File Data Storage System and Hard Disk Storage Device

By introducing modules such as virus detection, priority processing and diversion storage in the archive data storage system, data processing lag and security problems are solved, and efficient and secure archive data management is achieved.

CN119622839BActive Publication Date: 2025-07-08THE SECOND AFFILIATED HOSPITAL OF SHANDONG UNIV OF TRADITIONAL CHINESE MEDICINE
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Patent Information

Application Number
CN202411679381.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-07-08
Estimated Expiration
2044-11-22

AI Technical Summary

Technical Problem

The existing archive data storage system is prone to lag and crash when processing large amounts of data containing viruses, and the computing power of the protection and antivirus programs is dispersed, resulting in a decrease in data security.

Method used

An archive data storage system consisting of virus detection module, priority division module, security inspection planning module, data compression module, mid-dump storage module, fuzzy testing module, data encryption module, multi-channel conveying module, reading monitoring module and security control module are adopted to ensure priority processing and security of important data through priority processing, diversion storage and real-time monitoring.

Benefits of technology

It improves the processing efficiency of the archive data storage system, reduces the garbled data, ensures the amount of data reception, and prevents data leakage through real-time monitoring and power-off and network-free measures, improving data security.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an archive data storage system and a hard disk storage device, which relates to the technical field of data processing. It includes an archive data storage system, and the archive data storage system includes a data storage system and an archive reading system. The data storage system is electrically connected to a storage structure, and the storage structure includes a hard disk. Two first heat exchange tubes are inserted on one side of the hard disk housing. The archive data is first tested, the potential safety hazards are eliminated and encrypted, and then the shunt storage work is carried out. While ensuring that important archive data is processed first, the remaining archive data is compressed, reducing the workload of the data storage system, improving the processing capacity of the data storage system for archive data, ensuring the reception volume of the archive data by the archive data storage system, shunting and grading the processing of archive data, reducing the freezing and crashing caused by processing a large amount of data in a short time, and concentrating the computing power to process important data.
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Description

Technical Field

[0001] The present invention relates to the technical field of data processing, specifically an archive data storage system and a hard disk storage device. Background Art

[0002] In recent years, the informatization process of various industries has been accelerating continuously, and the progress of digitizing paper archives in archives departments at all levels and of all types has also been accelerating, making the development of digital archives more and more rapid. In the development process of digital archives, the storage of archive data is crucial. Existing archive data storage systems usually directly store archive data on optical discs or storage hard disks.

[0003] However, with the popularization of informatization, it is possible that the storage system needs to process a large amount of archive data containing various viruses and Trojans per unit time, resulting in the storage system working at a high frequency in a short period of time, and it is easy to experience jams or even crashes, causing the loss of archive data. Moreover, the computing power of the protection and anti-virus programs is scattered, resulting in a decline in processing ability, and there is a situation where archive data containing viruses enters the database, affecting the security of archive data. Summary of the Invention

[0004] The purpose of the present invention is to provide an archive data storage system and a hard disk storage device to solve the problems raised in the prior art.

[0005] To achieve the above purpose, the present invention provides the following technical solutions: an archive data storage system and a hard disk storage device, including an archive data storage system, the archive data storage system includes a data storage system and an archive reading system, and the data storage system includes a virus killing module, a priority division module, a security inspection planning module, a data compression module, a transfer storage module, a data decompression module, a fuzz testing module, a data encryption module, a multi-channel transportation module, a reading monitoring module, a security control module, and a report generation module.

[0006] Preferably, the data receiving module includes an interface module and a network module. The interface module is used to receive archive data uploaded through device hardware, and the network module is used to receive archive data uploaded through the network.

[0007] Preferably, the virus killing module preliminarily kills viruses in the archive data according to common virus models stored internally. The priority division module divides the priority processing levels of the archive data, and the security inspection planning module generates a processing plan list; the transfer storage module is used to store data.

[0008] Preferably, the fuzz testing module performs fuzz testing on the archive data, the data encryption module encrypts the archive data detected by the fuzz testing module, and the reading monitoring module monitors data changes in the multi-channel transportation module.

[0009] Preferably, the file reading system includes a data reading module, an information acquisition module, a priority locking module, a reading level judgment module, a permission interaction verification module, and a file tracking module.

