Method and device for sending 5g message through common mobile phone

By recognizing and converting SMS messages from ordinary mobile phones using 5GMC network elements, the problem of ordinary mobile phones being unable to send 5G messages has been solved, enabling ordinary mobile phones to send rich media messages and improving the user experience.

CN118540661BActive Publication Date: 2025-11-04CHINA MOBILE INTERNET CO LTD +1
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Patent Information

Application Number
CN202410450322.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-04-15
Publication Date
2025-11-04
Estimated Expiration
2044-04-15

AI Technical Summary

Technical Problem

In existing technologies, ordinary mobile phones cannot directly send 5G messages. Terminal systems need to be upgraded to support the 5G messaging protocol, which means that users will be unable to use rich media messaging services for a considerable period of time.

Method used

By receiving SMS messages from ordinary mobile phones through 5G MC network elements, identifying special distinguishing characters, extracting SMS material tags, obtaining rich media message materials, and converting SMS messages into 5G messages, ordinary mobile phones can send rich media messages.

Benefits of technology

This enables ordinary mobile phone users to send rich media messages through the native messaging entry point, improving the user experience of 5G messaging services and avoiding the limitations of terminal system upgrades.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides an implementation method and device for sending a 5G message through a common mobile phone. The method comprises the following steps: receiving an SMS message from a common terminal device; judging whether a special label separator exists in the SMS message; when the special label separator exists in the SMS message, extracting an SMS material label identified by each group of special label separators in the SMS message; obtaining a rich media message material associated with the SMS material label; converting the SMS message into a 5G message based on the rich media message material; and performing a called receiving process of the 5G message. The user can send a rich media message to a target user through a common mobile phone.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of communication, and in particular to an implementation method and device for sending 5G messages through ordinary mobile phones, electronic equipment and storage media. BACKGROUND

[0002] In the prior art, mobile terminal needs to be upgraded to support 5G message protocol encoding and decoding, display and associated application logic processing according to standard definition. Therefore, in the coverage of 5G message terminals, there are still a large number of ordinary mobile phones on the market that do not support 5G message features.

[0003] In order to enable ordinary mobile phones to use rich media message services in the original message portal, an implementation scheme for sending 5G messages through ordinary mobile phones is needed. SUMMARY

[0004] The present application aims to at least solve one of the technical problems in the related art to some extent.

[0005] The first aspect of the present application provides an implementation method for sending 5G messages through ordinary mobile phones, which is applied to a 5G message center (5GMC) network element; the method comprises the following steps:

[0006] Receiving an SMS message from an ordinary terminal device;

[0007] Determining whether at least one set of label special delimiters exists in the SMS message, and when at least one set of label special delimiters exists in the SMS message, extracting SMS material labels identified by each set of label special delimiters in the SMS message;

[0008] Obtaining rich media message materials associated with the SMS material labels;

[0009] Converting the SMS message into a 5G message based on the rich media message materials;

[0010] Performing a called receiving process of the 5G message.

[0011] In some implementations, each set of label special delimiters includes two non-adjacent special characters; the extraction of the SMS material labels identified by each set of label special delimiters in the SMS message comprises:

[0012] Extracting target SMS content located between the two non-adjacent special characters in the SMS message;

[0013] Taking the target SMS content as an SMS material label.

[0014] In some implementations, obtaining the rich media message material associated with the SMS material tag includes:

[0015] Determine whether rich media message materials associated with the aforementioned SMS material tags exist in the SMS material storage service;

[0016] When rich media message material associated with the SMS material tag exists in the SMS material storage service, the rich media message material associated with the SMS material tag is retrieved.

[0017] In some implementations, converting the SMS message into a 5G message based on the rich media message material includes:

[0018] Determine the number of SMS material tags in the SMS message;

[0019] Determine whether the SMS message contains user-written content belonging to the ordinary terminal device, excluding the special separator and the SMS material tag;

[0020] When the SMS message includes multiple SMS material tags, or when the SMS message includes user-written content belonging to the ordinary terminal device, the SMS message is split into multiple 5G messages.

[0021] The second aspect of this application proposes a method for sending 5G messages via a regular mobile phone, which is applied to a regular terminal device; the method includes the following steps:

[0022] Obtain SMS material tags, which are associated with rich media message materials uploaded to the SMS material storage service;

[0023] Based on the SMS material tags, an SMS message is generated; and the SMS message is sent to the 5GMC network element.

[0024] In some implementations, obtaining SMS material tags includes:

[0025] Send the rich media message material to the SMS material storage service;

[0026] Receive SMS material tags associated with the rich media message material allocated by the SMS material storage service.

[0027] In some implementations, obtaining SMS material tags includes:

[0028] The application sends a material upload request to the Message as a Platform (MaaP) network element; the material upload request includes generating SMS material tag indication information.

[0029] receiving sharing link information returned by the application,

[0030] The sharing link information is generated by the application based on material link information returned by the MaaP network element, the material link information is obtained by the MaaP network element after uploading the rich media message material and the generated short message material tag indication information involved in the material upload request to the short message material storage service, and the material link information includes a short message material tag associated with the rich media message material and a label special separator for identifying the short message material tag.

[0031] The third aspect of the present application provides an implementation method for sending 5G messages through a general mobile phone, which is applied to a message platform (MaaP) network element; the method comprises the following steps:

[0032] receiving a material upload request sent by a general terminal device through an application; the material upload request includes generated short message material tag indication information;

[0033] based on the generated short message material tag indication information, uploading the rich media message material and the generated short message material tag indication information involved in the material upload request to a short message material storage service;

[0034] receiving material link information returned by the short message material storage service; the material link information includes a short message material tag associated with the rich media message material, a label special separator for identifying the short message material tag, and address information of the rich media message material stored in the short message material storage service.

[0035] The fourth aspect of the present application provides an implementation device for sending 5G messages through a general mobile phone, which is configured in a 5GMC network element; the device comprises:

[0036] a transceiver module for receiving a short message from a general terminal device;

[0037] an information processing module for determining whether at least one group of label special separators exists in the short message, and extracting short message material tags identified by each group of label special separators in the short message when at least one group of label special separators exists in the short message;

[0038] a material acquisition module for acquiring a rich media message material associated with the short message material tag;

[0039] a short message conversion module for converting the short message into a 5G message based on the rich media message material;

[0040] The transceiver module is also used for executing a called receiving process of the 5G message.

