其次,本申请不需要在仓库中引入大规模的硬件设备,在具备电子货架标签的仓库中均可实现本申请的方案,本申请的方案的成本较低。
在一个实施例中,仓库中的货架较多,货架与货架之间距离较小,货架排列较密集,拣货员根据终端提示的待捡货物在仓库中的目标存放位置寻找待捡货物所在的货架的难度较大,会降低 拣货效率以及会降低拣货员的拣货体验。
因此,为了避免这种情况发生,在本申请另一实施例中,目标电子货架标签上的发光元件可以竖直向上发出光束,例如,红色的光束或者绿色的光束等,光束达到仓库的天花板之后,可以在天花板上显示出具有光亮的图像,例如,具有光亮的圆形的图像等,拣货员通过在天花板上显示的光线就可以大致判定出目标电子货架标签所在的货架的位置,进而使得拣货员更加容易且更加快速寻找到目标电子货架标签所在的货架,并前往目标电子货架标签所在的货架的位置,进而可以提高拣货效率以及提高拣货员的拣货体验。
在另一个实施例中,在仓库中,有时候可能会同时有多个拣货员在拣货,此时各个拣货员需要取出的货物所在的存放位置适配的电子货架标签可能会同时分别输出的提示信息,如果各个拣货员需要取出的货物所在的存放位置适配的电子货架标签分别输出的提示信息都是相同的,则会对这些拣货员带来干扰,例如,会导致拣货员取出自己本不应该取出的货物,影响各个拣货员执行各自的拣货工作,会降低拣货效率以及会降低各个拣货员的拣货体验。
因此,为了避免这种情况发生,在本申请另一实施例中,目标电子货架标签还可以播放语音,语音包括待捡货物的货物名称、拣货员的姓名(或者拣货员的代号)以及待捡货物所属的订单的号码等等。
拣货员可以确定各个语音的来源方向,以及根据各个语音中的内容确定出哪个语音是针对自己的,从而可以确定出针对自己的语音的来源方向,根据针对自己的语音的来源方向可以确定出待捡货物适配的目标电子货架标签的方向,进而根据目标电子货架标签的方向可以快速准确地确定出待捡货物适配的目标电子货架标签,进而可以提高拣货效率以及提高拣货员的拣货体验。
其中,事先可以根据实际情况设置广播建立请求的广播功率,以调节建立请求的广播的距离范围,例如,在一种场景中,可以将广播功率设置的较小,以使在手持终端的拣货员与目标电子货架标签之间距离较近的情况下目标电子货架标签才能接收到该建立请求,之后才能建立终端与目标电子货架标签之间的通信连接,进而才能接收到第一指令,并根据第一指令输出提示信息,这样,对于拣货员而言,在拣货员与目标电子货架标签之间距离较近时,目标电子货架标签才会输出提示信息,而在拣货员与目标电子货架标签之间距离较远时,目标电子货架标签不会输出提示信息,从而可以避免耗费目标电子货架标签的能源以及尽可能得避免目标电子货架标签输出的提示信息给其他拣货员带来干扰。
进一步地,在目标电子货架标签输出提示信息的情况下,拣货员一旦感知到目标电子货架标签输出的提示信息,就会根据提示信息确定出待捡货物的存放位置,并在存放位置取出待捡货物。
其中,在拣货员感知到目标电子货架标签输出的提示信息之后,目标电子货架标签往往就可以不继续输出提示信息,否则会浪费目标电子货架标签的能源,因此,为了节省目标电子货架标签的能源,在本申请另一实施例中,参见图4,该方法还包括:
在步骤S112中,在输出提示信息之后,目标电子货架标签统计输出提示信息的持续输出时长。
在步骤S113中,在持续输出时长达到预设时长的情况下,目标电子货架标签停止输出提示信息。
预设时长可以根据实际情况设置,例如,设置3秒钟,5秒钟或者10秒钟等,避免对其他拣货员带来干扰。
然而,有时候,在一种可能的情况下,在目标电子货架标签输出提示信息的持续输出时长已经达到预设时长的情况下,在拣货员还未感知到目标电子货架标签输出的提示信息(此时未确定出待捡货物在哪个存放位置),在这种情况下,如果目标电子货架标签停止输出提示信息,则用户之后就无法根据提示信息确定出待捡货物的存放位置,这样货员只能在货架上人工寻找待捡货物,会降低拣货效率以及会降低拣货员的拣货体验。
因此,为了避免上述情况发生,在本申请另一实施例中,参见图5,该方法还包括:
在步骤S114中,终端接收拣货员输入的第一预设操作;第一预设操控用于指示终端向目标电子货架标签发送第一指令,第一指令用于指示目标电子货架标签输出提示信息。
在本申请中,在拣货员已经到达待捡货物所在的货架所在的区域的情况下,如果拣货员感知不到指示信息,拣货员可以在终端中输入第一预设操作,第一预设操作包括对终端中的特定按钮的点击操作等,当然,也可以包括其他形式的操作,本申请对此不加以限定。
在步骤S115中,终端根据第一预设操作基于该通信连接向目标电子货架标签发送第一指令。
本步骤具体可以参见步骤S109,在此不作详述。
在步骤S116中,目标电子货架标签接收第一指令。
在步骤S117中,目标电子货架标签根据第一指令输出提示信息。
本步骤具体可以参见步骤S111,在此不作详述。
通过本申请,支持拣货员手动通过终端控制目标电子货架标签再次输出提示信息,进而使得 拣货员可以根据提示信息确定出待捡货物的存放位置,以使拣货员不用在货架上人工寻找待捡货物,从而可以提高拣货效率以及提高拣货员的拣货体验。
进一步地,在目标电子货架标签根据第一指令输出提示信息之后,目标电子货架标签可以基于该通信连接向终端发送通知消息,该通知消息用于通知目标电子货架标签已经根据第一指令输出提示信息,以使终端根据该通知消息可以感知到目标电子货架标签已经根据第一指令输出提示信息,避免终端在“不知道目标电子货架标签是否提示信息而为了保证目标电子货架标签提示信息”的情况下重复向目标电子货架标签发送第一指令。
进一步地,为了节省目标电子货架标签的能源以及避免误导拣货员重复拣货等,在本申请另一实施例中,参见图6,该方法还包括:
在步骤S118中,在确定出拣货员已经取出待捡货物的情况下,终端基于该通信连接向目标电子货架标签发送第二指令,第二指令用于指示目标电子货架标签停止输出提示信息。
在一个实施例中,在拣货员在目标电子货架标签适配的存放位置上取出待捡货物之后,可以使用终端的摄像头扫描待捡货物表面上的数据码(包括二维码或者条形码等),通过图形码得到待捡货物的货物标识,然后从云端获取待捡货物的获取标识,然后可以对比通过图形码得到的待捡货物的货物标识与从云端获取的待捡货物的货物标识是否相同,在二者相同的情况下,确定拣货员取出的货物是待捡货物,也即,可以确定拣货员已经取出待捡货物,在二者不同的情况下,确定拣货员取出的不是待捡货物,也即,可以确定拣货员已经未取出待捡货物,可以输出指示信息,以指示拣货员拣错货物,请拣货员重新拣货。
在另一个实施例中,在拣货员取出待捡货物之后,拣货员可以在终端上输入第二预设操作,第二预设操作包括对终端上的预设按键的点击操作、向终端输入预设语音的属于操作以及改变终端的姿态的改变操作等,改变操作包括对终端“摇一摇”等操作。终端在接收到第二预设操作之后,可以获知拣货员已经取出待捡货物。