[0010] Preferably, the priority locking module obtains the priority of the file data from the data storage system, and the reading level judgment module judges the permission level of the user according to the user login information and the login device.

[0011] Preferably, the permission interaction verification module generates an interaction message to determine the permission with the user, and the file tracking module activates the camera structure on the device to collect information of the file data acquirer.

[0012] Preferably, the data storage system is electrically connected to a storage structure, the storage structure includes a hard disk, two first heat exchange tubes are inserted on one side of the hard disk housing, two second heat exchange tubes are fixedly installed between the two first heat exchange tubes, movable grooves are formed at the bottom and top of one side of the hard disk, a liquid storage tube is fixedly communicated between the two first heat exchange tubes, a pneumatic cylinder is fixedly installed between the liquid storage tube and the hard disk, and a flow guiding component is installed on the liquid storage tube.

[0013] Preferably, a plurality of heat dissipation holes are formed on both sides of the hard disk, a plurality of flow guiding holes are formed on one side of each of the two first heat exchange tubes, the plurality of flow guiding holes correspond to the plurality of heat dissipation holes one by one, a data interface, a jumper structure, and a power supply structure are formed at one end of the hard disk away from the liquid storage tube, an installation cavity is formed on the liquid storage tube, the pneumatic cylinder is inserted into the installation cavity and fixedly connected to the liquid storage tube, and two mounting brackets are fixedly connected to one side of the liquid storage tube away from the hard disk.

[0014] Preferably, the flow guiding component includes a one-way valve, a water pump, and two refrigerating sheets. The one-way valve and the water pump are both arranged inside the liquid storage tube. Sealing blocks are fixedly installed between the bottom and top of the one-way valve and the bottom and top of the water pump and the liquid storage tube. The refrigerating sheets are fixedly inserted on one side of the liquid storage tube away from the hard disk.

[0015] Compared with the prior art, the beneficial effects of the present invention are:

[0016] 1. In this application, when the file data storage system processes file data, it determines the processing priority according to the importance of the file data. When the number of file data with the first priority waiting to be processed is greater than the preset number, the files with other priorities are compressed and temporarily stored inside the transfer storage module, ensuring that important file data is first tested, the potential safety hazards are eliminated, and then encrypted and distributed for storage. This can ensure that important file data is processed first, while compressing the remaining file data, reducing the workload of the data storage system, increasing the processing volume of the data storage system for file data, ensuring the reception volume of the file data storage system for file data, and avoiding data garbling caused by chaotic file data processing.

[0017] 2. In this application, the security inspection planning module generates a corresponding processing plan list according to the chronological order of file data with the same priority entering the file data storage system. The newly generated processing plan list overwrites the old processing plan list of the same type in real time. When the number of file data to be processed in the processing plan list read by the data compression module is more than a certain number, the data compression module compresses the file data with priorities other than the first priority determined by the priority classification module to form compressed data. Subsequently, the compressed data and the file data are transported by the data compression module to be temporarily stored inside the transfer storage module, which classifies and distributes the processing of file data, reducing the lag and system crashes caused by processing a large amount of data in a short time, concentrating computing power to process important data. The fuzz testing module performs fuzz testing on the file data according to the processing plan list corresponding to the file data with the first priority, and detects viruses hidden in the file data through fuzz testing.

[0018] 3. In this application, the monitoring result read by the reading monitoring module is transmitted to the security control module. When the security control module determines based on the monitoring result that the file data in multiple storage structures connected by the multi-channel transmission module is read without an instruction, the file data inside the storage structure is flowing out abnormally. The security control module controls the storage structure to disconnect the connection with the file data storage system, and the storage structure is powered off, preventing the file data in the storage structure from being stolen and reducing the leakage of file data.

