A data center network security protection method

By introducing marginalized network security protection devices, data transfer servers and smart terminals into the network security protection system, combined with abnormal vibration detection, fan operation detection and airflow sensor technologies, the problem of manual verification and disassembly in the existing technology can be solved, and intelligent remote monitoring and fault positioning are achieved, and equipment operation efficiency is improved.

CN118999666BActive Publication Date: 2025-05-09SICHUAN HONGZHI YUANDA TECH CO LTD
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Patent Information

Application Number
CN202411077609.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-05-09
Estimated Expiration
2044-08-07

AI Technical Summary

Technical Problem

At this stage, network security protection devices require manual verification and disassembly before maintenance, which is extremely inconvenient and does not meet the needs of remote intelligent monitoring and maintenance.

Method used

A data center network security protection system is designed, including marginalized network security protection devices, data transfer servers and smart terminals. Through components such as abnormal vibration detection, fan operation detection, airflow sensors and shed detection devices, intelligent remote monitoring and fault location of network security protection devices are realized.

Benefits of technology

It realizes intelligent remote monitoring of network security protection devices, reduces the duration of invalid operation, improves equipment operation efficiency, and can conduct comprehensive monitoring and classified positioning of faults caused by abnormal vibration.

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Patent Text Reader

Abstract

The present invention relates to a data center network security protection method, which belongs to the field of network security technology. Through the cooperation between a marginalized network security protection device, a data transfer server, and an intelligent terminal, intelligent remote monitoring of the network security protection device can be realized. By designing a coordination scheme between an abnormal vibration detection device, a fan operation detection device, a first airflow sensor, a second airflow sensor, a dust collection pipe detachment detection device, a collection pipe detachment detection device, and a main control device, a comprehensive monitoring can be performed on the internal component failures of the marginalized network security protection device caused by abnormal vibration. By triggering subsequent tests through the detection results of abnormal vibration, the duration of invalid operation of the marginalized network security protection device can be greatly reduced, and the operation efficiency of the equipment can be improved. According to the detection results of the first and second airflow sensors, combined with the dust collection pipe detachment detection device and the collection pipe detachment detection device, the classification and positioning of abnormal faults can be realized.
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Description

Technical Field

[0001] The present invention belongs to the technical field of network security, and in particular relates to a data center network security protection system and method. Background Art

[0002] The commonly used network security protection device (CN215935406U) at this stage includes a baffle, and the number of baffles is two. The two baffles are fixedly connected to the computer body on the opposite side, and the bottom of the two baffles is fixedly connected to the dust box on the opposite side, and the top of the baffle is fixedly connected to the heat sink. Through the coordinated use of the baffle, the computer body, the dust box, the heat sink, the fan, the collection pipe, the dust box, the dust collection pipe, the partition, the filter box, the filter element, the gear, the tooth plate, the movable plate and the heat sink, it has the advantage of improving the security of the network security protection device, and can effectively solve the current problems of the network security protection device based on the intelligent terminal, the dust removal and heat dissipation effect is not ideal, there is too much dust inside the computer, or the temperature is too high, which are very easy to affect the normal operation of the computer and are prone to hidden dangers, so the dust removal and heat dissipation problems need to be timely.

[0003] However, the specific operation status of this network security protection device needs to be manually verified, and relevant staff can only carry out inspection and maintenance after disassembling the network security protection device, which is extremely inconvenient and does not conform to the current remote intelligent monitoring and maintenance.

[0004] Therefore, at this stage, it is necessary to design a data center network security protection system, method and storage medium to solve the above problems. Summary of the invention

[0005] The purpose of the present invention is to provide a data center network security protection system, method and storage medium, which are used to solve the technical problems existing in the above-mentioned prior art. The specific operating conditions of the commonly used network security protection devices at this stage need to be manually verified, and the relevant staff can only dismantle the network security protection devices before carrying out inspection and maintenance, which is extremely inconvenient and does not conform to the current remote intelligent monitoring and maintenance.

