Package delivery method and apparatus, and electronic device and storage medium
By using audio-visual prompts and storage buttons in the intelligent shelf system, the problem of low barcode scanning efficiency in existing technologies has been solved, enabling efficient and accurate package binding and improving the quality of logistics services.
Patent Information
- Application Number
- PCT/CN2024/115771
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-05-24
- Filing Date
- 2024-08-30
- Publication Date
- 2025-11-27
Smart Images

Figure CN2024115771_27112025_PF_FP_ABST
Abstract
Description
A method, apparatus, electronic device and storage medium for parcel delivery Technical Field
[0001] This application relates to the field of smart parcel delivery technology, specifically to a parcel delivery method, device, electronic device, and storage medium. Background Technology
[0002] In modern logistics systems, delivery stations play a crucial role as transit and distribution points for express parcels. To ensure that parcels are stored accurately and retrieved by recipients, delivery stations commonly employ intelligent shelving systems to assist in parcel storage and management.
[0003] Existing parcel sorting stations typically use barcode scanning to link parcels to storage areas on shelves. Specifically, each storage area is assigned a unique barcode, and couriers need to scan these barcodes one by one to link parcel information to the corresponding storage area. This method is not only inefficient and prone to missing scans, but also depends on both the scanner and the readability of the barcode; problems with either can lead to scan failures.
[0004] Summary of the Invention
[0005] In view of the above problems, this specification is proposed to provide a parcel delivery method, apparatus, electronic device and storage medium that overcomes or at least partially solves the above problems.
[0006] This invention provides a parcel delivery method applied to a post station service platform. The post station service platform is communicatively connected to multiple smart shelves, each smart shelf having a unique shelf binding tag. Each smart shelf is divided into multiple storage areas, each storage area having a unique location number. A corresponding storage button and an audible and visual prompt are located to one side of each location number. The method includes:
[0007] Scan the shelf binding tag to bind at least one of the smart shelves as the target smart shelf for the current package delivery;
[0008] Obtain the logistics information of the parcels to be stored, and determine whether the parcels meet the warehousing conditions based on the logistics information;
[0009] If the conditions are met, the package to be stored is allowed to be stored in the target smart shelf, and an allow entry instruction is sent to the user terminal. The user terminal should display a successful entry prompt upon receiving the allow entry instruction.
[0010] sending a binding instruction to the station service platform and the audible and visual prompter, the binding instruction being generated by the courier triggering the deposit button, the audible and visual prompter being required to make a to-be-bound prompt according to the binding instruction, and the station service platform being required to obtain the position number of the current storage area according to the binding instruction;
[0011] binding the position number with the logistics information of the to-be-deposited parcel to obtain a binding success relationship, and feeding back the binding success relationship to the audible and visual prompter, the audible and visual prompter being required to make a binding success prompt according to the binding success relationship.
[0012] Further, the parcel delivery method, wherein when the indicator light of the audible and visual prompter is in a normal-off state, the to-be-bound prompt is to control the indicator light to light up, and the binding success prompt is to control the indicator light to restore from lighting up to the normal-off state;
[0013] when the indicator light of the audible and visual prompter is in a normal-on state, the to-be-bound prompt is to control the indicator light to turn off, and the binding success prompt is to control the indicator light to restore from turning off to the normal-on state.
[0014] Further, the parcel delivery method, wherein before the step of binding the position number with the logistics information of the to-be-deposited parcel, the method further comprises:
[0015] querying parameter information of the current to-be-deposited parcel according to the logistics information, and querying the maximum volume and the maximum load capacity of the current storage area according to the position number, the parameter information including a weight value, a length value, a width value and a height value;
[0016] determining whether the parameter information exceeds the maximum volume and the maximum load capacity of the current storage area;
[0017] if the parameter information does not exceed the maximum volume and the maximum load capacity of the current storage area, performing the step of binding the position number with the logistics information of the to-be-deposited parcel;
[0018] if the parameter information exceeds the maximum volume and the maximum load capacity of the current storage area, generating a binding failure relationship, and feeding back the binding failure relationship to the audible and visual prompter, the audible and visual prompter being required to make a binding failure prompt according to the binding failure relationship.
[0019] Further, the parcel delivery method, wherein the binding failure prompt is to control the indicator light of the audible and visual prompter to flash.
[0020] Further, the parcel delivery method, wherein after the step of the audible and visual prompter making a binding failure prompt according to the binding failure relationship, the method further comprises:
[0021] retrieve the position number of the target storage area in the target intelligent shelf that meets the parameter information;
[0022] send a prompt instruction to the acousto-optic prompter where the target storage area is located according to the position number, and the acousto-optic prompter should make a storage prompt according to the prompt instruction.