[0019] 4. After the air cylinder works, the data interface, jumper structure, and power supply structure on the hard disk are disengaged from the device, directly powering off and disconnecting the network of the hard disk to ensure the safety of the data stored inside the hard disk. According to the working test result of the data storage system, the protection of the data inside the storage structure is realized. The liquid is cooled by the refrigeration sheet and then pumped by the water pump to be transported into the heat exchange pipeline composed of two heat exchange tubes and two diversion holes. Moreover, the diversion holes opened on one side of the heat exchange tube correspond one by one to the heat dissipation holes opened on the hard disk. Therefore, the low-temperature cooling liquid in the heat exchange pipeline exchanges heat with the air in the heat dissipation holes, improving the internal heat dissipation efficiency of the hard disk and providing cooling protection for the hard disk. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the file data storage system of the present invention;

[0021] Figure 2 It is a schematic structural diagram of the storage structure of the present invention;

[0022] Figure 3 It is a partial structural schematic diagram of the liquid storage tube of the present invention;

[0023] Figure 4 It is a schematic structural diagram of the first heat exchange tube of the present invention;

[0024] Figure 5 It is a partial structural schematic diagram of the liquid storage tube of the present invention;

[0025] Figure 6 It is a schematic structural diagram of the sealing block of the present invention.

[0026] Reference numerals in the figures: 1. File data storage system; 2. Data storage system; 20. Data receiving module; 201. Interface module; 202. Network module; 21. Virus killing module; 22. Priority division module; 23. Security inspection planning module; 24. Data compression module; 25. Intermediate storage module; 26. Data decompression module; 27. Fuzz testing module; 28. Data encryption module; 29. Multi-channel conveying module; 210. Reading monitoring module; 211. Security control module; 212. Report generation module; 3. File reading system; 31. Data reading module; 32. Information acquisition module; 33. Priority locking module; 34. Reading level judgment module; 35. Permission interaction verification module; 36. File tracking module; 5. Storage structure; 51. Hard disk; 52. Data interface; 53. Jumper structure; 54. Power supply structure; 55. Heat dissipation holes; 56. Activity slot; 57. First heat exchange tube; 58. Diversion holes; 59. Second heat exchange tube; 510. Liquid storage tube; 511. Pneumatic cylinder; 512. Installation cavity; 513. Refrigeration sheet; 514. Installation rack; 515. Sealing block; 516. Check valve; 517. Water pump. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0028] Embodiment: As Figures 1-6As shown in the figure, the present invention provides a technical solution for an archive data storage system and a hard disk storage device, including an archive data storage system 1, the archive data storage system 1 includes a data storage system 2 and an archive reading system 3, the data storage system 2 includes a virus killing module 21, a priority division module 22, a security inspection planning module 23, a data compression module 24, a transfer storage module 25, a data decompression module 26, a fuzz testing module 27, a data encryption module 28, a multi-channel transmission module 29, a reading monitoring module 210, a security control module 211 and a report generation module 212. The data storage system 2 is electrically connected to a storage structure 5. The storage structure 5 includes a hard disk 51. On one side of the outer shell of the hard disk 51, two first heat exchange tubes 57 are inserted. Between the two first heat exchange tubes 57, two second heat exchange tubes 59 are fixedly installed. On both the bottom and top of one side of the hard disk 51, movable grooves 56 are provided. Between the two first heat exchange tubes 57, a liquid storage tube 510 is fixedly communicated. Between the liquid storage tube 510 and the hard disk 51, a pneumatic cylinder 511 is fixedly installed. A flow guiding component is installed on the liquid storage tube 510.

[0029] In this application, the archive data storage system 1 is composed of a data storage system 2 and an archive reading system 3. The data storage system 2 processes the archive data.

[0030] Its data storage system 2 includes a data receiving module 20. The data receiving module 20 is used to receive archive data. In the data receiving module 20, an interface module 201 is used to receive archive data uploaded through device hardware, and a network module 202 is used to receive archive data uploaded through the network.

[0031] It includes a virus killing module 21. The virus killing module 21 preliminarily kills the archive data according to the common virus models stored internally, reducing the possibility of the virus affecting the normal operation of the archive data storage system 1.

[0032] It includes a priority division module 22. The priority division module 22 reads the information that requires confidentiality in the archive data. The priority division module 22 divides the priority processing levels of the archive data according to the information.

[0033] It includes a security inspection planning module 23. The security inspection planning module 23 generates a corresponding processing plan list according to the chronological order of the archive data with the same priority entering the archive data storage system 1.

