Cloud data management and control method and system based on multistage protection

By tracing the working signals, collecting data, determining protection paths and building an auxiliary protection system in cloud data protection, the problem that existing technology cannot achieve multi-level protection of cloud data is solved, and multi-level protection and control of cloud data is realized, and security and management efficiency are improved.

CN119989384AInactive Publication Date: 2025-05-13SHENZHEN ZERO INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510096840.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing technology cannot achieve multi-level protection of cloud data, and cannot effectively compatible with the important coefficients of cloud data, the protection mechanism of workspace, and the data system corresponding to cloud data.

Method used

By tracing the work signals of the technology platform, we determine the work space, collect cloud data, and determine the protection path based on the important coefficients of cloud data, the protection mechanism of the work space and the data system to achieve multi-level protection of cloud data. In addition, in multi-level protection, the attack location is determined based on the protection node status, reading frequency and data system of the protection path, and an auxiliary protection system is built to realize multi-level control.

Benefits of technology

It realizes multi-level protection and multi-level management of cloud data, ensures the accuracy of protection paths and the multi-dimensional control of auxiliary protection systems, and improves the security and management efficiency of cloud data.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses a cloud data management and control method and system based on multi-level protection, and aims to determine a protection path of cloud data according to an important coefficient of the cloud data, a protection mechanism of a working space and a data system corresponding to the cloud data, ensure the accuracy of the protection path and realize multi-level protection of the cloud data. Further, in the multilevel protection of the cloud data, the attack position of the cloud data is determined based on the protection state of each protection node in the protection path, the reading frequency of the cloud data and the data system corresponding to the cloud data, and a plurality of attack factors are determined according to the attack position of the cloud data and the protection mechanism of the working space; according to the method, the auxiliary protection system is constructed according to the attack factors, the cloud data interaction path and the working space, and the multi-level management and control system of the cloud data is determined based on the auxiliary protection system, the multi-level protection of the cloud data and the load of the cloud data, so that the accuracy of the multi-level management and control system of the cloud data is ensured, and multi-level management and control of the cloud data are realized.
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Description

Technical Field

[0001] The present invention relates to the technical field of cloud data protection, and in particular to a cloud data management and control method and system based on multi-level protection. Background Art

[0002] With the development of science and technology, technology platforms are gradually applied to people's lives and are able to store some cloud data. The cloud data interacts in multiple electronic devices and is archived in the workspace of the technology platform. In the existing technology, cloud data is encrypted and protected, and a single level of protection is performed on the key, which makes it impossible to achieve multi-level protection of cloud data. Summary of the invention

[0003] The purpose of the present invention is to overcome the shortcomings of the prior art. The present invention provides a cloud data management and control method and system based on multi-level protection, which determines the corresponding workspace according to the tracing of the working signal of the technical platform; collects cloud data based on the detection of the workspace; determines the important coefficients of the cloud data according to the cloud data, the data identification mechanism and the workspace; determines the protection path of the cloud data according to the important coefficients of the cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, and performs multi-level protection on the cloud data according to the protection path, which is compatible with the overall consideration of the important coefficients of the cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, realizes the multi-dimensional control of the important coefficients of the cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, ensures the accuracy of the protection path, and realizes multi-level protection of the cloud data.

[0004] Furthermore, in the multi-level protection of cloud data, the attack position of cloud data is determined based on the protection status of each protection node in the protection path, the reading frequency of cloud data and the data system corresponding to the cloud data, and multiple attack factors are determined according to the attack position of cloud data and the protection mechanism of the workspace; an auxiliary protection system is constructed according to multiple attack factors, cloud data interaction paths and workspaces, and a multi-level management and control system for cloud data is determined based on the auxiliary protection system, multi-level protection of cloud data and the load of cloud data, and multi-level management and control of cloud data is performed based on the multi-level management and control system. The auxiliary protection system, multi-level protection of cloud data and the load of cloud data are introduced, and the auxiliary protection system, multi-level protection of cloud data and the load of cloud data are controlled as a whole, thereby ensuring multi-dimensional control of the auxiliary protection system, multi-level protection of cloud data and the load of cloud data, thereby ensuring the accuracy of the multi-level management and control system for cloud data and realizing multi-level management and control of cloud data.

[0005] The embodiment of the present invention provides a cloud data management and control method based on multi-level protection, which is applied to a cloud data management and control scenario based on multi-level protection; The cloud data management and control method based on multi-level protection includes: Determine the corresponding workspace based on the tracing of the work signal of the technical platform; collecting cloud data based on detection of the workspace; Determine the importance coefficient of cloud data based on cloud data, data identification mechanism, and workspace; Determine the cloud data protection path based on the cloud data's importance coefficient, the workspace protection mechanism, and the data system corresponding to the cloud data, and perform multi-level protection on the cloud data based on the protection path; In the multi-level protection of cloud data, the attack location of cloud data is determined based on the protection status of each protection node in the protection path, the reading frequency of cloud data, and the data system corresponding to the cloud data. Multiple attack factors are determined according to the attack location of cloud data and the protection mechanism of the workspace. An auxiliary protection system is built based on multiple attack factors, cloud data interaction paths and workspaces. A multi-level management and control system for cloud data is determined based on the auxiliary protection system, multi-level protection of cloud data and the load of cloud data. Multi-level management and control of cloud data is then performed based on the multi-level management and control system.

[0006] Optionally, determining the corresponding workspace according to the tracing of the work signal of the technical platform includes: The location of the acquisition technology platform; Determining the status of the technology platform based on detection of the location where the technology platform is located; If the status of the technical platform is an online working status, then the working signal of the technical platform is collected; According to the working signal of the technical platform and the cloud protocol of the technical platform, a corresponding tracing mechanism is matched, and the tracing of the working signal of the technical platform is triggered according to the tracing mechanism; The corresponding workspace is determined based on the tracing of the work signals of the technical platform.