[0023] Further, the parcel delivery method, wherein, after the step of obtaining the logistics information of the to-be-stored parcel and judging whether the to-be-stored parcel meets the warehouse entry condition according to the logistics information, the method further comprises:
[0024] If not, reject the to-be-stored parcel to be stored in the target intelligent shelf, and send a warehouse entry failure instruction to the user end, and the user end should make a warehouse entry failure prompt according to the warehouse entry failure instruction.
[0025] Further, the parcel delivery method, wherein the post station service platform and the intelligent shelf communicate through a local area network or Bluetooth.
[0026] The application also provides a parcel delivery device applied to a post station service platform, the post station service platform is in communication connection with a plurality of intelligent shelves, each of the intelligent shelves is provided with a unique shelf binding tag, the intelligent shelves are divided into a plurality of storage areas, each of the storage areas has a unique position number, and a corresponding storage button and an acousto-optic prompter are arranged on one side of the position number, characterized in that the device comprises:
[0027] a shelf binding module for scanning the shelf binding tag to bind at least one intelligent shelf as a target intelligent shelf for current parcel delivery;
[0028] a judgment module for obtaining the logistics information of a to-be-stored parcel and judging whether the to-be-stored parcel meets a warehouse entry condition according to the logistics information;
[0029] a first prompt module for, when the to-be-stored parcel meets the warehouse entry condition, allowing the to-be-stored parcel to be stored in the target intelligent shelf and sending an allowed warehouse entry instruction to a user end, and the user end should make a warehouse entry success prompt according to the allowed warehouse entry instruction;
[0030] a parcel binding module for sending a binding instruction to the post station service platform and the acousto-optic prompter, the binding instruction is generated by triggering the storage button by a courier, the acousto-optic prompter should make a to-be-bound prompt according to the binding instruction, and the post station service platform obtains the position number of the current storage area according to the binding instruction;
[0031] A second prompting module is configured to bind the position number with the logistics information of the package to be stored, to obtain a binding success relationship, and to feed back the binding success relationship to the sound-light prompter, which makes a binding success prompt according to the binding success relationship.
[0032] In another aspect, the application also provides an electronic device, which comprises a memory storing a plurality of instructions, and a processor loading the instructions from the memory to perform the steps in any of the package delivery methods provided in the embodiments of the application.
[0033] In another aspect, the application also provides a computer readable storage medium storing a plurality of instructions, which are suitable for being loaded by a processor to perform the steps in any of the package delivery methods provided in the embodiments of the application.
[0034] Compared with the prior art, the application has the following beneficial effects:
[0035] 1. In the actual delivery process, the courier can bind the package with the storage area by pressing the storage button, which is more efficient and convenient than the operation of scanning the barcode on the storage area by the code scanner in the prior art. In the binding process, the sound-light prompter can prompt the courier through light effect changes, so that the courier can quickly find and solve problems, reduce the situation of missed binding or wrong delivery, enhance the overall service quality of the logistics station, and bring a smoother and more satisfactory service experience to the user.
[0036] 2. The position number can be reused. After the pickup is completed, the new package can be placed and the storage button is pressed to rebind, which saves the operation of moving the library and reduces the workload of the station. DETAILED DESCRIPTION
[0037] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can also be obtained by those skilled in the art without creative labor.
[0038] FIG. 1 is a scene schematic diagram of the package delivery method provided in the embodiments of the application;
[0039] FIG. 2 is a structural schematic diagram of the intelligent shelf provided in the embodiments of the application;
[0040] FIG. 3 is a flow schematic diagram of the package delivery method provided in the embodiments of the application;
[0041] FIG. 4 is a structural schematic diagram of a package delivery device provided in the embodiments of the application;
[0042] Fig. 5 is a structural schematic diagram of an electronic device according to an embodiment of the present application;
[0043] Fig. 6 is a schematic diagram of a computer readable medium according to an embodiment of the present application. DETAILED DESCRIPTION
[0044] The following description is presented to enable any person skilled in the art to practice the application as claimed. The preferred embodiments disclosed herein are only examples of the application and alternative embodiments can be devised by those skilled in the art without departing from the spirit and scope of the application. The disclosure of the application defined in the following description resolves the stated problems, achieves the aims of the application and is freely transferred to others skilled in the art.
[0045] The exemplary embodiments of the present application are further described in the following description with reference to the drawings. The exemplary embodiments are not limited to the drawings described but can be implemented in various forms. It should be further understood that the drawings are not necessarily drawn to scale and that the dimensions of the various features can have been exaggerated for the sake of clarity and presentation. In the drawings:
[0046] In the embodiments described, features, structures, characteristics or other details can be combined in any suitable manner without departing from the technical concept of the present application.