[0006] To achieve the above object, the technical solution of the present invention is:

[0007] A data center network security protection system comprises an edge network security protection device, a data transfer server, and an intelligent terminal, wherein the edge network security protection device is connected to the intelligent terminal network through the data transfer server;

[0008] The marginalized network security protection device comprises an abnormal vibration detection device, a fan operation detection device, a first airflow sensor, a second airflow sensor, a dust collection pipe fall-off detection device, a collection pipe fall-off detection device, and a main control device, and the main control device is respectively connected to the abnormal vibration detection device, the fan operation detection device, the first airflow sensor, the second airflow sensor, the dust collection pipe fall-off detection device, and the collection pipe fall-off detection device;

[0009] The abnormal vibration detection device is used to detect whether the marginalized network security protection device has abnormal vibration;

[0010] The fan operation detection device is used to detect whether the fan is running and obtain the actual operating state of the fan; wherein, when the actual operating state of the fan is determined, the airflow in the dust collecting pipe and the airflow in the collecting pipe are also determined accordingly, and are respectively recorded as the first standard airflow and the second standard airflow;

[0011] The first airflow sensor is used to detect the real-time airflow in the dust collecting pipe, which is recorded as the first real-time airflow, and determine whether the first real-time airflow matches the first standard airflow;

[0012] The second airflow sensor is used to detect the real-time airflow in the collection pipe, which is recorded as the second real-time airflow, and to determine whether the second real-time airflow matches the second standard airflow;

[0013] The dust collecting pipe falling off detection device is used to detect whether the dust collecting pipe has fallen off;

[0014] The collecting tube falling-off detection device is used to detect whether the collecting tube has fallen off;

[0015] The main control device is used to control the opening and closing of the abnormal vibration detection device, the fan operation detection device, the first airflow sensor, the second airflow sensor, and the dust collection pipe shedding detection device, and is also used to interact with the data transfer server.

[0016] Further, the main control device controls the initial state of the abnormal vibration detection device to be normally open, and controls the initial states of the fan operation detection device, the first airflow sensor, the second airflow sensor, the dust collection pipe shedding detection device, and the collection pipe shedding detection device to be normally closed;

[0017] When the abnormal vibration detection device detects that the marginalized network security protection device has abnormal vibration, the main control device controls the fan operation detection device to turn on;

[0018] When the fan operation detection device detects that the fan is running, the main control device controls the first airflow sensor and the second airflow sensor to turn on;

[0019] If the first airflow sensor determines that the first real-time airflow matches the first standard airflow, and the second airflow sensor determines that the second real-time airflow does not match the second standard airflow, the main control device controls the collection tube shedding detection device to start;

[0020] If the first airflow sensor determines that the first real-time airflow does not match the first standard airflow, the main control device controls the dust pipe fall-off detection device to turn on.

[0021] Furthermore, the marginalized network security protection device further comprises a fan loosening detection device, and the fan loosening detection device is connected to the main control device;

[0022] The fan looseness detection device is used to detect whether the fan is abnormally loose;

[0023] The main control device controls the initial state of the fan looseness detection device to be normally closed;

[0024] When the dust collecting pipe falling-off detection device detects that the dust collecting pipe has not fallen off, the main control device controls the fan loosening detection device to turn on.

[0025] Furthermore, the marginalized network security protection device further includes a fan abnormal noise detection device, and the fan abnormal noise detection device is connected to the main control device;

[0026] The fan abnormal noise detection device is used to detect whether there is abnormal noise when the fan is running;

[0027] The main control device controls the initial state of the fan abnormal noise detection device to be normally closed;

[0028] When the fan operation detection device detects that the fan is in operation, the main control device controls the fan abnormal sound detection device to turn on;

[0029] When the abnormal noise detection device for the fan detects that an abnormal noise exists during the operation of the fan, the main control device controls the looseness detection device for the fan to be turned on.

[0030] Furthermore, the marginalized network security protection device further comprises a filter box position detection device, and the filter box position detection device is connected to the main control device;

[0031] The filter box position detection device is used to detect whether the position of the filter box relative to the dust box changes;

[0032] The main control device controls the initial state of the filter box position detection device to be normally closed;

[0033] When the abnormal vibration detection device detects that the marginalized network security protection device has abnormal vibration, the main control device controls the filter box position detection device to turn on.

[0034] Furthermore, the edge network security protection device further includes an abnormal fault locating device, and the main control device is connected to the abnormal fault locating device;

[0035] When the dust pipe detachment detection device is used to detect that the dust pipe has detached, the collection pipe detachment detection device is used to detect that the collection pipe has detached, the fan loosening detection device detects that the fan is abnormally loose, or the filter box position detection device detects that the position of the filter box relative to the dust box has changed, the abnormal fault locating device issues a corresponding abnormal alarm.

