An internet-based computer data management method and system
By obtaining the operating status behavior values of devices and files and screening storage files into different interference levels, the problems of inaccurate storage device status identification and opaque management in the existing technology are solved, and efficient data management and device optimization are achieved.
Patent Information
- Application Number
- CN202411388657.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2044-10-08
AI Technical Summary
Existing technologies lack real-time monitoring and early warning capabilities, and file classification is rough, resulting in low data retrieval efficiency and irrational resource allocation, inaccurate identification of storage device status, and affecting the performance and transparency of data management.
By obtaining the operating characterization values of devices and files, including opening speed, compression speed, transmission speed, network delay, CPU usage and environmental behavior values, the operating status behavior values of files and devices are calculated, and stored files are screened into first-level, second-level and third-level interference files, and targeted processing is performed based on the processing rejection value.
It achieves accurate identification and management of stored files, improves the transparency and controllability of data management, and ensures the optimization of equipment operation status and the rational allocation of resources.
Smart Images

Figure CN119336709B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of computer data management, in particular to an internet-based computer data management method and system. BACKGROUND
[0002] In today's digital age, the rapid development of Internet technology has driven the explosive growth of data, which has posed unprecedented challenges to data management. Traditional data management methods are to use manual periodic inspection of storage space and manual classification of files.
[0003] Although there are various data management solutions on the market, they generally lack real-time monitoring and early warning capabilities, and file classification is rough, which not only reduces data retrieval efficiency and affects resource allocation, but also affects performance.
[0004] In the prior art, with the accumulation of a large amount of stored data, the state of the storage device and the state of the storage database cannot be accurately identified, and there is a certain limitation. At the same time, in the data storage process, the state of the stored data in the storage process is not identified, and the data state in the storage process cannot be judged in time and effectively. SUMMARY
[0005] The purpose of the present application is to provide an internet-based computer data management method and system, which obtains the file running characteristic value and the device running characteristic value when the storage state data is opened, that is, by processing the opening speed, compression speed and transmission speed of the target file when the target file is running to obtain the file running characteristic value, and by processing the network delay speed, CPU usage and ring feeling behavior value of the device after the target file is opened to obtain the device running characteristic value, the running state behavior value of the target file in the device is obtained from the target file itself and the device running state when the target file is executed, so as to complete the accurate identification of the storage file in the device, and enable the user to easily know the state of the stored data, thereby solving the problems in the above background.
[0006] The purpose of the present application can be achieved by the following technical solutions:
[0007] An internet-based computer data management method, comprising the following steps:
[0008] Obtain the storage file data of the device, process the storage file data to obtain the running state behavior value corresponding to the target file stored by the device;
[0009] Based on the running state behavior value of the target file, the target file is screened and processed to obtain storage files of different states;
[0010] The status of the stored files includes first-level interference files, second-level interference files, and third-level interference files;
[0011] Based on the interference files of the same level, all target files in the interference files of the same level are processed to obtain the processing rejection value of the target files, and the targeted processing of the target files in the interference files of the same level is completed according to the processing rejection value of the target files.
[0012] As a further solution of the present invention: the stored file data of the device includes a file operation characterization value and a device operation characterization value;
[0013] The file operation characterization value is recorded as Vi;
[0014] The equipment operation characterization value is recorded as Si;
[0015] By formula The running state behavior value VS corresponding to each target file is calculated, where k is a preset proportional coefficient.
[0016] As a further solution of the present invention: the target file screening process is:
[0017] The first critical value of the running state behavior value corresponding to the preset target file is VS1, and the second critical value of the running state behavior value corresponding to the target file is VS2;
[0018] When VS<VS1, the target file within this range is recorded as a first-level interference file;
[0019] When VS1≤VS<VS2, the target file in this range is recorded as a secondary interference file;
[0020] When VS≥VS2, the target files within this range are recorded as level 3 interference files.