[0047] In the description of the embodiments, features, structures, characteristics or other details described in the present application are intended to enable a person skilled in the art to fully understand the embodiments. However, it is not excluded that a person skilled in the art can practice the technical solution of the present application without one or more of the specific features, structures, characteristics or other details.
[0048] The flowcharts shown in the drawings are only exemplary and do not necessarily include all the contents and operations / steps, nor do they have to be executed in the order described. For example, some operations / steps can be further divided, and some operations / steps can be combined or partially combined, so the actual execution order can be changed according to the actual situation.
[0049] The block diagrams shown in the drawings are only functional entities and do not necessarily correspond to physically independent entities. That is, these functional entities can be implemented in the form of software, or in one or more hardware modules or integrated circuits, or in different network and / or processor devices and / or microcontroller devices.
[0050] The term “and / or” or “and / or” includes all combinations of one or more of the associated listed items.
[0051] The following embodiments can be applied to the relay service system shown in FIG. 1 and the smart shelf 10 shown in FIG. 2.
[0052] The relay service platform 20 and the smart shelf 10 shown in FIG. 1. In a specific implementation, the smart shelf 10 is arranged in a delivery relay station and can communicate with the relay service platform 20 through a gateway. The communication mode between the smart shelf 10 and the relay service platform 20 includes but is not limited to a local area network, Bluetooth, an MQTT protocol, a 4G network, a 5G network, etc.
[0053] In this embodiment, the communication between the smart shelf 10 and the relay service platform 20 is preferably carried out through a local area network, specifically a 2.4 GHz frequency band local area network. It should be noted that 2.4 GHz wireless technology is a short-range wireless transmission technology, which is bidirectional and has strong anti-interference performance, long transmission distance (short-range wireless technology range), and low power consumption. The 2.4G technology can contact a computer within a distance of 10 meters. This makes it very suitable for Internet of Things (IoT) scenarios and other scenarios that require lightweight, real-time communication.
[0054] In the communication between the relay service platform 20 and the smart shelf 10, the 2.4G local area network can realize the following functions: 1) Real-time status update: The smart shelf 10 can publish the occupancy of its storage area to the gateway in real time, and the relay service platform 20 can obtain the occupancy of each storage area by querying the gateway. 2) Message notification: When the smart shelf 10 has certain events (such as storage area state change, abnormal occupancy of storage area), it can send a notification message to the relay service platform through the gateway so that the relay service platform can respond in time.
[0055] The smart shelf 10 shown in FIG. 2 has a plurality of storage areas 11, and each storage area 11 is provided with a unique position number 14. The position number 14 is provided with a corresponding storage button 12 and an audible and visual prompter 13 on one side.
[0056] In the actual delivery process, the courier can bind the package and the storage area 11 by pressing the storage button 12. Compared with the existing scheme of scanning the barcode on the storage area through a code scanner, the operation is more efficient and convenient. In the binding process, the audible and visual prompter 13 will change the light effect to prompt the courier, so that the courier can quickly find and solve the problem, reduce the situation of missed binding or wrong delivery, and enhance the overall service quality of the logistics relay station, bringing a more smooth and satisfactory service experience to the user.
[0057] Those skilled in the art can understand that the structure of the intelligent shelf shown in FIG. 2 does not constitute a limitation on the intelligent shelf, and in actual implementation, the intelligent shelf can further include more or fewer components than those shown, or some components can be combined, or different components are arranged.
[0058] First embodiment
[0059] Referring to FIG. 3, a package delivery method in the first embodiment of the present application is shown, which is applied to a relay station service platform 20, the relay station service platform 20 is in communication connection with a plurality of intelligent shelves 10, each of the intelligent shelves is provided with a unique shelf binding label, the intelligent shelf 10 is divided into a plurality of storage areas 11, each of the storage areas 11 has a unique position number, one side of the position number is provided with a corresponding storage button 12 and an audible and visual prompter 13, the method includes steps S01 to S05, wherein:
[0060] Step S01: Scanning the shelf binding label to bind at least one of the intelligent shelves as a target intelligent shelf for current package storage;
[0061] In this embodiment, the shelf binding label can be pasted on the intelligent shelf in the form of a bar code or a two-dimensional code. When storing, the express delivery personnel needs to scan the label on the intelligent shelf first to bind the intelligent shelf, so as to determine the storage range of the current package. The main purpose is to realize simultaneous operation of multiple people into the warehouse without interference between each other.
[0062] Step S02: Obtaining logistics information of a to-be-stored package, and judging whether the to-be-stored package meets the warehouse entry condition according to the logistics information;
[0063] It can be understood that, since the logistics information contains the address of the recipient, it is first judged whether the address of the package is within the delivery range of the current logistics relay station before entering the warehouse, which can effectively avoid storing the package in a relay station far away from the recipient, and help to optimize the logistics efficiency and ensure that the package can be delivered to the recipient or taken by the recipient in the shortest time.