[0041] In some implementations, each of the label special delimiters comprises two non-adjacent special characters; and the information processing module is configured to:

[0042] extract target short message content between the two non-adjacent special characters in the short message;

[0043] use the target short message content as a short message material label.

[0044] In some implementations, the material obtaining module is specifically configured to:

[0045] determine whether a rich media message material associated with the short message material label exists in a short message material storage service;

[0046] obtain the rich media message material associated with the short message material label when the rich media message material associated with the short message material label exists in the short message material storage service.

[0047] In some implementations, the short message conversion module is further configured to:

[0048] determine the number of the short message material labels in the short message;

[0049] determine whether the user-written content of the user to which the terminal device belongs exists in the short message in addition to the label special delimiters and the short message material labels;

[0050] split the short message into multiple 5G messages when the short message includes multiple short message material labels or when the short message includes the user-written content of the user to which the terminal device belongs.

[0051] The fifth aspect of the present application provides an implementation device for sending a 5G message through a common mobile phone, which is configured in a common terminal device; the device comprises:

[0052] a material uploading module configured to send a rich media message material to a short message material storage service and receive a short message material label associated with the rich media message material allocated by the short message material storage service;

[0053] a short message processing module configured to generate a short message based on the short message material label and send the short message to a 5GMC network element.

[0054] In some implementations, the material uploading module is further configured to:

[0055] sending a material uploading request to a message-as-a-Platform (MaaP) network element through an application; the material uploading request includes generated short message material tag indication information;

[0056] receiving sharing link information returned by the application,

[0057] The sharing link information is generated by the application based on material link information returned by the MaaP network element, the material link information is obtained by the MaaP network element after uploading the rich media message material and the generated short message material tag indication information involved in the material uploading request to a short message material storage service, and the material link information includes a short message material tag associated with the rich media message material and a tag special separator used to identify the short message material tag.

[0058] The sixth aspect of the present application provides an implementation device for sending 5G messages through a general mobile phone, which is configured in a message-as-a-Platform (MaaP) network element; the device comprises:

[0059] a receiving module configured to receive a material uploading request sent by a general terminal device through an application; the material uploading request includes generated short message material tag indication information;

[0060] a sending module configured to upload a rich media message material and the generated short message material tag indication information involved in the material uploading request to a short message material storage service based on the generated short message material tag indication information;

[0061] The receiving module is further configured to receive material link information returned by the short message material storage service; the material link information includes a short message material tag associated with the rich media message material, a tag special separator used to identify the short message material tag, and address information of the rich media message material stored in the short message material storage service.

[0062] The seventh aspect of the present application provides an electronic device, comprising a processor and a memory connected with the processor; the memory stores computer execution instructions; the processor executes the computer execution instructions stored in the memory to implement the method in any one of the first aspect to the third aspect.

[0063] The eighth aspect of the present application provides a computer readable storage medium, the computer readable storage medium stores computer execution instructions, and the computer execution instructions are executed by a processor to implement the method in any one of the first aspect to the third aspect.

[0064] The ninth aspect of the present application provides a computer program product comprising a computer program which, when executed by a processor, implements the method of any one of the first aspect to the third aspect.

[0065] The application provides an implementation method, device and electronic equipment for sending a 5G message through a common mobile phone and a storage medium. The implementation method comprises the following steps: obtaining a label special delimiter and an SMS material label associated with uploaded rich media message materials; obtaining an SMS material label identified by the label special delimiter in an SMS message; and obtaining rich media message materials associated with the SMS material label. The SMS message is converted into a rich media message according to the rich media message materials, so that a user can send a rich media message to a target user through a common mobile phone.

[0066] Additional aspects and advantages of the present application will be made apparent by the following description and the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0067] The above and / or additional aspects and advantages of the present application will become apparent and be readily understood from the following description, taken in conjunction with the accompanying drawings, in which:

[0068] Figure 1 An application scenario diagram of the implementation method for sending a 5G message through a common mobile phone according to an embodiment of the present application.

[0069] Figure 2 A flowchart of the implementation method for sending a 5G message through a common mobile phone according to an embodiment of the present application.

[0070] Figure 3 A flowchart of the implementation method for sending a 5G message through a common mobile phone according to another embodiment of the present application.

[0071] Figure 4 A flowchart of the implementation method for sending a 5G message through a common mobile phone according to another embodiment of the present application.

[0072] Figure 5 A flowchart of the implementation method for sending a 5G message through a common mobile phone according to another embodiment of the present application.

[0073] Figure 6 A block diagram of a system architecture for implementing the implementation method for sending a 5G message through a common mobile phone according to another embodiment of the present application.

[0074] Figure 7 An example flowchart of the implementation method for sending a 5G message through a common mobile phone according to an embodiment of the present application.

[0075] Figure 8 a block diagram of an implementation device for sending a 5G message through a common mobile phone according to an embodiment of the present application;

[0076] Figure 9 a block diagram of an implementation device for sending a 5G message through a common mobile phone according to another embodiment of the present application;

[0077] Figure 10 a block diagram of an implementation device for sending a 5G message through a common mobile phone according to another embodiment of the present application;

[0078] Figure 11 a block diagram of an electronic device according to an embodiment of the present application. DETAILED DESCRIPTION

[0079] Embodiments of the present application are described in detail below with reference to the attached drawings, which show by way of example, embodiments in which the same or similar elements have the same or similar reference numbers and in which:

[0080] The 5G message service follows the RCS (Rich Communication Suite) standard and provides a rich media message service defined by pictures, voice, video, files, geographic location, etc. compared to the short message service. Users can send standard rich media messages such as pictures, voice, video, files, etc. through the native terminal message portal of the mobile phone. The 5G message is the target solution for the upgrade of the short message service by the operator, as shown in FIG. 1. Currently, through the introduction of the 5GMC (5G Message Center) network element and the MaaP (Messaging as a Platform) network element, commercial online has been realized. Since the upgrade support of the mobile phone needs a certain period, for the MT (Mobile Termination Call) receiving process of the 5G message, if the receiving party is a common mobile phone, the basic network element 5GMC realizes the mechanism of falling back the rich media message to the short message or the multimedia message and pushing it to the common mobile phone, ensuring the full touch of the message. Figure 1

[0081] ​Terminals need to be adapted and upgraded to use rich media messaging services through the native messaging interface. If a user uses a regular mobile phone, they can only send short and medium-length messages to the user's end, and cannot send rich media messages. Since the large-scale market launch of 5G messaging terminals will take time, this significantly limits user access to 5G messaging services. Current methods, such as those using messaging apps like Yuexin, which perform secondary rich media processing on SMS messages received by the terminal, are only applied to message interaction scenarios between the application and the user, and do not involve user interaction, thus failing to improve the message usage experience for the sender.

