WO2019210799A1 - 拣货容器信息处理方法、装置及门店系统 - Google Patents
拣货容器信息处理方法、装置及门店系统 Download PDFInfo
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- WO2019210799A1 WO2019210799A1 PCT/CN2019/084200 CN2019084200W WO2019210799A1 WO 2019210799 A1 WO2019210799 A1 WO 2019210799A1 CN 2019084200 W CN2019084200 W CN 2019084200W WO 2019210799 A1 WO2019210799 A1 WO 2019210799A1
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- Prior art keywords
- picking
- zone
- batch
- picking container
- area
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65G—TRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
- B65G1/00—Storing articles, individually or in orderly arrangement, in warehouses or magazines
- B65G1/02—Storage devices
- B65G1/04—Storage devices mechanical
- B65G1/137—Storage devices mechanical with arrangements or automatic control means for selecting which articles are to be removed
- B65G1/1373—Storage devices mechanical with arrangements or automatic control means for selecting which articles are to be removed for fulfilling orders in warehouses
- B65G1/1376—Storage devices mechanical with arrangements or automatic control means for selecting which articles are to be removed for fulfilling orders in warehouses the orders being assembled on a commissioning conveyor
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65G—TRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
- B65G1/00—Storing articles, individually or in orderly arrangement, in warehouses or magazines
- B65G1/02—Storage devices
- B65G1/04—Storage devices mechanical
- B65G1/137—Storage devices mechanical with arrangements or automatic control means for selecting which articles are to be removed
- B65G1/1373—Storage devices mechanical with arrangements or automatic control means for selecting which articles are to be removed for fulfilling orders in warehouses
- B65G1/1378—Storage devices mechanical with arrangements or automatic control means for selecting which articles are to be removed for fulfilling orders in warehouses the orders being assembled on fixed commissioning areas remote from the storage areas
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06K—GRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
- G06K17/00—Methods 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
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06K—GRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
- G06K17/00—Methods 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
- G06K17/0022—Methods 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 provisions for transferring data to distant stations, e.g. from a sensing device
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06Q—INFORMATION 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
- G06Q10/00—Administration; Management
- G06Q10/06—Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06Q—INFORMATION 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
- G06Q10/00—Administration; Management
- G06Q10/06—Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling
- G06Q10/063—Operations research, analysis or management
- G06Q10/0631—Resource planning, allocation, distributing or scheduling for enterprises or organisations
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06Q—INFORMATION 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
- G06Q10/00—Administration; Management
- G06Q10/08—Logistics, e.g. warehousing, loading or distribution; Inventory or stock management
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06Q—INFORMATION 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
- G06Q10/00—Administration; Management
- G06Q10/08—Logistics, e.g. warehousing, loading or distribution; Inventory or stock management
- G06Q10/087—Inventory or stock management, e.g. order filling, procurement or balancing against orders
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65G—TRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
- B65G2203/00—Indexing code relating to control or detection of the articles or the load carriers during conveying
- B65G2203/02—Control or detection
- B65G2203/0208—Control or detection relating to the transported articles
- B65G2203/0216—Codes or marks on the article
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65G—TRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
- B65G2209/00—Indexing codes relating to order picking devices in General
- B65G2209/02—Batch order forming, e.g. several batches simultaneously
Definitions
- the present application relates to the field of information processing technology, and in particular, to a method and apparatus for processing a picking container, and a store system.
- O2O Online to Offline
- O2O refers to the combination of offline business opportunities and the Internet, making the Internet a platform for offline transactions.
- the processes of goods (services), order placement, and payment have been improved, and the simple e-commerce module has been transferred to higher frequency and life-saving scenarios.
- the O2O carnival boom has emerged under the impetus of the new model, so the door-to-door delivery (commonly known as “takeaway”), home-grown, and on-site
- Various O2O modes such as make-up have begun to emerge.
- the offline stores corresponding to the daily chemical and fresh food objects can be generally referred to as “supermarkets”.
- multiple stalls can be opened in the supermarket, for example, may include fruit stalls, seafood stalls, etc. .
- the specific items in each stall may be pre-purchased into the supermarket and stored in the form of bulk in the shelves of the specific stalls.
- the product is an apple.
- the consumer places an order online the number of kilograms purchased may be specified.
- the supermarket usually needs to perform weighing first, and then perform packaging operations.
- multiple items are usually included in the same order.
- the application provides a method, a device and a store system for processing the picking container, which can improve the efficiency of the offline operation and improve the delivery time.
- a store system comprising:
- the store includes a first zone, a second zone and a third zone; the first zone is for storing goods and completing a picking task, the picking task is associated with delivery batch information, the delivery batch Include one or more picking tasks;
- An automatic transfer device is disposed between the first zone and the second zone for automatically transmitting a picking container carrying the first zone picking result to the second zone;
- the second area is configured to merge the picking containers according to corresponding delivery batch information, and transport the picking containers corresponding to the same delivery batch to the third area;
- the third zone is configured to perform a packing operation on the goods carried by each picking container in units of the delivery batch.
- a method for processing a picking container information comprising:
- the scan result includes identification information of the pick container, so that the first server determines the delivery batch according to the identification information of the pick container And picking tasks, and generating prompt information according to the delivery batch information;
- the prompt information provided by the first server is displayed to transmit the picking container to the third zone according to the prompt information.
- a method for processing a picking container information comprising:
- the picking container passes through the automatic transfer device deployed between the first zone and the second zone in the store, from the first The zone is transported to the second zone;
- a picking container information processing device includes:
- a scanning code unit for scanning a graphic code of a picking container conveyed to a second area of the store; wherein the picking container is an automatic conveying device deployed between the first zone and the second zone, from the first One zone is transported to the second zone;
- a scan result submitting unit configured to obtain a scan result, and submit to the first server, where the scan result includes identification information of the picking container, so that the first server is according to the picking container
- the identification information determines the delivery batch and the picking task, and generates prompt information according to the delivery batch information
- the prompt information display unit is configured to display the prompt information provided by the first server, so as to transmit the picking container to the third area according to the prompt information.
- a picking container information processing device includes:
- a correspondence obtaining unit configured to obtain a correspondence between the identifier of the picking container and the delivery batch identifier and the picking task identifier in advance; the picking container is deployed between the first area and the second area in the store Automatically transferring equipment from the first zone to the second zone;
- a delivery batch information determining unit configured to determine, according to the identification information of the current picking container submitted by the first terminal device client of the second area, the picking task identifier corresponding to the picking container, and the associated shipping batch information;
- the prompt information generating unit is configured to generate prompt information according to the delivery batch, and return the information to the first terminal device client.
- a computer system comprising:
- One or more processors are One or more processors;
- a memory associated with the one or more processors the memory for storing program instructions that, when read by the one or more processors, perform the following operations:
- the picking container passes through the automatic transfer device deployed between the first zone and the second zone in the store, from the first The zone is transported to the second zone;
- the present application discloses the following technical effects:
- the space in the store can be divided into the first zone, the second zone, and the third zone.
- the space can be sent to the first zone for picking operations.
- the picking container carrying the picking result can be transported to the second area through the automatic transfer device deployed between the first area and the second area, and the second batch can be in accordance with the delivery batch corresponding to the picking container
- the batch container is transported to the third zone in batches, and in the third zone, the packaging operation can be performed in units of the delivery batch to wait for specific delivery. In this way, it is not necessary to change the layout of the front field of the store to the first zone.
- each sub-area can only complete a part of the picking tasks in the same delivery batch, therefore, The picking task for each sub-area is simplified and simultaneous execution of multiple picking tasks is performed.
- the existence of an automatic transfer device can save labor and time costs in the process of picking results from the front field to the back field.
- the presence of the second zone allows the specific picking container to be sent to the third zone for packaging, and then combined according to the delivery batch, so that the third zone can be packaged in units of the delivery batch, so Further improve processing efficiency.
- a corresponding warehouse control system and related terminal equipment can also be provided to further improve the working efficiency of the confluence area.
- FIG. 1 is a schematic diagram of a store system provided by an embodiment of the present application.
- FIG. 2 is a schematic diagram of an information processing system provided by an embodiment of the present application.
- FIG. 3 is a flowchart of a first method provided by an embodiment of the present application.
- FIG. 5 is a schematic diagram of a first device according to an embodiment of the present application.
- FIG. 6 is a schematic diagram of a second device provided by an embodiment of the present application.
- FIG. 7 is a schematic diagram of a computer system according to an embodiment of the present application.
- a store system including:
- the store includes a first zone, a second zone and a third zone; the first zone is for storing goods and completing a picking task, the picking task is associated with delivery batch information, the delivery batch Include one or more picking tasks;
- An automatic transfer device is disposed between the first zone and the second zone for automatically transmitting a picking container carrying the first zone picking result to the second zone;
- the second area is configured to merge the picking containers according to corresponding delivery batch information, and transport the picking containers corresponding to the same delivery batch to the third area;
- the third zone is configured to perform a packing operation on the goods carried by each picking container in units of the delivery batch.
- the first zone may be referred to as a “picking zone”, that is, for storing specific goods, and providing a relevant work place for the picker to complete the picking operation.
- the specific orders are merged into a delivery batch, and then, according to the correspondence between the types of data objects included in the delivery batch and the first zone, multiple picking tasks are generated, respectively. It is assigned to the first zone for picking. Thereafter, the picking result can be conveyed to the second zone, which can be specifically referred to as a "merging zone", that is, for merging the respective picking results by the associated shipping lot.