[0021] As a further solution of the present invention: the process of obtaining the file operation characterization value is:
[0022] Record any file opened by the device during operation as the target file;
[0023] Get the opening speed of the target file when it is opened, recorded as V1;
[0024] Get the compression speed of the target file when it is compressed, recorded as V2;
[0025] Get the transmission speed of the target file when it is transmitted, recorded as V3;
[0026] By formula The file operation characterization value Vi is calculated, where M is the data size of the target file, and d1, d2, d3, and d4 are all preset proportional coefficients.
[0027] As a further scheme of the present application: the device running characteristic value acquisition process is:
[0028] The network delay speed of the device when the target file is opened is acquired, and is denoted as Sv;
[0029] The CPU usage rate of the device when the target file is opened is acquired, and is denoted as Sc;
[0030] The ring feeling behavior value of the device when the target file is opened is acquired, and is denoted as Sx;
[0031] The device running characteristic value Si is calculated by the formula , wherein a1, a2, and a3 are preset proportion coefficients and a1, a2, and a3 are greater than zero, and μ is a preset proportion coefficient.
[0032] As a further scheme of the present application: the ring feeling behavior value acquisition process is:
[0033] The temperature change difference value and the noise change difference value of the device within a preset time when the target file is opened are acquired;
[0034] The temperature change difference value is calculated by ratio with the temperature standard value to obtain a temperature change difference ratio;
[0035] The noise change difference value is calculated by ratio with the sound standard value to obtain a noise change difference ratio;
[0036] The temperature change difference ratio and the noise change difference ratio within the preset time are weighted to obtain the ring feeling behavior value of the device.
[0037] As a further scheme of the present application: the processing rejection value acquisition process of each target file within the same level is:
[0038] The abnormal reconstruction area ratio of the target file is acquired, and is denoted as Dy;
[0039] The execution quantity ratio of the target file is acquired, and is denoted as Ds;
[0040] The execution time occupancy ratio of the target file is acquired, and is denoted as Dt;
[0041] The processing rejection value Di of each target file within the same level is calculated by the formula , wherein f1 and f2 are preset proportion coefficients.
[0042] As a further scheme of the present application: the abnormal reconstruction area ratio acquisition process of the target file is:
[0043] Within a preset period, the file running characteristic value corresponding to the device each time the same target file is opened is acquired, and a plane coordinate system
[0044] The file running characteristic value corresponding to each opening of the target file in a preset period is used to construct a running characteristic curve of the target file;
[0045] A first critical value VS1 of the running state behavior value corresponding to the target file is used to draw a standard baseline parallel to the X axis;
[0046] The area above the standard baseline is recorded as an abnormal reconstruction area;
[0047] The area of the abnormal reconstruction area is compared with the area threshold value of the abnormal reconstruction area to obtain the abnormal reconstruction area ratio of the target file.
[0048] As a further scheme of the present application: the execution quantity ratio of the target file is the ratio of the number of times the target file is opened to the total number of times the target files in the same level are opened;
[0049] The execution time occupancy ratio of the target file is the ratio of the total opening time of the target file to the total opening time of the target files in the same level.
[0050] As a further scheme of the present application: a computer data management system based on the Internet comprises:
[0051] The device analysis module is used to obtain the storage file data of the device, and through processing of the storage file data, the running state behavior value corresponding to the target file stored by the device is obtained and uploaded to the cloud management and control platform;
[0052] The file division module is used to receive the running state behavior value transmitted by the cloud management and control platform, and the file division module performs screening processing on the target file based on the running state behavior value of the target file, obtains storage files in different states, and uploads the state of the storage file to the cloud management and control platform;
[0053] The state of the storage file includes a first interference file, a second interference file and a third interference file;
[0054] The same level orientation module receives the state level of the storage file transmitted by the cloud management and control platform, and the same level orientation module processes all target files in the same level interference file based on the same level interference file, obtains a processing rejection value of the target file, and completes the directional processing of the target file in the same level interference file according to the processing rejection value of the target file.