[0007] Optionally, the collecting cloud data based on the detection of the workspace includes: Freeze the workspace; Determining a plurality of spatial parameters based on the traversal of the workspace; Determine a corresponding detection mechanism according to multiple space parameters, cloud data interaction paths and the workspace; Associating the workspace with the corresponding detection mechanism and triggering the detection of the workspace; Cloud data is collected based on the detection of the workspace.

[0008] Optionally, determining the importance coefficient of cloud data according to the cloud data, the data identification mechanism, and the workspace includes: Freeze cloud data; Match the corresponding data identification mechanism based on cloud data and corresponding application scenarios; Associate cloud data, data identification mechanisms, and workspaces; Determine the first important identification logic based on cloud data and data identification mechanism, and determine the second important identification logic based on cloud data and workspace; The importance coefficient of the cloud data is determined based on the first importance identification logic, the second importance identification logic, and multiple interactions of the technical platform.

[0009] Optionally, determining a protection path for the cloud data according to the importance coefficient of the cloud data, the protection mechanism of the workspace, and the data system corresponding to the cloud data, and performing multi-level protection on the cloud data according to the protection path includes: The important coefficients of freeze-frame cloud data; The workspace is collected, and the previous protection logic is determined based on the traversal of the workspace; Determine the protection mechanism of the workspace based on previous protection logic, virtual attack methods of cloud data, and the learning model of the workspace; The importance of cloud data, the protection mechanism of workspace and the data system corresponding to cloud data; The protection path of cloud data is determined based on the importance coefficient of cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, and multi-level protection is performed on the cloud data according to the protection path.

[0010] Optionally, in the multi-level protection of cloud data, the attack position of the cloud data is determined based on the protection status of each protection node in the protection path, the reading frequency of the cloud data, and the data system corresponding to the cloud data, and multiple attack factors are determined according to the attack position of the cloud data and the protection mechanism of the workspace, including: Real-time monitoring of multi-level protection of cloud data; In the multi-level protection of cloud data, each protection node in the protection path is determined based on the protection path, the interaction path of the cloud data, and the storage time of the cloud data; The protection status of each protection node in the protection path is collected, and the protection status of each protection node in the protection path, the reading frequency of cloud data, and the data system corresponding to the cloud data are associated.

[0011] Optionally, in the multi-level protection of cloud data, the attack position of cloud data is determined based on the protection status of each protection node in the protection path, the reading frequency of cloud data, and the data system corresponding to the cloud data, and multiple attack factors are determined according to the attack position of cloud data and the protection mechanism of the workspace, and further includes: Determine the first position parameter according to the protection status of each protection node in the protection path and the reading frequency of the cloud data, and determine the second position parameter according to the protection status of each protection node in the protection path and the data system corresponding to the cloud data; Determine an attack position of the cloud data according to the first position parameter and the second position parameter; Identify multiple attack factors based on the attack location of cloud data and the protection mechanism of the workspace.

[0012] Optionally, the auxiliary protection system is constructed according to multiple attack factors, cloud data interaction paths, and workspaces, a multi-level control system for cloud data is determined based on the auxiliary protection system, multi-level protection of cloud data, and the load of cloud data, and multi-level control of cloud data is performed based on the multi-level control system, including: Freeze multiple attack factors; Associating multiple attack factors, cloud data interaction paths, and workspaces, and performing multiple interactions on the multiple attack factors, cloud data interaction paths, and workspaces; An auxiliary protection system is built based on multiple attack factors, cloud data interaction paths, and multiple interactions of workspaces.

[0013] Optionally, the constructing of an auxiliary protection system according to multiple attack factors, cloud data interaction paths, and workspaces, determining a multi-level control system for cloud data based on the auxiliary protection system, multi-level protection of cloud data, and cloud data load, and performing multi-level control on cloud data based on the multi-level control system, further includes: Freeze auxiliary protection system; Multi-dimensional management and control of auxiliary protection systems, multi-level protection of cloud data, and cloud data load; A multi-level control system for cloud data is determined based on the auxiliary protection system, multi-level protection of cloud data, and multi-dimensional control of cloud data load, and multi-level control of cloud data is performed based on the multi-level control system.

[0014] In addition, an embodiment of the present invention further provides a cloud data management and control system based on multi-level protection, and the cloud data management and control system based on multi-level protection includes: A workspace module is used to determine the corresponding workspace according to the tracing of the work signal of the technical platform; A cloud data module, for collecting cloud data based on the detection of the workspace; An importance coefficient module, used to determine the importance coefficient of cloud data based on cloud data, data identification mechanism and workspace; A protection path module is used to determine the protection path of cloud data according to the importance coefficient of cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, and to perform multi-level protection on the cloud data according to the protection path; An attack factor module is used to determine the attack position of cloud data in the multi-level protection of cloud data based on the protection status of each protection node in the protection path, the reading frequency of cloud data, and the data system corresponding to the cloud data, and to determine multiple attack factors according to the attack position of cloud data and the protection mechanism of the workspace; The multi-level control module is used to build an auxiliary protection system based on multiple attack factors, cloud data interaction paths and workspaces, determine the multi-level control system of cloud data based on the auxiliary protection system, multi-level protection of cloud data and the load of cloud data, and perform multi-level control on cloud data based on the multi-level control system.

[0015] In an embodiment of the present invention, through the method in the embodiment of the present invention, the corresponding workspace is determined according to the tracing of the working signal of the technical platform; cloud data is collected based on the detection of the workspace; the important coefficient of the cloud data is determined according to the cloud data, the data identification mechanism and the workspace; the protection path of the cloud data is determined according to the important coefficient of the cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, and multi-level protection is performed on the cloud data according to the protection path, which is compatible with the overall consideration of the important coefficient of the cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, realizes multi-dimensional control of the important coefficient of the cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, ensures the accuracy of the protection path, and realizes multi-level protection of the cloud data.

