Order management method based on Internet of Things and super SIM card

By using the Internet of Things and Super SIM cards for order management, the problems of limited functionality and low efficiency in warehouse management associated with traditional SIM cards are solved. This enables automated collection and secure traceability of order information, improving the efficiency and reliability of order management.

CN121481671APending Publication Date: 2026-02-06NANJING XINWANG VIDEO NETWORK TECH
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Patent Information

Application Number
CN202511649234.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-12
Publication Date
2026-02-06

AI Technical Summary

Technical Problem

Traditional SIM cards have limited functionality and cannot meet the functional needs of modern mobile phones. Furthermore, warehouse management relies on manual data entry, resulting in low efficiency, easy information tampering, and untraceable order management processes.

Method used

An order management method based on the Internet of Things and a super SIM card is adopted. The order management card application on the super SIM card realizes the automatic collection, uploading and management of order information. The SIM card management platform is used for identity authentication and information recording to ensure data security and traceability.

Benefits of technology

It automates the order management process, avoids manual data entry errors, ensures data security and traceability, and improves the efficiency and reliability of order management.

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Abstract

The invention discloses an order management method based on the Internet of Things and a super SIM card. The order management method comprises the following steps: step 1, a logistics party terminal receives an order sending message issued by an order management server; 2, the order management card application extracts order information carried by the order sending message; 3, the SIM card management platform receives a goods picking message uploaded by the logistics party order management card application; 4, the SIM card management platform sends a warehouse-out message to the warehouse-out equipment; and step 5, after the warehouse-out device completes identity verification of the logistics SIM card terminal, order warehouse-out is carried out. Step 6, the handover message is sent to the SIM card management platform; 7, the order management card application sends a warehousing request to a management terminal device corresponding to the warehousing warehouse; and step 8, sending the order management table to an order management server. According to the method, a business ecological system based on the super SIM card can be constructed, the market share of the super SIM card can be improved, and higher commercial value is brought to companies.
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Description

Technical Field

[0001] This invention relates to the field of artificial intelligence technology, and in particular to an order management method based on the Internet of Things and a super SIM card. Background Technology

[0002] With the rapid development of mobile internet and smartphones, they support far more diverse application scenarios than in the past. The limitations of traditional SIM card chips based on ROM and Flash architectures in terms of storage capacity, cryptographic algorithms, and interfaces have become increasingly apparent. Early mobile phone SIM cards, for example, had very limited functionality, offering little beyond basic authentication. In an environment where mobile phone functions are becoming increasingly sophisticated, traditional mobile phone SIM cards can no longer meet the needs of the industry and users.

[0003] Currently, warehouse management is mostly manual or semi-automated, relying on traditional data collection methods where personnel manually record and input data into computers. This presents several problems, particularly for large single warehouses, multi-warehouse storage, or large open-air areas, including difficulty in obtaining product information in real time, repetitive manual labor, and an increased probability of errors. Furthermore, the entire logistics and warehousing management process involves multiple users, including logistics providers, warehouse providers, buyers, and merchants. Order information from these multiple parties is collected and managed manually, which leads to low efficiency. Additionally, the lack of a trusted third party makes it susceptible to tampering with the information entered by each party, resulting in an untraceable order management process and potential losses for all participants. Summary of the Invention

[0004] The purpose of this section is to outline some aspects of embodiments of the present invention and to briefly describe some preferred embodiments. Simplifications or omissions may be made in this section, as well as in the abstract and title of this application, to avoid obscuring the purpose of these documents; however, such simplifications or omissions should not be construed as limiting the scope of the invention.

[0005] In view of the problems existing in the above-mentioned order management methods based on the Internet of Things and Super SIM cards, this invention is proposed.

[0006] Therefore, the purpose of this invention is to provide an order management method based on the Internet of Things and a Super SIM card. This method enables centralized management and traceability of logistics orders based on the Super SIM card, expands the application scenarios of the Super SIM card, facilitates the construction of a business ecosystem based on the Super SIM card, increases the market share of the Super SIM card, and brings higher commercial value to the company.