[0055] The present application has the following advantages:
[0056] (1) The application obtains the file running characteristic value when the device is opened to the storage state data, that is, obtains the file running characteristic value by processing the opening speed, compression speed and transmission speed of the target file when the target file is running, and then obtains the device running characteristic value by processing the network delay speed, CPU usage and ring feeling behavior value of the device after the target file is opened, so as to obtain the running state behavior value of the target file in the device from the target file itself and the device running state when the target file is executed, thereby completing the accurate identification of the storage file in the device, and enabling the user to easily know the state of the storage data;
[0057] (2) The application processes the abnormal reconstruction area ratio, execution quantity ratio and execution time ratio of different target files in the same level interference file, obtains the processing rejection value of each target file in the same level, that is, processes the abnormal state degree, usage frequency and usage time of the target file in the preset period, completes the identification of the usage state of the target file in the same level, and records the target file with low usage frequency, short time and easy to cause device abnormality as a priority processing file, thereby further enhancing the transparency and controllability of data management. BRIEF DESCRIPTION OF DRAWINGS
[0058] The application will be further described below with reference to the drawings.
[0059] Figure 1 is a flowchart of an embodiment of the computer data management method based on the Internet according to the application;
[0060] Figure 2 is a flowchart of file state level identification in an embodiment of the computer data management method based on the Internet according to the application;
[0061] Figure 3 is a program block diagram of an embodiment of the computer data management system based on the Internet according to the application. DETAILED DESCRIPTION
[0062] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only a part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the application.
[0063] Embodiment 1
[0064] Please refer to Figure 1 The application is a computer data management method based on the Internet, which comprises the following steps:
[0065] Obtain the storage file data of the device, and obtain the operation status behavior value corresponding to the device storage target file by processing the storage file data;
[0066] Based on the running status behavior value of the target file, the target file is screened to obtain storage files of different states;
[0067] The status of the stored files includes first-level interference files, second-level interference files, and third-level interference files;
[0068] Based on the interference files of the same level, all target files in the interference files of the same level are processed to obtain the processing rejection value of the target files, and the targeted processing of the target files in the interference files of the same level is completed according to the processing rejection value of the target files.
[0069] Example 2
[0070] The storage status data of the device includes file operation characterization values and device operation characterization values;
[0071] The process of obtaining the file running characterization value is as follows:
[0072] Record any file opened by the device during operation as the target file;
[0073] Get the opening speed of the target file when it is opened, recorded as V1;
[0074] Get the compression speed of the target file when it is compressed, recorded as V2;
[0075] Get the transmission speed of the target file when it is transmitted, recorded as V3;
[0076] By formula Calculate the file operation characterization value Vi, where M is the data size of the target file, and d1, d2, d3, and d4 are all preset proportional coefficients;
[0077] From the above formula for obtaining the file operation characterization value, it can be seen that the larger the target file is, the smaller the corresponding file operation characterization value is, which means that the device has a slower speed when opening, compressing and transmitting the target file.
[0078] The process of obtaining the equipment operation characterization value is as follows:
[0079] Get the network delay speed of the device when the target file is opened, and record it as Sv;
[0080] Among them, the network delay speed is the network delay time when the device opens the target file obtained through the Ping test;
[0081] and the network speed corresponding to the network delay time when the device opens the target file is obtained;
[0082] The network delay time is multiplied by the network speed, i.e., the network delay speed is obtained.
[0083] The CPU usage of the device when the target file is opened is obtained, and is recorded as Sc;
[0084] The CPU usage of the device is obtained by using the device task manager, or using a performance monitor and using a third-party tool;
[0085] The third-party tool includes Process Explorer or Resource Monitor.
[0086] The ring behavior value of the device when the target file is opened is obtained, and is recorded as Sx;
[0087] The device running representation value Si is calculated by the formula The device running representation value Si is calculated by the formula
[0088] The ring behavior value is obtained by the following process:
[0089] The temperature change difference and the noise change difference of the device within a preset time when the target file is opened are obtained;
[0090] The temperature change difference is the difference between the device temperature value at the end of the preset time when the target file is opened and the device temperature value when the target file is not opened;
[0091] The noise change difference is the difference between the device noise value at the end of the preset time when the target file is opened and the device noise value when the target file is not opened;
[0092] The temperature change difference is calculated by the ratio of the temperature change difference and the temperature standard value, to obtain the temperature change difference ratio;
[0093] The temperature standard value is set by the staff according to experience;
[0094] The noise change difference is calculated by the ratio of the noise change difference and the sound standard value, to obtain the noise change difference ratio;
[0095] The sound standard value is set by the staff according to experience;
[0096] The temperature change difference ratio and the noise change difference ratio within the preset time are weighted, i.e., the ring behavior value of the device is obtained.