[0064] For example, the keywords in the address of the recipient, such as xx community, xx compound or xx residential building, etc. are extracted, and then it is inquired whether there is the same or similar keyword information in the collection range database of the logistics relay station. If yes, step S03 is executed. If the logistics information contains interception, on-site delivery demand, refusal, etc., the warehouse entry is refused.
[0065] Step S03: If yes, the to-be-stored package is allowed to be stored in the target intelligent shelf, and an entry instruction is sent to the user end, and the user end gives a warehouse entry success prompt according to the entry instruction;
[0066] Specifically, the user terminal refers to a handheld terminal device of a courier or a courier company communicating with the station service platform, and the handheld terminal device includes a smart phone or a dedicated code scanner. When the package is successfully stored in the warehouse, the handheld terminal device will make a feedback of sound / vibration prompt in response to the storage permission instruction sent by the station service platform, for example, sending a voice of "stored" to inform the courier that the package is successfully stored in the warehouse. In addition, it should be noted that the scanning of the shelf binding label in the above step S01 and the acquisition of the logistics information of the to-be-stored package in the step S02 are both realized through the handheld terminal device.
[0067] Step S04: sending a binding instruction to the station service platform and the sound-light prompter, the binding instruction being generated by the courier pressing the storage button, the sound-light prompter making a to-be-bound prompt in response to the binding instruction, and the station service platform obtaining the position number of the current storage area according to the binding instruction;
[0068] It can be understood that before the scanned package is placed in the storage area, the courier needs to press the storage button to bind the package with the storage area. However, in the binding process, if the storage button is damaged or cannot be pressed, a missing binding phenomenon will occur. In order to enable the courier to find the above problems in time during the storage process, after the storage button is pressed, the indicator light of the sound-light prompter will make a to-be-bound prompt, indicating that the storage button function is normal and can operate normally. On the contrary, if the indicator light of the sound-light prompter does not respond after the storage button is pressed, it indicates that the storage button function is damaged and cannot bind the package with the position number, and needs to be repaired and debugged immediately.
[0069] It is worth mentioning that the sound-light prompter making a to-be-bound prompt can also instruct the courier to put the package into the correct storage area, reducing the misplacement situation.
[0070] Step S05: binding the position number with the logistics information of the to-be-stored package to obtain a binding success relationship, and feeding back the binding success relationship to the sound-light prompter, the sound-light prompter making a binding success prompt in response to the binding success relationship.
[0071] In summary, in the package delivery method in the present application, the courier can bind the package with the storage area by pressing the storage button during the actual delivery process, which is more efficient and convenient than the existing scheme of scanning the barcode on the storage area by the code scanner. In the binding process, the sound-light prompter will change the light effect to prompt the courier, so that the courier can quickly find and solve the problem, reduce the missing binding or misplacement situation, enhance the overall service quality of the logistics station, and bring a more smooth and satisfactory service experience to the user.
[0072] Second embodiment
[0073] The parcel delivery method in the second embodiment of the application is applied to a post station service platform, the post station service platform is in communication connection with a plurality of intelligent shelves, each intelligent shelf is provided with a unique shelf binding tag, the intelligent shelf is divided into a plurality of storage areas, each storage area has a unique position number, one side of the position number is provided with a corresponding storage button and an audible and visual prompter, and the method comprises steps S101 to S105, wherein:
[0074] Step S101: scanning the shelf binding tag to bind at least one intelligent shelf as a target intelligent shelf for current parcel delivery;
[0075] Step S102: obtaining logistics information of a to-be-stored parcel, and determining whether the to-be-stored parcel meets warehouse entry conditions according to the logistics information;
[0076] Step S103: if yes, allowing the to-be-stored parcel to be stored in the target intelligent shelf, and sending an allowed warehouse entry instruction to a user end, and the user end gives a warehouse entry success prompt according to the allowed warehouse entry instruction;
[0077] Step S104: sending a binding instruction to the post station service platform and the audible and visual prompter, the binding instruction is generated by triggering the storage button by a courier, the audible and visual prompter gives a to-be-bound prompt according to the binding instruction, and the post station service platform obtains a position number of a current storage area according to the binding instruction;
[0078] Step S105: binding the position number with the logistics information of the to-be-stored parcel to obtain a binding success relationship, and feeding back the binding success relationship to the audible and visual prompter, and the audible and visual prompter gives a binding success prompt according to the binding success relationship.
[0079] It should be noted that the implementation principles and technical effects of steps S101 to S105 in this embodiment are the same as those of the foregoing first embodiment, and for brief description, the parts not mentioned in this embodiment can be referred to the corresponding contents in the first embodiment.
