Efficient parcel depositing and retrieval method, system and device

By introducing NFC and RS485 technologies into the smart locker and combining them with remote platform management, the problems of cumbersome, costly, and inefficient smart locker package drop-off and retrieval processes have been solved, enabling fast, safe, and convenient package drop-off and retrieval operations, and meeting the needs of multiple users and areas where QR codes are not yet widely used.

WO2025251449A1PCT designated stage Publication Date: 2025-12-11DI YI SHANGHAI INTELLIGENT TECH CO LTD
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Patent Information

Application Number
PCT/CN2024/117360
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-06-05
Filing Date
2024-09-06
Publication Date
2025-12-11

AI Technical Summary

Technical Problem

Existing smart lockers suffer from problems such as high locker costs, cumbersome procedures, low efficiency, and inconvenience for multiple people to operate simultaneously, especially in areas where QR codes are not widely used, where the efficiency of package retrieval is even lower.

Method used

NFC technology is used to enable near-field interaction between the user terminal and the smart cabinet. The authentication and verification of the retrieval code are realized through the NFC reading module, control module and mobile communication module. Combined with the RS485 module and remote platform management, the delivery and retrieval process is simplified.

Benefits of technology

It enables a fast, safe, and convenient package drop-off and pickup process, reduces user operation steps, supports multiple users to drop off and pick up packages simultaneously, lowers the cost of the locker, and adapts to the needs of areas where QR codes are not yet widely used.

✦ Generated by Eureka AI based on patent content.

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Abstract

An efficient parcel depositing and retrieval method, system and device. The system comprises a main locker (100), a user terminal (200) and a remote platform (300), wherein an NFC function is enabled on the user terminal (200), and a retrieval code on the user terminal (200) is transferred to the main locker (100) by means of NFC; the main locker (100) comprises an NFC reading module (101), a control module (102) and a mobile communication module (103), wherein the NFC reading module (101) is used for sensing NFC on the user terminal (200), the control module (102) is used for authenticating the sensed NFC, verifying, when the authentication is passed, the retrieval code obtained by means of the NFC, and, when the verification is passed, executing a retrieval instruction for opening a door of the locker, and the mobile communication module (103) is used for sending to the remote platform (300) the state of the main locker (100) and the retrieval process; the remote platform (300) is used for controlling and managing the main locker (100). The whole process is very simple and fast without the need for a user entering a password on the main locker (100). In addition, the present application allows multiple users to retrieve parcels simultaneously and allows a user to simultaneously retrieve multiple parcels.
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Description

Efficient method, system and device for putting and taking TECHNICAL FIELD

[0001] The present application relates to the field of intelligent cabinets, in particular to an efficient method, system and device for putting and taking. BACKGROUND

[0002] At present, the intelligent cabinet for putting and taking is provided with an industrial computer and a code scanner on the main cabinet, and the putting and taking is generally operated on the screen of the industrial computer or passively scanned by the code scanner, but the following problems exist.

[0003] 1) The putting and taking needs to be queued, because there is only one industrial computer, only one person can operate the screen at the same time, and the input of the taking code takes time and is prone to errors; the code scanner on the main cabinet scans the taking two-dimensional code on the user's mobile phone, and only one person can take the goods, and then the next person can take the goods, which easily leads to queuing for putting and taking.

[0004] 2) The putting and taking process is complicated and time-consuming; generally, the taking code needs to be input on the industrial computer or the taking code on the mobile phone needs to be scanned by the code scanner on the main cabinet, which is complicated and time-consuming, especially for the elderly who cannot operate, which is more inconvenient.

[0005] 3) The cabinet machine cost is high, because the industrial computer and the code scanner are provided on the main cabinet, the cabinet machine cost is high.

[0006] 4) In some areas, such as some overseas, two-dimensional code has not been popularized, and there is no application software for scanning codes, and the user can only take the goods by inputting the short message password or email password, which is very low in efficiency.

[0007] SUMMARY

[0008] An object of the present application is to provide an efficient method, system and device for putting and taking, which solves the problems of high cabinet machine cost, complicated putting and taking process, inconvenient simultaneous taking and low taking efficiency in the prior art.