[0097] The file running representation value Vi and the device running representation value Si are processed, i.e., by the formula The running state behavior value VS corresponding to each target file is calculated, wherein k is a preset proportion coefficient;
[0098] The acquisition process of k is as follows: there are m groups of historical data, each group of historical data including a file running characteristic value Vi, a device running characteristic value Si, and a running state behavior value VS;
[0099] The m groups of historical data are fitted by using a linear model, the prepared historical data are brought into the selected fitting model for fitting, and the mean value of the fitting coefficients is taken as the preset proportion coefficient k.
[0100] As can be seen from the above formula for acquiring the running state behavior value, the greater the file running characteristic value, the greater the opening speed of the target file when executed, the greater the compression speed of the target file when compressed, and the greater the transmission speed of the target file when transmitted, the more fluent the device in executing the operation of the target file, and the greater the corresponding running state behavior value;
[0101] The greater the device running characteristic value, the greater the network delay speed when the device executes other operations, the higher the CPU usage rate, and the greater the change in the ring behavior value (temperature and noise) when the target file is opened, which indicates that the device running state is poor, and the smaller the corresponding running state behavior value.
[0102] Embodiment 3
[0103] Referring to Figure 2 , based on the running state behavior value of the device when executing the target file, the storage data state of the target file in the device is screened and processed, in particular:
[0104] The first critical value of the running state behavior value corresponding to the preset target file is VS1, and the second critical value of the running state behavior value corresponding to the target file is VS2;
[0105] The running state behavior value VS is compared with the first critical value VS1 and the second critical value VS2 of the running state behavior value:
[0106] When VS < VS1, the target file in this range is recorded as a first-level interference file;
[0107] When VS1≤VS < VS2, the target file in this range is recorded as a second-level interference file;
[0108] When VS≥VS2, the target file in this range is recorded as a third-level interference file;
[0109] The higher the level of the target file in the device is, the worse the running state of the device is when the device stores the target file or the target file is executed.
[0110] The running state of the device corresponding to the first-level interference file is better than that of the second-level interference file, and the running state of the device corresponding to the second-level interference file is better than that of the third-level interference file.
[0111] In a specific embodiment, when the target file needs to be deleted in the device, the target file located in the third-level interference file has a higher deletion level than the target file located in the second-level interference file, and the target file located in the second-level interference file has a higher deletion level than the target file located in the first-level interference file.
[0112] Embodiment 4
[0113] Based on the interference files of the same level, how to accurately delete the target file in the interference files of the same level is solved, specifically:
[0114] A preset period is set, and in the preset period, the file running characteristic value corresponding to the device each time the same target file is opened is obtained.
[0115] In a time sequence, the number of times the target file is opened is taken as the X-axis, and the file running characteristic value corresponding to the target file is taken as the Y-axis.
[0116] The file running characteristic value corresponding to each opening of the target file in the preset period is plotted, and all the points are connected from left to right by a smooth curve to obtain a running characteristic curve of the target file.
[0117] A standard reference line parallel to the X-axis is drawn with the first critical value VS1 of the running state behavior value corresponding to the target file.
[0118] An auxiliary line perpendicular to the X-axis is drawn with the end point of the running characteristic curve, the auxiliary line coincides with the standard reference line, a graphic area surrounded by the auxiliary line, the running characteristic curve and the standard reference line is obtained, and the area value of the abnormal reconstruction area (i.e. the area above the standard reference line) is obtained.
[0119] The area of the abnormal reconstruction area is calculated by the area threshold value of the abnormal reconstruction area to obtain the abnormal reconstruction area ratio of the target file.
[0120] The number of times the target file is opened in the preset period is obtained, and the number of times the target file is opened is calculated by the total number of times the target file is opened in the same level to obtain the execution quantity ratio of the target file.