其中,本申请对具体的第二预设操作不做限定。
第二指令可以与第一指令相对应,例如,第一指令用于指示目标电子货架标签输出什么样的提示信息,则第二指令可以用于指示目标电子货架标签停止输出什么样的指示信息。
在一个例子中,第一指令可以用于指示目标电子货架标签通过提示元件输出提示信息,例如,第一指令可以用于指示目标电子货架标签控制发光元件发出光线和/或控制发声元件输出声音等。如此,第二指令可以用于指示目标电子货架标签停止通过提示元件输出提示信息,例如,第二指令可以用于指示目标电子货架标签控制发光元件停止发出光线和/或控制发声元件停止输出声音等。
在步骤S119中,目标电子货架标签接收第二指令。
在步骤S120中,目标电子货架标签根据第二指令停止输出提示信息。
目标电子货架标签可以停止通过提示元件输出提示信息,例如,目标电子货架标签控制发光元件可以停止发出光线和/或控制发声元件停止输出声音等,例如,目标电子货架标签关闭发光指示灯或者关闭蜂鸣器等。
进一步地,在确定出拣货员已经取出待捡货物的情况下,可以针对其他待捡货物继续执行上述流程,在此不做详述。
进一步地,在本申请中,在拣货员取出待捡货物之后,拣货员往往会离开待捡货物所在货架所在的区域而前往其他地方,例如,继续前往其他地方对其他货物拣货或者前往打包处将已经取出的货物打包等。在这种情况下,拣货员手持的终端与目标电子货架标签之间的通信连接在之后也就没有作用了,也就没有必要继续维护拣货员手持的终端与目标电子货架标签之间的通信连接,否则会耗费网络资源以及通信连接所占用的终端端口资源等。
由于拣货员会离开待捡货物所在货架所在的区域而前往其他地方,因此,拣货员手持的终端与目标电子货架标签之间距离会变远,且会超出拣货员手持的终端与目标电子货架标签之间的通信连接的所能支持的距离,这样,由于距离过大,拣货员手持的终端与目标电子货架标签之间就无法进行数据交互。
这样,终端无法检测到目标电子货架标签的心跳,目标电子货架标签也无法检测到终端的心跳,如此,终端或目标电子货架标签可以主动断开终端与目标电子货架标签之间的通信连接。
参照图7,示出了本申请的一种基于数据处理系统的数据处理方法,该方法应用于图1所述的系统中,该方法包括:
在步骤S201中,云端获取拣货任务。该拣货任务中至少包括待捡货物在仓库中的目标存放位置适配的目标电子货架标签的标签标识。
本申请中的存放位置包括:仓库中的货架的货架标识、货架中的货架层板的层板标识以及货架层板上的存放位置的位置标识等。货架层板上的存放位置的位置标识可以包括存放位置在货架 层板上的宽度的维度上的偏移坐标等。
其中,仓库中的不同的货架的货架标识不同,同一个货架中的不同的货架层板的层板标识不同,同一个货架层板上的不同的存放位置的位置标识不同。
其中,待捡货物位于仓库中的其中一个货架中的其中一个货架层板上的其中一个存放位置,因此,目标存放位置可以包括:该其中一个货架的货架标识、该其中一个货架层板的层板标识以及该其中一个存放位置等。
在本申请中,在客户在线上购物的情况下,客户可以向云端提交订单(例如购物订单)等,订单中包括待捡货物(例如包括客户购买的货物等)的货物标识(可以包括货物名称或货物编号等),云端接收到订单之后,可以根据订单中的待捡货物的货物标识获取待捡货物在仓库中的目标存放位置,以及获取目标存放位置适配的目标电子货架标签的标签标识。
之后云端可以至少根据待捡货物在仓库中的目标存放位置适配的目标电子货架标签的标签标识生成拣货任务,然后可以将该拣货任务分配给拣货员(例如,向拣货员的终端发送该拣货任务等),以供拣货员在仓库中取出待捡货物,并将待捡货物打包邮寄给客户。
其中,对于仓库中存放的任意一个货物,云端事先可以获取该货物在仓库中的存放位置以及该存放位置适配的电子货架标签的标签标识,然后将该货物的货物标识、该货物在仓库中的存放位置以及该存放位置适配的电子货架标签的标签标识组成对应表项,并存储在货物标识、存放位置与标签标识的三者之间的对应关系中。
其中,该存放位置适配的电子货架标签包括:在货架层板的宽度的维度上的侧面上设置的、与电子货架标签在竖直方向上对齐的电子货架标签等。
其中,不同的货物的货物标识不同,不同的电子货架标签的标签标识不同。
如此,在云端需要根据待捡货物的货物标识获取待捡货物在仓库中的目标存放位置时,云端可以在货物标识、存放位置与标签标识的三者之间的对应关系中,查找与待捡货物的货物标识相对应的存放位置,并作为待捡货物在仓库中的目标存放位置。
以及,在云端需要获取目标存放位置适配的目标电子货架标签的标签标识时,可以在货物标识、存放位置与标签标识的三者之间的对应关系中,查找与目标位置相对应的标签标识,并作为目标存放位置适配的目标电子货架标签的标签标识。
在本申请另一实施例中,该拣货任务中还可以包括待捡货物在仓库中的目标存放位置。
在步骤S202中,云端向终端发送该拣货任务。
其中,终端可以包括拣货员手持的终端等,如此,云端向终端发送该拣货任务之后,拣货员通过终端可以得知该拣货任务。
在步骤S203中,终端接收该拣货任务。
在步骤S204中,终端在该拣货任务中提取出待捡货物在仓库中的目标存放位置适配的目标电子货架标签的标签标识。
在步骤S205中,终端广播第一指令,第一指令用于指示目标电子货架标签输出提示信息,第一指令携带目标电子货架标签的标签标识。
进一步地,在该拣货任务中还包括待捡货物在仓库中的目标存放位置的情况下,终端还可以在该拣货任务中提取出待捡货物在仓库中的目标存放位置,并提示待捡货物在仓库中的目标存放位置。
在本申请中,该拣货任务用于指示拣货员从仓库中取出待捡货物,假设待捡货物在仓库中的某一个货架中的某一货架层板上的某一存放位置,则该拣货任务中的目标存放位置可以包括该货架的货架标识、该货架层板的层板标识以及该存放位置的坐标信息等,终端可以从该拣货任务中提取出该货架的货架标识、该货架层板的层板标识以及该存放位置的坐标信息等,然后通过该货架的货架标识获取该货架的位置信息,并根据该货架的位置信息指引拣货员前往该货架所在区域,以便拣货员从该货架上取出待捡货物。
例如,终端可以在屏幕上显示待捡货物在仓库中的目标存放位置,或者,显示从拣货员的当前位置前往待捡货物在仓库中的目标存放位置的路径图,以指引拣货员前往该货架所在区域。
另外,为了通过待捡货物在货架层板上的存放位置适配的目标电子货架标签以向拣货员指示:待捡货物是在该货架层板上的该存放位置上,以使拣货员不用在货架上人工寻找待捡货物,进而提高拣货效率,在本申请中,需要使得待捡货物在货架层板上的存放位置适配的目标电子货架标签输出提示信息,以使拣货员根据提示信息可以迅速获知待捡货物在该货架层板上的该存放位置上,并可以迅速从该存放位置上取出待捡货物。
