Electronic information security storage system and method based on cloud computing

By designing a combination of central control module, identification module, acquisition module, marking module and inspection module in a cloud computing environment, the Internet security problems caused by multiple collections of electronic information data are solved, and the secure storage and identification of data is realized, and the security and efficiency of the system are improved.

CN120372705AInactive Publication Date: 2025-07-25SHAANXI SCI TECH UNIV
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Patent Information

Application Number
CN202510471490.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2025-07-25
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the prior art, when electronic information data is directly input into the local storage, multiple collections of error data lead to low security in the Internet, and when the inspection component fails, the error data is stored in the body storage, increasing the load of the inspection component.

Method used

Design an electronic information security storage system based on cloud computing, including a central control module, identification module, collection module, marking module and inspection module. Through the combined use of these modules, the collected electronic information data are inspected, marked and identified to ensure the security of the data.

Benefits of technology

By inspecting and marking the collected data, the load on the inspection module is reduced, the security of the Internet is improved, and the accuracy and reliability of the data are ensured.

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Abstract

The invention provides an electronic information security storage system and method based on cloud computing, and relates to the technical field of information security storage. The electronic information security storage system based on cloud computing comprises a central control module, an identification module, an acquisition module, a marking module and an inspection module, the output end of the acquisition module is connected with the input end of the identification module, and the output end of the identification module is connected with the input end of the central control module. And the output end of the central control module is connected with the input end of the inspection module. By arranging the acquisition module, the identification module, the marking module, the central control module, the inspection module, the cloud server and the local server, the acquired electronic information data can be conveniently inspected and then stored, and the inspected data is marked, so that the electronic information data acquired next time can be identified, the load of the inspection module is reduced, and the efficiency is improved. And the security of the Internet is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of information security storage, and specifically provides an electronic information security storage system and method based on cloud computing. Background Art

[0002] Cloud computing is a service model that provides computing resources (such as servers, storage, databases, networks, software, etc.) through the Internet. Users do not need to purchase and maintain hardware devices, but only need to use the resources provided by cloud service providers on demand and pay according to the actual usage. The core features of cloud computing include on-demand self-service, wide network access, resource pooling, rapid elastic expansion, and metered services.

[0003] When collecting electronic information, the electronic information data is directly input into the local storage for storage, which is convenient for people to view the electronic information. However, when collecting, some target personnel input incorrect data into the local storage, which affects the security of the Internet. Although the collected data can be verified through data verification, when the data during verification is incorrect, it is directly destroyed. However, this method increases the load on the data verification component when incorrect data is collected again next time. When the verification component fails, the incorrect data is directly stored in the local storage, resulting in low security. Summary of the Invention

[0004] (I) Technical Problems to be Solved

[0005] In view of the deficiencies of the prior art, the present invention provides an electronic information security storage system and method based on cloud computing, which solves the problem of low Internet security caused by verifying the collected electronic information and repeatedly collecting incorrect electronic information.

[0006] (II) Technical Solutions

[0007] To achieve the above objectives, the present invention is realized through the following technical solutions: An electronic information security storage system based on cloud computing includes a central control module, an identification module, a collection module, a marking module, and an inspection module. The output end of the collection module is connected to the input end of the identification module, the output end of the identification module is connected to the input end of the central control module, the output end of the central control module is connected to the input end of the inspection module, the output end of the inspection module is connected to the input end of the marking module, and the output end of the marking module is connected to the input end of the identification module;

[0008] The central control module is used to process electronic information data;

[0009] The identification module is used to store and identify abnormal data;

[0010] The collection module is used to collect electronic information data;

[0011] The marking module is used to mark abnormal data;

[0012] The inspection module is used to inspect the collected data.

[0013] Preferably, the output results of the inspection module are "safe" and "abnormal". When the output result is "safe", the inspection module transmits the electronic information data to the cloud server, and the cloud server transmits the data to the ontology storage.

[0014] Preferably, the marking module includes an abnormal data storage component, a comparison component and a marking component. The abnormal data storage component is used to store abnormal data in the server. The comparison component is used to compare the abnormal data in the cloud service with the abnormal database. The marking component is used to mark the abnormal data with an ID.

[0015] Preferably, the recognition module includes a centralized component and a judgment module. The centralized component centralizes the collected electronic information data and the marked abnormal data in the marking module. The judgment module is used to compare the collected data. The comparison results are "qualified" and "abnormal". If the judgment result is qualified, the data is continuously input for storage. If the judgment result is abnormal, the inspection of the data is blocked.

[0016] Preferably, an adding module is connected to the output end of the inspection module. The adding module is used to add the ID of the abnormal data. The adding module is connected to the client, and the client selects a computer.

[0017] An electronic information security storage method based on cloud computing includes the following steps:

[0018] S1. Collect electronic information data and input the collected data into the inspection module for inspection;

[0019] S2. When the inspection result is "abnormal", the collected electronic information data is sent to the marking module for marking. The marking module inputs the data into the recognition module. When the inspection result is "safe", the collected electronic information data is input into the cloud server, and the cloud service sends the data to the local server for storage;

[0020] S3. Collect electronic information data again. The recognition module performs recognition operations on the collected data. If the recognition result is "qualified", the above steps are repeated. Otherwise, the transmission of the electronic information data is blocked.