[0121] The total number of times the target file is opened in the same level is the sum of the number of times all target files are opened in the preset period.
[0122] obtaining a total duration of opening the target file in a preset period, performing ratio calculation on the total duration of opening the target file and a total duration of opening the target file in the same level to obtain an execution time proportion of the target file;
[0123] The total duration of opening the target file in the same level is a sum of durations of opening all target files in the preset period.
[0124] The abnormal reconstruction area ratio of the target file is denoted as Dy.
[0125] The execution number ratio of the target file is denoted as Ds.
[0126] The execution time proportion of the target file is denoted as Dt.
[0127] The processing rejection value Di of each target file in the same level is calculated through a formula , wherein f1 and f2 are preset proportion coefficients.
[0128] Each target file in the same level is sorted according to the processing rejection value Di from large to small, a report is displayed to a user through a graphical user interface, and a deletion suggestion is provided for each file, the target file corresponding to the smallest processing rejection value Di is recorded as the first processing file, and the same is applied to other target files, thereby completing accurate deletion of the target files in the same level.
[0129] It should be noted that the greater the abnormal reconstruction area ratio of the target file, the more serious the abnormal state of the device caused by the target file with the passage of time in the preset period, or the more serious the abnormal state of the device caused by the target file in the entire preset period, that is, the processing rejection value corresponding to the target file is small.
[0130] The greater the execution number ratio of the target file, the more times the target file is opened in the preset period, the higher the frequency of use of the target file, and the greater the processing rejection value corresponding thereto.
[0131] The greater the execution time proportion of the target file, the longer the target file is used in the preset period, the higher the importance of the target file, and the greater the processing rejection value corresponding thereto.
[0132] The preset period is set by a worker according to experience, and includes but is not limited to one month, three months or one year.
[0133] Embodiment 5
[0134] Referring to FIG. 1, Figure 3 The present application is a computer data management system based on the Internet, which comprises:
[0135] The device analysis module is configured to acquire storage file data of the device, obtain a running state behavior value corresponding to a target file stored in the device by processing the storage file data, and upload the running state behavior value to the cloud management and control platform.
[0136] The file division module is configured to receive the running state behavior value transmitted by the cloud management and control platform, perform screening processing on the target file based on the running state behavior value of the target file, obtain storage files in different states, and upload the states of the storage files to the cloud management and control platform.
[0137] The states of the storage files include a first interference file, a second interference file, and a third interference file.
[0138] The peer-oriented module is configured to receive the state level of the storage file transmitted by the cloud management and control platform, process all target files in the interference file of the same level based on the interference file of the same level, obtain a processing rejection value of the target file, and complete directional processing of the target file in the interference file of the same level according to the processing rejection value of the target file.
[0139] The above describes one embodiment of the present application in detail, but the content described is only a preferred embodiment of the present application and cannot be considered as limiting the scope of the present application. Any equivalent changes and improvements made within the scope of the present application should still belong to the patent coverage of the present application.