[0080] Further, after the step of binding the position number with the logistics information of the to-be-stored parcel to obtain a binding success relationship, and feeding back the binding success relationship to the audible and visual prompter, and the audible and visual prompter giving a binding success prompt according to the binding success relationship, the method further comprises:
[0081] generating pick-up information according to the binding success relationship, and sending the pick-up information to a client end.
[0082] Specifically, the pick-up information mainly includes a pick-up code of the package, a position number of the intelligent shelf and a fast delivery station where the package is located. The pick-up information can be sent to the mobile phone of the customer in the form of a short message or be notified on a logistics information APP.
[0083] In actual application, the indicator light of the sound-light prompter on the intelligent shelf is in two states of constant off or constant on. When the indicator light of the sound-light prompter is in the constant off state, the binding preparation prompt is to control the indicator light to light up, and the binding success prompt is to control the indicator light to restore from lighting up to constant off.
[0084] When the indicator light of the sound-light prompter is in the constant on state, the binding preparation prompt is to control the indicator light to turn off, and the binding success prompt is to control the indicator light to restore from turning off to constant on.
[0085] Of course, the indicator light can be in the constant on state or the constant off state according to actual needs. In the embodiment, the constant off state is preferred. In this way, the sound-light prompter can not only provide effective alarm prompts at critical moments, but also can maintain a low energy consumption state in daily operation, achieving the goals of environmental protection and energy saving.
[0086] Further, before the step of binding the position number with the logistics information of the package to be stored, the method further comprises:
[0087] querying parameter information of the current package to be stored according to the logistics information, and querying the maximum volume and the maximum load of the current storage area according to the position number, wherein the parameter information includes weight value, length value, width value and height value;
[0088] determining whether the parameter information exceeds the maximum volume and the maximum load of the current storage area;
[0089] if the parameter information does not exceed the maximum volume and the maximum load of the current storage area, performing the step of binding the position number with the logistics information of the package to be stored;
[0090] if the parameter information exceeds the maximum volume and the maximum load of the current storage area, generating a binding failure relationship, and feeding back the binding failure relationship to the sound-light prompter, wherein the sound-light prompter makes a binding failure prompt according to the binding failure relationship.
[0091] It can be understood that, before binding, by querying whether the parameter information (such as weight and volume) of the package matches the maximum volume and the maximum load of the storage area, the safety problems such as shelf collapse and equipment damage caused by misplacement of overweight or oversized packages can be avoided.
[0092] The parameter information can be measured and recorded in the logistics center. Specifically, when the package enters the sorting system, it will pass through an automatic measuring device, which usually includes a package weight sensor and a size scanner, thereby automatically measuring and recording the parameter information of the package. The parameter information can be stored in the barcode or two-dimensional code of the express delivery slip, so that the deliveryman can obtain it by scanning the handheld terminal device. The maximum volume and maximum bearing capacity of different storage areas are pre-recorded in the post station service platform, and the maximum volume and maximum bearing capacity of the corresponding storage area can be obtained by inputting the location number.
[0093] In the embodiment, the binding failure prompt is that the indicator light of the sound and light prompter flashes, or an alarm is issued through the loudspeaker while the indicator light flashes.
[0094] Further, after the step of the sound and light prompter making a binding failure prompt in response to the binding failure relationship, the method further comprises:
[0095] Retrieving the location number of the target storage area in the target intelligent shelf that meets the parameter information;
[0096] According to the location number, sending a prompt instruction to the sound and light prompter where the target storage area is located, and the sound and light prompter making a storage prompt in response to the prompt instruction.
[0097] It can be understood that when the sound and light prompter issues a binding failure prompt, in order to enable the deliveryman to quickly find the storage area matching the current package, the system will automatically retrieve the location number of the target storage area of the package, and according to the location number, send a prompt instruction to the sound and light prompter where the target storage area is located, so that the sound and light prompter will make a storage prompt, which can specifically be in the form of light flashing and / or voice prompt to prompt the deliveryman to quickly find the target storage area.
[0098] In addition, it should be noted that the voice of the binding failure prompt should be distinguished from the voice of the storage prompt to avoid confusion by the deliveryman, for example, the voice of the binding failure prompt can be "binding failure", and the voice of the storage prompt can be "please put the package". Of course, the specific voice setting can be adjusted according to the needs, and the embodiment is only an example and not a limitation.
[0099] Further, after the step of obtaining the logistics information of the package to be stored and determining whether the package to be stored meets the warehouse entry condition according to the logistics information, the method further comprises:
[0100] If not, the package to be stored is rejected to be stored in the target intelligent shelf, and a warehouse entry failure instruction is sent to the user end, and the user end makes a warehouse entry failure prompt in response to the warehouse entry failure instruction.