- the third zone may be referred to as a "packing zone" for packaging the picking results of the same delivery lot to wait for delivery.
- the following takes the picking area, the confluence area, and the packing area as an example.
- a confluence area may be set between the picking area of the offline shop space and the packing area, wherein the picking area It can usually include multiple sub-areas for placing different categories of goods, and equipped with relevant pickers to complete specific picking tasks.
- the packaging area can also generally include a plurality of sub-areas for respectively equipped with relevant packagers to implement parallel packaging operations of multiple orders or batches (each sub-area can be used only for completing the same batch of packaging tasks at the same time).
- the merged area can also have one or more sub-areas, which are arranged between the picking area and the packing area.
- the picking result from the picking area can be sent to the confluence area, and the confluence area can be equipped with relevant confluence personnel to complete the picking
- the confluence operation of the goods result that is, the picking result corresponding to the same delivery batch is sent to the same packaging sub-area for packaging operation.
- an automated transfer device can be deployed between the picking area and the merged area instead of manual transfer.
- a transport device can have a variety of specific implementations, for example, in the form of a conveyor belt or the like.
- preventing the presence of the transport device from affecting the operation of the work area as shown in Fig.
- the full name of the suspension chain may be a hanging conveyor chain.
- the ball bearing can be used as a chain wheel, which can turn and climb at will, and has strong adaptability to the geographical environment.
- a plurality of hooking devices can be provided along the hanging chain, and the picking container can be hung on the hooking device and carried by the hanging chain.
- a specific suspension chain track can be laid on the ceiling of a shop, etc., of course, its position is relatively high, outside the reach of the picker, so how to hang the specific picking container on the suspension chain It is also a question to consider.
- the embodiment of the present application can be implemented in various manners.
- a sub-track can be directly disposed on a suspension chain main track and a specific picking area, and one end of the sub-track can be located The warehouser reaches the reachable range and the other end is connected to the main track.
- the picker puts the specific goods into the picking container, it can be hung on the sub-track and transmitted by the sub-track and into the main track. Finally, it is transported to the junction area.
- the hoisting machine 12 can also be deployed in the picking area, and the conveying line 13 can be disposed between the hoisting machine 12 and the suspension chain.
- the conveying line can also have an upper line conversion port 14 at the end connected to the hanging chain.
- the picking result can be placed in a container such as the picking container 15 and raised to a certain height by the hoisting machine 12, and then transported through the upper thread changing port through the conveying line and suspended on the hooking device of the hanging chain, and then The suspension chain device is transported to the junction zone.
- each picking sub-area can be separately deployed hoist, and the specific picking results can be lifted to the suspension chain through their respective hoists. As shown in Fig.
- the suspension chain can have a ring structure and continuously move in one direction (clockwise or counterclockwise) without interruption, so that each picking sub-area can pass at any time for each picking task.
- the hoist is lifted and transported through the suspension chain.
- the hanging chain device may further have a lower line conversion port 16 on a side close to the merged area, and the offline conversion port may be connected to the slide device 17 , and the specific picking container may reach the lower line conversion port when Along the chute to the picking container queue of the confluence area.
- the specific picking container is identified in the confluence area, and the same batch of picking containers are sent to the same packing sub-area for packaging operation.
- the above describes the hardware structure in the store.
- the automatic transfer system is provided between the picking area and the merged area, the labor cost of the transport process from the picking area to the merged area can be saved. From the junction area to the packaging area, the automatic transfer system is no longer included. However, due to some small offline stores, the distance from the confluence area to the packing area will be relatively close. It will not become a bottleneck.
- the picker can set the specific batch identification, picking task identification and other information on the picking container by handwriting or printing, and the consolidator reads the information on the picking container, Picking containers are identified and summarized by batch. After that, you can know whether the specific packaging area is free or not by manual communication. Of course, this method will make the efficiency lower.
- the picker needs to perform printing or handwriting related batches and picking task identification information.
- the confluencer needs to identify and summarize the picking container by observation. It also needs to communicate repeatedly with the packagers in the packaging area, and so on. Therefore, manpower and time costs will still be higher.
- a corresponding warehouse control system and related first terminal equipment may also be provided.
- the warehouse control system may be divided into a first server (also referred to as a WCS server, of course, may also have other specific names) and a client part, wherein the first server may be located
- the cloud or it can be directly deployed in the store, is mainly used to maintain the status information of each packing area, allocate packing areas for specific picking containers, and so on.
- the first terminal device is mainly used for providing to the concomitant.
- the first terminal device may have a scan code function, and may also have a display screen for displaying information such as a packaging area allocated by the server.
- the first terminal device can be implemented by using a mobile terminal device such as a mobile phone, and the client application of the warehouse control system WCS can be installed or fixed in the first terminal device in advance, and the client application can utilize the first
- the related hardware functions in a terminal device implement scanning code, and can exchange information with the server of the information control system to provide relevant reference information for the concomitant.
- a graphic code can be provided on the picking container, and the graphic code carries a unique identifier of the picking container.
- the first terminal device may be configured to scan the graphic code of the picking container delivered to the second area, and submit the selected picking container identifier to the first server; the first server may use And pre-acquiring the correspondence between the picking container identifier and the delivery batch identifier and the picking task identifier, and determining the picking task identifier corresponding to the picking container according to the picking container identification information submitted by the first terminal device, And the associated delivery batch, generating prompt information according to the delivery batch.
- the first terminal device may be further configured to display the prompt information, so that the combiner can transmit the picking container to the third area according to the prompt information.
- a corresponding warehouse management system may also be provided.
- the WMS may also be divided into a second server (which may be referred to as a WMS server, etc.) and a second client, wherein the second The server can also be located in the cloud, and the second client can be installed on the second terminal device used by the picker in the picking area.
- the picking container may be provided with a graphic code by means of printing or pasting a carrier or the like, and the graphic code carries a unique identifier of the picking container.
- the online order submitted by the front-end consumer client through the front-end server can be transmitted to the warehouse management system (WMS), and then the WMS can perform the joint operation according to the information such as the delivery address and delivery time associated with each order.
- Delivery batch That is, one or more orders may be included in the same delivery batch, and the WMS may also generate relevant batch identification information for it.
- a picking container can be obtained, and then the graphic code on the picking container can be scanned by the second terminal device, and the specifically picked goods can be loaded into the picking container through the hanging chain. Carry out the delivery.
- the scan result will be transmitted back to the WMS server through the second client, which carries the specific picking task identifier and the associated batch identifier, and the WMS server can identify the batch, pick the task identifier, and pick the goods.
- An association is established between container identifiers. That is to say, with the assignment and completion of the task, the WMS can maintain a plurality of the above correspondences, for example, as shown in Table 1:
- the corresponding relationship information may also be provided to the WCS server in synchronization, that is, the corresponding relationship information may also be saved in the WCS server.
- the specific picking container can be scanned by the confluence of the confluence area using its terminal equipment.
- the scan result will be uploaded to the WCS server, and the server can determine the batch identifier and the picking task identifier corresponding to the picking container according to the information recorded in Table 1 above. After that, operations such as allocation of the packaging area and related prompt information provided by the confluence staff can be performed.
- the picking container when performing the operation of allocating the packing area, it may be determined whether the picking container is the first picking container in the batch that reaches the confluence area, and if so, according to the status of the sub-areas of the packing area, Assign a package sub-area. Specifically, if there is an idle packed sub-area, the idle packed sub-area is allocated to the batch, and the identification information of the packed sub-area is returned to the terminal device client of the confluent. In this way, the consolidator can send the picking container to the corresponding packing sub-area.
- the packaging operation can be performed.
- the control system of the prompt light can be connected to the WCS server. Since the server maintains the delivery condition of the picking container corresponding to each delivery batch, all the picking containers of a certain delivery batch can be all sent to the confluence.
- the prompting light of the packaged sub-area can be illuminated, so that the packager can know when to start the packaging operation according to the state of the cue light.
- the WCS can determine that it needs to be lit according to the category of the goods to be packaged. What kind of color, etc., for example, if it is a normal situation that does not require packaging time, then the green light is on, otherwise, if it is a special case that requires packaging time, it lights up red, and so on.
- the WCS can also be notified by the packager by turning off the indicator light, so that the WCS can release the packaged sub-area, making it an idle state, and being able to assign the next delivery batch to it. Cargo container, and so on.
- the WMS receives the order, performs a joint operation, generates a plurality of delivery batches, and generates a batch identifier respectively;
- a plurality of picking tasks are generated for each delivery batch, and a picking task identifier is generated separately;
- the picking area client After the picking area client finishes picking the received picking task, it scans the picking container carrying the goods related to the picking task, and sends the scan result information to the WMS, which carries the batch identifier. , picking task identification; at the same time, the picking belt will be transported to the suspension chain system through the hoist and transported to the confluence area;
- WMS records the correspondence between the batch identification, the picking task identifier and the picking container identifier
- the WMS sends the correspondence to the WCS server for storage
- the merged area After receiving the specific picking container, the merged area scans the picking container through the merged area client, and the scan result is submitted to the WCS server;
- the WCS server allocates a corresponding packing sub-area for the picking container, and returns the allocation result to the confluent client; wherein the allocation principle is to allocate the picking containers corresponding to the plurality of picking tasks in the same delivery batch To the same packing sub-area, and only one batch of picking containers at the same time are in the same packing sub-area;
- the merger client displays the distribution result of the package sub-area, so that the confluencer can send the pick-up container to the corresponding package sub-area based on the prompt information;
- the WCS server can also count the delivery of the picking container corresponding to the same delivery batch to the packaging sub-area. If it is found that all the picking containers of a certain delivery batch have been sent to a packing sub-area, the control can be controlled.