具体地,终端可以向待捡货物在货架层板上的存放位置适配的目标电子货架标签发送第一指令,以控制待捡货物在货架层板上的存放位置适配的目标电子货架标签输出提示信息。
其中,终端可以广播第一指令,目标电子货架标签可以接收到终端广播的第一指令。
例如,目标电子货架标签上具有提示元件,提示元件包括发光元件以及发声元件等,发光元件包括发光指示灯等,发光指示灯包括发光二极管等,发声元件可以包括蜂鸣器或音箱等。
如此,第一指令可以用于指示目标电子货架标签通过提示元件输出提示信息,例如,第一指令可以用于指示目标电子货架标签控制发光元件发出光线和/或控制发声元件输出声音等。
在本申请中,位于广播范围内的电子货架标签均可以接收到第一指令,各个电子货架标签可以判断第一指令中的标签标识是否是自己的标签标识。
如果第一指令中的标签标识不是自己的标签标识,可以丢弃第一指令,也即,不再对第一指令处理,可以结束流程。
如果第一指令中的标签标识是自己的标签标识,则继续对第一指令处理,处理流程可以参见步骤S207。
在本申请中,多个电子货架标签中的非目标电子货架标签均会确定出第一指令中的标签标识不是自己的标签标识,会结束流程,而多个电子货架标签中的目标电子货架标签会确定出第一指令的标签标识是自己的标签标识,可以根据第一指令输出提示信息。
在步骤S206中,目标电子货架标签接收第一指令。
在步骤S207中,目标电子货架标签根据第一指令输出提示信息。
在本申请中,目标电子货架标签可以通过提示元件输出提示信息,例如,目标电子货架标签控制发光元件发出光线和/或控制发声元件输出声音等。
在本申请中,对于拣货员而言,在拣货员位于待捡货物所在的货架所在的区域(例如拣货员位于待捡货物所在的货架旁边等)的情况下,拣货员可以很容易感知到(通过肉眼或者耳朵等)目标电子货架标签输出的提示信息(例如发光元件发出的光线和/或发声元件输出的声音),从而可以确定出待捡货物在货架上的、输出有提示信息的目标电子货架标签适配(例如对齐等)的货架层板上的存放位置,从而可以取出放置该存放位置上的货物(即待捡货物),从而完成对待捡货物的拣货。
通过本申请,为了提高拣货员的拣货效率,可以向拣货员指示待捡货物在仓库中的目标存放位置。为了向拣货员指示待捡货物在仓库中的目标存放位置,可以控制目标存放位置适配的目标电子货架标签输出提示信息。为了控制目标存放位置适配的目标电子货架标签输出提示信息,在手持终端的拣货员位于仓库中的待捡货物所在的货架所在的区域(例如拣货员位于货架附近等)的情况下,拣货员手持的终端可以直接向目标电子货架标签传输第一指令。例如,拣货员手持的终端可以直接广播第一指令,以使目标电子货架标签接收终端广播的第一指令。之后目标电子货架标签可以根据第一指令输出提示信息,这样,拣货员就可以确定出待捡货物在货架上的、输出有提示信息的目标电子货架标签适配(例如对齐等)的货架层板上的存放位置,从而可以取出放置该存放位置上的货物(即待捡货物),从而完成对待捡货物的拣货。
可见,在本申请中,终端可以不通过后台的设备等中间设备向目标电子货架标签转发第一指令,而终端可以直接向目标电子货架标签传输第一指令,从而可以缩减通信链路,提高了通信效率,例如,可以提高第一指令的传输效率,进而可以提高目标电子货架标签输出提示信息的时效性,如此可以提高拣货员的拣货效率。
另外,由于可以不依赖涉及后台的设备等中间设备的长链路,从而可以规避长链路带来的不稳定性,因此本申请可以提高数据传输的稳定性,其次,还可以节省后台的设备等中间设备的网络资源等。
其次,本申请不需要在仓库中引入大规模的硬件设备,在具备电子货架标签的仓库中均可实现本申请的方案,本申请的方案的成本较低。
在一个实施例中,仓库中的货架较多,货架与货架之间距离较小,货架排列较密集,拣货员根据终端提示的待捡货物在仓库中的目标存放位置寻找待捡货物所在的货架的难度较大,会降低拣货效率以及会降低拣货员的拣货体验。
因此,为了避免这种情况发生,在本申请另一实施例中,目标电子货架标签上的发光元件可以竖直向上发出光束,例如,红色的光束或者绿色的光束等,光束达到仓库的天花板之后,可以在天花板上显示出具有光亮的图像,例如,具有光亮的圆形的图像等,拣货员通过在天花板上显示的光线就可以大致判定出目标电子货架标签所在的货架的位置,进而使得拣货员更加容易且更加快速寻找到目标电子货架标签所在的货架,并前往目标电子货架标签所在的货架的位置,进而可以提高拣货效率以及提高拣货员的拣货体验。
在另一个实施例中,在仓库中,有时候可能会同时有多个拣货员在拣货,此时各个拣货员需要取出的货物所在的存放位置适配的电子货架标签可能会同时分别输出的提示信息,如果各个拣货员需要取出的货物所在的存放位置适配的电子货架标签分别输出的提示信息都是相同的,则会对这些拣货员带来干扰,例如,会导致拣货员取出自己本不应该取出的货物,影响各个拣货员执 行各自的拣货工作,会降低拣货效率以及会降低各个拣货员的拣货体验。
因此,为了避免这种情况发生,在本申请另一实施例中,目标电子货架标签还可以播放语音,语音包括待捡货物的货物名称、拣货员的姓名(或者拣货员的代号)以及待捡货物所属的订单的号码等等。
拣货员可以确定各个语音的来源方向,以及根据各个语音中的内容确定出哪个语音是针对自己的,从而可以确定出针对自己的语音的来源方向,根据针对自己的语音的来源方向可以确定出待捡货物适配的目标电子货架标签的方向,进而根据目标电子货架标签的方向可以快速准确地确定出待捡货物适配的目标电子货架标签,进而可以提高拣货效率以及提高拣货员的拣货体验。
其中,事先可以根据实际情况设置广播第一指令的广播功率,以调节第一指令的广播的距离范围,例如,在一种场景中,可以将广播功率设置的较小,以使在手持终端的拣货员与目标电子货架标签之间距离较近的情况下目标电子货架标签才能接收到第一指令,并根据第一指令输出提示信息,这样,对于拣货员而言,在拣货员与目标电子货架标签之间距离较近时,目标电子货架标签才会输出提示信息,而在拣货员与目标电子货架标签之间距离较远时,目标电子货架标签不会输出提示信息,从而可以避免耗费目标电子货架标签的能源以及尽可能得避免目标电子货架标签输出的提示信息给其他拣货员带来干扰。
然而,有时候,在一种可能的情况下,在目标电子货架标签输出提示信息的持续输出时长已经达到预设时长的情况下,在拣货员还未感知到目标电子货架标签输出的提示信息(此时未确定出待捡货物在哪个存放位置),在这种情况下,如果目标电子货架标签停止输出提示信息,则用户之后就无法根据提示信息确定出待捡货物的存放位置,这样货员只能在货架上人工寻找待捡货物,会降低拣货效率以及会降低拣货员的拣货体验。
因此,为了避免上述情况发生,在本申请另一实施例中,参见图8,该方法还包括:
在步骤S208中,终端接收拣货员输入的第一预设操作;第一预设操控用于指示终端广播第一指令,第一指令用于指示目标电子货架标签输出提示信息。第一指令携带目标电子货架标签的标签标识。