[0007] To address the aforementioned technical problems, this invention provides the following technical solution: an order management method based on the Internet of Things and a super SIM card, comprising the following steps: Step 1: The logistics terminal receives the order dispatch message from the order management server. In response to the order dispatch message, the order management card application installed on the super SIM card of the logistics terminal will monitor the operation instructions entered by the logistics terminal for the order dispatch message. Step 2: The order management card application extracts the order information carried in the dispatch message, generates a pickup message carrying the logistics provider's unique identifier, and uploads the pickup message to the SIM card management platform; Step 3: The SIM card management platform receives the pickup message uploaded by the logistics provider's order management card application and creates an order management table based on the pickup message; Step 4: When the logistics provider enters the electronic fence area corresponding to the outbound warehouse, the logistics provider's order management card application will send a pickup request carrying the card number of the Super SIM card to the SIM card management platform. After the SIM card management platform completes the identity authentication of the logistics provider based on the card number, the SIM card management platform sends an outbound message to the outbound equipment. Step 5: The logistics company sends a pickup request to the outbound equipment. After the outbound equipment completes the identity verification of the logistics SIM card terminal, the order is shipped out. Step 6: When a handover of logistics is required, the original logistics provider can send a logistics handover message to the new logistics provider. The order management card application installed on the new logistics provider's super SIM card generates a handover message based on the user's operation and sends the handover message to the SIM card management platform. Step 7: When the logistics provider's order management card application detects that the logistics provider has entered the electronic fence area corresponding to the warehouse, the order management card application will send an inbound request to the management terminal device corresponding to the warehouse. Step 8: After the warehousing is completed, the warehouse management terminal device sends an warehousing completion message to the SIM card management platform through the IoT card, so that the SIM card management platform updates the order management table according to the warehousing completion message and sends the order management table to the order management server.

[0008] As a preferred embodiment of the order management method based on the Internet of Things and Super SIM card described in this invention, the order dispatch message in step 1 carries order information such as outbound party information, inbound party information, and order goods information; When the terminal receives the dispatch message, the terminal operating system will wake up the order management card application installed on the super SIM card through the SIM card channel. The order management card application will collect the instruction interaction between the terminal device and the dispatch message through the COS layer, and then confirm whether the logistics party accepts the dispatch message based on the collected interaction instructions. If the judgment result is yes, step 2 will be executed. If the judgment result is no, the current process will end.

[0009] As a preferred embodiment of the order management method based on the Internet of Things and Super SIM card described in this invention, in step 3, after receiving the pickup message, the SIM card management platform decrypts the pickup message according to the SCP02 protocol and the national cryptographic algorithm to obtain the order information and the unique identifier of the logistics provider. Then, the SIM card management platform can generate an order management table and save the order information and logistics provider information to the order management table.

[0010] As a preferred embodiment of the order management method based on the Internet of Things and Super SIM card described in this invention, in step 4, the SIM card management platform searches for the order management table corresponding to the order number in the database, searches for the logistics provider's unique identifier in the order management table, and then completes the identity authentication of the logistics provider by comparing the received pickup message with the logistics provider's unique identifier in the order management table. When the identity authentication of the logistics provider is successful, the SIM card management platform generates an outbound message carrying the logistics provider's unique identifier and sends the outbound message to the outbound device.

[0011] As a preferred embodiment of the order management method based on the Internet of Things and Super SIM card described in this invention, in step 5, the outbound device is equipped with a card reader. When the logistics provider needs to pick up goods on-site, the logistics provider's order management card application generates a pickup code carrying the logistics provider's unique identifier and order number. The logistics provider swipes the card on the card reader of the outbound device, i.e., sends a pickup request to the outbound device. The outbound device authenticates the current logistics provider's identity based on the outbound message received in step 4, and allows the logistics provider to perform the outbound operation after successful authentication. At the same time, the outbound device generates outbound information based on the outbound time, the logistics provider's unique identifier, etc., through the Internet of Things card, and uploads the outbound information to the SIM card management platform. The SIM card management platform updates the pre-created order management table based on the outbound information.