[0034] It includes a data compression module 24. When the number of archive data to be processed in the first priority processing plan list generated by the security inspection planning module 23 is more than 30, the data compression module 24 works to compress the archive data with priorities other than the first priority determined by the priority division module 22 to form compressed data.

[0035] It includes a transfer storage module 25. Compressed data and archive data are sent by the data compression module 24 into the transfer storage module 25 for data storage.

[0036] It includes a data decompression module 26 which is used for decompressing compressed data.

[0037] It includes a fuzz testing module 27 which performs fuzz testing on archive data according to the processing plan list corresponding to the archive data, and detects viruses hidden in the archive data through fuzz testing.

[0038] It includes a data encryption module 28 which encrypts the archive data detected by the fuzz testing module 27.

[0039] It includes a multi-channel transfer module 29 which transfers archive data to different storage structures 5 for internal storage according to the priority of the archive data.

[0040] It includes a read monitoring module 210 which monitors data changes in the multi-channel transfer module 29.

[0041] It includes a security control module 211 which controls the storage structure 5 where internal archive data is abnormally read to work.

[0042] It includes a report generation module 212 which generates an archive data security report based on the virus killing results of the virus killing module 21, the detection results of the fuzz testing module 27, and the judgment results of the security control module 211 within a unit time. The security report is displayed on the display interface of the device where the archive data storage system 1 is located.

[0043] After the data receiving module 20 receives the archive data, the data receiving module 20 transports the archive data into the virus killing module 21. The virus killing module 21 conducts preliminary virus killing on the archive data according to the common virus models stored internally. After the preliminary virus killing, the archive data is transported into the priority division module 22. The priority division module 22 reads the information that requires confidentiality in the archive data. The priority division module 22 divides the priority processing level of the archive data according to the information. Subsequently, the priority division module 22 transports the archive data to the security inspection planning module 23. The security inspection planning module 23 generates a corresponding processing plan list according to the chronological order of the archive data of the same priority entering the archive data storage system 1. The newly generated processing plan list overwrites the old processing plan list of the same type in real time. The data compression module 24 reads the processing plan list corresponding to the first-priority archive data. When the number of archive data to be processed in the processing plan list is more than 30, the data compression module 24 compresses the archive data with priorities other than the first priority determined by the priority division module 22 to form compressed data. Subsequently, the compressed data and the archive data are temporarily stored in the transit storage module 25 by the data compression module 24. The fuzz testing module 27 conducts fuzz testing on the archive data according to the processing plan list corresponding to the first-priority archive data, and detects the hidden viruses in the archive data through fuzz testing;

[0044] When the detection result of the fuzz testing module 27 shows no potential security risks, the archive data that has passed the detection of the fuzz testing module 27 enters the data encryption module 28 for encryption. After encryption, the archive data is transported by the data encryption module 28 to the storage structure 5 for storing the first-priority archive data through the multi-channel transport module 29;

[0045] When the detection result of the fuzz testing module 27 shows potential security risks, the archive data is transported into the virus killing module 21. The virus killing module 21 conducts targeted virus killing work according to the type of potential security risks. After being killed by the virus killing module 21, the archive data enters the fuzz testing module 27 again for fuzz testing, and the testing, virus killing, and testing work are carried out in a loop until the testing result of the fuzz testing module 27 shows no potential security risks;

[0046] After the first-priority data processing and storage are completed, the data decompression module 26 decompresses the compressed data stored inside the transfer storage module 25 according to the processing plan list corresponding to the second-priority file data. After decompression, the compressed data is sent by the data decompression module 26 to the fuzz testing module 27 for fuzz testing. The second-priority file data that passes the test of the fuzz testing module 27 is encrypted by the data encryption module 28, and then the multi-channel transmission module 29 shunts and transmits it to be stored inside the storage structure 5 for storing the second-priority file data; Subsequently, the data storage system 2 decompresses, tests, eliminates potential safety hazards, encrypts the compressed data stored inside the transfer storage module 25 according to the processing plan list corresponding to the third-priority file data, and then transmits it to be stored inside the corresponding storage structure 5.