[0009] According to one aspect of the present application, an efficient system for putting and taking is provided, which comprises a main cabinet, a user terminal and a remote platform, wherein,

[0010] The NFC function on the user terminal is turned on, and the taking code on the user terminal is transmitted to the main cabinet through NFC;

[0011] The main cabinet comprises an NFC reading module, a control module and a mobile communication module, the NFC reading module is used for sensing the NFC of the user terminal, the control module is used for authenticating the sensed NFC, and when the authentication is passed, the taking code obtained by the NFC is verified, and when the verification is passed, the taking instruction of opening the cabinet door is executed;

[0012] The mobile communication module is configured to send the status of the main cabinet and the pick-up process to the remote platform.

[0013] The remote platform is configured to control and manage the main cabinet.

[0014] Optionally, the control module of the main cabinet is further configured to transmit the pick-up code to the remote platform through the mobile communication module, and the remote platform is configured to verify the received pick-up code and return the verification result to the control module, so that the control module executes the pick-up instruction of opening the cabinet door based on the verification result.

[0015] Optionally, the system comprises at least one sub-cabinet, and each sub-cabinet comprises an NFC reading module and a control module.

[0016] The control module of the sub-cabinet is configured to authenticate the sensed NFC, obtain the pick-up code on the user terminal after the authentication is passed, verify the pick-up code, and execute the pick-up instruction of opening the cabinet door when the verification is passed.

[0017] Optionally, the main cabinet and the sub-cabinet each comprise an RS485 module, the main cabinet and the sub-cabinet interact through the RS485 protocol, the RS485 module is configured to communicate with the control module on the same cabinet, the RS485 module on the main cabinet is configured to control the opening of each compartment door on the sub-cabinet, and the RS485 module on the sub-cabinet is configured to return the status of closing each compartment door to the main cabinet.

[0018] Optionally, the main cabinet comprises a Bluetooth module, and the Bluetooth module is configured to receive the specified data sent by the user terminal.

[0019] Optionally, the main cabinet comprises a prompt module, and the prompt module is configured to prompt the NFC authentication result and the pick-up process.

[0020] According to another aspect of the present application, an efficient pick-up method is also provided, which comprises:

[0021] Turning on the NFC function on the user terminal and obtaining the pick-up code on the user terminal;

[0022] Sensing the NFC of the user terminal through the NFC on the cabinet, authenticating the sensed NFC, verifying the pick-up code obtained by the NFC when the authentication is passed, and executing the pick-up instruction of opening the cabinet door when the verification is passed;

[0023] Sending the status of the cabinet and the pick-up process to the remote platform, so that the remote platform controls and manages the main cabinet.

[0024] Optionally, the pickup code on the user terminal is acquired, comprising:

[0025] When the pickup code on the user terminal is acquired as multiple, the multiple pickup codes are packed;

[0026] Wherein, the pickup code acquired by NFC is verified, comprising:

[0027] The packed pickup code acquired by NFC is unpacked and verified by the control module of the cabinet, or the packed pickup code acquired by NFC is transmitted to the remote platform for unpacking and verification.

[0028] Optionally, the cabinet includes a main cabinet and at least one sub-cabinet, and the method comprises:

[0029] The main cabinet and the sub-cabinet interact through the RS485 protocol, the main cabinet controls the opening of each compartment door on the sub-cabinet through the RS485 protocol, and the sub-cabinet returns the state of each compartment closing door to the main cabinet through the RS485 protocol.

[0030] According to another aspect of the present application, an efficient pick-up device is also provided, comprising:

[0031] One or more processors; and

[0032] The memory stores computer readable instructions which, when executed, cause the processor to perform the operations of the method as described above.

[0033] According to another aspect of the present application, a computer readable medium is also provided, which stores computer readable instructions executable by a processor to implement the method as described above.

[0034] Compared with the prior art, the application provides a high-efficiency pick-up system, which comprises a main cabinet, a user terminal and a remote platform, wherein the NFC function of the user terminal is turned on, and a pick-up code on the user terminal is transmitted to the main cabinet through NFC; the main cabinet comprises an NFC reading module, a control module and a mobile communication module, the NFC reading module is used for sensing the NFC of the user terminal, the control module is used for authenticating the sensed NFC, when the authentication is passed, verifying the pick-up code obtained by the NFC, and executing a pick-up instruction of opening the cabinet door when the verification is passed; the mobile communication module is used for sending the state of the main cabinet and the pick-up process to the remote platform; and the remote platform is used for controlling and managing the main cabinet. The whole process is very simple and fast, the user does not need to input a password on the main cabinet, and does not need to worry about inputting a wrong password, and only needs to approach the NFC area of the cabinet machine with the user terminal to open the door and pick up the article instantly; meanwhile, the problems of multiple people picking up articles at the same time and one person picking up multiple articles at the same time can also be solved. BRIEF DESCRIPTION OF DRAWINGS