[0012] As a preferred embodiment of the order management method based on the Internet of Things and Super SIM card described in this invention, in step 6, the original logistics provider can generate and send a logistics handover message to the new logistics provider via SMS, 5G message or directly through the order management card application. The logistics handover information carries the original logistics provider's unique identifier and the order number. The new logistics provider's order management card application responds to the user's confirmation operation for the handover information entry, obtains the original logistics provider's unique identifier and order number carried in the handover information, generates a handover message based on this information, and sends the handover message to the SIM card management platform; The SIM card management platform uses the order number carried in the handover message to look up the corresponding order management table and performs security authentication on the handover message based on the unique identifier of the logistics provider recorded in the order management table. When the security authentication is successful, the SIM card management platform updates the order management table according to the handover information; when the security authentication fails, the SIM card management platform will send an order anomaly alarm to the inbound warehouse management terminal and the outbound warehouse management terminal.

[0013] As a preferred embodiment of the order management method based on the Internet of Things and Super SIM card described in this invention, in step 7, the warehouse management terminal device obtains order management information from the SIM card management platform through the Internet of Things card. After completing the identity authentication of the user initiating the warehouse entry request based on the order management information, it returns the warehouse entry information to the logistics SIM card terminal, so that the logistics transportation personnel can perform the warehouse entry operation according to the warehouse entry information received by the logistics SIM card terminal.

[0014] As a preferred embodiment of the order management method based on the Internet of Things and Super SIM card described in this invention, in step 8, during the order transportation process, all participating parties' installed order management card applications collect relevant information during the process and upload the collected order-related information to the corresponding storage area of ​​the SIM card management platform. Each participating party's order management card application uniquely corresponds to a storage area on the SIM card management platform, which can only be accessed by the corresponding participating party's order management card application. Order management personnel can trace the complete flow of an order by querying the order management table stored on the order management server. For questionable processes, after determining the process participants based on the order management table, order management personnel can initiate a "process confirmation request" through the order management card application and send the "process confirmation request" to the corresponding process participant.

[0015] The beneficial effects of this invention are as follows: Using the order management method based on the Internet of Things and a Super SIM card provided in this solution, both the warehousing and logistics providers can collect order-related flow information throughout the entire process of order goods leaving the warehouse, in-transit handover, and receiving the goods. This information can be obtained through the order management card application installed on the Super SIM card and the relevant operation specifications input by the monitoring terminal. The order-related flow information, along with user messages, are then uploaded to the SIM card management platform for storage. This enables the recording and summarization of the entire order process based on a trusted third-party platform (SIM card management platform). Since the entire process is automated based on the order management card application installed on the Super SIM card… The data is collected and uploaded automatically, thus avoiding errors in order data due to manual entry. Secondly, since the unique identifier of the Super SIM card is uniquely associated with the user when the card is activated, and during the order process management based on the order management card application, the SIM card management platform can uniquely identify the corresponding personnel for each process based on the identifier of the order management card application. Moreover, all process information is stored in the corresponding storage area of ​​the SIM card management platform. Process participants can only download and query this process information, but cannot modify the process, ensuring that the process information is tamper-proof and greatly guaranteeing the security and traceability of the entire order process data. Attached Figure Description

[0016] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. Wherein: Figure 1 This is a schematic diagram illustrating the overall method steps of the order management method based on the Internet of Things and Super SIM card of the present invention.

[0017] Figure 2 This is a schematic diagram illustrating the query information of the order management method based on the Internet of Things and Super SIM card according to the present invention.

[0018] Figure 3 This is a schematic diagram of an abnormal order in the order management method based on the Internet of Things and Super SIM card of the present invention.

[0019] Figure 4 This is a schematic diagram of the order management system based on the Internet of Things and Super SIM card order management method of the present invention. Detailed Implementation

[0020] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0021] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and those skilled in the art can make similar extensions without departing from the spirit of the invention. Therefore, the invention is not limited to the specific embodiments disclosed below.

[0022] Secondly, the term "one embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a single or selective embodiment that is mutually exclusive with other embodiments.