在本申请中,在拣货员已经到达待捡货物所在的货架所在的区域的情况下,如果拣货员感知不到指示信息,拣货员可以在终端中输入第一预设操作,第一预设操作包括对终端中的特定按钮的点击操作等,当然,也可以包括其他形式的操作,本申请对此不加以限定。
在步骤S209中,终端广播第一指令。
本步骤具体可以参见步骤S205,在此不作详述。
在步骤S210中,目标电子货架标签接收第一指令。
在步骤S211中,目标电子货架标签根据第一指令输出提示信息。
本步骤具体可以参见步骤S207,在此不作详述。
通过本申请,支持拣货员手动通过终端控制目标电子货架标签再次输出提示信息,进而使得拣货员可以根据提示信息确定出待捡货物的存放位置,以使拣货员不用在货架上人工寻找待捡货物,从而可以提高拣货效率以及提高拣货员的拣货体验。
进一步地,在目标电子货架标签根据第一指令输出提示信息之后,目标电子货架标签广播通知消息,该通知消息用于通知目标电子货架标签已经根据第一指令输出提示信息,终端可以接收该通知消息,并根据该通知消息可以感知到目标电子货架标签已经根据第一指令输出提示信息,避免终端在“不知道目标电子货架标签是否提示信息而为了保证目标电子货架标签提示信息”的情况下重复向广播第一指令。
进一步地,为了节省目标电子货架标签的能源以及避免误导拣货员重复拣货等,在本申请另一实施例中,参见图9,该方法还包括:
在步骤S212中,在确定出拣货员已经取出待捡货物的情况下,终端广播第二指令,第二指令用于指示目标电子货架标签停止输出提示信息,第一指令携带目标电子货架标签的标签标识。
在一个实施例中,在拣货员在目标电子货架标签适配的存放位置上取出待捡货物之后,可以使用终端的摄像头扫描待捡货物表面上的数据码(包括二维码或者条形码等),通过图形码得到待捡货物的货物标识,然后从云端获取待捡货物的获取标识,然后可以对比通过图形码得到的待捡货物的货物标识与从云端获取的待捡货物的货物标识是否相同,在二者相同的情况下,确定拣货员取出的货物是待捡货物,也即,可以确定拣货员已经取出待捡货物,在二者不同的情况下,确定拣货员取出的不是待捡货物,也即,可以确定拣货员已经未取出待捡货物,可以输出指示信息,以指示拣货员拣错货物,请拣货员重新拣货。
在另一个实施例中,在拣货员取出待捡货物之后,拣货员可以在终端上输入第二预设操作,第二预设操作包括对终端上的预设按键的点击操作、向终端输入预设语音的属于操作以及改变终端的姿态的改变操作等,改变操作包括对终端“摇一摇”等操作。终端在接收到第二预设操作之 后,可以获知拣货员已经取出待捡货物。
其中,本申请对具体的第二预设操作不做限定。
第二指令可以与第一指令相对应,例如,第一指令用于指示目标电子货架标签输出什么样的提示信息,则第二指令可以用于指示目标电子货架标签停止输出什么样的指示信息。
在一个例子中,第一指令可以用于指示目标电子货架标签通过提示元件输出提示信息,例如,第一指令可以用于指示目标电子货架标签控制发光元件发出光线和/或控制发声元件输出声音等。如此,第二指令可以用于指示目标电子货架标签停止通过提示元件输出提示信息,例如,第二指令可以用于指示目标电子货架标签控制发光元件停止发出光线和/或控制发声元件停止输出声音等。
在步骤S213中,目标电子货架标签接收第二指令。
在步骤S214中,目标电子货架标签根据第二指令停止输出提示信息。
目标电子货架标签可以停止通过提示元件输出提示信息,例如,目标电子货架标签控制发光元件可以停止发出光线和/或控制发声元件停止输出声音等,例如,目标电子货架标签关闭发光指示灯或者关闭蜂鸣器等。
进一步地,在确定出拣货员已经取出待捡货物的情况下,可以针对其他待捡货物继续执行上述流程,在此不做详述。
需要说明的是,对于方法实施例,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本申请并不受所描述的动作顺序的限制,因为依据本申请,某些步骤可以采用其他顺序或者同时进行。其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于可选实施例,所涉及的动作并不一定是本申请所必须的。
参照图10,示出了本申请的一种基于数据处理系统的数据处理装置的结构框图,该方法应用于图1所示的云端中,该装置具体可以包括如下模块:
获取模块11,用于获取拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;第一发送模块12,用于向终端发送所述拣货任务,以使所述终端根据所述标签标识向所述目标电子货架标签传输第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签根据所述第一指令输出提示信息。
通过本申请,为了提高拣货员的拣货效率,可以向拣货员指示待捡货物在仓库中的目标存放位置。为了向拣货员指示待捡货物在仓库中的目标存放位置,可以控制目标存放位置适配的目标电子货架标签输出提示信息。为了控制目标存放位置适配的目标电子货架标签输出提示信息,在手持终端的拣货员位于仓库中的待捡货物所在的货架所在的区域(例如拣货员位于货架附近等)的情况下,拣货员手持的终端可以直接向目标电子货架标签传输第一指令。例如,建立拣货员手持的终端与目标电子货架标签之间的点对点的通信连接,拣货员手持的终端可以基于通信连接点对点地向目标电子货架标签发送第一指令,以使目标电子货架标签接收终端点对点发送的第一指令。或者,拣货员手持的终端可以直接广播第一指令,以使目标电子货架标签接收终端广播的第一指令。之后目标电子货架标签可以根据第一指令输出提示信息,这样,拣货员就可以确定出待捡货物在货架上的、输出有提示信息的目标电子货架标签适配(例如对齐等)的货架层板上的存放位置,从而可以取出放置该存放位置上的货物(即待捡货物),从而完成对待捡货物的拣货。可见,在本申请中,终端可以不通过后台的设备等中间设备向目标电子货架标签转发第一指令,而终端可以直接向目标电子货架标签传输第一指令,从而可以缩减通信链路,提高了通信效率,例如,可以提高第一指令的传输效率,进而可以提高目标电子货架标签输出提示信息的时效性,如此可以提高拣货员的拣货效率。另外,由于可以不依赖涉及后台的设备等中间设备的长链路,从而可以规避长链路带来的不稳定性,因此本申请可以提高数据传输的稳定性,其次,还可以节省后台的设备等中间设备的网络资源等。其次,本申请不需要在仓库中引入大规模的硬件设备,在具备电子货架标签的仓库中均可实现本申请的方案,本申请的方案的成本较低。
本申请中的基于数据处理系统的数据处理方法可以应用于在物流领域以及仓储领域,当然,也可以用于在其他可行的领域中,本申请对具体的应用领域不做限定。
参照图11,示出了本申请的一种基于数据处理系统的数据处理装置的结构框图,该方法应用于图1所示的终端中,该装置具体可以包括如下模块:
第一接收模块21,用于接收云端发送的拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;第一广播模块22,用于广播用于建立所述终端与所述目标电子货架标签之间的通信连接的建立请求;所述建立请求携带所述目标电子货架标签的标签标识;第二接收模块23,用于接收在所述目标电子货架标签确定出所述建立请求携带所述目标电子货架标签的标签标识的情况下、所述目标电子货架标签根据所述建立请求返回的、用于建立所述终端与所述目标电子货架标签之间的通信连接的建立响应,从而实现建立所述终端与 所述目标电子货架标签之间的通信连接;第二发送模块24,用于基于所述通信连接向所述目标电子货架标签发送第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签根据所述第一指令输出提示信息。
通过本申请,为了提高拣货员的拣货效率,可以向拣货员指示待捡货物在仓库中的目标存放位置。为了向拣货员指示待捡货物在仓库中的目标存放位置,可以控制目标存放位置适配的目标电子货架标签输出提示信息。为了控制目标存放位置适配的目标电子货架标签输出提示信息,在手持终端的拣货员位于仓库中的待捡货物所在的货架所在的区域(例如拣货员位于货架附近等)的情况下,拣货员手持的终端可以直接向目标电子货架标签传输第一指令。例如,建立拣货员手持的终端与目标电子货架标签之间的点对点的通信连接,拣货员手持的终端可以基于通信连接点对点地向目标电子货架标签发送第一指令,以使目标电子货架标签接收终端点对点发送的第一指令。之后目标电子货架标签可以根据第一指令输出提示信息,这样,拣货员就可以确定出待捡货物在货架上的、输出有提示信息的目标电子货架标签适配(例如对齐等)的货架层板上的存放位置,从而可以取出放置该存放位置上的货物(即待捡货物),从而完成对待捡货物的拣货。可见,在本申请中,终端可以不通过后台的设备等中间设备向目标电子货架标签转发第一指令,而终端可以直接向目标电子货架标签传输第一指令,从而可以缩减通信链路,提高了通信效率,例如,可以提高第一指令的传输效率,进而可以提高目标电子货架标签输出提示信息的时效性,如此可以提高拣货员的拣货效率。另外,由于可以不依赖涉及后台的设备等中间设备的长链路,从而可以规避长链路带来的不稳定性,因此本申请可以提高数据传输的稳定性,其次,还可以节省后台的设备等中间设备的网络资源等。其次,本申请不需要在仓库中引入大规模的硬件设备,在具备电子货架标签的仓库中均可实现本申请的方案,本申请的方案的成本较低。
参照图12,示出了本申请的一种基于数据处理系统的数据处理装置的结构框图,该方法应用于图1所示的多个电子货架标签中的目标电子货架标签,该装置具体可以包括如下模块:
第三接收模块31,用于接收终端广播的用于建立所述终端与所述目标电子货架标签之间的通信连接的建立请求,所述建立请求携带所述目标电子货架标签的标签标识;其中,所述建立请求是所述终端在接收到云端发送的拣货任务的情况下广播的,所述拣货任务中包括待捡货物在仓库中的存放位置适配的所述目标电子货架标签的标签标识;第三发送模块32,用于在确定出所述建立请求携带所述目标电子货架标签的标签标识的情况下,根据所述建立请求向所述终端发送用于建立所述终端与所述目标电子货架标签之间的通信连接的建立响应,从而实现建立所述终端与所述目标电子货架标签之间的通信连接;第四接收模块33,用于接收所述终端基于所述通信连接发送的第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息;第一输出模块34,用于根据所述第一指令输出提示信息。
通过本申请,为了提高拣货员的拣货效率,可以向拣货员指示待捡货物在仓库中的目标存放位置。为了向拣货员指示待捡货物在仓库中的目标存放位置,可以控制目标存放位置适配的目标电子货架标签输出提示信息。为了控制目标存放位置适配的目标电子货架标签输出提示信息,在手持终端的拣货员位于仓库中的待捡货物所在的货架所在的区域(例如拣货员位于货架附近等)的情况下,拣货员手持的终端可以直接向目标电子货架标签传输第一指令。例如,建立拣货员手持的终端与目标电子货架标签之间的点对点的通信连接,拣货员手持的终端可以基于通信连接点对点地向目标电子货架标签发送第一指令,以使目标电子货架标签接收终端点对点发送的第一指令。捡货物在货架上的、输出有提示信息的目标电子货架标签适配(例如对齐等)的货架层板上的存放位置,从而可以取出放置该存放位置上的货物(即待捡货物),从而完成对待捡货物的拣货。可见,在本申请中,终端可以不通过后台的设备等中间设备向目标电子货架标签转发第一指令,而终端可以直接向目标电子货架标签传输第一指令,从而可以缩减通信链路,提高了通信效率,例如,可以提高第一指令的传输效率,进而可以提高目标电子货架标签输出提示信息的时效性,如此可以提高拣货员的拣货效率。另外,由于可以不依赖涉及后台的设备等中间设备的长链路,从而可以规避长链路带来的不稳定性,因此本申请可以提高数据传输的稳定性,其次,还可以节省后台的设备等中间设备的网络资源等。其次,本申请不需要在仓库中引入大规模的硬件设备,在具备电子货架标签的仓库中均可实现本申请的方案,本申请的方案的成本较低。
参照图13,示出了本申请的一种基于数据处理系统的数据处理装置的结构框图,该方法应用于图1所示的终端中,该装置具体可以包括如下模块:
第五接收模块41,用于接收云端发送的拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;第二广播模块42,用于广播第一指令,所述第一指令携带所述目标电子货架标签的标签标识,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签在确定出所述第一指令携带所述目标电子货架标签的标签标识的情况下,根据所述第一指令输出提示信息。
通过本申请,为了提高拣货员的拣货效率,可以向拣货员指示待捡货物在仓库中的目标存放位置。为了向拣货员指示待捡货物在仓库中的目标存放位置,可以控制目标存放位置适配的目标电子货架标签输出提示信息。为了控制目标存放位置适配的目标电子货架标签输出提示信息,在手持终端的拣货员位于仓库中的待捡货物所在的货架所在的区域(例如拣货员位于货架附近等)的情况下,拣货员手持的终端可以直接向目标电子货架标签传输第一指令。例如,拣货员手持的终端可以直接广播第一指令,以使目标电子货架标签接收终端广播的第一指令。之后目标电子货架标签可以根据第一指令输出提示信息,这样,拣货员就可以确定出待捡货物在货架上的、输出有提示信息的目标电子货架标签适配(例如对齐等)的货架层板上的存放位置,从而可以取出放置该存放位置上的货物(即待捡货物),从而完成对待捡货物的拣货。可见,在本申请中,终端可以不通过后台的设备等中间设备向目标电子货架标签转发第一指令,而终端可以直接向目标电子货架标签传输第一指令,从而可以缩减通信链路,提高了通信效率,例如,可以提高第一指令的传输效率,进而可以提高目标电子货架标签输出提示信息的时效性,如此可以提高拣货员的拣货效率。另外,由于可以不依赖涉及后台的设备等中间设备的长链路,从而可以规避长链路带来的不稳定性,因此本申请可以提高数据传输的稳定性,其次,还可以节省后台的设备等中间设备的网络资源等。其次,本申请不需要在仓库中引入大规模的硬件设备,在具备电子货架标签的仓库中均可实现本申请的方案,本申请的方案的成本较低。