[0082] 5G messaging, as a standard basic messaging service, will eventually achieve full network terminal support and service coverage. Prior to this, a capability that provides rich media interoperability between users without requiring terminal system upgrades, through adaptation on the operator's platform, will help improve the user experience of current operator basic messaging services.

[0083] To address the aforementioned issues, this application provides a method and apparatus for sending 5G messages via a regular mobile phone, enabling regular mobile terminals to use rich media messaging services through the native messaging entry point.

[0084] Figure 1 This diagram illustrates an application scenario for a method of sending 5G messages via a regular mobile phone, applicable to embodiments of this application. For example... Figure 1 As shown, this application scenario includes 5GMC network elements and rich media storage services. When application systems are involved, MaaP network elements are also included. Ordinary terminals send rich media messages to 5G terminals or other ordinary terminals through the 5GMC network elements. That is, for user-to-user message interaction scenarios, the implementation scheme of sending 5G messages through ordinary mobile phones provided in this application embodiment is adopted, realizing a service mechanism for rich media messages that can cover the entire network.

[0085] The following description, with reference to the accompanying drawings, describes a method, apparatus, and device for sending 5G messages via a regular mobile phone according to embodiments of this application.

[0086] Figure 2 This is a flowchart illustrating a method for sending 5G messages via a regular mobile phone, provided in an embodiment of this application. This method is applied to a 5G MC network element.

[0087] It should be noted that the execution subject of the method for sending 5G messages via ordinary mobile phones in this application embodiment is the implementation device for sending 5G messages via ordinary mobile phones in this application embodiment. The implementation device for sending 5G messages via ordinary mobile phones can be configured in electronic devices such as 5GMC platforms so that the electronic devices can perform the function of sending 5G messages via ordinary mobile phones.

[0088] like Figure 2 As shown, the method for sending 5G messages via a regular mobile phone includes the following steps:

[0089] Step 201, receiving the short message from the ordinary terminal device.

[0090] The 5GMC network element receives the short message from the ordinary terminal device. For example, the 5GMC network element receives the short message from the first ordinary terminal device, and the first ordinary terminal device sends the short message to the second terminal device through the 5GMC network element. The second terminal device can be a 5G terminal device or an ordinary terminal device.

[0091] Step 202, determining whether there is at least one set of label special delimiters in the short message. When there is at least one set of label special delimiters in the short message, the short message material label identified by each set of label special delimiters is extracted.

[0092] It can be understood that, in order for the ordinary terminal device to have the ability to use rich media messages, the 5G message network side device provides a matching mechanism for associating rich media message materials with short message material labels. The rich media message materials can be uploaded to a short message material storage service first, and the returned short message material labels associated with the uploaded rich media message materials are obtained. In the embodiment of the present application, the short message material label uses the label special delimiter as the delimiter for the content in the short message other than the short message material label. The label special delimiter is used to identify the short message material label in the short message, so as to obtain the associated rich media message material according to the short message material label in the subsequent steps. Therefore, the short message material label is added in the sent short message, and the 5GMC network element can obtain the corresponding rich media message material by querying the short message material storage service according to the short message material label.

[0093] In some embodiments, the implementation manner of determining whether there is at least one set of label special delimiters in the short message includes: obtaining the content of the short message, and identifying whether there is at least one set of label special delimiters in the content of the short message.

[0094] In some embodiments, the implementation manner of extracting the short message material label identified by each set of label special delimiters in the short message includes: extracting the target short message content located between two non-adjacent special characters in the short message; and taking the target short message content as the short message material label.

[0095] In some embodiments, each set of label special delimiters includes two non-adjacent special characters.

[0096] For example, each set of label special delimiters is “#*#”, and the content between the two special characters “#” is the short message material label, that is, the short message material label between the two “#” is obtained.

[0097] In some embodiments, the short message material label is a unique MD5 value generated based on the rich media message material.

[0098] It should be noted that the short message message can include multiple sets of label special delimiters, and the short message content between each set of label special delimiters can be extracted to obtain multiple short message material labels.

[0099] In step 203, the rich media message material associated with the short message material label is obtained.

[0100] In some embodiments, the 5GMC network element queries the short message material storage service according to the short message material label to obtain the rich media message material associated with the short message material label.

[0101] It should be noted that the rich media message material is uploaded to the short message material storage service by the terminal user through the ordinary terminal, and the short message material label of the rich media message material allocated by the short message material storage service is received, so that the associated rich media message material can be obtained according to the short message material label.

[0102] In some embodiments, the terminal user uploads the rich media message material to the short message material storage service through the ordinary terminal, and the short message material label of the rich media message material allocated by the short message material storage service. The 5GMC network element queries the short message material storage service for the rich media message material corresponding to the short message material label. Thus, the 5GMC network element can query the short message material storage service according to the short message material label to obtain the rich media message material.

[0103] It should be noted that in the existing 5G message basic network element, a rich media storage service has been built to store rich media message material information uploaded by users and applications as senders. When the recipient user receives the 5G message signaling, it will pull the corresponding rich media message material from the home rich media storage service according to the various material addresses carried in the signaling according to the standard definition, and store and display the rich media message material on the terminal side. By upgrading the existing rich media storage service, an independent short message material storage service is further extended, which is used to store the label special delimiter, the short message material label and the specific rich media message material content corresponding to the short message material label set by the user or the application. The stored label special delimiter, short message material label and specific rich media message material content corresponding to the short message material label can be provided to the internal 5GMC for access. Thus, the 5GMC network element can provide configurable label special delimiter and short message material label setting function for users and third-party application programs based on the short message material storage service, thereby improving the flexibility of the service.

[0104] In step 204, the short message is converted into a 5G message based on the rich media message material.

[0105] After obtaining the rich media message material, the short message of the terminal user is converted into a standard rich media message associated with the rich media message material.

[0106] In some embodiments, when converting the short message into a 5G message, the following steps are included: determining the number of short message material tags in the short message; determining whether there is user-written content in the short message in addition to the tag special separator and the short message material tag; and when the short message includes multiple short message material tags, or when the short message includes user-written content of the terminal device, splitting the short message into multiple 5G messages.