[0036] A data center network security protection method adopts a data center network security protection system as described above to perform network security protection.

[0037] A storage medium, characterized in that a computer program is stored on the storage medium, and when the computer program is run, a data center network security protection method as described above is executed.

[0038] Compared with the prior art, the present invention has the following beneficial effects:

[0039] One of the beneficial effects of this solution is that through the cooperation between the edge network security protection device, the data transfer server, and the intelligent terminal, intelligent remote monitoring of the network security protection device can be realized. By designing a coordination scheme between the abnormal vibration detection device, the fan operation detection device, the first airflow sensor, the second airflow sensor, the dust collection pipe detachment detection device, the collection pipe detachment detection device, and the main control device, a comprehensive monitoring of the internal component failures of the edge network security protection device caused by abnormal vibration can be carried out. By triggering subsequent tests based on the detection results of abnormal vibration, the duration of ineffective operation of the edge network security protection device can be greatly reduced, thereby improving the operation efficiency of the equipment. Since airflow detection is involved in the subsequent process, the fan operation detection is started first. According to the detection results of the first airflow sensor and the second airflow sensor, combined with the dust collection pipe detachment detection device and the collection pipe detachment detection device, the classification and positioning of abnormal faults can be achieved. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] Figure 1 This is a schematic diagram of the system structure of the implementation scheme.

[0041] Figure 2 This is a schematic diagram of the system operation principle of the implementation scheme. DETAILED DESCRIPTION

[0042] like Figure 1 As shown, a data center network security protection system is proposed, including an edge network security protection device, a data transfer server, and an intelligent terminal, wherein the edge network security protection device is connected to the intelligent terminal network through the data transfer server;

[0043] The marginalized network security protection device comprises an abnormal vibration detection device, a fan operation detection device, a first airflow sensor, a second airflow sensor, a dust collection pipe fall-off detection device, a collection pipe fall-off detection device, and a main control device, and the main control device is respectively connected to the abnormal vibration detection device, the fan operation detection device, the first airflow sensor, the second airflow sensor, the dust collection pipe fall-off detection device, and the collection pipe fall-off detection device;

[0044] The abnormal vibration detection device is used to detect whether the marginalized network security protection device has abnormal vibration;

[0045] The fan operation detection device is used to detect whether the fan is running and obtain the actual operating state of the fan; wherein, when the actual operating state of the fan is determined, the airflow in the dust collecting pipe and the airflow in the collecting pipe are also determined accordingly, and are respectively recorded as the first standard airflow and the second standard airflow;

[0046] The first airflow sensor is used to detect the real-time airflow in the dust collecting pipe, which is recorded as the first real-time airflow, and determine whether the first real-time airflow matches the first standard airflow;

[0047] The second airflow sensor is used to detect the real-time airflow in the collection pipe, which is recorded as the second real-time airflow, and to determine whether the second real-time airflow matches the second standard airflow;

[0048] The dust collecting pipe falling off detection device is used to detect whether the dust collecting pipe has fallen off;

[0049] The collecting tube falling-off detection device is used to detect whether the collecting tube has fallen off;

[0050] The main control device is used to control the opening and closing of the abnormal vibration detection device, the fan operation detection device, the first airflow sensor, the second airflow sensor, and the dust collection pipe shedding detection device, and is also used to interact with the data transfer server.

[0051] In the above scheme, intelligent remote monitoring of the network security protection device can be realized through the cooperation between the edge network security protection device, the data transfer server, and the intelligent terminal. The coordination scheme between the abnormal vibration detection device, the fan operation detection device, the first airflow sensor, the second airflow sensor, the dust collection pipe fall-off detection device, the collection pipe fall-off detection device, and the main control device is designed to comprehensively monitor the internal component failures of the edge network security protection device caused by abnormal vibration.

[0052] Further, the main control device controls the initial state of the abnormal vibration detection device to be normally open, and controls the initial states of the fan operation detection device, the first airflow sensor, the second airflow sensor, the dust collection pipe shedding detection device, and the collection pipe shedding detection device to be normally closed;

[0053] When the abnormal vibration detection device detects that the marginalized network security protection device has abnormal vibration, the main control device controls the fan operation detection device to turn on;

[0054] When the fan operation detection device detects that the fan is running, the main control device controls the first airflow sensor and the second airflow sensor to turn on;

[0055] If the first airflow sensor determines that the first real-time airflow matches the first standard airflow, and the second airflow sensor determines that the second real-time airflow does not match the second standard airflow, the main control device controls the collection tube shedding detection device to start;

[0056] If the first airflow sensor determines that the first real-time airflow does not match the first standard airflow, the main control device controls the dust pipe fall-off detection device to turn on.