[0101] Specifically, the storage failure prompt can be a voice of "storage failure" sent by the handheld terminal device to prompt the courier that the current package does not meet the storage condition.
[0102] Third embodiment
[0103] Referring to FIG. 4, a package delivery device in the third embodiment of the present application is shown, which is applied to a relay station service platform, the relay station service platform is communicatively connected with a plurality of intelligent shelves, the intelligent shelves are divided into a plurality of storage areas, and each storage area is provided with a corresponding storage button and an audible and visual prompter, the device comprises:
[0104] A shelf binding module 31 is configured to scan the shelf binding label to bind at least one intelligent shelf as a target intelligent shelf for current package delivery.
[0105] A judgment module 32 is configured to obtain logistics information of a package to be stored, and determine whether the package to be stored meets a storage condition according to the logistics information.
[0106] A first prompt module 33 is configured to allow the package to be stored to be stored in the target intelligent shelf when the package to be stored meets the storage condition, and send an allowed storage instruction to a user end, and the user end makes a storage success prompt according to the allowed storage instruction.
[0107] A package binding module 34 is configured to send a binding instruction to the relay station service platform and the audible and visual prompter, the binding instruction is generated by a courier triggering the storage button, the audible and visual prompter makes a to-be-bound prompt according to the binding instruction, and the relay station service platform obtains a position number of a current storage area according to the binding instruction.
[0108] A second prompt module 35 is configured to bind the position number with the logistics information of the package to be stored to obtain a binding success relationship, and feed back the binding success relationship to the audible and visual prompter, and the audible and visual prompter makes a binding success prompt according to the binding success relationship.
[0109] Optionally, the device further comprises a screening module, the screening module comprises:
[0110] An acquisition unit is configured to query parameter information of a current package to be stored according to the logistics information, and query a maximum volume and a maximum weight of a current storage area according to the position number, the parameter information includes a weight value, a length value, a width value and a height value.
[0111] A judgment unit is configured to determine whether the parameter information exceeds the maximum volume and the maximum weight of the current storage area.
[0112] The first execution unit is configured to execute the binding of the position number and the logistics information of the to-be-stored package when the parameter information does not exceed the maximum volume and the maximum weight of the current storage area.
[0113] The second execution unit is configured to generate a binding failure relationship when the parameter information exceeds the maximum volume and the maximum weight of the current storage area, and feed back the binding failure relationship to the sound-light prompter, which gives a binding failure prompt according to the binding failure relationship.
[0114] Optionally, the device further comprises a third prompt module, which comprises:
[0115] The calling unit is configured to call the position number of the target storage area in the target intelligent shelf that meets the parameter information.
[0116] The prompt unit is configured to send a prompt instruction to the sound-light prompter where the target storage area is located according to the position number, and the sound-light prompter gives a storage prompt according to the prompt instruction.
[0117] Optionally, the device further comprises:
[0118] The fourth prompt module is configured to reject the to-be-stored package to be stored in the target intelligent shelf when the to-be-stored package does not meet the storage condition, and send a storage failure instruction to the user end, and the user end gives a storage failure prompt according to the storage failure instruction.
[0119] The functions of the device of the embodiment of the application have been described in the above-mentioned method embodiment, so the description of the present embodiment is not detailed, and the relevant description in the foregoing embodiments can be referred to, and will not be repeated here.
[0120] Based on the same inventive concept, the present specification also provides an electronic device.
[0121] The electronic device of the present application is described below, which can be regarded as a specific entity implementation of the above-mentioned method and device embodiments of the present application. For the details described in the electronic device embodiment of the present application, it should be regarded as a supplement to the above-mentioned method or device embodiments; for the details not disclosed in the electronic device embodiment of the present application, it can be realized by referring to the above-mentioned method or device embodiments.
[0122] Fig. 5 is a structural schematic diagram of an electronic device provided by the present specification. The electronic device 300 according to the embodiment of the present application is described below with reference to Fig. 5. The electronic device 300 shown in Fig. 5 is only an example, and should not bring any limitation to the functions and use range of the embodiment of the present application.
[0123] As shown in FIG. 5, the electronic device 300 is in the form of a general computing device. Components of the electronic device 300 can include, but are not limited to, at least one processing unit 310, at least one storage unit 320, a bus 330 that connects different system components, including the storage unit 320 and the processing unit 310, a display unit 340, and the like.
[0124] The storage unit stores program codes that can be executed by the processing unit 310, so that the processing unit 310 performs the steps according to various exemplary embodiments of the present application described in the processing method part of the present specification. For example, the processing unit 310 can perform the steps as shown in FIG. 3.
[0125] The storage unit 320 can include a readable medium in the form of a volatile storage unit, such as a random access memory (RAM) 3201 and / or a cache memory unit 3202, and can further include a read-only memory (ROM) 3203.