[0107] It can be understood that if the content of the short message involves multiple separators + short message material tags, or the content of the short message also includes other user-written content, the 5GMC can be automatically split into multiple 5G messages for pushing.

[0108] For example, in addition to the tag special separator + short message material tag, the short message also includes other user-written content. The 5GMC network element can split the obtained rich media message material and other user-written content into two different 5G messages for pushing to the receiver, and the overall execution mechanism is consistent.

[0109] Step 205: Perform the called receiving process of the 5G message.

[0110] The 5GMC network element performs the 5G message MT process and triggers the 5G message or short message fallback push to the user side.

[0111] Step 206: When there is no tag special separator in the short message, perform the called receiving process of the short message.

[0112] That is, when the short message does not involve rich media message material, the 5GMC continues to process according to the original standard short message logic process.

[0113] It should be noted that the existing 5GMC network element has integrated the processing capabilities of RCS rich media messages and short message services. In the existing standard short message processing logic, the processing logic related to the short message material tag is added, that is, steps 202-204 are added, and the embodiment of the application can be implemented. By upgrading the 5GMC network element of the 5G message, the ordinary short message is automatically converted into a rich media message on the platform side, and the mechanism of pushing to the called terminal through the 5G message standard MT process is completed, so as to achieve the effect that the sender can initiate a 5G message to the receiver user through an ordinary terminal.

[0114] The implementation method for sending 5G messages through a common mobile phone in the embodiment obtains a short message material label identified by a label special area separator in a short message, obtains a rich media message material associated with the short message material label, and converts the short message into a rich media message according to the rich media message material. The implementation method enables a user to send a rich media message to a target user through a common mobile phone.

[0115] On the basis of the above-described embodiments, Figure 3 A flowchart of an implementation method for sending 5G messages through a common mobile phone is provided in another embodiment of the application, and the method is applied to a 5GMC network element. As shown in the figure, Figure 3 The implementation method for sending 5G messages through a common mobile phone includes the following steps:

[0116] Step 301: receiving a short message from a common terminal device.

[0117] It should be noted that in the embodiment, the implementation process of step 301 described above can be referred to the description of the implementation process of step 201, and will not be repeated here.

[0118] Step 302: determining whether there is at least one set of label special area separators in the short message.

[0119] Step 303: when there is at least one set of label special area separators in the short message, extracting short message material labels identified by each set of label special area separators in the short message.

[0120] It should be noted that in the embodiment, the implementation process of steps 302-303 described above can be referred to the description of the implementation process of step 202, and will not be repeated here.

[0121] Step 304: determining whether there is a rich media message material associated with the short message material label in the short message material storage service.

[0122] It can be understood that there may be no content corresponding to the short message material label in the short message material storage service. For example, the label special area separator identified is other characters with meanings input when editing a short message, and thus the content identified by the label special area separator is not a short message material label, and thus there is no rich media message material corresponding thereto.

[0123] Step 305: when there is a rich media message material associated with the short message material label in the short message material storage service, obtaining the rich media message material associated with the short message material label.

[0124] It should be noted that in the embodiment, the implementation process of step 305 described above can be referred to the description of the implementation process of step 203, and will not be repeated here.

[0125] Step 306, converting the short message into a 5G message based on the rich media message material.

[0126] It should be noted that in the embodiment, the implementation process of step 306 can refer to the description of the implementation process of step 204, which will not be repeated here.

[0127] Step 307, after obtaining the 5G message, performing the MT process of the 5G message.

[0128] It should be noted that in the embodiment, the implementation process of step 307 can refer to the description of the implementation process of step 205, which will not be repeated here.

[0129] Step 308, when there is no label special separator in the short message, or when there is no rich media message material associated with the short message material label in the short message material storage service, performing the short message MT process.

[0130] It should be noted that in the embodiment, the implementation process of step 308 can refer to the description of the implementation process of step 206, which will not be repeated here.

[0131] In the embodiment, the implementation method of sending a 5G message through a normal mobile phone, the short message material label identified by the label special separator in the short message is obtained, and the rich media message material associated with the short message material label is obtained. According to the rich media message material, the short message is converted into a rich media message, and the processing logic of the short message material label is realized in the 5GMC network element, so as to realize the ability of the user sending a rich media message to the target user through the normal mobile phone.

[0132] On the basis of the above embodiment, Figure 4 Another flowchart of the implementation method of sending a 5G message through a normal mobile phone provided by the embodiment of the present application is provided. The method is applied to a normal terminal device. As shown in the figure, Figure 4 The implementation method of sending a 5G message through a normal mobile phone includes the following steps:

[0133] Step 401, obtaining a short message material label, the short message material label is associated with the rich media message material uploaded to the short message material storage service.

[0134] It can be understood that in order to have the ability to use rich media messages, the normal terminal device can first upload the rich media message material to the short message material storage service, and obtain the short message material label associated with the uploaded rich media message material. In this way, the short message material label is added in the sent short message, and the 5GMC network element can obtain the corresponding rich media message material by querying the short message material storage service according to the short message material label, so as to convert the normal short message into a rich media message.

[0135] It should be noted that the short message material tag can be directly provided by the short message material storage service, can be generated by the application side, and can be opened to the user side through the application service mode, and the user sets the label content by himself. For example, the 5G message service itself can provide services to users through standard official Chatbot (chat robot), official website Web, etc. Although the ordinary terminal user needs to perform additional operations compared to the standard 5G terminal user to send rich media information directly in the message interface, he can combine with the use process of different applications in the existing network.

[0136] For example, taking the mobile cloud disk application as an example, the user in the existing network saves his own information content through the cloud disk, uses the sharing function, and obtains a sharing link. After that, the receiving party can send it through short message and WeChat. The receiving party needs to click the sharing link and input the corresponding extraction code to access it. Through the short message material storage service, the application such as mobile cloud disk can be connected, and the shared rich media message material can be converted into the corresponding short message material tag. In the message sending process, the target sharing material content is finally obtained and converted by the 5GMC network element, and the sharing material content is directly pushed to the user side through the 5G message. This kind of scene combined with other applications is various, which can be flexibly extended, and the value of the basic rich media service of 5G message can be fully played. For the application of mobile cloud disk, the MaaP network element of 5G message can be used to realize the access process of the existing Chatbot system. The MaaP network element can expand the interworking parameters of the short message material tag in the standard interface of the existing Chatbot material, and interact with the upgraded rich media material storage service to complete the synchronous storage of the related rich media message material, and the allocation and transmission of the short message material tag.