[0047] In summary, when the data storage system 2 of the present application processes file data, it judges the priority of processing according to the importance of the file data. When the number of first-priority file data waiting to be processed is greater than the preset number, the files of the remaining priorities are compressed and temporarily stored inside the transfer storage module 25, ensuring that important file data is first tested, potential safety hazards are eliminated, encrypted, and then shunted and stored. This can ensure that important file data is processed first, while compressing the remaining file data, reducing the workload of the data storage system 2, increasing the processing volume of the data storage system 2 for file data, ensuring the receiving volume of the file data storage system 1 for file data, and avoiding data garbling caused by chaotic file data processing.

[0048] And the reading and monitoring module 210 monitors the data changes inside the multi-channel transmission module 29 in real time. The multiple channels provided by the multi-channel transmission module 29 correspond to multiple storage structures 5. The reading and monitoring module 210 monitors the transmission of the file data stored inside the storage structure 5 in real time. The monitoring result of the reading and monitoring module 210 is sent to the inside of the security control module 211. When the security control module 211 judges according to the monitoring result that the file data in the multiple storage structures 5 connected by the multi-channel transmission module 29 is read without an instruction, the file data inside the storage structure 5 is an abnormal outflow. The security control module 211 controls the storage structure 5 to disconnect the connection with the file data storage system 1, and the storage structure 5 is powered off to prevent the file data in the storage structure 5 from being stolen and reduce the leakage of file data.

[0049] The file reading system 3 set in the file data storage system 1 obtains file data from multiple storage structures 5 according to the user's instruction: The file reading system 3 includes a data reading module 31, and the data reading module 31 reads the information input by the user on the device where the file data storage system 1 is located;

[0050] It includes an information acquisition module 32, and the information acquisition module 32 reads the key information in the information to lock the file data to be extracted;

[0051] It includes a priority locking module 33 which obtains the priority of the file data from the data storage system 2;

[0052] It includes a reading level judgment module 34 which judges the user's permission level according to the user login information and the login device;

[0053] It includes a permission interaction verification module 35 which generates an interaction message to determine the permission with the user;

[0054] It includes a file tracking module 36 which starts the camera structure on the device to collect information of the file data acquirer.

[0055] After the user inputs the file data information to be obtained on the device where the file data storage system 1 is located, the data reading module 31 reads the file data information. Subsequently, the information acquisition module 32 reads the key information in the information to lock the file data to be extracted. At the same time, the priority locking module 33 obtains the priority of the file data from the data storage system 2 according to the reading result of the information acquisition module 32. The reading level judgment module 34 judges the user's permission level according to the user login information and the login device. When the user's permission level is equal to or higher than the priority of the file data, the file data is extracted from the inside of the storage structure 5 by the file reading system 3;

[0056] When the user's permission level is lower than the priority of the file data, the permission interaction verification module 35 generates a permission interaction message. The user can use the authorization certificate to complete the acquisition of the file data. When the user cannot prove the permission authorization, the file data is locked and cannot be extracted. The data encryption module 28 performs multiple encryptions on the file to ensure the security of the file data; At the same time, the report generation module 212 generates an inquiry report, and the inquiry report is sent to the management personnel by the communication structure on the device where the file data storage system 1 is located.

[0057] When the file data obtained by the user is of the first priority, the file tracking module 36 controls the camera structure on the device where the file data storage system 1 is located. The camera structure collects information of the file data acquirer, which is convenient for accurately tracking the whereabouts of the file data and holding the person responsible for the leakage of the file data accountable.

[0058] The working steps of the storage structure 5 in this application are as follows:

[0059] Since a liquid storage pipe 510 is fixedly connected between two heat exchange pipes 57 inserted on one side of the housing of the hard disk 51, a pneumatic cylinder 511 is fixedly installed between the liquid storage pipe 510 and the hard disk 51. On the side of the liquid storage pipe 510 far from the hard disk 51, two mounting brackets 514 are fixedly connected. The two mounting brackets 514 are used for the installation of the liquid storage pipe 510 on the device where the file data storage system 1 is located, so that the liquid storage pipe 510 cannot move when installed on the device. When the data storage system 2 controls the storage structure 5 to work, the pneumatic cylinder 511 works to pull the hard disk 51 closer to the liquid storage pipe 510. At one end of the hard disk 51 far from the liquid storage pipe 510, a data interface 52, a jumper structure 53 and a power supply structure 54 are formed. The data interface 52 is responsible for the high-speed transmission of data. The jumper structure 53 helps the file data storage system 1 identify and guide the master and slave disks. The power supply structure 54 is responsible for the power connection of the hard disk 51;

[0060] After the pneumatic cylinder 511 works, the data interface 52, the jumper structure 53 and the power supply structure 54 on the hard disk 51 are disengaged from the device, so that the hard disk 51 is directly powered off and disconnected from the network, ensuring the safety of the data stored inside the hard disk 51. According to the working test results of the data storage system 2, the protection of the data inside the storage structure 5 is realized.