[0126] The storage unit 320 can further include a program / utility 3204 having a set of program modules 3205, including but not limited to, an operating system, one or more application programs, other program modules, and program data, each of which can include implementation of a network environment, alone or in combination.
[0127] The bus 330 can be one or more of several types of bus structures, including a storage unit bus or storage unit controller, a peripheral bus, a graphics acceleration port, a processing unit or a local bus using any of a variety of bus structures, and the like.
[0128] The electronic device 300 can also communicate with one or more external devices 400, such as a keyboard or pointing device, a Bluetooth device, and the like; and / or one or more devices that enable a user to interact with the electronic device 300 and / or one or more devices that enable the electronic device 300 to communicate with one or more other computing devices. Such communication can occur via an input / output (I / O) interface 350. Still yet, the electronic device 300 can communicate with one or more networks, such as a local area network (LAN), a wide area network (WAN), and / or the Internet, through a network adapter 360. The network adapter 360 can communicate with the other modules of the electronic device 300 through the bus 330. It should be appreciated that, although not shown in FIG. 5, other hardware and / or software modules can be used in conjunction with the electronic device 300, including but not limited to, microcode, device drivers, redundant processing units, external disk drive arrays, RAID systems, tape drives, and data archival storage systems, and the like.
[0129] Through the description of the above embodiments, those skilled in the art can easily understand that the exemplary embodiments described in the present application can be implemented by software, or by software in combination with necessary hardware. Therefore, the technical solutions according to the embodiments of the present application can be embodied in the form of a software product, which can be stored in a computer readable storage medium (which can be a CD-ROM, a U disk, a mobile hard disk, etc.) or a network, and includes a plurality of instructions to enable a computing device (which can be a personal computer, a server, or a network device, etc.) to perform the above-mentioned method according to the present application. When the computer program is executed by a data processing device, the computer readable medium enables the computer readable medium to implement the above-mentioned method of the present application, i.e., the method shown in Fig. 3.
[0130] Fig. 6 is a schematic diagram of a computer readable medium provided by an embodiment of the present application.
[0131] The computer program for implementing the method shown in Fig. 3 can be stored on one or more computer readable media. The computer readable medium can be a readable signal medium or a readable storage medium. The readable storage medium may, for example, but is not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device or apparatus, or any combination of the above. More specific examples (non-exhaustive list) of readable storage media include an electrical connection having one or more wires, a portable disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the above.
[0132] The computer readable storage medium can include a data signal carried in a baseband or as a part of a carrier wave propagating through the transmission medium, in which readable program codes are borne. Such a propagating data signal can take various forms, including but not limited to electromagnetic signals, optical signals or any suitable combination of the above. The readable storage medium can also be any readable medium other than the readable storage medium, which can send, propagate or transmit programs for use by or in combination with an instruction execution system, device or apparatus. The program codes contained on the readable storage medium can be transmitted by any suitable medium, including but not limited to wireless, wired, optical cable, RF, etc., or any suitable combination of the above.
[0133] The program code may be implemented in any of various ways, including procedure-based, object-oriented languages, such as Java, C++, etc., and traditional process-based languages, such as the "C" programming language. The program code can execute entirely on the user's computing device, partly on the user's computing device, as a stand-alone software package, partly on the user's computing device and partly on a remote computing device or entirely on the remote computing device or server. In the latter scenario, the remote computing device can be connected to the user's computing device through any type of network, including a local area network (LAN) or a wide area network (WAN), or the connection can be made to an external computing device, such as through the Internet using an Internet Service Provider (ISP).
[0134] In light of the above, the present application can be implemented in hardware, or software on one or more processors, or a combination of both. Those skilled in the art will appreciate that the various embodiments of the present application can be implemented in their respective forms without departing from the spirit or essential characteristics thereof. The presently disclosed embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein.
[0135] The specific embodiments described above are illustrative of specific ways to make and use the application and are not meant to be limiting as to the scope of the application. Other ways of implementing the application can be apparent to those skilled in the art in view of the foregoing description.
[0136] The various embodiments in the present application are described in progressive manner, and the same or similar parts among the various embodiments can be mutually referred to. Each embodiment focuses on the difference from other embodiments.
[0137] The specific embodiments described above are illustrative of specific ways to make and use the application and are not meant to be limiting as to the scope of the application. Other ways of implementing the application can be apparent to those skilled in the art in view of the foregoing description.