- the prompting light of the packaging sub-area is illuminated; and the color of the illuminated indicator light can also be controlled according to the requirement of the packaging time of the specific item in the delivery batch;
- the packaging sub-area After the packaging sub-area completes the packaging operation of the same delivery batch, it can be delivered to the delivery staff for distribution.
- the packaging staff can also notify the WCS server by turning off the prompt light, and the packaging task of the delivery batch has been completed;
- the WCS releases the packed sub-area and switches to an idle state for allocation to the picking container of the next delivery batch.
- the space in the store can be divided into the first zone, the second zone, and the third zone.
- the space can be sent to the first zone for picking.
- the picking container carrying the picking result can be transported to the second zone through the automatic conveying device deployed between the first zone and the second zone, and the corresponding zone can be distributed according to the picking container in the second zone Batch, batch transfer of the picking container to the third zone, in the third zone, the packaging operation can be performed in units of the delivery batch to wait for specific delivery. In this way, it is not necessary to change the layout of the front field of the store to the first zone.
- each sub-area can only complete a part of the picking tasks in the same delivery batch, therefore, The picking task for each sub-area is simplified and simultaneous execution of multiple picking tasks is performed.
- the existence of an automatic transfer device can save labor and time costs in the process of picking results from the front field to the back field.
- the presence of the second zone allows the specific picking container to be sent to the third zone for packaging, and then combined according to the delivery batch, so that the third zone can be packaged in units of the delivery batch, so Further improve processing efficiency.
- a corresponding warehouse control system and related terminal equipment can also be provided to further improve the working efficiency of the confluence area.
- the second embodiment is corresponding to the first embodiment. From the perspective of the first terminal device, a method for processing the information of the picking container is provided. Referring to FIG. 3, the method may specifically include:
- the first terminal device client scans the graphic code of the picking container delivered to the second area of the store; wherein the picking container is an automatic transfer device deployed between the first zone and the second zone. Delivery from the first zone to the second zone;
- S302 Obtain a scan result and submit it to the first server, where the scan result includes the identification information of the picking container, so that the first server determines the according to the identification information of the picking container. Distributing batches and picking tasks, and generating prompt information according to the delivery batch information;
- S303 Display the prompt information provided by the first server, so as to transmit the picking container to the third area according to the prompt information.
- the third embodiment is also corresponding to the first embodiment. From the perspective of the first server, a method for processing the information of the picking container is provided. Referring to FIG. 4, the method may specifically include:
- S401 pre-acquire the correspondence between the identifier of the picking container and the delivery batch identifier and the picking task identifier; the picking container passes through the automatic transmitting device deployed between the first zone and the second zone in the store, The first zone is delivered to the second zone;
- S402 Determine, according to the identifier information of the current picking container submitted by the first terminal device client of the second area, the picking task identifier corresponding to the picking container, and the associated shipping batch information;
- S403 Generate prompt information according to the delivery batch, and return the information to the first terminal device client.
- the working status information of the third area in the store may also be obtained, where the working status includes occupation or idle; and the third area is used to package the goods carried by the picking containers corresponding to the same delivery batch. Operation; in this way, the prompt information may be generated according to the delivery batch and the working state information of the third zone.
- the prompt information when generating the prompt information, it may first determine whether the current picking container is the first picking container in the second batch that is delivered to the second area; if yes, according to the state of the third area, Assigning the third zone to the delivery batch, and generating the prompt information according to the allocated third zone information.
- the third area of the idle state may be allocated. Give the delivery batch.
- the picking container identifier can be added to the waiting queue. After the third zone is idle, the allocation of the third zone is performed for the waiting delivery batch according to the order in the waiting queue.
- the current picking container may first determine whether the assigned shipping batch has been assigned the third area; if so, it may directly The information that the distribution batch has been assigned generates the prompt information. Otherwise, if the belonging delivery batch has not been assigned the third zone, the picking container identifier may be added to the waiting queue; when the third zone appears idle, according to the order in the waiting queue, waiting The distribution batch performs the allocation of the third zone and generates the prompt information.
- the first server may further maintain the delivery condition of the picking container corresponding to each picking task associated with each delivery batch; all the picking containers of the current delivery batch have been delivered to the second area, and When the third zone has been assigned, the indicator light controlling the third zone lights up.
- the third area includes a plurality of indicator lights of different colors, respectively corresponding to different requirements for the packaging aging; specifically, when the indicator light for controlling the third area is illuminated, the data included in the delivery batch may be The object's requirement for packaging aging, the indicator light that controls the corresponding color lights up.
- the third zone can also be switched to an idle state, that is, the third zone can be used to assign to a new incoming delivery batch.
- the embodiment of the present application further provides a picking container information processing device.
- the device may be specifically applied to the first terminal device client, including:
- a scanning code unit 501 configured to scan a graphic code of a picking container conveyed to a second area of the store; wherein the picking container is an automatic conveying device deployed between the first zone and the second zone, The first zone is delivered to the second zone;
- the scan result submitting unit 502 is configured to obtain a scan result and submit the result to the first server, where the scan result includes the identification information of the picking container, so that the first server is according to the picking container.
- the identification information determines the delivery batch and the picking task, and generates prompt information according to the delivery batch information;
- the prompt information display unit 503 is configured to display the prompt information provided by the first server, so as to transmit the picking container to the third area according to the prompt information.
- the embodiment of the present application further provides a picking container information processing apparatus.
- the apparatus may be specifically applied to the first server, including:
- the correspondence obtaining unit 601 is configured to obtain a correspondence between the identifier of the picking container and the delivery batch identifier and the picking task identifier in advance; the picking container is deployed between the first area and the second area in the store Automatic transfer device, transported from the first zone to the second zone;
- the delivery batch information determining unit 602 is configured to determine, according to the identification information of the current picking container submitted by the first terminal device client of the second area, the picking task identifier corresponding to the picking container, and the assigned shipping batch Secondary information
- the prompt information generating unit 603 is configured to generate prompt information according to the delivery batch, and return the information to the first terminal device client.
- the device may further include:
- a work status information obtaining unit configured to obtain work status information of a third area in the store, the work status includes occupation or idle; and the third area is used for goods carried by each picking container corresponding to the same delivery batch Carry out the packaging operation;
- the prompt information generating unit may be specifically configured to:
- the prompt information is generated according to the delivery batch and the working state information of the third zone.
- the prompt information generating unit may include:
- a first determining subunit configured to determine whether the current picking container is the first picking container in the second batch that is delivered to the second area
- a prompting subunit configured to: if yes, perform allocation of the third zone for the delivery batch according to the state of the third zone, and generate the prompt information according to the allocated third zone information.
- the prompt subunit may specifically refer to:
- the current picking container is the first picking container of the belonging delivery batch that is delivered to the second zone, and there is a third zone in the idle state, the third zone of the idle state is assigned to the delivery batch. Times.
- the prompting subunit may specifically be used for:
- the picking container identifier is added to the waiting queue; After the third zone is idle, the allocation of the third zone is performed for the waiting delivery batch according to the order in the waiting queue.
- the prompting subunit can also be used for:
- the current picking container is not the first picking container in the second batch to be delivered to the second area, it is determined whether the assigned shipping batch has been assigned the third area; if so, according to the delivery batch The assigned information generates the prompt information.
- the picking container identifier is added to the waiting queue; when the third zone is idle, according to the order in the waiting queue, the waiting batch is waiting The allocation of the third zone is performed, and the prompt information is generated.
- the device may further include:
- the delivery situation information maintenance unit is configured to maintain the delivery condition of the picking container corresponding to each picking task associated with each delivery batch;
- the indicator control unit is configured to control the indicator of the third area to be illuminated when all the picking containers of the current delivery batch have been delivered to the second area and have been assigned to the third area.
- the third area includes a plurality of indicator lights of different colors, which respectively correspond to different requirements for packaging aging;
- the indicator control unit can be specifically configured to:
- the device may further include:
- the third area working state switching unit is configured to switch the third area to an idle state after receiving the notification message that the indicator light is off.
- the embodiment of the present application further provides a computer system, including:
- One or more processors are One or more processors;
- a memory associated with the one or more processors the memory for storing program instructions that, when read by the one or more processors, perform the following operations:
- the picking container passes through the automatic transfer device deployed between the first zone and the second zone in the store, from the first The zone is transported to the second zone;
- FIG. 7 exemplarily shows the architecture of the computer system, and specifically includes a processor 710, a video display adapter 711, a disk drive 712, an input/output interface 713, a network interface 714, and a memory 720.
- the processor 710, the video display adapter 711, the disk drive 712, the input/output interface 713, the network interface 714, and the memory 720 can be communicably connected via the communication bus 730.
- the processor 710 can be implemented by using a general-purpose CPU (Central Processing Unit), a microprocessor, an Application Specific Integrated Circuit (ASIC), or one or more integrated circuits. Related procedures are performed to implement the technical solutions provided by the present application.
- a general-purpose CPU Central Processing Unit
- ASIC Application Specific Integrated Circuit
- the memory 720 can be implemented in the form of a ROM (Read Only Memory), a RAM (Random Access Memory), a static storage device, a dynamic storage device, or the like.