[0035] Other features, objects and advantages of the application will become more apparent from the following detailed description of non-limiting embodiments made with reference to the accompanying drawings:

[0036] Fig. 1 shows a high-efficiency pick-up system framework schematic diagram according to one aspect of the application;

[0037] Fig. 2 shows a schematic diagram of a high-efficiency pick-up intelligent cabinet according to one embodiment of the application;

[0038] Fig. 3 shows a high-efficiency pick-up method flowchart according to another aspect of the application.

[0039] The same or similar reference signs in the drawings represent the same or similar components. DETAILED DESCRIPTION

[0040] The application will be further described in detail below with reference to the accompanying drawings.

[0041] In a typical configuration of the application, the terminal, the device of the service network and the trusted party each comprise one or more processors (for example, a central processing unit (CPU)), an input / output interface, a network interface and a memory.

[0042] The memory can comprise a non-permanent memory in a computer readable medium, a random access memory (RAM) and / or a non-volatile memory such as a read only memory (ROM) or a flash memory. The memory is an example of the computer readable medium.

[0043] Computer-readable media includes permanent and non-permanent, removable and non-removable media implemented in any method or technology for storage of information such as computer readable instructions, data structures, program modules or other data. Examples of computer storage media include, but are not limited to, phase-change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technology, compact disc read-only memory (CD-ROM), digital versatile disks (DVD) or other optical storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices, or any other non-transmission medium that can be used to store information accessible to a computing device. According to the definition herein, computer-readable media does not include transitory media such as modulated data signals and carriers.

[0044] Fig. 1 shows a schematic diagram of a high-efficiency pick-up system framework according to an aspect of the present application, which includes a main cabinet 100, a user terminal 200 and a remote platform 300, wherein,

[0045] The NFC function on the user terminal 200 is turned on, and the pick-up code on the user terminal 200 is transmitted to the main cabinet 100 through NFC; the main cabinet 100 includes an NFC reading module 101, a control module 102 and a mobile communication module 103, the NFC reading module 101 is used to sense the NFC of the user terminal 200, the control module 102 is used to authenticate the sensed NFC, when the authentication is passed, the pick-up code obtained by the NFC is verified, when the verification is passed, the pick-up instruction of opening the cabinet door is executed; the mobile communication module 103 is used to send the state of the main cabinet 100 and the pick-up process to the remote platform 300; the remote platform 300 is used to control and manage the main cabinet 100.

[0046] Here, the NFC reading module is arranged on the main cabinet, thereby interacting with the NFC of the user terminal in the near field to perform the delivery or pick-up. When performing the pick-up, the corresponding application software, such as the pick-up APP, public number, applet, etc. is opened on the user terminal. The NFC antenna of the user terminal is close to the NFC antenna area of the main cabinet. The NFC reading module of the main cabinet senses the NFC of the user terminal. The control module (CPU) on the main cabinet authenticates the NFC of the user terminal. The authentication includes verifying whether the NFC is allowed to access the CPU and the related interface. If the authentication is passed, the user pick-up code is transmitted to the CPU of the main cabinet through the NFC. After the CPU receives the related pick-up code information, the CPU starts to execute the door opening pick-up instruction. The whole process is very simple and fast. The single link protocol of the NFC can be completed within 100-200 ms. The authentication process between the NFC and the CPU cannot be felt by the user. The user does not need to input the password on the main cabinet and does not need to worry about inputting the wrong password. The user only needs to make the user terminal close to the NFC area of the cabinet machine to instantly open the door and pick up. The interaction process between the cabinet and the remote platform. The mobile communication module (4G or 5G) in the main cabinet interacts with the remote platform during the whole delivery and pick-up process. The remote platform controls and manages the main cabinet.