Claims
1. A computer data management method based on the Internet, characterized in that: The following steps are involved: Obtain the storage file data of the device, and obtain the operation status behavior value corresponding to the device storage target file by processing the storage file data; The device's stored file data includes file operation characterization values and device operation characterization values; The file running characterization value is recorded as Vi; The equipment operation characterization value is recorded as Si; By formula Calculate the running status behavior value VS corresponding to each target file, where: is the preset proportional coefficient; The file operation characterization value is obtained by processing the target file's opening speed, compression speed, and transmission speed when the target file is running. The device operation characterization value is then obtained by processing the device's network delay speed, CPU usage, and environmental behavior value after the target file is opened. The ambient sensor behavior value is obtained by processing the temperature and noise values of the device within a preset time when the target file is opened; Based on the running status behavior value of the target file, the target file is screened to obtain storage files of different states; The status of the stored files includes first-level interference files, second-level interference files, and third-level interference files; Based on the interference files of the same level, all target files in the interference files of the same level are processed to obtain the processing rejection value of the target files, and the targeted processing of the target files in the interference files of the same level is completed according to the processing rejection value of the target files; The process of obtaining the processing rejection value of each target file in the same level is as follows: Obtain the abnormal reconstruction area ratio of the target file and record it as Dy; Get the execution quantity ratio of the target file and record it as Ds; Get the execution time percentage of the target file and record it as Dt; By formula Calculate the processing rejection value Di of each target file in the same level, where f1 and f2 are preset proportional coefficients; The process of obtaining the abnormal reconstruction area ratio of the target file is as follows: Within a preset period, obtain the file operation characterization value corresponding to the device each time the same target file is opened, and establish a plane coordinate system; Constructing an operation characteristic curve of the target file using the file operation characteristic value corresponding to each opening of the target file within a preset period; A standard reference line parallel to the X-axis is drawn using the first critical value VS1 of the running state behavior value corresponding to the target file; The area above the standard baseline is recorded as the abnormal reconstruction area; Calculate the ratio of the area of the abnormal reconstruction region to the area threshold of the abnormal reconstruction region to obtain the abnormal reconstruction region ratio of the target file; The execution quantity ratio of the target file is the ratio of the number of times the target file is opened to the total number of times target files of the same level are opened; The execution time ratio of the target file is the ratio of the total opening time of the target file to the total opening time of target files of the same level.
2. The method for managing computer data based on the Internet according to claim 1, wherein: The target file screening process is as follows: The first critical value of the running state behavior value corresponding to the preset target file is VS1, and the second critical value of the running state behavior value corresponding to the target file is VS2; When VS<VS1, the target file within this range is recorded as a first-level interference file; When VS1≤VS<VS2, the target file in this range is recorded as a secondary interference file; When VS≥VS2, the target files within this range are recorded as level 3 interference files.
3. The method for managing computer data based on the Internet according to claim 1, wherein: The process of obtaining the file running characterization value is as follows: Record any file opened by the device during operation as the target file; Get the opening speed of the target file when it is opened, recorded as V1; Get the compression speed of the target file when it is compressed, recorded as V2; Get the transmission speed of the target file when it is transmitted, recorded as V3; By formula The file operation characterization value Vi is calculated, where M is the data size of the target file, and d1, d2, d3, and d4 are all preset proportional coefficients.
4. The method for managing computer data based on the Internet according to claim 1, wherein: The process of obtaining the device operation characterization value is as follows: Get the network delay speed of the device when the target file is opened, and record it as Sv; Get the CPU usage of the device when the target file is opened and record it as Sc; Get the ambient sensor behavior value of the device when the target file is opened and record it as Sx; By formula The equipment operation characterization value Si is calculated, where a1, a2, and a3 are all preset proportional coefficients and a1, a2, and a3 are all greater than zero. is the preset scale factor.
5. The method for managing computer data based on the Internet according to claim 1, wherein: The process of obtaining the ambient sensor behavior value is as follows: Get the temperature change difference and noise change difference of the device within the preset time when the target file is opened; Calculate the ratio of the temperature change difference to the temperature standard value to obtain the temperature change difference ratio; Calculate the ratio of the noise change difference to the sound standard value to obtain the noise change difference ratio; The temperature change difference ratio and the noise change difference ratio within the preset time are weighted to obtain the ambient sensing behavior value of the device.
6. A computer data management system based on the Internet, characterized in that: The system is used to perform the method of any one of claims 1 to 5, comprising: The device parsing module is used to obtain the storage file data of the device, obtain the operating status behavior value corresponding to the device storage target file by processing the storage file data, and upload it to the cloud management and control platform; The file partitioning module is used to receive the running status behavior value transmitted by the cloud management and control platform. The file partitioning module screens the target file based on the running status behavior value of the target file to obtain storage files of different states, and uploads the status of the storage file to the cloud management and control platform; The status of the stored files includes first-level interference files, second-level interference files, and third-level interference files; The same-level directional module receives the status level of the storage files transmitted by the cloud management and control platform. The same-level directional module processes all target files in the interference files of the same level based on the interference files of the same level, obtains the processing rejection value of the target file, and completes the directional processing of the target files in the interference files of the same level according to the processing rejection value of the target file.
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