[0023] Secondly, the present invention is described in detail with reference to the schematic diagrams. When detailing the embodiments of the present invention, for ease of explanation, the cross-sectional views illustrating the device structure may be partially enlarged, not according to the usual scale. Furthermore, the schematic diagrams are merely examples and should not limit the scope of protection of the present invention. In addition, actual fabrication should include three-dimensional spatial dimensions of length, width, and depth.

[0024] Reference Figures 1-4 This paper provides an order management method based on the Internet of Things and a super SIM card, including the following steps: Step 1: The logistics terminal receives the order dispatch message from the order management server. In response to the order dispatch message, the order management card application installed on the super SIM card of the logistics terminal will monitor the operation instructions entered by the logistics terminal for the order dispatch message. The dispatch message contains order information such as the outbound party information (e.g., the outbound warehouse number, outbound shelf number, or outbound area number), the inbound party information (e.g., the inbound warehouse number and inbound shelf number), and order goods information.

[0025] When the terminal receives the dispatch message, the terminal operating system will wake up the order management card application installed on the super SIM card through the SIM card channel. The order management card application can collect the instruction interaction between the terminal device and the dispatch message through the COS layer, and then confirm whether the logistics party accepts the dispatch message based on the collected interaction instructions. If the judgment result is yes, step 2 is executed; if the judgment result is no, the current process ends.

[0026] Step 2: The order management card application extracts the order information carried in the dispatch message, generates a pickup message carrying the logistics provider's unique identifier, and uploads the pickup message to the SIM card management platform; The unique identifier of the logistics provider can be the card number of the Super SIM used by the logistics provider, or it can be the account registered by the user using the order management card application.

[0027] The order management card application can extract the order information carried in the dispatch message from the application corresponding to the dispatch message by opening the SIM card channel. Simultaneously, to ensure the security of the order information, the order management card application encrypts the obtained order information and the logistics provider's unique identifier (in this solution, the order management card application encrypts the obtained order information and the logistics provider's unique identifier according to national cryptographic algorithms, such as SM1, SM2, SM3, and SM4 algorithms, to obtain the pickup message), then generates a pickup message and uploads it to the SIM card management platform.

[0028] Step 3: The SIM card management platform receives the pickup message uploaded by the logistics provider's order management card application and creates an order management table based on the pickup message; Upon receiving the pickup message, the SIM card management platform decrypts the message according to the SCP02 protocol and the national cryptographic algorithm to obtain the order information and the logistics provider's unique identifier. The SIM card management platform then generates an order management table and saves the order information and logistics provider information to this table. In this solution, the SIM card management platform can generate the order management table shown in Table 1 below.

[0029] Table 1 Order Management Table

[0030] Among them, the SCP02 protocol is a standard protocol for secure communication of SIM cards. This protocol provides reliable security and prevents malicious attackers from stealing or tampering with smart card information, thereby ensuring the integrity and security of transmitted data.

[0031] Step 4: When the logistics provider enters the electronic fence area corresponding to the outbound warehouse, the logistics provider's order management card application will send a pickup request carrying the card number of the Super SIM card to the SIM card management platform. After the SIM card management platform completes the identity authentication of the logistics provider based on the card number, the SIM card management platform sends an outbound message to the outbound equipment. If the pickup request includes the order number of the order to be picked up, in this solution, the SIM card management platform can search the database for the order management table corresponding to the order number, find the logistics provider's unique identifier in the order management table, and then complete the identity authentication of the logistics provider by comparing the received pickup message with the logistics provider's unique identifier in the order management table.

[0032] Once the logistics provider's identity is verified, the SIM card management platform generates an outbound message carrying the logistics provider's unique identifier and sends the outbound message to the outbound device. Specifically, the outbound device (e.g., a shelf containing ordered goods) is pre-installed with an IoT card, and the SIM card management platform can then synchronize the outbound message to the outbound device by interacting with the IoT card of the outbound device.