[0047] In some embodiments of the present application, the control module 102 of the main cabinet 100 is further configured to transmit the pick-up code to the remote platform 300 through the mobile communication module 103. The remote platform 300 is configured to verify the received pick-up code and return the verification result to the control module 102, so that the control module 102 executes the pick-up instruction of opening the cabinet door based on the verification result. Here, in addition to the way of using the CPU of the main cabinet to locally verify the pick-up code, the CPU can also transmit the pick-up code to the remote platform through 4G or 5G. The remote platform verifies the information of the pick-up code. If the verification is correct, the CPU of the main cabinet is allowed to execute the opening cabinet door action. It should be noted that the pick-up code here is a password for opening the cabinet door, which can be used for pick-up or delivery. In the embodiments of the present application, the pick-up code is uniformly represented as pick-up code, and the pick-up is taken as an example for description in the following embodiments. The delivery is the same process as the pick-up, which will not be described in detail.

[0048] In some embodiments of the present application, the system comprises at least one sub-cabinet 400, each sub-cabinet comprising an NFC reading module and a control module, the NFC reading module of the sub-cabinet being used to sense the NFC of the user terminal; the control module of the sub-cabinet is used to authenticate the sensed NFC, and after the authentication is passed, the pick-up code on the user terminal is obtained, and the pick-up code is verified, and when the verification is passed, the pick-up instruction of opening the cabinet door is executed. Here, in addition to the main cabinet, one or more sub-cabinets can also be included, each of which is also provided with an NFC reading module and a control module, but no longer provided with a mobile communication module. When the user terminal approaches the NFC antenna area of the sub-cabinet, the CPU of the sub-cabinet authenticates the NFC of the user terminal, and after the authentication is passed, the pick-up code on the user terminal is verified, and when the verification is passed, the pick-up instruction of opening the cabinet door is executed. The sub-cabinet can also be picked up and picked up through NFC, so as to solve the problem of multiple people picking up and picking up at the same time.

[0049] In some embodiments of the present application, the main cabinet and the sub-cabinet each comprise an RS485 module, the main cabinet and the sub-cabinet interact through the RS485 protocol, the RS485 module is used to communicate with the control module on the same cabinet, the RS485 module on the main cabinet is used to control the opening of each compartment door on the sub-cabinet, and the RS485 module on the sub-cabinet is used to return the state of closing each compartment door to the main cabinet. Here, the main cabinet and the sub-cabinet can each be provided with an RS485 module, so that the main cabinet and the sub-cabinet interact through the RS485 protocol, and the RS485 module on each cabinet also interacts with the control module (CPU). The main cabinet can control the opening of the compartments on the sub-cabinet through the RS485 protocol, and obtain the state information of the opening and closing of the cabinet door of the sub-cabinet, and return the state information to the remote platform for management of the sub-cabinet.

[0050] In some embodiments of the present application, the main cabinet comprises a Bluetooth module, and the Bluetooth module is used to receive the specified data sent by the user terminal. Here, the main cabinet is provided with a Bluetooth module, and the sub-cabinet can not need a Bluetooth module. The Bluetooth module on the main cabinet can realize seamless near field communication with NFC and 4G or 5G. The main cabinet can also interact with the user terminal through the Bluetooth module to transmit some large data such as images, videos, and sounds. For example, in the scenario of sending a letter, the user needs to transmit personal identification card pictures, face information, etc. to the CPU of the cabinet. At this time, transmission is carried out through Bluetooth. The pick-up code which is small data is transmitted through NFC. Through NFC and the Bluetooth module, the user terminal and the cabinet can be paired instantly without inputting a pairing password, and the interaction information required by both parties can be quickly transmitted through Bluetooth.

[0051] The user terminal is used for data packaging of the plurality of pick-up codes, and sending the data package to the CPU of the main cabinet for unpacking verification. When the user terminal has a plurality of pick-up codes, the user terminal can send the plurality of pick-up codes to the CPU of the main cabinet in the form of data packaging at one time. After the CPU receives the data package, the CPU unpacks and verifies the data package. If the verification result is correct, the CPU executes the door opening instruction.

[0052] In some embodiments of the present application, the main cabinet comprises a prompt module for prompting the NFC authentication result and the pick-up process. Here, the main cabinet comprises a prompt module, which can perform light or sound prompting during the pick-up process. For example, if the user's pick-up code is incorrect, a sound prompt is performed. When the pick-up code is correct, the main cabinet plays a sound to prompt the user to pick up the item from which cabinet (for example, the third sub-cabinet) and which compartment number. When the cabinet door is opened, a sound or light prompt can also be performed.