- Memory 720 can store an operating system 721 for controlling the operation of computer system 700, a basic input output system (BIOS) for controlling low level operation of computer system 700.
- BIOS basic input output system
- a web browser 723, a data storage management system 724, a picking container information processing system 725, and the like can also be stored.
- the above-mentioned picking container information processing system 725 may be an application program that specifically implements the foregoing steps in the embodiments of the present application.
- the related program code is saved in the memory 720 and is called and executed by the processor 710.
- the input/output interface 713 is used to connect an input/output module to implement information input and output.
- the input/output/module can be configured as a component in the device (not shown) or externally connected to the device to provide the corresponding function.
- the input device may include a keyboard, a mouse, a touch screen, a microphone, various types of sensors, and the like, and the output device may include a display, a speaker, a vibrator, an indicator light, and the like.
- the network interface 714 is used to connect a communication module (not shown) to implement communication interaction between the device and other devices.
- the communication module can communicate by wired means (such as USB, network cable, etc.), or can communicate by wireless means (such as mobile network, WIFI, Bluetooth, etc.).
- Bus 730 includes a path for transferring information between various components of the device (e.g., processor 710, video display adapter 711, disk drive 712, input/output interface 713, network interface 714, and memory 720).
- the computer system 700 can also obtain information of a specific collection condition from the virtual resource object collection condition information database 741 for condition determination, and the like.
- the above device only shows the processor 710, the video display adapter 711, the disk drive 712, the input/output interface 713, the network interface 714, the memory 720, the bus 730, etc., in a specific implementation process, The device may also include other components necessary to achieve normal operation.
- the above-mentioned devices may also include only the components necessary for implementing the solution of the present application, and do not necessarily include all the components shown in the drawings.
- the present application can be implemented by means of software plus a necessary general hardware platform. Based on such understanding, the technical solution of the present application may be embodied in the form of a software product in essence or in the form of a software product, which may be stored in a storage medium such as a ROM/RAM or a disk. , an optical disk, etc., includes instructions for causing a computer device (which may be a personal computer, server, or network device, etc.) to perform the methods described in various embodiments of the present application or portions of the embodiments.
- a computer device which may be a personal computer, server, or network device, etc.
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Abstract
本申请实施例公开了拣货容器信息处理方法、装置及门店系统,所述门店系统包括:第一区、第二区以及第三区;所述第一区用于存放货品,并完成拣货任务,所述拣货任务关联有配送批次信息,所述配送批次中包括一条或多条拣货任务;所述第一区与第二区之间部署有自动传送设备,用于将承载有所述第一区拣货结果的拣货容器自动传输至所述第二区;所述第二区用于将所述拣货容器按照对应的配送批次信息进行合流,并将同一配送批次对应的拣货容器运输到所述第三区;所述第三区用于以配送批次为单位,对各拣货容器承载的货品进行打包操作。通过本申请实施例,能够提高线下操作的效率,提升配送时效。
Description
本申请要求2018年05月03日递交的申请号为201810414794.4、发明名称为“拣货容器信息处理方法、装置及门店系统”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
本申请涉及信息处理技术领域,特别是涉及拣货容器信息处理方法、装置及门店系统。
O2O(Online To Offline,线上到线下),是指将线下的商务机会与互联网结合,让互联网成为线下交易的平台。随着服务性电子商务模式的升级,完善了商品(服务)、下单、支付等流程,把之前简单的电商模块,转移到更加高频和生活化场景中来。由于传统的服务行业一直处在一个低效且劳动力消化不足的状态,因此,在新模式的推动下,出现了O2O的狂欢热潮,于是上门送餐(俗称“外卖”)、上门生鲜、上门化妆等各种O2O模式开始层出不穷。
其中,日化、生鲜类商品对象对应的线下店铺通常可以称为“超市”,在实际应用中,超市内可以开设多个档口,例如,可以包括水果档口、海鲜档口等等。各个档口中的具体货品可以是预先采购进入超市的,并以散装等形式在具体档口的货架上存放。例如,商品是苹果,消费者在线上下单时,可能会指定购买的公斤数,超市在收到订单后,通常需要先进行称重,之后,再进行打包等操作。但在实际应用中,同一个订单中通常会包括多种商品,另外,在订单并发数量比较多的情况下,为了节省配送资源,可能还会需要将多个订单合并为同一个配送批次,等等,这就更使得同一批次中会包括多个商品。然而这些商品可能分别位于多个不同的档口,每个档口上可以有各自的拣货员,因此,在拣货过程中,需要将同一批次拆分多条拣货任务,分别分配到不同的档口进行拣货;之后,在对拣货结果进行打包时,还需要再将同一订单或者同一批次对应的各条拣货任务的拣货结果,从各个档口汇集到一起,之后才能够进行打包,并交给配送员进行配送。但是,在拣货任务的拆分,以及拣货结果的合流的过程中,需要占用大量的人力资源,在配送时效上往往很难保证。
因此,如何提高线下操作的效率,提升配送时效,成为需要本领域技术人员解决的 技术问题。
发明内容