[0016] Furthermore, in the multi-level protection of cloud data, the attack position of cloud data is determined based on the protection status of each protection node in the protection path, the reading frequency of cloud data and the data system corresponding to the cloud data, and multiple attack factors are determined according to the attack position of cloud data and the protection mechanism of the workspace; an auxiliary protection system is constructed according to multiple attack factors, cloud data interaction paths and workspaces, and a multi-level management and control system for cloud data is determined based on the auxiliary protection system, multi-level protection of cloud data and the load of cloud data, and multi-level management and control of cloud data is performed based on the multi-level management and control system. The auxiliary protection system, multi-level protection of cloud data and the load of cloud data are introduced, and the auxiliary protection system, multi-level protection of cloud data and the load of cloud data are controlled as a whole, thereby ensuring multi-dimensional control of the auxiliary protection system, multi-level protection of cloud data and the load of cloud data, thereby ensuring the accuracy of the multi-level management and control system for cloud data and realizing multi-level management and control of cloud data. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0018] Figure 1 is a flowchart of a cloud data management and control method based on multi-level protection in an embodiment of the present invention; Figure 2 is a flow chart of S11 in the cloud data management and control method based on multi-level protection in an embodiment of the present invention; Figure 3 is a flow chart of S12 in the cloud data management and control method based on multi-level protection in an embodiment of the present invention; Figure 4 is a flow chart of S13 in the cloud data management and control method based on multi-level protection in an embodiment of the present invention; Figure 5 is a flow chart of S14 in the cloud data management and control method based on multi-level protection in an embodiment of the present invention; Figure 6 is a flow chart of S15 in the cloud data management and control method based on multi-level protection in an embodiment of the present invention; Figure 7 is a flow chart of S16 in the cloud data management and control method based on multi-level protection in an embodiment of the present invention; Figure 8 Schematic diagram of the structure of a cloud data management and control system based on multi-level protection in an embodiment of the present invention; Fig. 9 The figure is a hardware diagram of an electronic device according to an exemplary embodiment. DETAILED DESCRIPTION

[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0020] See also Figures 1 to 9 A cloud data control method based on multi-level protection is applied to a cloud data control scenario based on multi-level protection; the cloud data control method based on multi-level protection includes: Step S11: determining the corresponding workspace according to the tracing of the work signal of the technical platform; Step S12: collecting cloud data based on the detection of the workspace; Step S13: determining the important coefficients of the cloud data according to the cloud data, the data identification mechanism and the workspace; Step S14: determining a protection path for the cloud data according to the importance coefficient of the cloud data, the protection mechanism of the workspace, and the data system corresponding to the cloud data, and performing multi-level protection on the cloud data according to the protection path; Step S15: In the multi-level protection of cloud data, the attack position of the cloud data is determined based on the protection status of each protection node in the protection path, the reading frequency of the cloud data, and the data system corresponding to the cloud data, and multiple attack factors are determined according to the attack position of the cloud data and the protection mechanism of the workspace; Step S16: Construct an auxiliary protection system based on multiple attack factors, cloud data interaction paths, and workspaces, determine a multi-level management and control system for cloud data based on the auxiliary protection system, multi-level protection of cloud data, and cloud data load, and perform multi-level management and control on cloud data based on the multi-level management and control system.

[0021] In an embodiment of the present invention, through the method in the embodiment of the present invention, the corresponding workspace is determined according to the tracing of the working signal of the technical platform; cloud data is collected based on the detection of the workspace; the important coefficient of the cloud data is determined according to the cloud data, the data identification mechanism and the workspace; the protection path of the cloud data is determined according to the important coefficient of the cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, and multi-level protection is performed on the cloud data according to the protection path, which is compatible with the overall consideration of the important coefficient of the cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, realizes multi-dimensional control of the important coefficient of the cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, ensures the accuracy of the protection path, and realizes multi-level protection of the cloud data.

[0022] Furthermore, in the multi-level protection of cloud data, the attack position of cloud data is determined based on the protection status of each protection node in the protection path, the reading frequency of cloud data and the data system corresponding to the cloud data, and multiple attack factors are determined according to the attack position of cloud data and the protection mechanism of the workspace; an auxiliary protection system is constructed according to multiple attack factors, cloud data interaction paths and workspaces, and a multi-level management and control system for cloud data is determined based on the auxiliary protection system, multi-level protection of cloud data and the load of cloud data, and multi-level management and control of cloud data is performed based on the multi-level management and control system. The auxiliary protection system, multi-level protection of cloud data and the load of cloud data are introduced, and the auxiliary protection system, multi-level protection of cloud data and the load of cloud data are controlled as a whole, thereby ensuring multi-dimensional control of the auxiliary protection system, multi-level protection of cloud data and the load of cloud data, thereby ensuring the accuracy of the multi-level management and control system for cloud data and realizing multi-level management and control of cloud data.

[0023] refer to Figure 2 , in step S11, the corresponding working space is determined according to the tracing of the working signal of the technical platform; In the specific implementation process of the present invention, the specific steps may be: S111: The location of the acquisition technology platform; S112: Determine the state of the technical platform according to the detection of the location of the technical platform; S113: If the state of the technical platform is an online working state, collecting a working signal of the technical platform; S114: matching a corresponding tracing mechanism according to the working signal of the technical platform and the cloud protocol of the technical platform, and triggering tracing of the working signal of the technical platform according to the tracing mechanism; S115: Determine the corresponding workspace based on the tracing of the work signal of the technical platform.

[0024] In an embodiment of the present application, the location of the technical platform is collected and introduced, so as to manage and control the location of the technical platform, and then the status of the technical platform is determined based on the detection of the location of the technical platform, thereby realizing the detection of the location of the technical platform, ensuring the accuracy of the status of the technical platform, and realizing the management and control of the status of the technical platform. Optionally, the status of the technical platform is online working status, standby status or closed status.