[0053] A two-dimensional code can also be attached to the main cabinet and the sub-cabinet, so that the user can scan the two-dimensional code on the cabinet through the user terminal in an area where the two-dimensional code is popular, and pick up or drop off the item.

[0054] FIG. 2 shows a schematic diagram of an intelligent cabinet for efficient pick-up and drop-off according to an embodiment of the present application. The main cabinet is provided with a main control board, which has a CPU and an NFC reader / writer in communication with the CPU. The main cabinet also has a Bluetooth module and an RS485 module in communication with the CPU. The sub-cabinet also uses an RS485 module to communicate with the CPU. The main cabinet and the sub-cabinet communicate with each other through the RS485 protocol, which is used for the opening control of each compartment door and the return of the state after the door is closed. When picking up an item, the user opens the corresponding application software on the mobile phone, such as a pick-up APP or a small program. When the NFC antenna of the mobile phone is close to the NFC antenna area of the main cabinet (within about 10 cm), the NFC performs authentication with the CPU. The user's pick-up code is transmitted to the CPU of the main cabinet through the NFC. After the CPU receives the relevant pick-up code information, the CPU transmits the information to the remote platform through 4G or 5G. The remote platform verifies the pick-up code information. If the verification is correct, the main cabinet CPU is allowed to execute the door opening instruction for picking up the item. The CPU can also perform local pick-up code verification without going through the remote platform. If the verification is correct, the CPU is allowed to perform the door opening action.

[0055] When the user has multiple pick-up codes at the same time, the user's mobile phone can send multiple pick-up codes to the main cabinet CPU in the form of data packaging. The CPU receives the data package and verifies it. If the verification result is correct, the CPU executes the door opening instruction. The whole process is very simple and fast. The single-link protocol of NFC can be completed within 100-200 ms. The user does not need to input the password on the main cabinet, nor worry about inputting the wrong password. The user does not need to input the pick-up code multiple times, but once. The cabinet and the remote platform interact with each other through the 4G or 5G communication module during the whole pick-up process. Some small data is transmitted through NFC, and some large data is transmitted through the Bluetooth of the cabinet and the Bluetooth of the user's mobile phone. The seamless connection of NFC and Bluetooth enables the user's mobile phone and the cabinet to be paired instantly without inputting the pairing password, so that the information to be exchanged between the two parties can be transmitted through Bluetooth. The sub-cabinet also has an NFC module, and the sub-cabinet can also pick up and deliver through NFC, so as to solve the problem of multiple people picking up and delivering at the same time. The main cabinet and the sub-cabinet both have a two-dimensional code, and the user's mobile phone can actively scan the code to pick up and deliver.

[0056] Figure 3 shows a high-efficiency pick-up and delivery method according to another aspect of the application. The method includes steps S11-S13, wherein,

[0057] Step S11: Start the NFC function on the user terminal and obtain the pick-up code on the user terminal. For example, if the user needs to pick up, the logistics company that undertakes transportation will deliver the package to the intelligent cabinet and send the pick-up address and pick-up code to the user. The sending form is generally in the form of user terminal applet, public number, APP, SMS, etc. The NFC on the user terminal obtains the pick-up code on the APP, public number, applet and SMS through authentication.

[0058] Step S12: The NFC on the cabinet senses the NFC on the user terminal, authenticates the sensed NFC, and executes the pick-up instruction to open the cabinet door when the authentication is passed and the pick-up code obtained by the NFC is verified. Here, the NFC antenna of the user terminal is close to the NFC antenna area of the main cabinet. The NFC reading module of the main cabinet senses the NFC of the user terminal. The control module (CPU) on the main cabinet authenticates the NFC of the user terminal. The authentication includes verifying whether the NFC is allowed to access the CPU and related interfaces. If the authentication is passed, the user's pick-up code is transmitted to the CPU of the main cabinet through the NFC. The CPU receives the relevant pick-up code information and starts to execute the door opening pick-up instruction.

[0059] Step S13, the state of the cabinet and the pick-up process is sent to the remote platform to control and manage the main cabinet. Here, the interaction process between the cabinet and the remote platform, the mobile communication module (4G or 5G) in the main cabinet interacts with the remote platform throughout the pick-up process, and the remote platform controls and manages the main cabinet.