[0137] In some embodiments, the implementation of obtaining the short message material tag includes: sending a rich media message material to a short message material storage service; and receiving a short message material tag associated with the rich media message material allocated by the short message material storage service.

[0138] In some embodiments, the implementation of obtaining the short message material tag includes:

[0139] sending a material upload request to the MaaP network element through the application program; the material upload request includes short message material tag generation instruction information;

[0140] receiving sharing link information returned by the application program, wherein

[0141] The sharing link information is generated based on the material link information returned by the MaaP network element, the material link information is obtained after the MaaP network element uploads the rich media message material and the generated short message material tag indication information involved in the material upload request to the short message material storage service, and the material link information includes the short message material tag associated with the rich media message material and the label special separator for identifying the short message material tag.

[0142] In step 402, a short message is generated based on the short message material tag, and the short message is sent to the 5GMC network element.

[0143] It can be understood that the sender user continues to communicate through the standard short message mode, and the sent short message carries the short message material tag. The 5GMC network element identifies and converts the content of the short message, and finally pushes the rich media 5G message to the receiver terminal side in the 5G message standard rich media MT process, so as to realize that the user can also initiate the rich media 5G message to the receiver user terminal side through the ordinary mobile phone.

[0144] In the embodiment, the implementation method of sending the 5G message through the ordinary mobile phone realizes that the rich media message material is uploaded to the network equipment, and the label special separator and the short message material tag associated with the rich media message material are obtained, so that the associated information of the rich media message material is sent to the 5G message center network element through the short message, so that the 5G message center network element obtains the corresponding rich media message material according to the label special separator and the short message material tag in the short message, and converts the short message into the rich media message, so as to realize that the user can also send the rich media message to the target user through the ordinary mobile phone.

[0145] On the basis of any of the above embodiments, Figure 5 Another flowchart of the implementation method of sending the 5G message through the ordinary mobile phone provided by the embodiment of the application is provided, and the method is applied to the MaaP network element. As shown in the figure, Figure 5 The implementation method of sending the 5G message through the ordinary mobile phone includes the following steps:

[0146] In step 501, a material upload request sent by an ordinary terminal device through an application program is received, and the material upload request includes generated short message material tag indication information.

[0147] The MaaP network element receives the material upload request sent by the ordinary terminal device through the application program.

[0148] For example, the material upload request sent by the ordinary terminal device through the mobile hard disk is received.

[0149] In step 502, based on the generated short message material tag indication information, the rich media material involved in the material upload request and the generated short message material tag indication information are uploaded to the short message material storage service.

[0150] The MaaP platform uploads the rich media material file involved in the upload request to the short message material storage service according to the generated short message material tag indication information, and submits the generated short message material tag indication information.

[0151] As an implementation manner, the MaaP network element, as a standard service gateway of 5G message docking external application system Chatbot, can further extend the existing open HTTP interface to realize the interworking function of related rich media message material synchronization and short message material tag information associated with rich media message material.

[0152] The MaaP network element directly interworks with the short message material storage service to complete the storage of related rich media message material, short message material tag, and tag special separator information by the application system, as the basis for processing short message by the 5GMC network element. At the same time, the content of the existing connected security management platform is reused, and the MaaP network element can complete the audit of the rich media message material content before storage to ensure the security of the message service.

[0153] In step 503, the material link information returned by the short message material storage service is received; the material link information includes the short message material tag associated with the rich media material, the tag special separator for identifying the short message material tag, and the address information of the rich media material stored in the short message material storage service.

[0154] It can be understood that the short message material storage service completes the storage of the rich media message material file, and generates the corresponding URL address information. At the same time, according to the policy configuration, the associated tag special separator + short message material tag is generated. The short message material storage service returns the URL address information of the rich media message material file and the corresponding tag special separator + short message material tag to the MaaP platform.

[0155] The MaaP network element receives the returned URL address information of the rich media message material file and the corresponding tag special separator + short message material tag.

[0156] That is, the processing logic of the short message material tag extended in the 5G message standard network element 5GMC and the synchronization logic of the short message material tag extended in the MaaP network element support the implementation manner of the present application scheme.

[0157] In this embodiment, the implementation method of sending 5G messages by a common mobile phone integrates the ability of a user to send rich media messages by a common mobile phone with an application program, supports the application to combine its own characteristics, and realizes a mechanism of directly sending associated rich media information by a user short message.

[0158] As Figure 6A block diagram of a system architecture for implementing the implementation method of sending 5G messages through ordinary mobile phones according to any of the above embodiments is shown as follows: Figure 6 As shown, the system architecture includes a 5GMC network element, a rich media storage service, a MaaP network element, a 5G message security management platform, and an application system, the 5GMC network element is internally added with short message material tag processing logic (for example, Figure 3 As shown), the MaaP network element is internally added with short message material tag synchronization logic, and the rich media storage service is further upgraded to a short message material storage service.

[0159] In order to clearly illustrate the above embodiments, specific examples are now described, and the specific example is a material sharing scenario of an application program such as a mobile cloud disk, and a user directly sends a target user through a short message as an example. Figure 7 An example flowchart of the implementation method of sending 5G messages through ordinary mobile phones provided by the embodiments of the present application is shown as follows: Figure 7 As shown, the implementation method of sending 5G messages through ordinary mobile phones includes the flow of the user obtaining the short message material tag through the mobile cloud disk and the flow of the user directly sending the shared file tag short message, and the specific description is as follows:

[0160] The flow of the sender ordinary terminal user obtaining the short message material tag through the mobile cloud disk is as follows:

[0161] 1) The ordinary terminal user requests file sharing link information to the mobile cloud disk system through the file sharing function of the mobile cloud disk APP.

[0162] 2) The mobile cloud disk system initiates a material upload request to the MaaP network element in the Chatbot role, and the material upload request carries the generated short message material tag instruction information (i.e. the instruction parameter of generating the short message material tag).

[0163] 3)-4) The MaaP network element uploads the file to the short message material storage service according to the instruction parameter of the short message material tag, and submits the short message material tag generation instruction parameter.

[0164] -5) The short message material storage service completes the storage of the file involved in the material upload request, generates the URL address information corresponding to the file. At the same time, according to the policy configuration, the label special separator + short message material tag associated with the file is generated.

[0165] 6) The short message material storage service returns the URL address information of the file and the associated label special separator + short message material tag to the MaaP network element.