[0025] Therefore, if the status of the technical platform is an online working status, the working signal of the technical platform is collected; the corresponding traceability mechanism is matched according to the working signal of the technical platform and the cloud protocol of the technical platform, which is compatible with the overall consideration of the working signal of the technical platform and the cloud protocol of the technical platform, and realizes the multi-dimensional control of the working signal of the technical platform and the cloud protocol of the technical platform, ensures the accuracy of the traceability mechanism, and triggers the traceability of the working signal of the technical platform according to the traceability mechanism.

[0026] Furthermore, the corresponding workspace is determined based on the tracing of the working signal of the technical platform, thereby realizing the tracing of the working signal of the technical platform, so as to facilitate the search for the workspace during the tracing process of the working signal of the technical platform, thereby ensuring the accuracy of the workspace.

[0027] refer to Figure 3 , in step S12, cloud data is collected based on the detection of the workspace; In the specific implementation process of the present invention, the specific steps may be: S121: freeze the workspace; S122: Determine a plurality of space parameters based on the traversal of the workspace; S123: determining a corresponding detection mechanism according to multiple space parameters, a cloud data interaction path, and the workspace; S124: Associating the workspace with a corresponding detection mechanism, and triggering detection of the workspace; S125: Collect cloud data based on the detection of the workspace.

[0028] In an embodiment of the present application, the workspace is frozen and further controlled. At the same time, multiple spatial parameters are determined based on the traversal of the workspace, thereby achieving the traversal of the workspace, ensuring the accuracy of multiple spatial parameters, and achieving multi-dimensional control of multiple spatial parameters.

[0029] Therefore, the corresponding detection mechanism is determined according to multiple spatial parameters, cloud data interaction paths and the workspace, multiple spatial parameters, cloud data interaction paths and the workspace are introduced, and multiple spatial parameters, cloud data interaction paths and the workspace are considered as a whole, thereby achieving multi-dimensional control of multiple spatial parameters, cloud data interaction paths and the workspace, and ensuring the accuracy of the detection mechanism.

[0030] Optionally, the cloud data interaction path presents the interaction relationship between multiple cloud data and dynamically interacts with multiple cloud data to facilitate the management and control of the dynamic interaction of multiple cloud data along the cloud data interaction path. The cloud data interaction path can be manually preset or based on the output of the cloud data learning model.

[0031] Furthermore, the workspace and the corresponding detection mechanism are associated, and the detection of the workspace is triggered, which ensures the detection accuracy of the workspace and realizes the management and control of the workspace. Cloud data is collected based on the detection of the workspace and introduced, so that the cloud data is further managed and the accuracy of the cloud data is ensured.

[0032] refer to Figure 4 , in step S13, determining the important coefficients of the cloud data according to the cloud data, the data identification mechanism and the workspace; In the specific implementation process of the present invention, the specific steps may be: S131: freeze-frame cloud data; S132: Matching a corresponding data identification mechanism based on cloud data and corresponding application scenarios; S133: Associate cloud data, data identification mechanisms, and workspaces; S134: Determine a first important identification logic based on the cloud data and the data identification mechanism, and determine a second important identification logic based on the cloud data and the workspace; S135: Determine the importance coefficient of the cloud data according to the first importance identification logic, the second importance identification logic, and multiple interactions of the technical platform.

[0033] In the embodiments of the present application, the cloud data is frozen, cloud data is introduced, and cloud data is managed and controlled. At the same time, the corresponding data identification mechanism is matched based on the cloud data and the corresponding application scenarios, which is compatible with the overall consideration of the cloud data and the corresponding application scenarios, and realizes the multi-dimensional matching of the cloud data and the corresponding application scenarios, and ensures the accuracy of the data identification mechanism. At this time, the cloud data and the corresponding application scenarios match the matching table and output the corresponding data identification mechanism. Optionally, specifically, the data identification mechanism dynamically identifies the cloud data and outputs the corresponding application scenarios. For example, the cloud data outputs the corresponding control scenario under the identification of the data identification mechanism.

[0034] Optionally, the multiple interactions of the first important identification logic, the second important identification logic and the technical platform refer to the multiple interactions of the three elements of the first important identification logic, the second important identification logic and the technical platform, and interactions of different dimensions are performed based on the first important identification logic, the second important identification logic and the technical platform to facilitate interactions in multiple dimensions and realize multiple interactions.

[0035] At this time, cloud data, data identification mechanism and workspace are associated; the first important identification logic is determined based on cloud data and data identification mechanism, and the second important identification logic is determined based on cloud data and workspace; the importance coefficient of cloud data is determined according to the multiple interactions of the first important identification logic, the second important identification logic and the technical platform, which is compatible with the overall consideration of cloud data, data identification mechanism and workspace, realizes multi-dimensional control of cloud data, data identification mechanism and workspace, and ensures the accuracy of the importance coefficient of cloud data. At this time, the importance coefficient of cloud data is used to present the importance of cloud data.

[0036] refer to Figure 5 , S14: determining a protection path for the cloud data according to the importance coefficient of the cloud data, the protection mechanism of the workspace, and the data system corresponding to the cloud data, and performing multi-level protection on the cloud data according to the protection path; In the specific implementation process of the present invention, the specific steps may be: S141: Significant coefficient of freeze-frame cloud data; S142: collecting the workspace, and determining the previous protection logic based on the traversal of the workspace; S143: Determine a protection mechanism for the workspace based on previous protection logic, virtualized attack methods of cloud data, and a learning model of the workspace; S144: The importance coefficient of the associated cloud data, the protection mechanism of the workspace, and the data system corresponding to the cloud data; S145: Determine a protection path for the cloud data based on the importance coefficient of the cloud data, the protection mechanism of the workspace, and the data system corresponding to the cloud data, and perform multi-level protection on the cloud data according to the protection path.