[0060] In the embodiments of the present application, the remote platform can also be used to verify the pick-up code. The user opens the corresponding application software on the user terminal, such as the pick-up APP, the public number, the applet, etc. The NFC antenna of the user terminal is close to the NFC antenna area of the main cabinet, the NFC reading module of the main cabinet senses the NFC of the user terminal, and the CPU on the main cabinet authenticates the NFC of the user terminal. The authentication includes verifying whether the NFC is allowed to access the CPU and related interfaces; if the authentication is passed, the user pick-up code is transmitted to the CPU of the main cabinet through the NFC, and the CPU transmits the related pick-up code to the remote platform through 4G or 5G. The remote platform verifies the pick-up code information, and if the verification is correct, the main cabinet CPU is allowed to start executing the door opening pick-up instruction.

[0061] In some embodiments of the present application, when multiple pick-up codes are obtained on the user terminal in step S11, the multiple pick-up codes are packaged; in step S12, the packaged pick-up code obtained by the NFC is unpacked and verified by the control module of the cabinet, or the packaged pick-up code obtained by the NFC is transmitted to the remote platform for unpacking and verification. When there are multiple pick-up codes on the user terminal, the user terminal can send multiple pick-up codes to the main cabinet CPU in the form of data packaging at one time, and the CPU receives and unpacks the data packet for verification, or the CPU sends the data packet to the remote platform for verification. If the verification result is correct, the CPU executes the door opening instruction.

[0062] In some embodiments of the present application, the cabinet includes a main cabinet and at least one sub-cabinet, and the method includes: the main cabinet and the sub-cabinet interact through the RS485 protocol, the main cabinet controls the opening of each compartment door on the sub-cabinet through the RS485 protocol, and the sub-cabinet returns the state of each compartment door after closing to the main cabinet through the RS485 protocol. In addition to the main cabinet, a sub-cabinet can also be included, and there is one or more sub-cabinets. Each sub-cabinet is also provided with an NFC reading module and a control module, but no longer provided with a mobile communication module. When the user terminal is close to the NFC antenna area of the sub-cabinet, the CPU of the sub-cabinet authenticates the NFC of the user terminal. After the authentication is passed, the pick-up code on the user terminal is verified, and the pick-up instruction of opening the cabinet door is executed when the verification is passed. The sub-cabinet can also pick up through NFC, so as to solve the problem of multiple people picking up at the same time.

[0063] Further, the embodiment of the present application also provides a computer readable medium, which stores computer readable instructions, and the computer readable instructions can be executed by a processor to realize the foregoing efficient pick-up method.

[0064] In an embodiment of the present application, an efficient pick-up device is also provided, and the device comprises:

[0065] one or more processors; and

[0066] a memory storing computer readable instructions which, when executed, cause the processor to perform operations of the foregoing method.

[0067] For example, the computer readable instructions, when executed, cause the one or more processors to:

[0068] starting the NFC function on the user terminal, and obtaining the pick-up code on the user terminal;

[0069] authenticating the sensed NFC through the NFC on the cabinet machine, verifying the pick-up code obtained by the NFC when the authentication is passed, and executing the pick-up instruction of opening the cabinet door when the verification is passed;

[0070] sending the state of the cabinet machine and the pick-up process to the remote platform, so that the remote platform controls and manages the main cabinet.

[0071] Obviously, those skilled in the art can make various modifications and variations to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalents, the present application is also intended to include these modifications and variations.

[0072] It should be noted that the present application can be implemented in software and / or a combination of software and hardware, for example, can be implemented by using an application specific integrated circuit (ASIC), a general purpose computer or any other similar hardware device. In one embodiment, the software program of the present application can be executed by a processor to realize the steps or functions described above. Similarly, the software program of the present application (including related data structures) can be stored in a computer readable recording medium, for example, a RAM memory, a magnetic or optical drive or a soft disk and similar devices. In addition, some steps or functions of the present application can be implemented by using hardware, for example, as a circuit cooperating with the processor to execute the respective steps or functions.

[0073] In addition, part of the present application can be applied as a computer program product, for example, computer program instructions, when executed by a computer, through the operation of the computer, the method and / or technical solutions according to the present application can be invoked or provided. The program instructions invoking the method of the present application can be stored in a fixed or removable recording medium, and / or transmitted through a data stream in a broadcast or other signal bearing medium, and / or stored in the working memory of the computer device running according to the program instructions. Here, according to an embodiment of the present application includes an apparatus comprising a memory for storing computer program instructions and a processor for executing program instructions, wherein when the computer program instructions are executed by the processor, the apparatus is triggered to run the method and / or technical solutions based on the foregoing according to the plurality of embodiments of the present application.