参照图14,示出了本申请的一种基于数据处理系统的数据处理装置的结构框图,该方法应用于图1所示的多个电子货架标签中的目标电子货架标签中,该装置具体可以包括如下模块:
第六接收模块51,用于接收终端广播的第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,其中,所述第一指令是所述终端在接收到云端发送的拣货任务的情况下广播的,所述拣货任务中包括待捡货物在仓库中的存放位置适配的所述目标电子货架标签的标签标识;所述第一指令携带所述目标电子货架标签的标签标识;第二输出模块52,用于在确定出所述第一指令携带所述目标电子货架标签的标签标识的情况下,根据所述第一指令输出提示信息。
通过本申请,为了提高拣货员的拣货效率,可以向拣货员指示待捡货物在仓库中的目标存放位置。为了向拣货员指示待捡货物在仓库中的目标存放位置,可以控制目标存放位置适配的目标电子货架标签输出提示信息。为了控制目标存放位置适配的目标电子货架标签输出提示信息,在手持终端的拣货员位于仓库中的待捡货物所在的货架所在的区域(例如拣货员位于货架附近等)的情况下,拣货员手持的终端可以直接向目标电子货架标签传输第一指令。拣货员手持的终端可以直接广播第一指令,以使目标电子货架标签接收终端广播的第一指令。之后目标电子货架标签可以根据第一指令输出提示信息,这样,拣货员就可以确定出待捡货物在货架上的、输出有提示信息的目标电子货架标签适配(例如对齐等)的货架层板上的存放位置,从而可以取出放置该存放位置上的货物(即待捡货物),从而完成对待捡货物的拣货。可见,在本申请中,终端可以不通过后台的设备等中间设备向目标电子货架标签转发第一指令,而终端可以直接向目标电子货架标签传输第一指令,从而可以缩减通信链路,提高了通信效率,例如,可以提高第一指令的传输效率,进而可以提高目标电子货架标签输出提示信息的时效性,如此可以提高拣货员的拣货效率。另外,由于可以不依赖涉及后台的设备等中间设备的长链路,从而可以规避长链路带来的不稳定性,因此本申请可以提高数据传输的稳定性,其次,还可以节省后台的设备等中间设备的网络资源等。其次,本申请不需要在仓库中引入大规模的硬件设备,在具备电子货架标签的仓库中均可实现本申请的方案,本申请的方案的成本较低。
对于装置实施例而言,由于其与方法实施例基本相似,所以描述的比较简单,相关之处参见方法实施例的部分说明即可。
本申请实施例还提供了一种非易失性可读存储介质,该存储介质中存储有一个或多个模块(programs),该一个或多个模块被应用在设备时,可以使得该设备执行本申请实施例中各方法步骤的指令(instructions)。
本申请实施例提供了一个或多个机器可读介质,其上存储有指令,当由一个或多个处理器执行时,使得电子设备执行如上述实施例中一个或多个所述的方法。本申请实施例中,所述电子设备包括服务器、网关、子设备等,子设备为物联网设备等设备。
本公开的实施例可被实现为使用任意适当的硬件,固件,软件,或及其任意组合进行想要的配置的装置,该装置可包括服务器(集群)、终端设备如IoT设备等电子设备。
图15示意性地示出了可被用于实现本申请中所述的各个实施例的示例性装置1300。
对于一个实施例,图15示出了示例性装置1300,该装置具有一个或多个处理器1302、被耦合到(一个或多个)处理器1302中的至少一个的控制模块(芯片组)1304、被耦合到控制模块1304的存储器1306、被耦合到控制模块1304的非易失性存储器(NVM)/存储设备1308、被耦合到控制模块1304的一个或多个输入/输出设备1310,和被耦合到控制模块1306的网络接口1312。
处理器1302可包括一个或多个单核或多核处理器,处理器1302可包括通用处理器或专用处理器(例如图形处理器、应用处理器、基频处理器等)的任意组合。在一些实施例中,装置1300能够作为本申请实施例中所述网关等服务器设备。
在一些实施例中,装置1300可包括具有指令1314的一个或多个计算机可读介质(例如,存储器1306或NVM/存储设备1308)和与该一个或多个计算机可读介质相合并被配置为执行指令1314以实现模块从而执行本公开中所述的动作的一个或多个处理器1302。
对于一个实施例,控制模块1304可包括任意适当的接口控制器,以向(一个或多个)处理器1302中的至少一个和/或与控制模块1304通信的任意适当的设备或组件提供任意适当的接口。
控制模块1304可包括存储器控制器模块,以向存储器1306提供接口。存储器控制器模块可以是硬件模块、软件模块和/或固件模块。
存储器1306可被用于例如为装置1300加载和存储数据和/或指令1314。对于一个实施例,存储器1306可包括任意适当的易失性存储器,例如,适当的DRAM。在一些实施例中,存储器1306可包括双倍数据速率类型四同步动态随机存取存储器(DDR4SDRAM)。
对于一个实施例,控制模块1304可包括一个或多个输入/输出控制器,以向NVM/存储设备1308及(一个或多个)输入/输出设备1310提供接口。
例如,NVM/存储设备1308可被用于存储数据和/或指令1314。NVM/存储设备1308可包括任意适当的非易失性存储器(例如,闪存)和/或可包括任意适当的(一个或多个)非易失性存储设备(例如,一个或多个硬盘驱动器(HDD)、一个或多个光盘(CD)驱动器和/或一个或多个数字通用光盘(DVD)驱动器)。
NVM/存储设备1308可包括在物理上作为装置1300被安装在其上的设备的一部分的存储资源,或者其可被该设备访问可不必作为该设备的一部分。例如,NVM/存储设备1308可通过网络经由(一个或多个)输入/输出设备1310进行访问。
(一个或多个)输入/输出设备1310可为装置1300提供接口以与任意其他适当的设备通信,输入/输出设备1310可以包括通信组件、拼音组件、传感器组件等。网络接口1312可为装置1300提供接口以通过一个或多个网络通信,装置1300可根据一个或多个无线网络标准和/或协议中的任意标准和/或协议来与无线网络的一个或多个组件进行无线通信,例如接入基于通信标准的无线网络,如WiFi、2G、3G、4G、5G等,或它们的组合进行无线通信。