本申请提供了拣货容器信息处理方法、装置及门店系统,能够提高线下操作的效率,提升配送时效。
本申请提供了如下方案:
一种门店系统,包括:
所述门店内包括第一区、第二区以及第三区;所述第一区用于存放货品,并完成拣货任务,所述拣货任务关联有配送批次信息,所述配送批次中包括一条或多条拣货任务;
所述第一区与第二区之间部署有自动传送设备,用于将承载有所述第一区拣货结果的拣货容器自动传输至所述第二区;
所述第二区用于将所述拣货容器按照对应的配送批次信息进行合流,并将同一配送批次对应的拣货容器运输到所述第三区;
所述第三区用于以配送批次为单位,对各拣货容器承载的货品进行打包操作。
一种拣货容器信息处理方法,包括:
对输送至门店第二区的拣货容器的图形码进行扫码;其中,所述拣货容器是通过第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;
获得扫码结果,并提交到第一服务器,所述扫码结果中包括所述拣货容器的标识信息,以便所述第一服务器根据所述拣货容器的标识信息确定所述的配送批次以及拣货任务,并根据所述配送批次信息生成提示信息;
将所述第一服务器提供的提示信息进行展示,以便根据所述提示信息将所述拣货容器传输至所述第三区。
一种拣货容器信息处理方法,包括:
预先获得拣货容器的标识与配送批次标识、拣货任务标识之间的对应关系;所述拣货容器通过门店中的第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;
根据所述第二区的第一终端设备客户端提交的当前拣货容器的标识信息,确定该拣货容器对应的拣货任务标识,以及所属的配送批次信息;
根据所述配送批次生成提示信息,并返回给所述第一终端设备客户端。
一种拣货容器信息处理装置,包括:
扫码单元,用于对输送至门店第二区的拣货容器的图形码进行扫码;其中,所述拣货容器是通过第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;
扫码结果提交单元,用于获得扫码结果,并提交到到第一服务器,所述扫码结果中包括所述拣货容器的标识信息,以便所述第一服务器根据所述拣货容器的标识信息确定所述的配送批次以及拣货任务,并根据所述配送批次信息生成提示信息;
提示信息展示单元,用于将所述第一服务器提供的提示信息进行展示,以便根据所述提示信息将所述拣货容器传输至所述第三区。
一种拣货容器信息处理装置,包括:
对应关系获得单元,用于预先获得拣货容器的标识与配送批次标识、拣货任务标识之间的对应关系;所述拣货容器通过门店中的第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;
配送批次信息确定单元,用于根据所述第二区的第一终端设备客户端提交的当前拣货容器的标识信息,确定该拣货容器对应的拣货任务标识,以及所属的配送批次信息;
提示信息生成单元,用于根据所述配送批次生成提示信息,并返回给所述第一终端设备客户端。
一种计算机系统,包括:
一个或多个处理器;以及
与所述一个或多个处理器关联的存储器,所述存储器用于存储程序指令,所述程序指令在被所述一个或多个处理器读取执行时,执行如下操作:
预先获得拣货容器的标识与配送批次标识、拣货任务标识之间的对应关系;所述拣货容器通过门店中的第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;
根据所述第二区的第一终端设备客户端提交的当前拣货容器的标识信息,确定该拣货容器对应的拣货任务标识,以及所属的配送批次信息;
根据所述配送批次生成提示信息,并返回给所述第一终端设备客户端。
根据本申请提供的具体实施例,本申请公开了以下技术效果:
通过本申请实施例,可以将门店内的空间划分为第一区、第二区以及第三区,根据具体的订单生成配送批次以及拣货任务后,可以下发到第一区进行拣货操作,之后,可以通过第一区与第二区之间部署的自动传送设备,将承载有拣货结果的拣货容器输送至第二区,在第二区可以按照拣货容器对应的配送批次,分批次的将拣货容器传输至第三 区,在第三区就可以以配送批次为单位执行打包操作,以等待进行具体的配送。这样,无需改变门店前场对第一区的布局,例如,仍然可以按照货品种类的不同划分为多个子区域,并且每个子区域内可以仅完成同一配送批次中的一部分拣货任务,因此,每个子区域的拣货任务得到简化,并实现多条拣货任务的同步执行。另外,自动传送设备的存在,可以节省从前场到后场进行拣货结果运送过程中的人力及时间成本。而第二区的存在又可以使得具体的拣货容器被送至第三区进行打包之前,按照配送批次进行合并处理,使得第三区能够以配送批次为单位进行打包操作,因此,可以进一步提高处理效率。
另外,在可选的实现方式中,还可以提供相应的仓库控制系统以及相关的终端设备等,以进一步提高合流区的工作效率。
当然,实施本申请的任一产品并不一定需要同时达到以上所述的所有优点。
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请实施例提供的门店系统的示意图;
图2是本申请实施例提供的信息处理系统的示意图;
图3是本申请实施例提供的第一方法的流程图;
图4是本申请实施例提供的第二方法的流程图;
图5是本申请实施例提供的第一装置的示意图;
图6是本申请实施例提供的第二装置的示意图;
图7是本申请实施例提供的计算机系统的示意图。
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员所获得的所有其他实施例,都属于本申请保护的范围。
实施例一
在本申请实施例一中,首先可以提供一种门店系统,包括:
所述门店内包括第一区、第二区以及第三区;所述第一区用于存放货品,并完成拣货任务,所述拣货任务关联有配送批次信息,所述配送批次中包括一条或多条拣货任务;
所述第一区与第二区之间部署有自动传送设备,用于将承载有所述第一区拣货结果的拣货容器自动传输至所述第二区;
所述第二区用于将所述拣货容器按照对应的配送批次信息进行合流,并将同一配送批次对应的拣货容器运输到所述第三区;
所述第三区用于以配送批次为单位,对各拣货容器承载的货品进行打包操作。
其中,在实际应用中,所述第一区可以称为“拣货区”,也即,用于存放具体的货品,以及为拣货员完成拣货操作提供相关的作业场所。在本申请实施例中,具体的订单会被合并成配送批次,之后,可以根据配送批次中包含的数据对象的种类与第一区之间的对应关系,生成多条拣货任务,分别被分配到第一区进行拣货。之后,就拣货结果可以被输送至第二区,第二区具体可以称为“合流区”,也即,用于对各个拣货结果再按照所属的配送批次合并在一起。第三区则可以称为“打包区”,用于同一配送批次的拣货结果进行打包,以等待配送。为了便于描述,下面均以拣货区、合流区、打包区为例进行介绍。
也就是说,在本申请实施例中,为了便于提高拣货及配送效率,如图1所示,可以将线下店铺空间的拣货区与打包区之间设置合流区,其中,拣货区通常可以包括多个子区域,分别用于放置不同类别的货品,并配备相关的拣货员完成具体的拣货任务。打包区通常也可以包括多个子区域,用于分别配备相关的打包员,实现多个订单或者批次的并行打包操作(每个子区域内在同一时刻可以仅用于完成同一批次的打包任务)。合流区同样可以有一个或多个子区域,部署在拣货区与打包区之间,来自拣货区的拣货结果,可以被送至合流区,合流区可以配备相关的合流员,完成对拣货结果的合流操作,也即,将同一配送批次对应的拣货结果送至同一个打包子区域进行打包操作。
其中,由于拣货区通常位于门店的前场区域,合流区以及打包区则位于后场区域,前场与后场之间的距离可能相对较远,如果用人工运输的方式,将拣货结果运送到合流区,则将耗费大量的人力及时间成本。因此,为了提高工作效率,在拣货区与合流区之间可以部署自动化传送设备,以代替人工传送。这种传送设备可以有多种具体的实现形式,例如,可以通过传送带等形式存在。或者,为了节省店铺的空间,防止该运输设备的存在对人工作业区的作业造成影响,如图1中的所示,还可以通过悬挂链设备11的形 式来实现。其中,所述悬挂链的全称可以是悬挂输送链,具体实现时,可以采用滚珠轴承作为链条走轮,能够随意转弯、爬升,对地理环境的适应能力强。另外,悬挂链沿线上还可以带有多个挂钩装置,拣货容器可以挂至这种挂钩装置上,由悬挂链携带进行输送。例如,具体的悬挂链轨道可以铺设在店铺的天花板等处,当然,其位置比较高,在拣货员伸手可触及的范围之外,因此,具体如何将具体的拣货容器挂在悬挂链上也是需要考虑的问题。为此,本申请实施例可以通过多种方式来实现,例如,一种具体的实现方式下,可以在悬挂链主轨道与具体的拣货区直接设置子轨道,该子轨道的一端可以位于拣货员伸手可触及的范围内,另一端与主轨道接驳,这样,拣货员将具体的货品放入拣货容器之后,可以悬挂在子轨道上,由子轨道进行传输并汇入主轨道,最终再输送至合流区。
或者,在另一种方式下,还可以在拣货区部署提升机12,提升机12与悬挂链之间可以部署输送线13,输送线在连接到悬挂链的一端还可以具有上线转化口14,拣货结果可以放在拣货容器15等容器中,通过提升机12提升至一定高度,然后通过输送线经由所述上线转化口输送并悬挂于所述悬挂链的挂钩装置上,然后再由悬挂链设备输送至合流区。其中,每个拣货子区域都可以分别部署提升机,具体的拣货结果都可以通过各自的提升机提升至悬挂链进行输送。如图1所示,悬挂链可以具有环形结构,处于不间断地朝一个方向(顺时针或逆时针)持续运动状态,这样,各个拣货子区域每完成一项拣货任务,都可以随时通过提升机进行提升,并通过悬挂链进行输送。其中,悬挂链设备在接近合流区的一侧,还可以具有下线转化口16,该线下转化口可以连接到滑道设备17,具体的拣货容器在到达该线下转化口时,可以沿着滑道到达合流区的拣货容器队列。在合流区对具体的拣货容器进行识别,再将同一批次的拣货容器送至同一打包子区域进行打包操作。
以上对店铺内的硬件结构进行了介绍,其中,由于在拣货区与合流区之间配备了自动传送系统,因此,可以节省了从拣货区到合流区进行运送过程的人力成本。从合流区到打包区的环节,则不再包括自动传送系统,但是,由于一些小型的线下店铺,从合流区到打包区之间的距离会比较近,因此,这一环节的搬运工作量并不会成为瓶颈。但是,拣货容器在到达合流区之后,合流区的工作人员如何对拣货容器进行信息识别,如何获知每个拣货容器对应哪个配送批次,哪些拣货容器对应同一拣货批次,以及具体如何保证将同一拣货批次的拣货容器送至同一打包区进行打包,同时避免上一批次打包任务尚未结束时,又有新批次的拣货容器被送至同一打包区,等等,这些问题都是需要考虑并 解决的。