[0037] In an embodiment of the present application, a corresponding workspace is determined based on the tracing of a working signal of a technical platform; cloud data is collected based on the detection of the workspace; important coefficients of cloud data are determined based on the cloud data, a data identification mechanism and a workspace; a protection path for cloud data is determined based on the important coefficients of cloud data, a protection mechanism of the workspace and a data system corresponding to the cloud data, and multi-level protection is performed on cloud data based on the protection path, which is compatible with overall considerations of important coefficients of cloud data, a protection mechanism of the workspace and a data system corresponding to the cloud data, thereby achieving multi-dimensional control of important coefficients of cloud data, a protection mechanism of the workspace and a data system corresponding to the cloud data, ensuring the accuracy of the protection path and achieving multi-level protection of cloud data.

[0038] Optionally, the protection mechanism of the workspace has the function of protecting the workspace, and dynamically traverses the workspace to control the interaction of various cloud data in the workspace, and dynamically protects various cloud data.

[0039] At this time, the important coefficients of cloud data are frozen, the important coefficients of cloud data are introduced, and the important coefficients of cloud data are further controlled. At the same time, the workspace is collected, and the previous protection logic is determined based on the traversal of the workspace, the traversal of the workspace is realized, and the accuracy of the previous protection logic is ensured.

[0040] Furthermore, the protection mechanism of the workspace is determined based on the previous protection logic, the attack method virtualized by the cloud data, and the learning model of the workspace, which is compatible with the overall consideration of the previous protection logic, the attack method virtualized by the cloud data, and the learning model of the workspace, and realizes the multi-dimensional control of the previous protection logic, the attack method virtualized by the cloud data, and the learning model of the workspace, ensuring the accuracy of the protection mechanism of the workspace. Optionally, the attack method virtualized by the cloud data refers to the attack related to the cloud data, and the attack is virtualized accordingly, so as to conduct attack training for the cloud data based on the attack method virtualized by the cloud data.

[0041] Therefore, the importance coefficient of cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data are associated; the protection path of cloud data is determined based on the importance coefficient of cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, and multi-level protection is performed on cloud data according to the protection path. The importance coefficient of cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data are introduced, and multiple interactions are performed on the importance coefficient of cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, thereby ensuring the accuracy of the protection path of cloud data, so as to perform multi-level protection of cloud data according to the protection path, and realize corresponding protection of cloud data in different locations, so as to realize multi-level protection and multi-dimensional management and control of cloud data.

[0042] refer to Figure 6 ,S15: In the multi-level protection of cloud data, the attack position of the cloud data is determined based on the protection status of each protection node in the protection path, the reading frequency of the cloud data, and the data system corresponding to the cloud data, and multiple attack factors are determined according to the attack position of the cloud data and the protection mechanism of the workspace; In the specific implementation process of the present invention, the specific steps may be: S151: Real-time monitoring of multi-level protection of cloud data; S152: In the multi-level protection of cloud data, determine each protection node in the protection path based on the protection path, the interaction path of the cloud data, and the storage time of the cloud data; S153: collecting the protection status of each protection node in the protection path, and associating the protection status of each protection node in the protection path, the reading frequency of the cloud data, and the data system corresponding to the cloud data; S154: determining a first position parameter according to the protection status of each protection node in the protection path and the reading frequency of the cloud data, and determining a second position parameter according to the protection status of each protection node in the protection path and the data system corresponding to the cloud data; S155: Determine the attack position of the cloud data according to the first position parameter and the second position parameter; S156: Determine multiple attack factors based on the attack location of the cloud data and the protection mechanism of the workspace.

[0043] In an embodiment of the present application, the multi-level protection of cloud data is monitored in real time, and the multi-level protection of cloud data is further managed and controlled. At the same time, in the multi-level protection of cloud data, each protection node in the protection path is determined based on the protection path, the interaction path of cloud data, and the storage time of cloud data, which is compatible with the overall consideration of the protection path, the interaction path of cloud data, and the storage time of cloud data, and realizes multi-dimensional control of the protection path, the interaction path of cloud data, and the storage time of cloud data, ensuring the rationality and accuracy of the division of each protection node in the protection path.

[0044] Furthermore, the protection status of each protection node in the protection path is collected, and the protection status of each protection node in the protection path, the reading frequency of cloud data, and the data system corresponding to the cloud data are associated. The protection status of each protection node in the protection path, the reading frequency of cloud data, and the data system corresponding to the cloud data are introduced, realizing the overall consideration of the protection status of each protection node in the protection path, the reading frequency of cloud data, and the data system corresponding to the cloud data.

[0045] Therefore, the first position parameter is determined according to the protection status of each protection node in the protection path and the reading frequency of cloud data, and the second position parameter is determined according to the protection status of each protection node in the protection path and the data system corresponding to the cloud data; the attack position of the cloud data is determined according to the first position parameter and the second position parameter, thereby achieving multi-dimensional control of the protection status of each protection node in the protection path, the reading frequency of cloud data, and the data system corresponding to the cloud data, ensuring the accuracy of the attack position of the cloud data and achieving accurate identification of attacks on the cloud data.

[0046] Furthermore, the attack location of cloud data is introduced, and the attack location of cloud data and the protection mechanism of the workspace are associated, so that multiple attack factors are determined based on the attack location of cloud data and the protection mechanism of the workspace, achieving multi-dimensional control of the attack location of cloud data and the protection mechanism of the workspace, ensuring the accuracy of multiple attack factors, and facilitating targeted management and control of multiple attack factors.