对于一个实施例,(一个或多个)处理器1302中的至少一个可与控制模块1304的一个或多个控制器(例如,存储器控制器模块)的逻辑封装在一起。对于一个实施例,(一个或多个)处理器1302中的至少一个可与控制模块1304的一个或多个控制器的逻辑封装在一起以形成系统级封装(SiP)。对于一个实施例,(一个或多个)处理器1302中的至少一个可与控制模块1304的一个或多个控制器的逻辑集成在同一模具上。对于一个实施例,(一个或多个)处理器1302中的至少一个可与控制模块1304的一个或多个控制器的逻辑集成在同一模具上以形成片上系统(SoC)。
在各个实施例中,装置1300可以但不限于是:服务器、台式计算设备或移动计算设备(例如,膝上型计算设备、手持计算设备、平板电脑、上网本等)等终端设备。在各个实施例中,装置1300可具有更多或更少的组件和/或不同的架构。例如,在一些实施例中,装置1300包括一个或多个摄像机、键盘、液晶显示器(LCD)屏幕(包括触屏显示器)、非易失性存储器端口、多个天线、图形芯片、专用集成电路(ASIC)和扬声器。
本申请实施例提供了一种电子设备,包括:一个或多个处理器;和,其上存储有指令的一个或多个机器可读介质,当由所述一个或多个处理器执行时,使得所述电子设备执行如本申请中一个或多个所述的基于数据处理系统的数据处理方法。
对于装置实施例而言,由于其与方法实施例基本相似,所以描述的比较简单,相关之处参见方法实施例的部分说明即可。
本说明书中的各个实施例均采用递进的方式描述,每个实施例重点说明的都是与其他实施例的不同之处,各个实施例之间相同相似的部分互相参见即可。
本申请实施例是参照根据本申请实施例的方法、终端设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、和流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理终端设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理终端设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理终端设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理终端设备上,使得在计算机或其他可编程终端设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程终端设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
尽管已描述了本申请实施例的优选实施例,但本领域内的技术人员一旦得知了基本创造性概念,则可对这些实施例做出另外的变更和修改。所以,所附权利要求意欲解释为包括优选实施例和落入本申请实施例范围的所有变更和修改。
最后,还需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者终端设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者终端设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法、物品或者终端设备中还存在另外的相同要素。
以上对本申请所提供的一种基于数据处理系统的数据处理方法及装置,进行了详细介绍,本文中应用了具体个例对本申请的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本申请的方法及其核心思想;同时,对于本领域的一般技术人员,依据本申请的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本申请的限制。

Claims (13)

  1. 一种基于数据处理系统的数据处理方法,其特征在于,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述云端,所述方法包括:
    获取拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;
    向终端发送所述拣货任务,以使所述终端根据所述标签标识向所述目标电子货架标签传输第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签根据所述第一指令输出提示信息。
  2. 一种基于数据处理系统的数据处理方法,其特征在于,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述终端,所述方法包括:
    接收云端发送的拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;
    广播用于建立所述终端与所述目标电子货架标签之间的通信连接的建立请求;所述建立请求携带所述目标电子货架标签的标签标识;
    接收在所述目标电子货架标签确定出所述建立请求携带所述目标电子货架标签的标签标识的情况下、所述目标电子货架标签根据所述建立请求返回的、用于建立所述终端与所述目标电子货架标签之间的通信连接的建立响应,从而实现建立所述终端与所述目标电子货架标签之间的通信连接;
    基于所述通信连接向所述目标电子货架标签发送第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签根据所述第一指令输出提示信息。
  3. 一种基于数据处理系统的数据处理方法,其特征在于,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述多个电子货架标签中的目标电子货架标签,所述方法包括:
    接收终端广播的用于建立所述终端与所述目标电子货架标签之间的通信连接的建立请求,所述建立请求携带所述目标电子货架标签的标签标识;其中,所述建立请求是所述终端在接收到云端发送的拣货任务的情况下广播的,所述拣货任务中包括待捡货物在仓库中的存放位置适配的所述目标电子货架标签的标签标识;
    在确定出所述建立请求携带所述目标电子货架标签的标签标识的情况下,根据所述建立请求向所述终端发送用于建立所述终端与所述目标电子货架标签之间的通信连接的建立响应,从而实现建立所述终端与所述目标电子货架标签之间的通信连接;
    接收所述终端基于所述通信连接发送的第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息;
    根据所述第一指令输出提示信息。