一种方式下,可以由拣货员将具体的批次标识、拣货任务标识等信息通过手写或者打印等方式,设置在拣货容器上,合流员通过读取拣货容器上的信息,对拣货容器进行识别,以及按照批次进行汇总。之后,可以通过人工沟通等方式,获知具体的打包区是否空闲,等等。当然,这种方式会使得效率比较低,拣货员需要执行打印或者手写相关批次以及拣货任务标识等信息,合流员则需要自行通过观察等方式进行拣货容器的识别以及汇总,另外,还需要与打包区的打包员进行反复的沟通,等等。因此,人力以及时间成本还是会比较高。
为此,在本申请实施例中,还可以提供相应的仓库控制系统(WCS),以及相关的第一终端设备。其中,如图2所示,所述仓库控制系统可以分为第一服务器(也可以称为WCS服务器,当然,也可以有其他的具体名称)以及客户端两部分,其中,第一服务器可以位于云端,或者也可以直接部署在店铺内,主要用于维护各打包区的状态信息,为具体的拣货容器分配打包区,等等。第一终端设备则主要用于提供给合流员使用,这种第一终端设备可以具有扫码功能,同时还可以具有显示屏,用于对服务器分配的打包区等信息进行展示。具体的,这种第一终端设备可以通过手机等移动终端设备来实现,可以预先在这种第一终端设备中安装或者固化仓库控制系统WCS的客户端应用程序,该客户端应用程序可以利用第一终端设备中的相关硬件功能实现扫码,并能够与信息控制系统的服务器之间进行信息交互,为合流员提供相关的参考信息。
这样,具体实现时,可以在拣货容器上提供图形码,所述图形码中携带有拣货容器的唯一性标识。进而,第一终端设备,可以用于对输送至所述第二区的拣货容器的图形码进行扫码,并将扫描获得的拣货容器标识提交至第一服务器;第一服务器则可以用于预先获得拣货容器标识与配送批次标识、拣货任务标识之间的对应关系,根据所述第一终端设备提交的拣货容器标识信息,确定该拣货容器对应的拣货任务标识,以及所属的配送批次,根据所述配送批次生成提示信息。所述第一终端设备还可以用于,对所述提示信息进行展示,这样合流员便可以根据所述提示信息将所述拣货容器传输至所述第三区。
具体实现时,为了使得第一服务器可以获知拣货容器标识与配送批次标识、拣货任务标识之间的对应关系,可以有多种方式。例如,在其中一种方式下,还可以提供相应的仓库管理系统(WMS),WMS也可以分为第二服务器(具体可以称为WMS服务器等)与第二客户端两部分,其中,第二服务器同样可以位于云端,第二客户端则可以安 装在拣货区的拣货员所使用的第二终端设备上。所述拣货容器上可以预先通过印刷或者粘贴承载物等方式,配备图形码,所述图形码中携带有拣货容器的唯一性标识。具体实现时,前端消费者客户端通过前端服务器提交的线上订单,可以传给仓库管理系统(WMS),之后可以由WMS根据各订单关联的配送地址、配送时间等信息进行合单操作,生成配送批次。也即,同一配送批次中可以包括一个或者多个订单,WMS还可以为其生成相关的批次标识信息。另外,还可以根据同一配送批次中包含的商品的种类等信息,生成多条拣货任务,每条拣货任务会对应拣货任务标识,并分别将每条拣货任务分配到各自对应的拣货区终端设备的第二客户端中。第二客户端接收到拣货任务后,拣货员可以按照拣货任务的相关信息进行拣货。在拣货过程中,可以取得一个拣货容器,然后,可以通过第二终端设备对该拣货容器上的图形码进行扫码,将具体拣货的货品装入拣货容器中,通过悬挂链进行输送。同时,扫码结果会通过第二客户端回传给WMS服务器,其中携带具体接收到的拣货任务标识以及关联的批次标识,WMS服务器则可以在批次标识、拣货任务标识以及拣货容器标识之间建立起关联关系。也就是说,随着任务的分配以及完成,WMS可以在维护多条上述对应关系,例如,具体可以如表1所示:
表1
| 编号 | 批次标识 | 拣货任务标识 | 拣货容器标识 |
| 1 | 100001 | 200001 | 300001 |
| 2 | 100001 | 200002 | 300002 |
| …… | …… | …… | …… |
上述对应关系信息还可以同步提供给WCS服务器,也即,WCS服务器中也可以同步保存上述对应关系信息。这样,在具体的拣货容器运送至合流区后,可以由合流区的合流员使用其终端设备对具体的拣货容器进行扫码。扫码结果会上传到WCS服务器,服务器便可以根据上述表1中记录的信息,确定出该拣货容器对应的批次标识以及拣货任务标识。之后,可以进行打包区的分配等操作,并为合流员提供的相关的提示信息。
其中,具体在进行分配打包区的操作时,可以判断该拣货容器是否为该批次中第一个到达合流区的拣货容器,如果是,则可以根据打包区个子区域的状态,为其分配打包子区域。具体的,如果存在空闲的打包子区域,则将该空闲的打包子区域分配给该批次,将该打包子区域的标识信息返回给合流员的终端设备客户端。这样,合流员就可以将该拣货容器送至对应的打包子区域。如果当前没有空闲的打包子区域,则可以提示等待,将该拣货容器标识加入到等待队列;在有空闲的打包子区域后,再将其分配给队列中的 第一个拣货容器,以及与其属于同一配送批次的其他拣货容器,并生成提示信息后推送到合流员的客户端。如果当前扫码的拣货容器不是所属批次第一个到达合流区的拣货容器,则可以判断该配送批次是否已经被分配过打包子区域,如果是,则可以直接将该配送批次对应的打包子区域的标识返回给合流员终端设备客户端即可。如果尚未分配打包子区域,则可以与该配送批次的其他拣货容器一起加入到等待队列中进行等待。
可见,通过上述方式,不必再由合流员以人工的方式区分具体拣货容器所属的批次,以及哪些拣货容器属于同一批次,等等,而是可以同一由WCS系统来自动完成,合流员只需要执行扫码操作,并按照相关的指示将拣货容器送至指定的打包子区域即可。因此,可以进一步提高效率。
另外,由于同一配送批次对应的拣货任务的数量不尽相同,因此,拣货容器数量也各不相同,而打包员需要等到同一配送批次的所有拣货任务对应的拣货容器都到齐后才能够进行打包操作。为了让打包员更方便的了解同一批次的拣货容器是否到齐,还可以在各打包子区域分别部署提示灯。该提示灯的控制系统可以连接至WCS服务器,由于服务器维护着各个配送批次对应的拣货容器的送达情况,因此,可以在发现某配送批次的全部拣货容器已经全被送至合流区,且已经被分配到某打包子区域时,可以将该打包子区域的提示灯亮起,这样,打包员就可以根据提示灯的状态获知何时开始进行打包操作。另外,由于可能存在需要尽快打包的商品,例如,热品或者需要冷藏的商品等,因此,还可以在打包区提供不同颜色的提示灯,WCS可以根据待打包的商品的类别,确定需要亮起何种颜色的等,例如,如果是对打包时间没有要求的普通情况,则亮起绿灯,否则,如果是对打包时间有要求的特殊情况,则亮起红灯,等等。另外,在打包完成后,还可以由打包员通过关闭指示灯的方式来通知WCS,这样,WCS就可以释放该打包子区域,使得其成为空闲状态,能够向其分配下一配送批次的拣货容器,等等。
为了更好的理解本申请实施例所提供的技术方案,下面通过一个实际应用中的例子,将各环节上的处理流程连在一起进行介绍。具体的,该例子中的具体流程可以包括:
WMS接收订单,进行合单操作,生成多个配送批次,并分别生成批次标识;
针对各配送批次,生成多条拣货任务,并分别生成拣货任务标识;
将各条拣货任务分别下发至对应的拣货区客户端;
拣货区客户端对接收到的拣货任务完成拣货后,通过对承载此次拣货任务相关商品的拣货容器进行扫码,将扫码结果信息提交至WMS,其中携带有批次标识、拣货任务标识;同时,该拣货带将会通过提升机运送至悬挂链系统,运送至合流区;
WMS记录批次标识、拣货任务标识与拣货容器标识之间的对应关系;
WMS将所述对应关系发送至WCS服务器进行保存;
合流区在接收到具体的拣货容器之后,通过合流区客户端对拣货容器进行扫码,扫码结果会提交到WCS服务器;
WCS服务器为所述拣货容器分配对应的打包子区域,并将分配结果返回给合流员客户端;其中,分配的原则是,将同一配送批次中多个拣货任务对应的拣货容器分配至同一打包子区域,并同一时刻只有一个批次的拣货容器位于同一打包子区域;
合流员客户端对打包子区域的分配结果进行展示,这样,合流员便可以以此提示信息为依据,将该拣货容器送至对应的打包子区域;
WCS服务器还可以对同一配送批次对应的拣货容器向打包子区域的送达情况进行统计,如果发现某一配送批次的全部拣货容器都已送到某打包子区域,则可以控制该打包子区域的提示灯亮起;并且,还可以根据该配送批次内具体的商品对打包时间的要求,控制亮起的指示灯的颜色;
打包子区域在完成对同一配送批次的打包操作后,可以交付给配送员进行配送,另外,打包员还可以通过关闭提示灯的方式,通知WCS服务器,该配送批次的打包任务已完成;
WCS将该打包子区域释放,切换为空闲状态,以用于为下一配送批次的拣货容器进行分配。
总之,通过本申请实施例,可以将门店内的空间划分为第一区、第二区以及第三区,根据具体的订单生成配送批次以及拣货任务后,可以下发到第一区进行拣货操作,之后,可以通过第一区与第二区之间部署的自动传送设备,将承载有拣货结果的拣货容器输送至第二区,在第二区可以按照拣货容器对应的配送批次,分批次的将拣货容器传输至第三区,在第三区就可以以配送批次为单位执行打包操作,以等待进行具体的配送。这样,无需改变门店前场对第一区的布局,例如,仍然可以按照货品种类的不同划分为多个子区域,并且每个子区域内可以仅完成同一配送批次中的一部分拣货任务,因此,每个子区域的拣货任务得到简化,并实现多条拣货任务的同步执行。另外,自动传送设备的存在,可以节省从前场到后场进行拣货结果运送过程中的人力及时间成本。而第二区的存在又可以使得具体的拣货容器被送至第三区进行打包之前,按照配送批次进行合并处理,使得第三区能够以配送批次为单位进行打包操作,因此,可以进一步提高处理效率。
另外,在可选的实现方式中,还可以提供相应的仓库控制系统以及相关的终端设备 等,以进一步提高合流区的工作效率。
实施例二
该实施例二是与实施例一相对应的,从第一终端设备的角度,提供了一种拣货容器信息处理方法,参见图3,该方法具体可以包括:
S301:第一终端设备客户端对输送至门店第二区的拣货容器的图形码进行扫码;其中,所述拣货容器是通过第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;