[0166] 7) The MaaP network element sends the received URL address information and the associated label special separator + short message material tag to the mobile cloud disk system.

[0167] 8) Mobile cloud disk system based on the URL address information and the special label separator + SMS material label associated with the label sent to the mobile cloud disk system, generate sharing link information, the sharing link information carries the label special separator + SMS material label, and the prompt description of the related SMS direct sending information.

[0168] For example, the sharing link information includes the following content:

[0169] Link: http: / / ...;

[0170] Extract code:...;

[0171] Copy this section of information, open the mobile cloud disk APP to obtain, super large space at will store. You can also use 5G message to send SMS material label content, directly through 5G message to send to the target user, you can also directly message to the target user: # fuifuifaojfu0auneufekaij #).

[0172] 9) The mobile cloud disk system returns the generated sharing link information to the cloud disk APP for users to obtain and directly send SMS.

[0173] The process of the user directly sending the sharing file label SMS is as follows:

[0174] 1) The user directly sends the target receiving number through the SMS message based on the label special separator + SMS material label in the sharing link information.

[0175] 2) The 5GMC network element identifies the label special separator in the SMS message content and extracts the SMS material label content identified by the label special separator.

[0176] 4) The 5GMC network element takes the SMS material label content as the key to query the corresponding file content (i.e. rich media message material) from the SMS material storage service. According to the obtained file content, the original SMS message is converted into a file rich media message.

[0177] 6) The 5GMC network element performs 5G message MT push process based on the file rich media message for the receiving number. According to the state of the receiving user terminal, the file information is directly sent to the target user side through 5G message or fallback SMS / MMS.

[0178] In summary, based on the 5G message basic communication network element architecture system of the existing network, by upgrading the 5GMC network element, MaaP network element (if combined with application system business) and its associated 5G message rich media storage service, introducing the SMS material label related processing logic, the user can send rich media messages through the ordinary mobile phone.

[0179] To achieve the above method embodiments, the application further provides an implementation device for sending 5G messages through ordinary mobile phones.

[0180] Figure 8 A structural schematic diagram of an implementation device for sending 5G messages through ordinary mobile phones is provided for the embodiments of the application, and the device is configured in a 5GMC network element. Figure 8 As shown in the figure, the implementation device for sending 5G messages through ordinary mobile phones can include a transceiver module 801, an information processing module 802, a material acquisition module 803, and a short message conversion module 804.

[0181] The transceiver module 801 is configured to receive short message messages from ordinary terminal devices.

[0182] The information processing module 802 is configured to determine whether there is at least one set of label special delimiters in the short message messages, and when there is at least one set of label special delimiters in the short message messages, extract short message material labels identified by each set of label special delimiters in the short message messages.

[0183] The material acquisition module 803 is configured to acquire rich media message materials associated with the short message material labels.

[0184] The short message conversion module 804 is configured to convert the short message messages into 5G messages based on the rich media message materials.

[0185] The transceiver module 801 is further configured to perform a called receiving process of the 5G messages.

[0186] In some implementations, each set of label special delimiters includes two non-adjacent special characters; and when extracting the short message material labels identified by each set of label special delimiters in the short message messages, the information processing module 802 is configured to:

[0187] extract target short message content located between the two non-adjacent special characters in the short message messages;

[0188] and take the target short message content as the short message material label.

[0189] In some implementations, the material acquisition module 803 is specifically configured to:

[0190] determine whether there is rich media message material associated with the short message material label in a short message material storage service;

[0191] when there is rich media message material associated with the short message material label in the short message material storage service, acquire the rich media message material associated with the short message material label.

[0192] In some implementations, the short message conversion module 804 is further configured to:

[0193] determining the number of short message material tags in the short message;

[0194] determining whether the short message contains user-written content other than the tag special separator and the short message material tag;

[0195] When the short message contains multiple short message material tags, or when the short message contains user-written content, the short message is split into multiple 5G messages.

[0196] It should be noted that the foregoing explanation and effect description of the implementation method embodiment of sending 5G messages through a normal mobile phone also apply to the implementation device of sending 5G messages through a normal mobile phone of this embodiment, which will not be described here.

[0197] Figure 9 A structural schematic diagram of an implementation device of sending 5G messages through a normal mobile phone provided by an embodiment of the present application is shown in the figure. The device is configured in a normal terminal device. As shown in the figure, the implementation device of sending 5G messages through a normal mobile phone can include a material uploading module 901 and a short message processing module 902. Figure 9

[0198] The material uploading module 901 is configured to obtain a short message material tag, which is associated with a rich media message material uploaded to a short message material storage service.

[0199] The short message processing module 902 is configured to generate a short message based on the short message material tag, and send the short message to a 5GMC network element.

[0200] In some implementations, the material uploading module 901 is specifically configured to:

[0201] send the rich media message material to the short message material storage service;

[0202] receive a short message material tag associated with the rich media message material assigned by the short message material storage service.

[0203] In some implementations, the material uploading module 901 is specifically configured to:

[0204] send a material uploading request to a message as a platform (MaaP) network element through an application; the material uploading request includes short message material tag generation instruction information;

[0205] receive sharing link information returned by the application, wherein

[0206] ​The sharing link information is generated by the application based on the material link information returned by the MaaP network element. The material link information is obtained by the MaaP network element after uploading the rich media message material and the generated short message material tag indication information involved in the material upload request to the short message material storage service. The material link information includes the short message material tag associated with the rich media message material and the label special separator for identifying the short message material tag.

[0207] It should be noted that the foregoing explanation and effect description of the implementation method embodiment of sending 5G messages through ordinary mobile phones also apply to the implementation device of sending 5G messages through ordinary mobile phones in this embodiment, which will not be repeated here.

[0208] Figure 10 A structural schematic diagram of an implementation device of sending 5G messages through ordinary mobile phones provided by an embodiment of the present application is provided. The device is configured in a MaaP network element. As shown in Figure 10 The implementation device of sending 5G messages through ordinary mobile phones can include a receiving module 1001 and a sending module 1002.

[0209] The receiving module 1001 is configured to receive a material upload request sent by an ordinary terminal device through an application. The material upload request includes generated short message material tag indication information.

[0210] The sending module 1002 is configured to upload the rich media message material and the generated short message material tag indication information involved in the material upload request to a short message material storage service based on the generated short message material tag indication information.