[0047] refer to Figure 7 ,S16: construct an auxiliary protection system according to multiple attack factors, cloud data interaction paths and workspaces, determine a multi-level control system for cloud data based on the auxiliary protection system, multi-level protection of cloud data and cloud data load, and perform multi-level control on cloud data based on the multi-level control system; In the specific implementation process of the present invention, the specific steps may be: S161: Freeze multiple attack factors; S162: Associating multiple attack factors, cloud data interaction paths, and workspaces, and performing multiple interactions on the multiple attack factors, cloud data interaction paths, and workspaces; S163: Building an auxiliary protection system based on multiple attack factors, cloud data interaction paths, and multiple interactions of workspaces; S164: Freeze auxiliary protection system; S165: Multi-dimensional management and control of auxiliary protection systems, multi-level protection of cloud data, and cloud data load; S166: Determine a multi-level control system for cloud data based on the auxiliary protection system, multi-level protection of cloud data, and multi-dimensional control of cloud data load, and perform multi-level control on cloud data based on the multi-level control system.

[0048] In the specific implementation process of the present invention, in the multi-level protection of cloud data, the attack position of the cloud data is determined based on the protection status of each protection node in the protection path, the reading frequency of the cloud data and the data system corresponding to the cloud data, and multiple attack factors are determined according to the attack position of the cloud data and the protection mechanism of the workspace; an auxiliary protection system is constructed according to the multiple attack factors, the cloud data interaction path and the workspace, and a multi-level management and control system for the cloud data is determined based on the auxiliary protection system, the multi-level protection of the cloud data and the load of the cloud data, and multi-level management and control of the cloud data is performed based on the multi-level management and control system, and the auxiliary protection system, the multi-level protection of the cloud data and the load of the cloud data are introduced, and the auxiliary protection system, the multi-level protection of the cloud data and the load of the cloud data are controlled as a whole, thereby ensuring the multi-dimensional control of the auxiliary protection system, the multi-level protection of the cloud data and the load of the cloud data, thereby ensuring the accuracy of the multi-level management and control system for the cloud data, and realizing the multi-level management and control of the cloud data.

[0049] At this time, multiple attack factors are frozen, multiple attack factors are introduced, and multiple attack factors are managed and controlled. At the same time, multiple attack factors, cloud data interaction paths, and workspaces are associated, and multiple attack factors, cloud data interaction paths, and workspaces are interacted with multiple times. Therefore, an auxiliary protection system is constructed based on the multiple interactions of multiple attack factors, cloud data interaction paths, and workspaces, realizing multiple interactions of multiple attack factors, cloud data interaction paths, and workspaces, and ensuring the accuracy of the auxiliary protection system.

[0050] Therefore, the auxiliary protection system is defined; the auxiliary protection system, multi-level protection of cloud data, and multi-dimensional control of cloud data load are carried out; the multi-level control system of cloud data is determined based on the multi-dimensional control of the auxiliary protection system, multi-level protection of cloud data, and multi-dimensional control of cloud data load, and multi-level control of cloud data is carried out based on the multi-level control system. The auxiliary protection system, multi-level protection of cloud data, and multi-level protection of cloud data load are introduced, and the auxiliary protection system, multi-level protection of cloud data, and multi-level control of cloud data load are carried out as a whole, which ensures the auxiliary protection system, multi-level protection of cloud data, and multi-dimensional control of cloud data load, thereby ensuring the accuracy of the multi-level control system of cloud data and realizing multi-level control of cloud data.

[0051] In an embodiment of the present invention, through the method in the embodiment of the present invention, the corresponding workspace is determined according to the tracing of the working signal of the technical platform; cloud data is collected based on the detection of the workspace; the important coefficient of the cloud data is determined according to the cloud data, the data identification mechanism and the workspace; the protection path of the cloud data is determined according to the important coefficient of the cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, and multi-level protection is performed on the cloud data according to the protection path, which is compatible with the overall consideration of the important coefficient of the cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, realizes multi-dimensional control of the important coefficient of the cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, ensures the accuracy of the protection path, and realizes multi-level protection of the cloud data.

[0052] Furthermore, in the multi-level protection of cloud data, the attack position of cloud data is determined based on the protection status of each protection node in the protection path, the reading frequency of cloud data and the data system corresponding to the cloud data, and multiple attack factors are determined according to the attack position of cloud data and the protection mechanism of the workspace; an auxiliary protection system is constructed according to multiple attack factors, cloud data interaction paths and workspaces, and a multi-level management and control system for cloud data is determined based on the auxiliary protection system, multi-level protection of cloud data and the load of cloud data, and multi-level management and control of cloud data is performed based on the multi-level management and control system. The auxiliary protection system, multi-level protection of cloud data and the load of cloud data are introduced, and the auxiliary protection system, multi-level protection of cloud data and the load of cloud data are controlled as a whole, thereby ensuring multi-dimensional control of the auxiliary protection system, multi-level protection of cloud data and the load of cloud data, thereby ensuring the accuracy of the multi-level management and control system for cloud data and realizing multi-level management and control of cloud data.

[0053] See also Figure 8 , Figure 8 It is a schematic diagram of the structural composition of a cloud data management and control system based on multi-level protection in an embodiment of the present invention.

[0054] like Figure 8As shown, a cloud data management and control system based on multi-level protection, the cloud data management and control system based on multi-level protection includes: A workspace module 21, used to determine a corresponding workspace according to the tracing of the work signal of the technical platform; A cloud data module 22, for collecting cloud data based on the detection of the workspace; An importance coefficient module 23, for determining an importance coefficient of cloud data according to the cloud data, the data identification mechanism and the workspace; A protection path module 24 is used to determine a protection path for cloud data according to the importance coefficient of cloud data, the protection mechanism of the workspace, and the data system corresponding to the cloud data, and to perform multi-level protection on the cloud data according to the protection path; An attack factor module 25 is used to determine the attack position of the cloud data based on the protection status of each protection node in the protection path, the reading frequency of the cloud data, and the data system corresponding to the cloud data in the multi-level protection of the cloud data, and determine multiple attack factors according to the attack position of the cloud data and the protection mechanism of the workspace; The multi-level management and control module 26 is used to build an auxiliary protection system based on multiple attack factors, cloud data interaction paths and workspaces, determine the multi-level management and control system of cloud data based on the auxiliary protection system, multi-level protection of cloud data and the load of cloud data, and perform multi-level management and control on cloud data based on the multi-level management and control system.