S302:获得扫码结果,并提交到到第一服务器,所述扫码结果中包括所述拣货容器的标识信息,以便所述第一服务器根据所述拣货容器的标识信息确定所述的配送批次以及拣货任务,并根据所述配送批次信息生成提示信息;
S303:将所述第一服务器提供的提示信息进行展示,以便根据所述提示信息将所述拣货容器传输至所述第三区。
实施例三
该实施例三也是与实施例一相对应的,从第一服务器的角度,提供了一种拣货容器信息处理方法,参见图4,该方法具体可以包括:
S401:预先获得拣货容器的标识与配送批次标识、拣货任务标识之间的对应关系;所述拣货容器通过门店中的第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;
S402:根据所述第二区的第一终端设备客户端提交的当前拣货容器的标识信息,确定该拣货容器对应的拣货任务标识,以及所属的配送批次信息;
S403:根据所述配送批次生成提示信息,并返回给所述第一终端设备客户端。
具体实现时,还可以获得门店中的第三区的工作状态信息,所述工作状态包括占用或者空闲;所述第三区用于对同一配送批次对应的各拣货容器承载的货品进行打包操作;这样,可以根据所述配送批次以及所述第三区的工作状态信息,生成所述提示信息。
其中,具体在生成提示信息时,可以首先确定当前拣货容器是否为所属配送批次中第一个被送达第二区的拣货容器;如果是,则根据所述第三区的状态,为所述配送批次进行第三区的分配,并根据分配后的第三区信息生成所述提示信息。
具体的,如果当前拣货容器是所属配送批次中第一个被送达第二区的拣货容器,且存在处于空闲状态的第三区,则可以将所述空闲状态的第三区分配给该配送批次。
而如果当前拣货容器是所属配送批次中第一个被送达第二区的拣货容器,且不存在 处于空闲状态的第三区,则可以将所述拣货容器标识加入到等待队列;当所述第三区出现空闲后,按照所述等待队列中的顺序,为等待的配送批次进行第三区的分配。
如果当前拣货容器不是所属配送批次中第一个被送达第二区的拣货容器,则可以首先判断该所属配送批次是否已被分配第三区;如果是,则可以直接根据该配送批次已被分配的信息生成所述提示信息。否则,如果该所属配送批次尚未被分配第三区,则可以将所述拣货容器标识加入到等待队列;当所述第三区出现空闲后,按照所述等待队列中的顺序,为等待的配送批次进行第三区的分配,并生成所述提示信息。
另外,第一服务器还可以对各配送批次关联的各拣货任务对应的拣货容器的送达情况进行维护;在当前配送批次的全部拣货容器已送达所述第二区,且已被分配到第三区时,控制所述第三区的指示灯亮起。
其中,所述第三区包括多个不同颜色的指示灯,分别对应对打包时效的不同要求;具体在控制所述第三区的指示灯亮起时,可以根据所述配送批次中包含的数据对象对打包时效的要求,控制对应颜色的指示灯亮起。在接收到所述指示灯熄灭的通知消息后,还可以将所述第三区切换为空闲状态,也即,该第三区可以用于分配给新到来的配送批次。
关于前述实施例二以及实施例三中的未详述部分,可以参见前述实施例一中的记载,这里不再赘述。
与实施例二相对应,本申请实施例还提供了一种拣货容器信息处理装置,参见图5,该装置具体可以应用于第一终端设备客户端,包括:
扫码单元501,用于对输送至门店第二区的拣货容器的图形码进行扫码;其中,所述拣货容器是通过第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;
扫码结果提交单元502,用于获得扫码结果,并提交到第一服务器,所述扫码结果中包括所述拣货容器的标识信息,以便所述第一服务器根据所述拣货容器的标识信息确定所述的配送批次以及拣货任务,并根据所述配送批次信息生成提示信息;
提示信息展示单元503,用于将所述第一服务器提供的提示信息进行展示,以便根据所述提示信息将所述拣货容器传输至所述第三区。
与实施例三相对应,本申请实施例还提供了一种拣货容器信息处理装置,参见图6,该装置具体可以应用于第一服务器,包括:
对应关系获得单元601,用于预先获得拣货容器的标识与配送批次标识、拣货任务 标识之间的对应关系;所述拣货容器通过门店中的第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;
配送批次信息确定单元602,用于根据所述第二区的第一终端设备客户端提交的当前拣货容器的标识信息,确定该拣货容器对应的拣货任务标识,以及所属的配送批次信息;
提示信息生成单元603,用于根据所述配送批次生成提示信息,并返回给所述第一终端设备客户端。
具体实现时,该装置还可以包括:
工作状态信息获得单元,用于获得门店中的第三区的工作状态信息,所述工作状态包括占用或者空闲;所述第三区用于对同一配送批次对应的各拣货容器承载的货品进行打包操作;
所述提示信息生成单元具体可以用于:
根据所述配送批次以及所述第三区的工作状态信息,生成所述提示信息。
具体的,所述提示信息生成单元可以包括:
第一判断子单元,用于确定当前拣货容器是否为所属配送批次中第一个被送达第二区的拣货容器;
提示子单元,用于如果是,则根据所述第三区的状态,为所述配送批次进行第三区的分配,并根据分配后的第三区信息生成所述提示信息。
具体的,所述提示子单元具体可以哟关于:
如果当前拣货容器是所属配送批次中第一个被送达第二区的拣货容器,且存在处于空闲状态的第三区,则将所述空闲状态的第三区分配给该配送批次。
或者,所述提示子单元具体还可以用于:
如果当前拣货容器是所属配送批次中第一个被送达第二区的拣货容器,且不存在处于空闲状态的第三区,则将所述拣货容器标识加入到等待队列;当所述第三区出现空闲后,按照所述等待队列中的顺序,为等待的配送批次进行第三区的分配。
再者,所述提示子单元还可以用于:
如果当前拣货容器不是所属配送批次中第一个被送达第二区的拣货容器,则判断该所属配送批次是否已被分配第三区;如果是,则根据该配送批次已被分配的信息生成所述提示信息。
如果该所属配送批次尚未被分配第三区,则将所述拣货容器标识加入到等待队列; 当所述第三区出现空闲后,按照所述等待队列中的顺序,为等待的配送批次进行第三区的分配,并生成所述提示信息。
另外,该装置还可以包括:
送达情况信息维护单元,用于对各配送批次关联的各拣货任务对应的拣货容器的送达情况进行维护;
指示灯控制单元,用于在当前配送批次的全部拣货容器已送达所述第二区,且已被分配到第三区时,控制所述第三区的指示灯亮起。
其中,所述第三区包括多个不同颜色的指示灯,分别对应对打包时效的不同要求;
所述指示灯控制单元具体可以用于:
根据所述配送批次中包含的数据对象对打包时效的要求,控制对应颜色的指示灯亮起。
另外,该装置还可以包括:
第三区工作状态切换单元,用于在接收到所述指示灯熄灭的通知消息后,将所述第三区切换为空闲状态。
另外,本申请实施例还提供了一种计算机系统,包括:
一个或多个处理器;以及
与所述一个或多个处理器关联的存储器,所述存储器用于存储程序指令,所述程序指令在被所述一个或多个处理器读取执行时,执行如下操作:
预先获得拣货容器的标识与配送批次标识、拣货任务标识之间的对应关系;所述拣货容器通过门店中的第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;
根据所述第二区的第一终端设备客户端提交的当前拣货容器的标识信息,确定该拣货容器对应的拣货任务标识,以及所属的配送批次信息;
根据所述配送批次生成提示信息,并返回给所述第一终端设备客户端。
其中,图7示例性的展示出了计算机系统的架构,具体可以包括处理器710,视频显示适配器711,磁盘驱动器712,输入/输出接口713,网络接口714,以及存储器720。上述处理器710、视频显示适配器711、磁盘驱动器712、输入/输出接口713、网络接口714,与存储器720之间可以通过通信总线730进行通信连接。
其中,处理器710可以采用通用的CPU(Central Processing Unit,中央处理器)、微处理器、应用专用集成电路(Application Specific Integrated Circuit,ASIC)、或者一 个或多个集成电路等方式实现,用于执行相关程序,以实现本申请所提供的技术方案。
存储器720可以采用ROM(Read Only Memory,只读存储器)、RAM(Random Access Memory,随机存取存储器)、静态存储设备,动态存储设备等形式实现。存储器720可以存储用于控制计算机系统700运行的操作系统721,用于控制计算机系统700的低级别操作的基本输入输出系统(BIOS)。另外,还可以存储网页浏览器723,数据存储管理系统724,以及拣货容器信息处理系统725等等。上述拣货容器信息处理系统725就可以是本申请实施例中具体实现前述各步骤操作的应用程序。总之,在通过软件或者固件来实现本申请所提供的技术方案时,相关的程序代码保存在存储器720中,并由处理器710来调用执行。
输入/输出接口713用于连接输入/输出模块,以实现信息输入及输出。输入输出/模块可以作为组件配置在设备中(图中未示出),也可以外接于设备以提供相应功能。其中输入设备可以包括键盘、鼠标、触摸屏、麦克风、各类传感器等,输出设备可以包括显示器、扬声器、振动器、指示灯等。
网络接口714用于连接通信模块(图中未示出),以实现本设备与其他设备的通信交互。其中通信模块可以通过有线方式(例如USB、网线等)实现通信,也可以通过无线方式(例如移动网络、WIFI、蓝牙等)实现通信。
总线730包括一通路,在设备的各个组件(例如处理器710、视频显示适配器711、磁盘驱动器712、输入/输出接口713、网络接口714,与存储器720)之间传输信息。
另外,该计算机系统700还可以从虚拟资源对象领取条件信息数据库741中获得具体领取条件的信息,以用于进行条件判断,等等。
需要说明的是,尽管上述设备仅示出了处理器710、视频显示适配器711、磁盘驱动器712、输入/输出接口713、网络接口714,存储器720,总线730等,但是在具体实施过程中,该设备还可以包括实现正常运行所必需的其他组件。此外,本领域的技术人员可以理解的是,上述设备中也可以仅包含实现本申请方案所必需的组件,而不必包含图中所示的全部组件。
通过以上的实施方式的描述可知,本领域的技术人员可以清楚地了解到本申请可借助软件加必需的通用硬件平台的方式来实现。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品可以存储在存储介质中,如ROM/RAM、磁碟、光盘等,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本申请各个实施例或 者实施例的某些部分所述的方法。