[0057] In the above scheme, the detection results of abnormal vibration are used to trigger subsequent tests, which can greatly reduce the duration of ineffective operation of marginal network security protection devices and improve the operating efficiency of the equipment. Since airflow detection is involved in the subsequent process, the fan operation detection is started first. According to the detection results of the first airflow sensor and the second airflow sensor, combined with the dust collection pipe detachment detection device and the collection pipe detachment detection device, abnormal fault classification and positioning can be achieved.

[0058] Furthermore, the marginalized network security protection device further comprises a fan loosening detection device, and the fan loosening detection device is connected to the main control device;

[0059] The fan looseness detection device is used to detect whether the fan is abnormally loose;

[0060] The main control device controls the initial state of the fan looseness detection device to be normally closed;

[0061] When the dust collecting pipe falling-off detection device detects that the dust collecting pipe has not fallen off, the main control device controls the fan loosening detection device to turn on.

[0062] In the above scheme, considering that the dust collecting tube falling-off detection device detects that the dust collecting tube has not fallen off, the fan may be loose, therefore, a fan loosening detection device is designed to overcome the above defect.

[0063] Furthermore, the marginalized network security protection device further includes a fan abnormal noise detection device, and the fan abnormal noise detection device is connected to the main control device;

[0064] The fan abnormal noise detection device is used to detect whether there is abnormal noise when the fan is running;

[0065] The main control device controls the initial state of the fan abnormal noise detection device to be normally closed;

[0066] When the fan operation detection device detects that the fan is in operation, the main control device controls the fan abnormal sound detection device to turn on;

[0067] When the abnormal noise detection device for the fan detects that an abnormal noise exists during the operation of the fan, the main control device controls the looseness detection device for the fan to be turned on.

[0068] In the above scheme, when the fan is in operation, if the fan falls off, abnormal noise will occur during the operation of the fan. Therefore, the abnormal noise detection result of the fan is designed to trigger the fan looseness detection.

[0069] Furthermore, the marginalized network security protection device further comprises a filter box position detection device, and the filter box position detection device is connected to the main control device;

[0070] The filter box position detection device is used to detect whether the position of the filter box relative to the dust box changes;

[0071] The main control device controls the initial state of the filter box position detection device to be normally closed;

[0072] When the abnormal vibration detection device detects that the marginalized network security protection device has abnormal vibration, the main control device controls the filter box position detection device to turn on.

[0073] In the above scheme, abnormal vibration may cause the position of the filter box relative to the dust box to change. Since the change in the position of the filter box will also affect the subsequent airflow detection, it may cause a series of subsequent detection malfunctions. Therefore, a filter box position detection device is designed to overcome this problem.

[0074] Furthermore, the edge network security protection device further includes an abnormal fault locating device, and the main control device is connected to the abnormal fault locating device;

[0075] When the dust pipe detachment detection device is used to detect that the dust pipe has detached, the collection pipe detachment detection device is used to detect that the collection pipe has detached, the fan loosening detection device detects that the fan is abnormally loose, or the filter box position detection device detects that the position of the filter box relative to the dust box has changed, the abnormal fault locating device issues a corresponding abnormal alarm.

[0076] A data center network security protection method adopts a data center network security protection system as described above to perform network security protection.

[0077] A storage medium, characterized in that a computer program is stored on the storage medium, and when the computer program is run, a data center network security protection method as described above is executed.