[0074] It is obvious to those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application. Any reference signs in the claims should not be regarded as limiting the claims involved. In addition, it is obvious that the word "comprising" does not exclude other units or steps, and the singular does not exclude the plural. The plurality of units or devices stated in the device claim can also be implemented by one unit or device through software or hardware. The words first, second, etc. are used to indicate names, not any specific order.

Claims

1. A high efficiency pick and drop system characterized by, The system comprises a main cabinet, a user terminal and a remote platform, wherein, The NFC function on the user terminal is started, and the pick-up code on the user terminal is transmitted to the main cabinet through NFC; The main cabinet comprises an NFC reading module, a control module and a mobile communication module, the NFC reading module is used for sensing the NFC of the user terminal, the control module is used for authenticating the sensed NFC, when the authentication is passed, verifying the pick-up code obtained by the NFC, and when the verification is passed, executing the pick-up instruction of opening the cabinet door; The mobile communication module is used for sending the state of the main cabinet and the pick-up process to the remote platform; The remote platform is used for controlling and managing the main cabinet.

2. The system of claim 1, wherein, The control module of the main cabinet is also used for transmitting the pick-up code to the remote platform through the mobile communication module, the remote platform is used for verifying the received pick-up code, returning the verification result to the control module, so that the control module executes the pick-up instruction of opening the cabinet door based on the verification result.

3. The system of claim 1, wherein, The system comprises at least one sub-cabinet, each sub-cabinet comprises an NFC reading module and a control module, the NFC reading module of the sub-cabinet is used for sensing the NFC of the user terminal; The control module of the sub-cabinet is used for authenticating the sensed NFC, obtaining the pick-up code on the user terminal after the authentication is passed, verifying the pick-up code, and executing the pick-up instruction of opening the cabinet door when the verification is passed.

4. The system of claim 3, wherein, The main cabinet and the sub-cabinet both comprise an RS485 module, the main cabinet and the sub-cabinet interact through the RS485 protocol, the RS485 module is used for communicating with the control module on the same cabinet, the RS485 module on the main cabinet is used for controlling the opening of each compartment door on the sub-cabinet, and the RS485 module on the sub-cabinet is used for returning the state of each compartment door after being closed to the main cabinet.

5. The system of claim 1, wherein, The main cabinet comprises a Bluetooth module, and the Bluetooth module is used for receiving the specified data sent by the user terminal.

6. The system of claim 1, wherein, The main cabinet comprises a prompt module, and the prompt module is used for prompting the NFC authentication result and the pick-up process.

7. A method of efficiently dropping an object, characterized by, The method comprises: Starting the NFC function on the user terminal, and obtaining the pick-up code on the user terminal; Sensing the NFC of the user terminal through the NFC on the cabinet, authenticating the sensed NFC, verifying the pick-up code obtained by the NFC when the authentication is passed, and executing the pick-up instruction of opening the cabinet door when the verification is passed; Sending the state of the cabinet and the pick-up process to the remote platform, so that the remote platform controls and manages the main cabinet.

8. The method of claim 7, wherein, Obtaining the pick-up code on the user terminal comprises: When multiple pick-up codes on the user terminal are obtained, the multiple pick-up codes are packaged; Wherein, verifying the pick-up code obtained by the NFC comprises: The control module of the cabinet unpacks and verifies the packaged pick-up code obtained by the NFC, or transmits the packaged pick-up code obtained by the NFC to the remote platform for unpacking and verifying.

9. The method of claim 7, wherein, The cabinet comprises a main cabinet and at least one sub-cabinet, and the method comprises: The main cabinet and the auxiliary cabinet interact through RS485 protocol, the main cabinet controls the opening of each compartment door on the auxiliary cabinet through the RS485 protocol, and the auxiliary cabinet returns the state of each compartment closing door to the main cabinet through the RS485 protocol.

10. A high efficiency pick-up device, characterized by The device comprises: one or more processors; and a memory having stored thereon computer readable instructions that, when executed, cause the processor to perform the operations of the method of any one of claims 7 to 9.

11. A computer readable medium having stored thereon computer readable instructions executable by a processor to implement the method of any one of claims 7 to 9.

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