[0211] The receiving module 1001 is further configured to receive material link information returned by the short message material storage service. The material link information includes a short message material tag associated with the rich media message material, a label special separator for identifying the short message material tag, and address information of the rich media message material stored in the short message material storage service.

[0212] It should be noted that the foregoing explanation and effect description of the implementation method embodiment of sending 5G messages through ordinary mobile phones also apply to the implementation device of sending 5G messages through ordinary mobile phones in this embodiment, which will not be repeated here.

[0213] In order to realize the above-mentioned embodiments, an electronic device is further provided in the present application. Please refer to Figure 11 , Figure 11 is a structural schematic diagram of an electronic device provided by an embodiment of the present application. As shown in Figure 11As shown, the electronic device 1100 includes a processor 1101 and a memory 1102 connected with the processor 1101; the memory 1102 stores computer execution instructions; and the processor 1101 executes the computer execution instructions stored in the memory to implement the method provided by the foregoing embodiments.

[0214] To implement the above embodiments, the present application further provides a computer readable storage medium, which stores computer execution instructions, and the computer execution instructions are executed by a processor to implement the method provided by the foregoing embodiments.

[0215] To implement the above embodiments, the present application further provides a computer program product, which includes a computer program, and the computer program is executed by a processor to implement the method provided by the foregoing embodiments.

[0216] The collection, storage, use, processing, transmission, provision and disclosure of user personal information involved in the present application comply with relevant laws and regulations and do not violate public order and good customs.

[0217] It should be noted that the personal information from the user should be collected for legal and reasonable purposes, and should not be shared or sold outside these legal uses. In addition, such collection / sharing should be carried out after the user's informed consent is received, including but not limited to informing the user to read the user agreement / user notice before the user uses the function, and signing the agreement / authorization including authorization of relevant user information. In addition, any necessary steps should be taken to protect and ensure access to such personal information data, and to ensure that other people with access to personal information data comply with their privacy policies and processes.

[0218] The present application is expected to provide embodiments in which the user can selectively prevent the use or access of personal information data. That is, the present disclosure is expected to provide hardware and / or software to prevent or block access to such personal information data. Once the personal information data is no longer needed, the risk is minimized by limiting data collection and deleting data. In addition, such personal information is de-identified, as applicable, to protect the privacy of the user.

[0219] In the foregoing detailed description, reference is made to descriptive terms such as "one embodiment", "some embodiments", "an example", "a specific example" or "some examples" etc. for describing various embodiments of the application. These descriptive terms are used for the purpose of the description and are not meant to limit or restrict the scope of the application. The use of these terms does not imply that the application is comprised of at least the features described in the specific example. In addition, the description is not meant to imply that the described embodiments are the only manner in which the application can be practiced. Furthermore, the described features, structures, or characteristics can be combined in any suitable manner in one or more embodiments or examples. Moreover, the described embodiments and features are not meant to be all inclusive but rather are meant to be exemplary only. Furthermore, those skilled in the art will recognize that the described embodiments and features can be combined with other embodiments and features in a suitable manner without departing from the scope of the application.

[0220] In addition, the terms "first", "second", etc. are used herein only to describe various embodiments and do not imply either a relative importance or an implicit indication that the described features are limited to a quantity of two. Thus, a feature defined with "first" or "second" can implicitly or explicitly include at least one of the feature. In the description of the application, the meaning of "a plurality" is at least two, such as two, three, etc., unless otherwise expressly specified.

[0221] Any process or method descriptions or blocks in flow charts or otherwise described herein represent embodiments of the application that can be managed as one or more modules, segments, or portions of code that include one or more steps for implementing specific logic functions or steps, and the various embodiments of the application can include additional or fewer steps performing the same or equivalent functions. In some embodiments, the blocks can be combined into a software or firmware routine.

[0222] The logic and / or steps represented in the flowcharts and / or described herein, for example, can be considered as a sequence of instructions to implement logical functions, and can be embodied in any computer-readable medium for use by an instruction execution system, apparatus, or device, such as a computer-based system, processor- based system, or other system that can fetch the instructions from the instruction execution system, apparatus, or device and execute the instructions. For purposes of this specification, a "computer-readable medium" can be any apparatus that can contain, store, communicate, propagate, or transport the program for use by or in connection with the instruction execution system, apparatus, or device. The computer-readable medium can be a computer- readable storage medium or a computer-readable signal medium. The computer- readable storage medium can be, for example, but not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any suitable combination of the foregoing. More specific examples (a non-exhaustive list) of the computer-readable storage medium include the following: an electrical connection having one or more wires (electrical connections), a portable computer diskette (a magnetic device), a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or Flash memory), an optical fiber, and a portable compact disc read-only memory (CDROM). In addition, the computer-readable medium can even be paper or another suitable medium upon which the program is printed, as the program can be electronically captured, for example, via optical scanning of the paper or other medium, then compiled, interpreted, or otherwise processed in a suitable manner, if necessary, and then stored in a computer memory.

[0223] It should be understood that aspects of the application can be implemented in hardware, software, firmware or combinations thereof. In the above embodiments, various steps or methods can be implemented in software or firmware that is stored in memory and executed by a suitable instruction execution system. As such, in some embodiments, specifically configured hardware can be used to implement at least some of the functionality described herein. For example, if implemented in hardware, the hardware can include any or a combination of the following: a discrete logic circuit having logic gates for implementing logic functions upon data signals, an application specific integrated circuit having appropriate combinational logic gates, a programmable gate array (PGA), a field programmable gate array (FPGA), etc.

[0224] Those of skill in the art would understand that information and signals can be represented using any of a variety of technologies and techniques. For example, data, instructions, commands, information, signals, bits, symbols, and chips that can be referenced throughout the above description can be represented by voltages, currents, electromagnetic waves, magnetic fields or particles, optical fields or particles, or any combination thereof.

[0225] In addition, each of the functional units in the various embodiments of the present application can be integrated in one processing module, or each of the units can be physically present separately, or two or more units can be integrated in one module. The integrated module can be implemented in the form of hardware or in the form of a software functional module. When the integrated module is implemented in the form of a software functional module and sold or used as an independent product, it can also be stored in a computer readable storage medium.

[0226] The storage medium mentioned above can be a read-only memory, a magnetic disk or an optical disk, etc. Although the embodiments of the present application have been shown and described above, it should be understood that the above embodiments are exemplary and should not be construed as limiting the present application, and those skilled in the art can make changes, modifications, replacements and variations to the above embodiments within the scope of the present application.