本说明书中的各个实施例均采用递进的方式描述,各个实施例之间相同相似的部分互相参见即可,每个实施例重点说明的都是与其他实施例的不同之处。尤其,对于系统或系统实施例而言,由于其基本相似于方法实施例,所以描述得比较简单,相关之处参见方法实施例的部分说明即可。以上所描述的系统及系统实施例仅仅是示意性的,其中所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部模块来实现本实施例方案的目的。本领域普通技术人员在不付出创造性劳动的情况下,即可以理解并实施。
以上对本申请所提供的拣货容器信息处理方法、装置及门店系统,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 (24)
- 一种门店系统,其特征在于,包括:所述门店内包括第一区、第二区以及第三区;所述第一区用于存放货品,并完成拣货任务,所述拣货任务关联有配送批次信息,所述配送批次中包括一条或多条拣货任务;所述第一区与第二区之间部署有自动传送设备,用于将承载有所述第一区拣货结果的拣货容器自动传输至所述第二区;所述第二区用于将所述拣货容器按照对应的配送批次信息进行合流,并将同一配送批次对应的拣货容器运输到所述第三区;所述第三区用于以配送批次为单位,对各拣货容器承载的货品进行打包操作。
- 根据权利要求1所述的门店系统,其特征在于,所述自动传送设备包悬挂链设备,所述悬挂链设备包括铺设于门店天花板上的输送轨道以及轨道沿线配备的多个挂钩装置,所述拣货容器通过所述挂钩装置由所述输送轨道输送至所述第二区。
- 根据权利要求2所述的门店系统,其特征在于,所述输送轨道为环形,按照预置的方向进行持续运转。
- 根据权利要求2所述的门店系统,其特征在于,所述第一区还设有提升机,用于将所述拣货容器提升至预置高度处;所述预置高度处与所述悬挂链输送轨道之间还设有输送线,所述输送线与悬挂链输送轨道的接驳处还设有上线转化口;所述输送线用于将所述拣货容器通过所述上线转化口输送并悬挂于所述悬挂链的挂钩装置上。
- 根据权利要求2所述的门店系统,其特征在于,所述悬挂链轨道在接近所述合流区的位置设有下线转化口,所述下线转化口连接到滑道设备,用于将所述拣货容器通过所述滑道设备滑入所述第二区的拣货容器队列。
- 根据权利要求1至5任一项所述的系统,其特征在于,所述拣货容器上还带有图形码,所述图形码中携带有拣货容器的唯一性标识;所述系统还包括:第一终端设备,用于对输送至所述第二区的拣货容器的图形码进行扫码,并将扫描获得的拣货容器标识提交至第一服务器;第一服务器,用于预先获得拣货容器标识与配送批次标识、拣货任务标识之间的对应关系,根据所述第一终端设备提交的拣货容器标识信息,确定该拣货容器对应的拣货任务标识,以及所属的配送批次,根据所述配送批次生成提示信息;所述第一终端设备还用于,对所述提示信息进行展示,以便根据所述提示信息将所述拣货容器传输至所述第三区。
- 根据权利要求6所述的系统,其特征在于,所述第一区为多个,分别用于存放不同种类的货品;所述系统中还包括:第二服务器,用于根据接收到的订单信息确定配送批次,生成批次标识,并根据同一配送批次中包括的数据对象的种类,生成多条拣货任务,分别分配拣货任务标识,并将所述拣货任务分别下发至对应第一区的第二终端设备;所述第二终端设备,用于对用于承载所述拣货任务拣货结果的拣货容器进行扫描,并将扫描获得的拣货容器的标识信息提交至所述第二服务器;所述第二服务器还用于,在所述拣货容器标识与配送批次标识、拣货任务标识之间建立对应关系,并提供给所述第一服务器。
- 根据权利要求6所述的系统,其特征在于,所述第三区还设有指示灯设备;所述第一服务器还用于,对各配送批次关联的各拣货任务对应的拣货容器的送达情况进行维护,在当前配送批次的全部拣货容器已送达所述第二区,且已被分配到第三区时,控制所述第三区的指示灯亮起。
- 根据权利要求8所述的系统,其特征在于,所述第三区包括多个不同颜色的指示灯,分别对应对打包时效的不同要求;所述第一服务器还用于,根据所述配送批次中包含的数据对象对打包时效的要求,控制对应颜色的指示灯亮起。
- 根据权利要求8所述的系统,其特征在于,所述第一服务器还用于,在接收到所述指示灯熄灭的通知消息后,将所述第三区切换为空闲状态。
- 一种拣货容器信息处理方法,其特征在于,包括:对输送至门店第二区的拣货容器的图形码进行扫码;其中,所述拣货容器是通过第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;获得扫码结果,并提交到到第一服务器,所述扫码结果中包括所述拣货容器的标识信息,以便所述第一服务器根据所述拣货容器的标识信息确定配送批次以及拣货任务,并根据所述配送批次信息生成提示信息;将所述第一服务器提供的提示信息进行展示,以便根据所述提示信息将所述拣货容器传输至第三区。
- 一种拣货容器信息处理方法,其特征在于,包括:预先获得拣货容器的标识与配送批次标识、拣货任务标识之间的对应关系;所述拣货容器通过门店中的第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;根据所述第二区的第一终端设备客户端提交的当前拣货容器的标识信息,确定该拣货容器对应的拣货任务标识,以及所属的配送批次信息;根据所述配送批次生成提示信息,并返回给所述第一终端设备客户端。
- 根据权利要求12所述的方法,其特征在于,还包括:获得门店中的第三区的工作状态信息,所述工作状态包括占用或者空闲;所述第三区用于对同一配送批次对应的各拣货容器承载的货品进行打包操作;所述根据所述配送批次生成提示信息,包括:根据所述配送批次以及所述第三区的工作状态信息,生成所述提示信息。
- 根据权利要求13所述的方法,其特征在于,所述生成提示信息,包括:确定当前拣货容器是否为所属配送批次中第一个被送达第二区的拣货容器;如果是,则根据所述第三区的状态,为所述配送批次进行第三区的分配,并根据分配后的第三区信息生成所述提示信息。
- 根据权利要求14所述的方法,其特征在于,所述为所述配送批次进行第三区的分配,包括:如果当前拣货容器是所属配送批次中第一个被送达第二区的拣货容器,且存在处于空闲状态的第三区,则将所述空闲状态的第三区分配给该配送批次。
- 根据权利要求14所述的方法,其特征在于,所述为所述配送批次进行第三区的分配,包括:如果当前拣货容器是所属配送批次中第一个被送达第二区的拣货容器,且不存在处于空闲状态的第三区,则将所述拣货容器标识加入到等待队列;当所述第三区出现空闲后,按照所述等待队列中的顺序,为等待的配送批次进行第三区的分配。
- 根据权利要求14所述的方法,其特征在于,所述生成提示信息,还包括:如果当前拣货容器不是所属配送批次中第一个被送达第二区的拣货容器,则判断该所属配送批次是否已被分配第三区;如果是,则根据该配送批次已被分配的信息生成所述提示信息。
- 根据权利要求17所述的方法,其特征在于,所述生成提示信息,还包括:如果该所属配送批次尚未被分配第三区,则将所述拣货容器标识加入到等待队列;当所述第三区出现空闲后,按照所述等待队列中的顺序,为等待的配送批次进行第三区的分配,并生成所述提示信息。
- 根据权利要求12所述的方法,其特征在于,还包括:对各配送批次关联的各拣货任务对应的拣货容器的送达情况进行维护;在当前配送批次的全部拣货容器已送达所述第二区,且已被分配到第三区时,控制所述第三区的指示灯亮起。
- 根据权利要求19所述的方法,其特征在于,所述第三区包括多个不同颜色的指示灯,分别对应对打包时效的不同要求;所述控制所述第三区的指示灯亮起,包括:根据所述配送批次中包含的数据对象对打包时效的要求,控制对应颜色的指示灯亮起。
- 根据权利要求19所述的方法,其特征在于,还包括:在接收到所述指示灯熄灭的通知消息后,将所述第三区切换为空闲状态。
- 一种拣货容器信息处理装置,其特征在于,包括:扫码单元,用于对输送至门店第二区的拣货容器的图形码进行扫码;其中,所述拣货容器是通过第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;扫码结果提交单元,用于获得扫码结果,并提交到到第一服务器,所述扫码结果中包括所述拣货容器的标识信息,以便所述第一服务器根据所述拣货容器的标识信息确定配送批次以及拣货任务,并根据所述配送批次信息生成提示信息;提示信息展示单元,用于将所述第一服务器提供的提示信息进行展示,以便根据所述提示信息将所述拣货容器传输至第三区。
- 一种拣货容器信息处理装置,其特征在于,包括:对应关系获得单元,用于预先获得拣货容器的标识与配送批次标识、拣货任务标识之间的对应关系;所述拣货容器通过门店中的第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;配送批次信息确定单元,用于根据所述第二区的第一终端设备客户端提交的当前拣货容器的标识信息,确定该拣货容器对应的拣货任务标识,以及所属的配送批次信息;提示信息生成单元,用于根据所述配送批次生成提示信息,并返回给所述第一终端设备客户端。
- 一种计算机系统,其特征在于,包括:一个或多个处理器;以及与所述一个或多个处理器关联的存储器,所述存储器用于存储程序指令,所述程序指令在被所述一个或多个处理器读取执行时,执行如下操作:预先获得拣货容器的标识与配送批次标识、拣货任务标识之间的对应关系;所述拣货容器通过门店中的第一区与第二区之间部署的自动传送设备,从第一区输送至所述第二区;根据所述第二区的第一终端设备客户端提交的当前拣货容器的标识信息,确定该拣货容器对应的拣货任务标识,以及所属的配送批次信息;根据所述配送批次生成提示信息,并返回给所述第一终端设备客户端。
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| CN110443535B (zh) | 2023-12-29 |
| CN110443535A (zh) | 2019-11-12 |
| US20210047120A1 (en) | 2021-02-18 |
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