[0055] See also Fig. 9 , refer to the following Fig. 9 The electronic device 40 according to this embodiment of the present invention will be described. Fig. 9 The electronic device 40 shown is only an example and should not bring any limitation to the functions and scope of use of the embodiments of the present invention.

[0056] like Fig. 9 As shown, the electronic device 40 is in the form of a general computing device. The components of the electronic device 40 may include but are not limited to: at least one processing unit 41, at least one storage unit 42, and a bus 43 connecting different system components (including the storage unit 42 and the processing unit 41).

[0057] The storage unit stores program codes, which can be executed by the processing unit 41, so that the processing unit 41 executes the steps according to various exemplary embodiments of the present invention described in the above “Embodiment Method” section of this specification.

[0058] The storage unit 42 may include a readable medium in the form of a volatile storage unit, such as a random access memory unit (RAM) 421 and / or a cache memory unit 422 , and may further include a read-only memory unit (ROM) 423 .

[0059] The storage unit 42 may also include a program / utility 424 having a set (at least one) of program modules 425, such program modules 425 including but not limited to: an operating system, one or more application programs, other program modules, and program data, each of which or some combination may include an implementation of a network environment.

[0060] Bus 43 may represent one or more of several types of bus structures, including a memory unit bus or memory unit controller, a peripheral bus, an accelerated graphics port, a processing unit, or a local bus using any of a variety of bus architectures.

[0061] The electronic device 40 may also communicate with one or more external devices (e.g., keyboards, pointing devices, Bluetooth devices, etc.), one or more devices that enable a user to interact with the electronic device 40, and / or any device that enables the electronic device 40 to communicate with one or more other computing devices (e.g., routers, modems, etc.). Such communication may be performed via an input / output (I / O) interface 44. Furthermore, the electronic device 40 may also communicate with one or more networks (e.g., a local area network (LAN), a wide area network (WAN), and / or a public network, such as the Internet) via a network adapter 45. Fig. 9 As shown, the network adapter 45 communicates with other modules of the electronic device 40 via the bus 43. It should be understood that although Fig. 9 Not shown, other hardware and / or software modules may be used in conjunction with the electronic device 40, including but not limited to: microcode, device drivers, redundant processing units, external disk drive arrays, RAID systems, tape drives, and data backup planning systems.

[0062] Through the description of the above implementation, it is easy for those skilled in the art to understand that the example implementation described here can be implemented by software, or by software combined with necessary hardware. Therefore, the technical solution according to the implementation of the present disclosure can be embodied in the form of a software product, which can be stored in a non-volatile storage medium (which can be a CD-ROM, a USB flash drive, a mobile hard disk, etc.) or on a network, including several instructions to enable a computing device (which can be a personal computer, a server, a multi-parameter sensor device, or a network device, etc.) to execute the method according to the implementation of the present disclosure.

[0063] Those skilled in the art can understand that all or some of the steps in the various methods of the above embodiments can be completed by instructing related hardware through a program, and the program can be stored in a computer-readable storage medium, and the storage medium can include: a read-only memory (ROM), a random access memory (RAM), a disk or an optical disk, etc. In addition, it stores computer program instructions, and when the computer program instructions are executed by a computer, the computer executes the above method.

[0064] In addition, the cloud data management method and system based on multi-level protection provided by the embodiments of the present invention are introduced in detail above. Specific examples are used in this article to illustrate the principles and implementation methods of the present invention. The description of the above embodiments is only used to help understand the method of the present invention and its core idea; for general technical personnel in this field, according to the idea of ​​the present invention, there will be changes in the specific implementation method and application scope. In summary, the content of this specification should not be understood as a limitation on the present invention.

Claims

1. A cloud data management and control method based on multi-level protection, characterized in that: Applied to cloud data management and control scenarios based on multi-level protection; The cloud data management and control method based on multi-level protection includes: Determine the corresponding workspace based on the tracing of the work signal of the technical platform; collecting cloud data based on detection of the workspace; Determine the importance coefficient of cloud data based on cloud data, data identification mechanism, and workspace; Determine the cloud data protection path based on the cloud data's importance coefficient, the workspace protection mechanism, and the data system corresponding to the cloud data, and perform multi-level protection on the cloud data based on the protection path; In the multi-level protection of cloud data, the attack location of cloud data is determined based on the protection status of each protection node in the protection path, the reading frequency of cloud data, and the data system corresponding to the cloud data. Multiple attack factors are determined according to the attack location of cloud data and the protection mechanism of the workspace. An auxiliary protection system is built based on multiple attack factors, cloud data interaction paths and workspaces. A multi-level management and control system for cloud data is determined based on the auxiliary protection system, multi-level protection of cloud data and the load of cloud data. Multi-level management and control of cloud data is then performed based on the multi-level management and control system.

2. The cloud data management and control method based on multi-level protection according to claim 1 is characterized in that: The determining of the corresponding workspace according to the tracing of the work signal of the technical platform includes: The location of the acquisition technology platform; Determining the status of the technology platform based on detection of the location where the technology platform is located; If the status of the technical platform is an online working status, then the working signal of the technical platform is collected; According to the working signal of the technical platform and the cloud protocol of the technical platform, a corresponding tracing mechanism is matched, and the tracing of the working signal of the technical platform is triggered according to the tracing mechanism; The corresponding workspace is determined based on the tracing of the work signals of the technical platform.