  4. 一种基于数据处理系统的数据处理方法,其特征在于,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述终端,所述方法包括:
    接收云端发送的拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;
    广播第一指令,所述第一指令携带所述目标电子货架标签的标签标识,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签在确定出所述第一指令携带所述目标电子货架标签的标签标识的情况下,根据所述第一指令输出提示信息。
  5. 一种基于数据处理系统的数据处理方法,其特征在于,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述方法应用于所述多个电子货架标签中的目标电子货架标签,所述方法包括:
    接收终端广播的第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,其中,所述第一指令是所述终端在接收到云端发送的拣货任务的情况下广播的,所述拣货任务中包括待捡货物在仓库中的存放位置适配的所述目标电子货架标签的标签标识;所述第一指令携带所 述目标电子货架标签的标签标识;
    在确定出所述第一指令携带所述目标电子货架标签的标签标识的情况下,根据所述第一指令输出提示信息。
  6. 一种基于数据处理系统的数据处理装置,其特征在于,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述装置应用于所述云端,所述装置包括:
    获取模块,用于获取拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;
    第一发送模块,用于向终端发送所述拣货任务,以使所述终端根据所述标签标识向所述目标电子货架标签传输第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签根据所述第一指令输出提示信息。
  7. 一种基于数据处理系统的数据处理装置,其特征在于,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述装置应用于所述终端,所述装置包括:
    第一接收模块,用于接收云端发送的拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;
    第一广播模块,用于广播用于建立所述终端与所述目标电子货架标签之间的通信连接的建立请求;所述建立请求携带所述目标电子货架标签的标签标识;
    第二接收模块,用于接收在所述目标电子货架标签确定出所述建立请求携带所述目标电子货架标签的标签标识的情况下、所述目标电子货架标签根据所述建立请求返回的、用于建立所述终端与所述目标电子货架标签之间的通信连接的建立响应,从而实现建立所述终端与所述目标电子货架标签之间的通信连接;
    第二发送模块,用于基于所述通信连接向所述目标电子货架标签发送第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签根据所述第一指令输出提示信息。
  8. 一种基于数据处理系统的数据处理装置,其特征在于,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述装置应用于所述多个电子货架标签中的目标电子货架标签,所述装置包括:
    第三接收模块,用于接收终端广播的用于建立所述终端与所述目标电子货架标签之间的通信连接的建立请求,所述建立请求携带所述目标电子货架标签的标签标识;其中,所述建立请求是所述终端在接收到云端发送的拣货任务的情况下广播的,所述拣货任务中包括待捡货物在仓库中的存放位置适配的所述目标电子货架标签的标签标识;
    第三发送模块,用于在确定出所述建立请求携带所述目标电子货架标签的标签标识的情况下,根据所述建立请求向所述终端发送用于建立所述终端与所述目标电子货架标签之间的通信连接的建立响应,从而实现建立所述终端与所述目标电子货架标签之间的通信连接;
    第四接收模块,用于接收所述终端基于所述通信连接发送的第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息;
    第一输出模块,用于根据所述第一指令输出提示信息。
  9. 一种基于数据处理系统的数据处理装置,其特征在于,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述装置应用于所述终端,所述装置包括:
    第五接收模块,用于接收云端发送的拣货任务,所述拣货任务中至少包括待捡货物在仓库中的存放位置适配的目标电子货架标签的标签标识;
    第二广播模块,用于广播第一指令,所述第一指令携带所述目标电子货架标签的标签标识,所述第一指令用于指示所述目标电子货架标签输出提示信息,以使所述目标电子货架标签在确定出所述第一指令携带所述目标电子货架标签的标签标识的情况下,根据所述第一指令输出提示信息。
  10. 一种基于数据处理系统的数据处理装置,其特征在于,所述系统包括云端、终端以及多个电子货架标签,所述云端与所述终端之间分别通信连接,不同的电子货架标签分别与仓库中的不同的存放位置一一适配,各个存放位置分别用于放置货物;所述装置应用于所述多个电子货架 标签中的目标电子货架标签,所述装置包括:
    第六接收模块,用于接收终端广播的第一指令,所述第一指令用于指示所述目标电子货架标签输出提示信息,其中,所述第一指令是所述终端在接收到云端发送的拣货任务的情况下广播的,所述拣货任务中包括待捡货物在仓库中的存放位置适配的所述目标电子货架标签的标签标识;所述第一指令携带所述目标电子货架标签的标签标识;
    第二输出模块,用于在确定出所述第一指令携带所述目标电子货架标签的标签标识的情况下,根据所述第一指令输出提示信息。
  11. 一种电子设备,所述电子设备包括:
    处理器;用于存储处理器可执行指令的存储器;
    所述处理器被配置为执行如权利要求1-5中任一项所述的基于数据处理系统的数据处理方法。
  12. 一种非临时性计算机可读存储介质,当所述存储介质中的指令由电子设备的处理器执行时,使得电子设备能够执行如权利要求1-5中任一项所述的基于数据处理系统的数据处理方法。
  13. 一种计算机程序产品,当所述计算机程序产品中的指令由电子设备的处理器执行时,使得电子设备能够执行如权利要求1-5中任一项所述的基于数据处理系统的数据处理方法。
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