[0033] Step 5: The logistics company sends a pickup request to the outbound equipment. After the outbound equipment completes the identity verification of the logistics SIM card terminal, the order is shipped out. In this solution, the outbound equipment is equipped with a card reader. When the logistics provider needs to pick up goods on-site, the logistics provider's order management card application will generate a pickup code (such as a QR code, barcode, or any other form of code generated by the encoding protocol supported by the outbound equipment's card reader) carrying the logistics provider's unique identifier and order number. The logistics provider can send a pickup request to the outbound equipment by swiping the card reader. The outbound equipment will authenticate the current logistics provider based on the outbound message received in step 4, and allow the logistics provider to carry out the outbound operation after successful authentication.

[0034] Meanwhile, the outbound device will generate outbound information based on the outbound time and the logistics provider's unique identifier through the IoT card, and upload the outbound information to the SIM card management platform. The SIM card management platform will update the pre-created order management table based on the outbound information. For example, the updated order management table is shown in Table 2 below.

[0035] Table 2 Order Management Table

[0036] Step 6: When a handover of logistics is required, the original logistics provider can send a logistics handover message to the new logistics provider. The order management card application installed on the new logistics provider's super SIM card generates a handover message based on the user's operation and sends the handover message to the SIM card management platform. Specifically, the original logistics provider can generate and send a logistics handover message to the new logistics provider via SMS, 5G message, or directly through the order management card application. This logistics handover information carries the original logistics provider's unique identifier and the order number.

[0037] The new logistics provider's order management card application responds to the user's confirmation operation for the handover information entry, obtains the original logistics provider's unique identifier and order number carried in the handover information, generates a handover message based on this information, and sends the handover message to the SIM card management platform.

[0038] The SIM card management platform uses the order number carried in the handover message to find the corresponding order management table and performs security authentication on the handover message based on the unique identifier of the logistics provider recorded in the order management table. If the security authentication is successful, the SIM card management platform can update the order management table according to the handover information; if the security authentication fails, the SIM card management platform will send an order anomaly alarm to the inbound warehouse management terminal and the outbound warehouse management terminal.

[0039] The anomaly alarm carries unique identifiers for both the original and new logistics providers. Based on these unique identifiers, the receiving or shipping party can send inquiry messages to the original or new logistics provider via the order management card application installed on their respective super SIM cards. Figure 2 as well as Figure 3 As shown.

[0040] Step 7: When the logistics party's order management card application detects that the logistics party has entered the electronic fence area corresponding to the warehouse, the order management card application will send an inbound request to the management terminal device corresponding to the warehouse. The warehouse management terminal device obtains order management information from the SIM card management platform through the Internet of Things card. After completing the identity authentication of the user who initiated the warehouse entry request based on the order management information, it returns the warehouse entry information to the logistics SIM card terminal, so that the logistics transportation personnel can carry out the warehouse entry operation according to the warehouse entry information received by the logistics SIM card terminal.

[0041] Step 8: After the warehousing is completed, the warehouse management terminal device sends a warehousing completion message to the SIM card management platform through the Internet of Things card, so that the SIM card management platform updates the order management table according to the warehousing completion message and sends the order management table to the order management server; It should be noted that during the order transportation process, the order management card application installed on all participating parties (including the outbound party, logistics party, handover party, and inbound party) will collect relevant information during the process (such as transportation time, location information, video image information, etc.) and upload the collected order-related information to the corresponding storage area of ​​the SIM card management platform for storage. On the SIM card management platform, each participating party's order management card application has a unique corresponding storage area, which can only be accessed by the corresponding participating party's order management card application.

[0042] Subsequently, order managers can trace the complete flow of an order by querying the order management table stored on the order management server. For questionable processes, after identifying the process participants based on the order management table, order managers can initiate a "process confirmation request" through the order management card application and send the "process confirmation request" to the corresponding process participants. The "process confirmation request" carries the process node to be confirmed (such as outbound, inbound, in-transit transportation, etc.), the unique identifier of the order manager, and the unique identifier of the process participant. The process participant's order management card application responds to the "process confirmation request" by accessing the corresponding storage area of ​​the SIM card management platform, thereby obtaining the relevant information corresponding to the process node to be confirmed in the "process confirmation request," and feeding back the relevant information to the order manager to achieve traceability of the order process.