[0061] Moreover, a plurality of heat dissipation holes 55 are provided on both sides of the hard disk 51, and a plurality of diversion holes 58 are provided on one side of each of the two heat exchange pipes 57. The plurality of diversion holes 58 correspond to the plurality of heat dissipation holes 55 one by one. Therefore, while the heat exchange pipe 57 guides the hard disk 51, it does not affect the normal heat dissipation of the hard disk 51.

[0062] On the bottom and top of one side of the hard disk 51, movable grooves 56 are provided. On the side of the two movable grooves 56 far from the liquid storage pipe 510, heat exchange pipes 59 are provided. The heat exchange pipes 59 are fixedly installed between the two heat exchange pipes 57 and are internally connected to the heat exchange pipes 57. Due to the setting of the size of the movable grooves 56, the heat exchange pipes 59 do not affect the relative movement between the hard disk 51 and the liquid storage pipe 510;

[0063] In the monitoring of the data storage system 2, after the hard disk 51 has been working for a certain period of time, the data storage system 2 controls the operation of two Peltier elements 513 in the diversion assembly. Since the Peltier elements 513 are fixedly inserted into the side of the liquid storage pipe 510 away from the hard disk 51, and the cooling ends of the Peltier elements 513 are arranged inside the liquid storage pipe 510 to cool the coolant inside the liquid storage pipe 510; at the same time, the water pump 517 is controlled to work. Since sealing blocks 515 are fixedly installed between the bottom and top of the check valve 516 and the bottom and top of the water pump 517 and the liquid storage pipe 510, the liquid between the check valve 516 and the water pump 517 is cooled by the Peltier element 513 and then pumped by the water pump 517 and transported to the heat exchange pipeline composed of two first heat exchange pipes 57 and two diversion holes 58. Moreover, the diversion holes 58 opened on one side of the first heat exchange pipe 57 correspond one by one to the heat dissipation holes 55 opened on the hard disk 51. Therefore, the low-temperature coolant in the heat exchange pipeline exchanges heat with the air in the heat dissipation holes 55, improving the internal heat dissipation efficiency of the hard disk 51 and providing cooling protection for the hard disk 51; after heat exchange, the coolant enters the end of the liquid storage pipe 510 away from the water pump 517 inside the liquid storage pipe 510. After the hydraulic pressure at the end of the liquid storage pipe 510 away from the water pump 517 increases, the coolant enters one side of the two Peltier elements 513 through the check valve 516, completing the heat exchange cycle of the coolant.

[0064] Moreover, an installation cavity 512 is formed on the liquid storage pipe 510, and the air cylinder 511 is inserted into the installation cavity 512 and fixedly connected to the liquid storage pipe 510, reducing the space required for the installation of the air cylinder 511 and reducing the space occupied by the storage structure 5.

[0065] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.

Claims

1. An archive data storage system, including an archive data storage system (1), characterized in that: The described file data storage system (1) includes a data storage system (2) and a file reading system (3). The data storage system (2) includes a virus killing module (21), a priority division module (22), a security inspection planning module (23), a data compression module (24), a transfer storage module (25), a data decompression module (26), a fuzz testing module (27), a data encryption module (28), a multi-channel transmission module (29), a reading monitoring module (210), a security control module (211), and a report generation module (212). After the data receiving module (20) receives the file data, the data receiving module (20) transports the file data into the virus killing module (21). The virus killing module (21) performs preliminary virus killing on the file data according to the common virus models stored internally. After the preliminary virus killing, the file data is transported into the priority division module (22). The priority division module (22) reads the information that requires confidentiality in the file data. The priority division module (22) divides the priority processing level of the file data according to the information. Subsequently, the priority division module (22) transports the file data to the security inspection planning module (23). The security inspection planning module (23) generates a corresponding processing plan list according to the chronological order of the file data with the same priority entering the file data storage system (1). The newly generated processing plan list overwrites the old processing plan list of the same type in real time. The data compression module (24) reads the processing plan list corresponding to the file data of the first priority. When the number of file data to be processed in the processing plan list is more than 30, the data compression module (24) compresses the file data with priorities other than the first priority determined by the priority division module (22) to form compressed data. Subsequently, the compressed data and the file data are transported by the data compression module (24) into the transfer storage module (25) for temporary storage. The fuzz testing module (27) performs fuzz testing on the file data according to the processing plan list corresponding to the file data of the first priority, and detects the hidden viruses in the file data through fuzz testing.