Claims

1. A data center network security protection system, characterized in that: It includes an edge network security protection device, a data transfer server, and an intelligent terminal, wherein the edge network security protection device is connected to the intelligent terminal network through the data transfer server; The marginalized network security protection device comprises an abnormal vibration detection device, a fan operation detection device, a first airflow sensor, a second airflow sensor, a dust collection pipe fall-off detection device, a collection pipe fall-off detection device, and a main control device, and the main control device is respectively connected to the abnormal vibration detection device, the fan operation detection device, the first airflow sensor, the second airflow sensor, the dust collection pipe fall-off detection device, and the collection pipe fall-off detection device; The abnormal vibration detection device is used to detect whether the marginalized network security protection device has abnormal vibration; The fan operation detection device is used to detect whether the fan is running and obtain the actual operating state of the fan; wherein, when the actual operating state of the fan is determined, the airflow in the dust collecting pipe and the airflow in the collecting pipe are also determined accordingly, and are respectively recorded as the first standard airflow and the second standard airflow; The first airflow sensor is used to detect the real-time airflow in the dust collecting pipe, which is recorded as the first real-time airflow, and determine whether the first real-time airflow matches the first standard airflow; The second airflow sensor is used to detect the real-time airflow in the collection pipe, which is recorded as the second real-time airflow, and to determine whether the second real-time airflow matches the second standard airflow; The dust collecting pipe falling off detection device is used to detect whether the dust collecting pipe has fallen off; The collecting tube falling-off detection device is used to detect whether the collecting tube has fallen off; The main control device is used to control the opening and closing of the abnormal vibration detection device, the fan operation detection device, the first airflow sensor, the second airflow sensor, and the dust collection pipe shedding detection device, and is also used to interact with the data transfer server for data; The main control device controls the initial state of the abnormal vibration detection device to be normally open, and controls the initial states of the fan operation detection device, the first airflow sensor, the second airflow sensor, the dust collection pipe shedding detection device, and the collection pipe shedding detection device to be normally closed; When the abnormal vibration detection device detects that the marginalized network security protection device has abnormal vibration, the main control device controls the fan operation detection device to turn on; When the fan operation detection device detects that the fan is running, the main control device controls the first airflow sensor and the second airflow sensor to turn on; If the first airflow sensor determines that the first real-time airflow matches the first standard airflow, and the second airflow sensor determines that the second real-time airflow does not match the second standard airflow, the main control device controls the collection tube shedding detection device to start; If the first airflow sensor determines that the first real-time airflow does not match the first standard airflow, the main control device controls the dust pipe fall-off detection device to turn on.

2. According to claim 1, a data center network security protection system is characterized in that: The marginalized network security protection device further includes a fan loosening detection device, and the fan loosening detection device is connected to the main control device; The fan looseness detection device is used to detect whether the fan is abnormally loose; The main control device controls the initial state of the fan looseness detection device to be normally closed; When the dust collecting pipe falling-off detection device detects that the dust collecting pipe has not fallen off, the main control device controls the fan loosening detection device to turn on.

3. A data center network security protection system according to claim 2, characterized in that: The marginalized network security protection device further includes a fan abnormal noise detection device, and the fan abnormal noise detection device is connected to the main control device; The fan abnormal noise detection device is used to detect whether there is abnormal noise when the fan is running; The main control device controls the initial state of the fan abnormal noise detection device to be normally closed; When the fan operation detection device detects that the fan is in operation, the main control device controls the fan abnormal sound detection device to turn on; When the abnormal noise detection device for the fan detects that an abnormal noise exists during the operation of the fan, the main control device controls the looseness detection device for the fan to be turned on.

4. A data center network security protection system according to claim 3, characterized in that: The marginalized network security protection device further comprises a filter box position detection device, and the filter box position detection device is connected to the main control device; The filter box position detection device is used to detect whether the position of the filter box relative to the dust box changes; The main control device controls the initial state of the filter box position detection device to be normally closed; When the abnormal vibration detection device detects that the marginalized network security protection device has abnormal vibration, the main control device controls the filter box position detection device to turn on.

5. A data center network security protection system according to claim 4, characterized in that: The marginalized network security protection device further comprises an abnormal fault locating device, and the main control device is connected to the abnormal fault locating device; When the dust pipe detachment detection device detects that the dust pipe has detached, the collection pipe detachment detection device detects that the collection pipe has detached, the fan loosening detection device detects that the fan is abnormally loose, or the filter box position detection device detects that the position of the filter box relative to the dust box has changed, the abnormal fault locating device issues a corresponding abnormal alarm.

6. A data center network security protection method, characterized in that: A data center network security protection system as described in any one of claims 1 to 5 is used for network security protection.

7. A storage medium, characterized in that: The storage medium stores a computer program, and when the computer program is run, a data center network security protection method as claimed in claim 6 is executed.

Citation Information

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