[0043] As mentioned above, the interaction logic between modules in the order management system provided by this solution is as follows: Figure 4 As shown.

[0044] The order management method based on IoT and Super SIM cards provided in this solution allows both warehousing and logistics providers to collect order-related flow information throughout the entire process of order shipment, in-transit handover, and warehousing. This information is obtained through an order management card application installed on the Super SIM card and monitored via terminal input. The information, along with user messages, is then uploaded to the SIM card management platform for storage. This enables the recording and summarization of the entire order process on a trusted third-party platform (SIM card management platform). Since the entire process is automatically collected through the order management card application installed on the Super SIM card, this solution allows for comprehensive management. The data is uploaded, thus avoiding errors in order data due to manual entry. Secondly, since the unique identifier of the Super SIM card is uniquely associated with the user when the card is activated, and during the order process management based on the order management card application, the SIM card management platform can uniquely identify the corresponding personnel for the process based on the identifier of the order management card application. Moreover, all process information is stored in the corresponding storage area of ​​the SIM card management platform. Process participants can only download and query this process information, but cannot modify the process, ensuring that the process information is tamper-proof and greatly guaranteeing the security and traceability of the entire order process data.

[0045] The order management system mainly consists of the following parts: 1. SIM card management platform: a cloud-based comprehensive service management platform for downloading and installing SIM card applications. It also interacts with the Super SIM card via a BIP channel and stores and manages the data uploaded by the Super SIM card; 2. SIM card terminal: a terminal device with the Super SIM card installed, providing a front-end operating interface for the Super SIM card; 3. Super SIM card: installed on the terminal device, on which SIM card applications can be installed. By enabling the SIM card channel, the Super SIM card can interact with the terminal device; 4. Super SIM card application: an application installed on the Super SIM card that provides users with corresponding functional services. In this solution, the Super SIM card application used is the order management card application; 5. Warehouse management equipment: including IoT shelves, audio and video acquisition equipment, etc., providing services for the storage and management of goods; 6. IoT card: installed on the warehouse management equipment, enabling these warehouse management devices to achieve wireless networking via the IoT card; 7. Order management server: used for unified management and allocation of warehouse orders.

[0046] Specifically, based on the above system, the following technical solutions can be adopted to implement order management: 1. When logistics personnel receive a dispatch message from the order management server, the order management card application monitors the user's response to the dispatch message. After confirming that the user has accepted the dispatch instruction, it extracts the order information carried in the dispatch message, generates a pickup message carrying the logistics personnel's unique identifier (e.g., the card number of the Super SIM used by the logistics personnel), and uploads the pickup message to the SIM card management platform for storage. The SIM card management platform creates an order management table based on the pickup message. 2. When logistics personnel enter the electronic fence area corresponding to the outbound warehouse, the logistics personnel's SIM card terminal will send a pick-up request carrying the card number of the Super SIM card to the SIM card management platform. After the SIM card management platform completes the identity authentication of the logistics personnel based on the card number, the SIM card management platform sends an outbound message to the outbound equipment. 3. The logistics SIM card terminal sends a pickup request to the outbound equipment. After the outbound equipment completes the identity verification of the logistics SIM card terminal, it processes the order and sends it out. At the same time, the outbound equipment uploads the outbound information to the SIM card management platform through the IoT card. The SIM card management platform updates the pre-created order management table based on the outbound information. 4. During the logistics transportation process, when a handover of logistics personnel is required, the original logistics personnel send a logistics handover message to the new logistics personnel's SIM card terminal via SMS. This logistics handover message carries the card number of the original logistics personnel's super SIM card and order information. The order management card application of the new logistics personnel's terminal device responds to the user's confirmation operation for the handover information entry, obtains the original SIM card number and order information, generates a handover message based on this information, and sends the handover message to the SIM card management platform. After completing the identity verification, the SIM card management platform updates the order management table according to the handover information. 5. When the order management card application detects that the logistics SIM card terminal has entered the electronic fence area corresponding to the warehouse, the order management card application will send an entry request to the management terminal device corresponding to the warehouse. The warehouse management terminal device obtains the order management information from the SIM card management platform through the Internet of Things card. After completing the identity authentication of the user who initiated the entry request based on the order management information, it returns the entry information to the logistics SIM card terminal, so that the logistics transportation personnel can perform the goods entry operation according to the entry information received by the logistics SIM card terminal. 6. After the warehousing is completed, the warehouse management terminal device sends a warehousing completion message to the SIM card management platform through the Internet of Things card, so that the SIM card management platform updates the order management table according to the warehousing completion message and sends the order management table to the order management server; 7. By querying the order management table stored on the order management server, order management personnel can trace the complete flow of an order. For questionable processes, after identifying the personnel involved in the process based on the order management table, the order management personnel can initiate a "process confirmation request" through the order management card application. After receiving the "process confirmation request", the relevant personnel can obtain the confirmation information corresponding to the "process confirmation request" from the SIM card management platform through the order management card application and feed the confirmation information back to the order management party to achieve traceability of the order process.