Claims
1. A package delivery method, characterized by, The application is applied to a post station service platform, the post station service platform is in communication connection with a plurality of intelligent shelves, each of the intelligent shelves is provided with a unique shelf binding tag, the intelligent shelves are divided into a plurality of storage areas, each of the storage areas has a unique position number, one side of the position number is provided with a corresponding storage button and an audible and visual prompter, and the method comprises the following steps: scanning the shelf binding tag to bind at least one of the intelligent shelves as a target intelligent shelf for current package delivery; obtaining logistics information of a to-be-stored package and judging whether the to-be-stored package meets the warehouse entry condition according to the logistics information; if yes, allowing the to-be-stored package to be stored in the target intelligent shelf and sending an allowed warehouse entry instruction to a user end, and the user end gives a warehouse entry success prompt according to the allowed warehouse entry instruction; sending a binding instruction to the post station service platform and the audible and visual prompter, the binding instruction is generated by a courier triggering the storage button, the audible and visual prompter gives a to-be-bound prompt according to the binding instruction, and the post station service platform obtains the position number of the current storage area according to the binding instruction; binding the position number with the logistics information of the to-be-stored package to obtain a binding success relationship and feeding back the binding success relationship to the audible and visual prompter, and the audible and visual prompter gives a binding success prompt according to the binding success relationship.
2. The package delivery method of claim 1 wherein, When the indicator light of the audible and visual prompter is in a constant-off state, the to-be-bound prompt is to control the indicator light to light up, and the binding success prompt is to control the indicator light to restore from lighting up to the constant-off state; When the indicator light of the audible and visual prompter is in a constant-on state, the to-be-bound prompt is to control the indicator light to turn off, and the binding success prompt is to control the indicator light to restore from turning off to the constant-on state.
3. The package delivery method of claim 2 wherein, Before the step of binding the position number with the logistics information of the to-be-stored package, the method further comprises the following steps: querying parameter information of the current to-be-stored package according to the logistics information and querying the maximum volume and the maximum weight of the current storage area according to the position number, and the parameter information comprises a weight value, a length value, a width value and a height value; judging whether the parameter information exceeds the maximum volume and the maximum weight of the current storage area; if the parameter information does not exceed the maximum volume and the maximum weight of the current storage area, executing the step of binding the position number with the logistics information of the to-be-stored package; if the parameter information exceeds the maximum volume and the maximum weight of the current storage area, generating a binding failure relationship and feeding back the binding failure relationship to the audible and visual prompter, and the audible and visual prompter gives a binding failure prompt according to the binding failure relationship. The binding failure prompt is to control the indicator light of the audible and visual prompter to flash.
4. The package delivery method of claim 3, wherein, After the step of the audible and visual prompter giving the binding failure prompt according to the binding failure relationship, the method further comprises the following steps:
5. The package delivery method of claim 3, wherein, calling the position number of a target storage area of the target intelligent shelf which meets the parameter information; sending a prompt instruction to the audible and visual prompter of the target storage area according to the position number, and the audible and visual prompter gives a storage prompt according to the prompt instruction. 6. The package delivery method of claim 1 wherein, The method further comprises: If the condition is not met, the method further comprises:
7. The package delivery method of claim 1 wherein, The post station service platform and the intelligent shelf communicate through a local area network or Bluetooth.
8. A package delivery device applied to a post station service platform, wherein the post station service platform is communicatively connected with a plurality of intelligent shelves, each of the intelligent shelves is provided with a unique shelf binding tag, the intelligent shelves are divided into a plurality of storage areas, each of the storage areas is provided with a unique location number, one side of the location number is provided with a corresponding storage button and an audible and visual prompter, characterized in that, The device comprises: A shelf binding module for scanning the shelf binding label to bind at least one intelligent shelf as a target intelligent shelf for current package delivery; A judgment module for obtaining logistics information of a to-be-stored package and judging whether the to-be-stored package meets a storage condition according to the logistics information; A first prompt module for allowing the to-be-stored package to be stored in the target intelligent shelf and sending an allowed storage instruction to a user end when the to-be-stored package meets the storage condition, the user end making a successful storage prompt according to the allowed storage instruction; A package binding module for sending a binding instruction to the post station service platform and the sound-light prompter, the binding instruction being generated by a courier triggering the storage button, the sound-light prompter making a to-be-bound prompt according to the binding instruction, and the post station service platform obtaining a position number of a current storage area according to the binding instruction; A second prompt module for binding the position number with the logistics information of the to-be-stored package to obtain a binding success relationship and feeding back the binding success relationship to the sound-light prompter, the sound-light prompter making a binding success prompt according to the binding success relationship. The device comprises a processor and a memory, the memory storing a plurality of instructions; the processor loads the instructions from the memory to execute the steps in the package delivery method according to any one of claims 1-7.
9. An electronic device, comprising: The computer readable storage medium stores a plurality of instructions, the instructions being adapted to be loaded by the processor to execute the steps in the package delivery method according to any one of claims 1-7.
10. A computer-readable storage medium, characterized in that,
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