3. The cloud data management and control method based on multi-level protection according to claim 2 is characterized in that: The collecting of cloud data based on the detection of the workspace includes: Freeze the workspace; Determining a plurality of spatial parameters based on the traversal of the workspace; Determine a corresponding detection mechanism according to multiple space parameters, cloud data interaction paths and the workspace; Associating the workspace with the corresponding detection mechanism and triggering the detection of the workspace; Cloud data is collected based on the detection of the workspace.

4. The cloud data management and control method based on multi-level protection according to claim 3 is characterized in that: The determining of important coefficients of cloud data according to cloud data, data identification mechanism and workspace includes: Freeze cloud data; Match the corresponding data identification mechanism based on cloud data and corresponding application scenarios; Associate cloud data, data identification mechanisms, and workspaces; Determine the first important identification logic based on cloud data and data identification mechanism, and determine the second important identification logic based on cloud data and workspace; The importance coefficient of the cloud data is determined based on the first importance identification logic, the second importance identification logic, and multiple interactions of the technical platform.

5. The cloud data management and control method based on multi-level protection according to claim 4 is characterized in that: The step of determining a protection path for the cloud data according to the importance coefficient of the cloud data, the protection mechanism of the workspace, and the data system corresponding to the cloud data, and performing multi-level protection on the cloud data according to the protection path includes: The important coefficients of freeze-frame cloud data; The workspace is collected, and the previous protection logic is determined based on the traversal of the workspace; Determine the protection mechanism of the workspace based on previous protection logic, virtual attack methods of cloud data, and the learning model of the workspace; The importance of cloud data, the protection mechanism of workspace and the data system corresponding to cloud data; The protection path of cloud data is determined based on the importance coefficient of cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, and multi-level protection is performed on the cloud data according to the protection path.

6. The cloud data management and control method based on multi-level protection according to claim 5 is characterized in that: In the multi-level protection of cloud data, the attack position of cloud data is determined based on the protection status of each protection node in the protection path, the reading frequency of cloud data, and the data system corresponding to the cloud data. According to the attack position of cloud data and the protection mechanism of the workspace, multiple attack factors are determined, including: Real-time monitoring of multi-level protection of cloud data; In the multi-level protection of cloud data, each protection node in the protection path is determined based on the protection path, the interaction path of the cloud data, and the storage time of the cloud data; The protection status of each protection node in the protection path is collected, and the protection status of each protection node in the protection path, the reading frequency of cloud data, and the data system corresponding to the cloud data are associated.

7. The cloud data management and control method based on multi-level protection according to claim 6 is characterized in that: In the multi-level protection of cloud data, the attack position of cloud data is determined based on the protection status of each protection node in the protection path, the reading frequency of cloud data, and the data system corresponding to the cloud data, and multiple attack factors are determined according to the attack position of cloud data and the protection mechanism of the workspace, and also includes: Determine the first position parameter according to the protection status of each protection node in the protection path and the reading frequency of the cloud data, and determine the second position parameter according to the protection status of each protection node in the protection path and the data system corresponding to the cloud data; Determine an attack position of the cloud data according to the first position parameter and the second position parameter; Identify multiple attack factors based on the attack location of cloud data and the protection mechanism of the workspace.

8. The cloud data management and control method based on multi-level protection according to claim 7 is characterized in that: The auxiliary protection system is constructed according to multiple attack factors, cloud data interaction paths, and workspaces, a multi-level control system for cloud data is determined based on the auxiliary protection system, multi-level protection of cloud data, and the load of cloud data, and multi-level control of cloud data is performed based on the multi-level control system, including: Freeze multiple attack factors; Associating multiple attack factors, cloud data interaction paths, and workspaces, and performing multiple interactions on the multiple attack factors, cloud data interaction paths, and workspaces; An auxiliary protection system is built based on multiple attack factors, cloud data interaction paths, and multiple interactions of workspaces.

9. The cloud data management and control method based on multi-level protection according to claim 8 is characterized in that: The auxiliary protection system is constructed according to multiple attack factors, cloud data interaction paths, and workspaces, a multi-level control system for cloud data is determined based on the auxiliary protection system, multi-level protection of cloud data, and cloud data load, and multi-level control of cloud data is performed based on the multi-level control system, and the following is also included: Freeze auxiliary protection system; Multi-dimensional management and control of auxiliary protection systems, multi-level protection of cloud data, and cloud data load; A multi-level control system for cloud data is determined based on the auxiliary protection system, multi-level protection of cloud data, and multi-dimensional control of cloud data load, and multi-level control of cloud data is performed based on the multi-level control system.

10. A cloud data management and control system based on multi-level protection, characterized in that: The cloud data management and control system based on multi-level protection is applied to the cloud data management and control method based on multi-level protection as described in any one of claims 1 to 9, and the cloud data management and control system based on multi-level protection includes: A workspace module is used to determine the corresponding workspace according to the tracing of the work signal of the technical platform; A cloud data module, for collecting cloud data based on the detection of the workspace; An importance coefficient module, used to determine the importance coefficient of cloud data based on cloud data, data identification mechanism and workspace; A protection path module is used to determine the protection path of cloud data according to the importance coefficient of cloud data, the protection mechanism of the workspace and the data system corresponding to the cloud data, and to perform multi-level protection on the cloud data according to the protection path; An attack factor module is used to determine the attack position of cloud data in the multi-level protection of cloud data based on the protection status of each protection node in the protection path, the reading frequency of cloud data, and the data system corresponding to the cloud data, and to determine multiple attack factors according to the attack position of cloud data and the protection mechanism of the workspace; The multi-level control module is used to build an auxiliary protection system based on multiple attack factors, cloud data interaction paths and workspaces, determine the multi-level control system of cloud data based on the auxiliary protection system, multi-level protection of cloud data and the load of cloud data, and perform multi-level control on cloud data based on the multi-level control system.