[0047] The order management method based on IoT and Super SIM cards provided in this solution allows both warehousing and logistics providers to collect order-related flow information throughout the entire process of order shipment, in-transit handover, and warehousing. This information is obtained through an order management card application installed on the Super SIM card and monitored via terminal input. The information, along with user messages, is then uploaded to the SIM card management platform for storage. This enables the recording and summarization of the entire order process on a trusted third-party platform (SIM card management platform). Since the entire process is automatically collected through the order management card application installed on the Super SIM card, this solution allows for comprehensive management. The data is uploaded, thus avoiding errors in order data due to manual entry. Secondly, since the unique identifier of the Super SIM card is uniquely associated with the user when the card is activated, and during the order process management based on the order management card application, the SIM card management platform can uniquely identify the corresponding personnel for the process based on the identifier of the order management card application. Moreover, all process information is stored in the corresponding storage area of ​​the SIM card management platform. Process participants can only download and query this process information, but cannot modify the process, ensuring that the process information is tamper-proof and greatly guaranteeing the security and traceability of the entire order process data.

[0048] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.

Claims

1. An order management method based on the Internet of Things and a super SIM card, characterized in that, Includes the following steps: Step 1: The logistics terminal receives the order dispatch message from the order management server. In response to the order dispatch message, the order management card application installed on the super SIM card of the logistics terminal will monitor the operation instructions entered by the logistics terminal for the order dispatch message. Step 2: The order management card application extracts the order information carried in the dispatch message, generates a pickup message carrying the logistics provider's unique identifier, and uploads the pickup message to the SIM card management platform; Step 3: The SIM card management platform receives the pickup message uploaded by the logistics provider's order management card application and creates an order management table based on the pickup message; Step 4: When the logistics provider enters the electronic fence area corresponding to the outbound warehouse, the logistics provider's order management card application will send a pickup request carrying the card number of the Super SIM card to the SIM card management platform. After the SIM card management platform completes the identity authentication of the logistics provider based on the card number, the SIM card management platform sends an outbound message to the outbound equipment. Step 5: The logistics company sends a pickup request to the outbound equipment. After the outbound equipment completes the identity verification of the logistics SIM card terminal, the order is shipped out. Step 6: When a handover of logistics is required, the original logistics provider can send a logistics handover message to the new logistics provider. The order management card application installed on the new logistics provider's super SIM card generates a handover message based on the user's operation and sends the handover message to the SIM card management platform. Step 7: When the logistics provider's order management card application detects that the logistics provider has entered the electronic fence area corresponding to the warehouse, the order management card application will send an inbound request to the management terminal device corresponding to the warehouse. Step 8: After the warehousing is completed, the warehouse management terminal device sends an warehousing completion message to the SIM card management platform through the IoT card, so that the SIM card management platform updates the order management table according to the warehousing completion message and sends the order management table to the order management server.