[0021] (III) Beneficial effects

[0022] The present invention provides an electronic information security storage system and method based on cloud computing. It has the following beneficial effects:

[0023] By setting up a collection module, an identification module, a marking module, a central control module, an inspection module, a cloud server and a local server, it is convenient to store the collected electronic information data after inspection, and mark the inspected data, so as to identify the electronic information data collected next time, reduce the load of the inspection module, and increase the security of the Internet. Brief Description of the Drawings

[0024] Figure 1 It is a flowchart of an electronic information security storage system based on cloud computing proposed by the present invention. Detailed Embodiments

[0025] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0026] As Figure 1 shown, the embodiment of the present invention provides an electronic information security storage system based on cloud computing, including a central control module, an identification module, a collection module, a marking module and an inspection module. The output end of the collection module is connected to the input end of the identification module, the output end of the identification module is connected to the input end of the central control module, the output end of the central control module is connected to the input end of the inspection module, the output end of the inspection module is connected to the input end of the marking module, and the output end of the marking module is connected to the input end of the identification module.

[0027] The central control module is used to process electronic information data.

[0028] The identification module is used to store and identify abnormal data. The identification module includes a centralized component and a judgment module. The centralized component centralizes the collected electronic information data and the marked abnormal data in the marking module. The judgment module is used to compare the collected data. The comparison results are "qualified" and "abnormal". If the judgment result is qualified, the data is continuously input for storage. If the judgment result is abnormal, the inspection of the data is blocked.

[0029] The collection module is used to collect electronic information data.

[0030] The marking module is used to mark abnormal data. The marking module includes an abnormal data storage component, a comparison component, and a marking component. The abnormal data storage component is used to store abnormal data in the server. The comparison component is used to compare the abnormal data in the cloud service with the abnormal database. The marking component is used to perform ID marking on the abnormal data.

[0031] The inspection module is used to inspect the collected data. The output results of the inspection module are "safe" and "abnormal". When the output result is "safe", the inspection module transmits the electronic information data to the cloud server, and the cloud server transmits the data to the ontology storage.

[0032] The output end of the inspection module is connected to an addition module. The addition module is used to add the ID of the abnormal data. The addition module is connected to the client. The client is a computer, which facilitates the addition module to manually add abnormal electronic information data.

[0033] An electronic information security storage method based on cloud computing includes the following steps:

[0034] S1. Collect electronic information data and input the collected data into the inspection module for inspection;

[0035] S2. When the inspection result is "abnormal", the collected electronic information data is sent to the marking module for marking. The marking module inputs the data into the recognition module. When the inspection result is "safe", the collected electronic information data is input into the cloud server, and the cloud service sends the data to the local server for storage;

[0036] S3. Collect electronic information data again. The recognition module performs recognition operations on the collected data. If the recognition result is "qualified", the above steps are repeated. Otherwise, the transmission of the electronic information data is blocked.

[0037] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirits of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An electronic information security storage system based on cloud computing, characterized in that, It includes a central control module, an identification module, a collection module, a marking module and an inspection module. The output end of the collection module is connected to the input end of the identification module. The output end of the identification module is connected to the input end of the central control module. The output end of the central control module is connected to the input end of the inspection module. The output end of the inspection module is connected to the input end of the marking module. The output end of the marking module is connected to the input end of the identification module; The central control module is used for processing electronic information data; The identification module is used for storing and identifying abnormal data; The collection module is used for collecting electronic information data; The marking module is used for marking abnormal data; The inspection module is used for inspecting the collected data.

2. The electronic information security storage system based on cloud computing according to claim 1, wherein: The output results of the inspection module are "safe" and "abnormal". When the output result is "safe", the inspection module transmits the electronic information data to the cloud server, and the cloud server transmits the data to the ontology storage.

3. An electronic information security storage system based on cloud computing according to claim 1, characterized in that: The marking module includes an abnormal data storage component, a comparison component and a marking component. The abnormal data storage component is used for storing abnormal data in the server. The comparison component is used for comparing the abnormal data in the cloud service with the abnormal database. The marking component is used for ID marking of abnormal data.

4. A cloud computing-based electronic information security storage system according to claim 1, characterized in that: The identification module includes a centralized component and a judgment module. The centralized component centralizes the collected electronic information data and the marked abnormal data in the marking module. The judgment module is used for comparing the collected data. The comparison results are "qualified" and "abnormal". If the judgment result is qualified, the data is continuously input for storage. If the judgment result is abnormal, the inspection of the data is blocked.

5. A cloud computing-based electronic information security storage system according to claim 1, characterized in that: The output end of the inspection module is connected to an adding module. The adding module is used for adding the ID of abnormal data. The adding module is connected to the client, and the client selects a computer.

6. A method for secure storage of electronic information based on cloud computing, according to any one of claims 1-5, a system for secure storage of electronic information based on cloud computing, characterized in that, It includes the following steps: S1. Collect electronic information data and input the collected data into the inspection module for inspection; S2. When the inspection result is output as "abnormal", the collected electronic information data is sent to the marking module for marking. The marking module inputs the data into the identification module. When the inspection result is output as "safe", the collected electronic information data is input into the cloud server, and the cloud service sends the data to the local server for storage; S3. Collect electronic information data again. The identification module performs an identification operation on the collected data. If the identification result is "qualified", the above steps are repeated. Otherwise, the transmission of the electronic information data is blocked.