2. The archival data storage system according to claim 1, wherein: The data receiving module (20) includes an interface module (201) and a network module (202). The interface module (201) is used to receive the file data uploaded through device hardware, and the network module (202) is used to receive the file data uploaded through the network.

3. The archival data storage system according to claim 1, wherein: The virus killing module (21) performs preliminary virus killing on the file data according to the common virus models stored internally. The priority division module (22) divides the priority processing level of the file data. The security inspection planning module (23) generates a processing plan list. The transfer storage module (25) is used to store data.

4. The file data storage system according to claim 1, wherein: The fuzz testing module (27) performs fuzz testing on the file data. The data encryption module (28) encrypts the file data detected by the fuzz testing module (27). The reading monitoring module (210) monitors the data changes in the multi-channel transmission module (29).

5. The archival data storage system according to claim 1, wherein: The described file reading system (3) includes a data reading module (31), an information acquisition module (32), a priority locking module (33), a reading level judgment module (34), a permission interaction verification module (35), and a file tracking module (36).

6. The archival data storage system according to claim 5, wherein: The priority locking module (33) obtains the priority of the file data from the data storage system (2), and the reading level judgment module (34) judges the permission level of the user according to the user login information and the login device.

7. The archival data storage system according to claim 5, wherein: The permission interaction verification module (35) generates an interaction message to determine the permission with the user, and the file tracking module (36) activates the camera structure on the device to collect information of the file data acquirer.

8. A hard disk storage device, applicable to the file data storage system as described in any one of claims 1-7, the data storage system (2) being electrically connected to a storage structure (5), the storage structure (5) including a hard disk (51), characterized in that: On one side of the housing of the hard disk (51), two first heat exchange tubes (57) are inserted. Two second heat exchange tubes (59) are fixedly installed between the two first heat exchange tubes (57). Activity slots (56) are formed at both the bottom and the top on one side of the hard disk (51). A liquid storage pipe (510) is fixedly communicated between the two first heat exchange tubes (57). An air cylinder (511) is fixedly installed between the liquid storage pipe (510) and the hard disk (51). A flow guiding assembly is installed on the liquid storage pipe (510).

9. The hard disk storage device according to claim 8, wherein: A plurality of heat dissipation holes (55) are formed on both sides of the hard disk (51). A plurality of flow guiding holes (58) are formed on one side of each of the two first heat exchange tubes (57). The plurality of flow guiding holes (58) correspond to the plurality of heat dissipation holes (55) one by one. A data interface (52), a jumper structure (53), and a power supply structure (54) are formed at one end of the hard disk (51) away from the liquid storage pipe (510). An installation cavity (512) is formed on the liquid storage pipe (510). The air cylinder (511) is inserted into the installation cavity (512) and fixedly connected to the liquid storage pipe (510). Two installation brackets (514) are fixedly connected to one side of the liquid storage pipe (510) away from the hard disk (51).

10. The hard disk storage device according to claim 8, wherein: The flow guiding assembly includes a one-way valve (516), a water pump (517), and two refrigeration sheets (513). The one-way valve (516) and the water pump (517) are both arranged inside the liquid storage pipe (510). Sealing blocks (515) are fixedly installed between the bottom and the top of the one-way valve (516) and the bottom and the top of the water pump (517) and the liquid storage pipe (510). The refrigeration sheets (513) are fixedly inserted into one side of the liquid storage pipe (510) away from the hard disk (51).

Citation Information

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