Claims

1. An implementation method for sending 5G messages through a common mobile phone, characterized by, The method is applied to a 5G message center (5GMC) network element, and comprises the following steps: receiving a short message from a general terminal device; determining whether at least one set of label special delimiters exists in the short message, and extracting short message material labels identified by each set of label special delimiters in the short message when at least one set of label special delimiters exists in the short message, wherein the label special delimiters and the short message material labels are derived from material link information obtained by the general terminal device from a message as a platform (MaaP) network element through an application program, and the material link information is obtained by the MaaP network element after uploading, to a short message material storage service, rich media message material involved in a material upload request sent by the general terminal device and short message material label generation instruction information in the material upload request; obtaining rich media message material associated with the short message material label; converting the short message into a 5G message based on the rich media message material; performing a called receiving process of the 5G message.

2. The method of claim 1, wherein, Each set of label special delimiters comprises two non-adjacent special characters, and the extraction of the short message material labels identified by each set of label special delimiters in the short message comprises: extracting target short message content located between the two non-adjacent special characters in the short message; taking the target short message content as a short message material label.

3. The method of claim 1, wherein, The obtaining of the rich media message material associated with the short message material label comprises: determining whether the rich media message material associated with the short message material label exists in a short message material storage service; obtaining the rich media message material associated with the short message material label when the rich media message material associated with the short message material label exists in the short message material storage service.

4. The method of claim 1, wherein, The conversion of the short message into a 5G message based on the rich media message material comprises: determining the number of short message material labels in the short message; determining whether user self-written content of the general terminal device exists in the short message in addition to the label special delimiters and the short message material labels; splitting the short message into multiple 5G messages when the short message comprises multiple short message material labels or when the user self-written content of the general terminal device exists in the short message.

5. An implementation method for sending 5G messages through a common mobile phone, characterized by, The method is applied to a general terminal device, and comprises the following steps: obtaining a short message material label associated with rich media message material uploaded to a short message material storage service; generating a short message based on the short message material label and sending the short message to a 5G message center (5GMC) network element; The obtaining of the short message material label comprises: sending a material upload request to a message as a platform (MaaP) network element through an application program, wherein the material upload request comprises short message material label generation instruction information; receiving sharing link information returned by the application program, wherein The sharing link information is generated by the application based on material link information returned by the MaaP network element, the material link information is obtained by the MaaP network element after uploading the rich media message material and the generated short message material tag indication information involved in the material upload request to the short message material storage service, and the material link information includes a short message material tag associated with the rich media message material and a tag special separator used to identify the short message material tag.

6. The method of claim 5, wherein, The method further includes the following steps: sending the rich media message material to the short message material storage service; receiving the short message material tag associated with the rich media message material allocated by the short message material storage service.

7. An implementation method for sending 5G messages through a common mobile phone, characterized by, The method is applied to a message as a platform (MaaP) network element, and includes the following steps: receiving a material upload request sent by a common terminal device through an application, wherein the material upload request includes generated short message material tag indication information; uploading the rich media message material and the generated short message material tag indication information involved in the material upload request to a short message material storage service based on the generated short message material tag indication information; receiving material link information returned by the short message material storage service, wherein the material link information includes a short message material tag associated with the rich media message material, a tag special separator used to identify the short message material tag, and address information of the rich media message material stored in the short message material storage service.

8. An implementation device for sending 5G messages through a common mobile phone, characterized by, The device is configured in a 5G MC network element, and includes: a transceiver module configured to receive a short message from a common terminal device; an information processing module configured to determine whether at least one set of tag special separators exists in the short message, and extract short message material tags identified by each set of tag special separators in the short message when at least one set of tag special separators exists in the short message, wherein the tag special separator and the short message material tag are derived from material link information obtained by the common terminal device through an application from a message as a platform (MaaP) network element, the material link information is obtained by the MaaP network element after uploading the rich media message material and the generated short message material tag indication information involved in the material upload request sent by the common terminal device to a short message material storage service; a material obtaining module configured to obtain rich media message material associated with the short message material tag; a short message conversion module configured to convert the short message into a 5G message based on the rich media message material; the transceiver module is further configured to perform a called receiving process of the 5G message.

9. An implementation device for sending 5G messages through a common mobile phone, characterized by, The device is configured in a common terminal device, and includes: a material uploading module configured to send a rich media message material to a short message material storage service, and receive a short message material tag associated with the rich media message material allocated by the short message material storage service; a short message processing module configured to generate a short message based on the short message material tag, and send the short message to a 5G MC network element; the material uploading module is specifically configured to: A material uploading request is sent to a message-as-a-Platform (MaaP) element by an application, wherein the material uploading request includes generated short message material tag indication information; The application returns sharing link information, wherein The sharing link information is generated by the application based on material link information returned by the MaaP element, the material link information is obtained by the MaaP element after uploading the rich media message material and the generated short message material tag indication information involved in the material uploading request to a short message material storage service, and the material link information includes a short message material tag associated with the rich media message material and a tag special separator used to identify the short message material tag.

10. A device for sending 5G messages via a regular mobile phone, characterized in that, A device is configured in a message-as-a-Platform (MaaP) element, and the device includes: A receiving module configured to receive a material uploading request sent by an ordinary terminal device through an application, wherein the material uploading request includes generated short message material tag indication information; A sending module configured to upload a rich media message material and the generated short message material tag indication information involved in the material uploading request to a short message material storage service based on the generated short message material tag indication information; The receiving module is further configured to receive material link information returned by the short message material storage service, wherein the material link information includes a short message material tag associated with the rich media message material, a tag special separator used to identify the short message material tag, and address information of the rich media message material stored in the short message material storage service.

11. An electronic device, comprising: It includes: A processor and a memory connected to the processor in communication; The memory stores computer execution instructions; The processor executes the computer execution instructions stored in the memory to implement the method of any one of claims 1-4, or the method of any one of claims 5-6, or the method of claim 7.

12. A computer-readable storage medium, characterized in that, The computer readable storage medium stores computer execution instructions, and the computer execution instructions are executed by the processor to implement the method of any one of claims 1-4, or the method of any one of claims 5-6, or the method of claim 7.

13. A computer program product, characterised in that, It includes a computer program, which is executed by the processor to implement the method of any one of claims 1-4, or the method of any one of claims 5-6, or the method of claim 7.

Citation Information

Patent Citations

  • Short message sending method, system and device and computer readable storage medium

    CN114640957A