2. The order management method based on the Internet of Things and Super SIM card according to claim 1, characterized in that: The dispatch message in step 1 carries order information such as outbound party information, inbound party information, and order goods information. When the terminal receives the dispatch message, the terminal operating system will wake up the order management card application installed on the super SIM card through the SIM card channel. The order management card application will collect the instruction interaction between the terminal device and the dispatch message through the COS layer, and then confirm whether the logistics party accepts the dispatch message based on the collected interaction instructions. If the judgment result is yes, step 2 will be executed. If the judgment result is no, the current process will end.

3. The order management method based on the Internet of Things and a super SIM card according to claim 2, characterized in that: In step 3, after receiving the pickup message, the SIM card management platform decrypts the pickup message according to the SCP02 protocol and the national cryptographic algorithm to obtain the order information and the logistics provider's unique identifier. Then, the SIM card management platform can generate an order management table and save the order information and logistics provider information to the order management table.

4. The order management method based on the Internet of Things and Super SIM card according to claim 1, characterized in that: In step 4, the SIM card management platform searches the database for the order management table corresponding to the order number, looks up the logistics provider's unique identifier in the order management table, and then compares the received pickup message with the logistics provider's unique identifier in the order management table to complete the logistics provider's identity authentication. Once the logistics provider's identity authentication is successful, the SIM card management platform will generate an outbound message carrying the logistics provider's unique identifier and send the outbound message to the outbound device.

5. The order management method based on the Internet of Things and Super SIM card according to claim 4, characterized in that: In step 5, the outbound equipment is equipped with a card reader. When the logistics provider needs to pick up goods on-site, the logistics provider's order management card application will generate a pickup code carrying the logistics provider's unique identifier and order number. The logistics provider swipes the card on the outbound equipment's card reader, which sends a pickup request to the outbound equipment. The outbound equipment authenticates the current logistics provider's identity based on the outbound message received in step 4. After successful authentication, the logistics provider is allowed to perform the outbound operation. At the same time, the outbound equipment will generate outbound information based on the outbound time, the logistics provider's unique identifier, etc., through the IoT card, and upload the outbound information to the SIM card management platform. The SIM card management platform updates the pre-created order management table based on the outbound information.

6. The order management method based on the Internet of Things and Super SIM card according to claim 5, characterized in that: In step 6, the original logistics provider can generate and send a logistics handover message to the new logistics provider via SMS, 5G message, or directly through the order management card application. The logistics handover information carries the original logistics provider's unique identifier and the order number. The new logistics provider's order management card application responds to the user's confirmation operation for the handover information entry, obtains the original logistics provider's unique identifier and order number carried in the handover information, generates a handover message based on this information, and sends the handover message to the SIM card management platform; The SIM card management platform uses the order number carried in the handover message to look up the corresponding order management table and performs security authentication on the handover message based on the unique identifier of the logistics provider recorded in the order management table. When the security authentication is successful, the SIM card management platform updates the order management table according to the handover information; when the security authentication fails, the SIM card management platform will send an order anomaly alarm to the inbound warehouse management terminal and the outbound warehouse management terminal.

7. The order management method based on the Internet of Things and Super SIM card according to claim 6, characterized in that: In step 7, the warehouse management terminal device obtains order management information from the SIM card management platform through the Internet of Things card. After completing the identity authentication of the user who initiated the warehouse entry request based on the order management information, it returns the warehouse entry information to the logistics SIM card terminal so that the logistics transportation personnel can carry out the warehouse entry operation based on the warehouse entry information received by the logistics SIM card terminal.

8. The order management method based on the Internet of Things and Super SIM card according to claim 7, characterized in that: In step 8 of the order transportation process, all participating parties' order management card applications collect relevant information during the process and upload the collected order-related information to the corresponding storage area of ​​the SIM card management platform. Each participating party's order management card application uniquely corresponds to a storage area on the SIM card management platform, which can only be accessed by the corresponding participating party's order management card application. Order managers can trace the complete flow of an order by querying the order management table stored on the order management server. For questionable processes, after determining the process participants based on the order management table, order managers can initiate a "process confirmation request" through the order management card application and send the "process confirmation request" to the corresponding process participants.