A noise prevention method, ear muff and related device for a server test laboratory

CN117425108BActive Publication Date: 2026-09-25POWERLEADER COMPUTER SYST CO LTD
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Patent Information

Application Number
CN202311326396.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-12
Publication Date
2026-09-25
Estimated Expiration
2043-10-12

AI Technical Summary

Benefits of technology

[0051]本申请提供用于服务器测试实验室的防噪方法,首先获取服务器测试实验室的人员数量,接着获取所述服务器测试实验室中各个服务器的噪音数据,确定目标噪音数据,判断所述各个服务器的噪音数据是否大于或等于所述目标噪音数据;若是,则发出提醒信息,所述提醒信息为提醒实验室的人员佩戴防噪耳套的信息;当确定所述提醒信息发出时间达到预设时间后,获取佩戴所述防噪耳套的实验室人员数据;判断佩戴所述防噪耳套的实验室人员数据与所述服务器测试实验室的人员数量是否相同;若否,则发出警报信息,所述警报信息包含服务器会在预设时间后强制关机的信息。

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Abstract

The embodiment of the application discloses a noise prevention method, an ear cap and related equipment for a server test laboratory, which can play a reminding and forced protection role, maximally protects laboratory personnel from noise disturbance, reduces the probability of occupational diseases, and protects the health of laboratory personnel. The application comprises the following steps: acquiring the number of personnel present in the server test laboratory; acquiring noise data of each server in the server test laboratory; determining target noise data; determining whether the noise data of each server is greater than or equal to the target noise data; if yes, issuing a reminder information, wherein the reminder information is: reminding the laboratory personnel to wear a noise prevention ear cap; after determining that the reminder information issuing time reaches a preset time, acquiring laboratory personnel data wearing the noise prevention ear cap; and determining whether the laboratory personnel data wearing the noise prevention ear cap is same as the number of personnel in the server test laboratory.
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Description

Technical Field

[0001] This application relates to the field of noise reduction equipment technology, and in particular to a noise reduction method, ear covers and related equipment for a server testing laboratory. Background Technology

[0002] Currently, almost all server testing labs are extremely noisy, especially high-power machines such as GPU servers, where noise levels can reach or exceed 90dB. This poses a significant hazard to lab personnel and increases the likelihood of occupational illnesses. Noise can cause various health problems, such as sleep disorders, hearing impairments, and mental health issues. Generally, the longer the exposure to noise and the higher the decibel level, the greater the harm to the human body.

[0003] 1. Sleep Disorders: Noise levels of 50-60 dB are generally considered disturbing and can disrupt rest and sleep, making it difficult to fall asleep or causing awakenings during sleep. This is particularly impactful for those who need rest, especially patients with various illnesses, easily leading to fatigue, drowsiness, and weakness.

[0004] 2. Hearing impairment: Prolonged exposure to noise levels above 90 dB can cause tinnitus. Sudden noises, such as explosions, can cause hearing loss or permanent deafness when their intensity reaches 120 dB or higher.

[0005] 3. Mental Disorders: Prolonged exposure to noise levels above 90 dB can cause anxiety, irritability, and even develop into mental illnesses such as anxiety disorders. For patients with pre-existing mental disorders, frequent exposure to noisy environments is extremely detrimental to recovery. Noise may become a trigger for anxiety and depression, and may even worsen their condition.

[0006] 4. Other hazards: Long-term exposure to noise can cause dizziness, headaches and other neurological discomfort. In addition, noise can also cause stress response in the human body, leading to gastrointestinal dysfunction and increased adrenal secretion, causing vasoconstriction and increased blood pressure. It may cause transient blood pressure rise or even develop into hypertension, which can cause significant harm to the human body.

[0007] Currently, some server testing labs address noise issues by providing sound-absorbing foam. Testers insert the foam into their ears for noise reduction. However, the sound-absorbing foam has poor sound insulation, a short lifespan, and cannot provide warnings or forced protection. For testers in server testing labs, noise is a problem that urgently needs to be solved.

[0008] Based on this, this application provides a noise reduction method, ear covers, and related equipment for a server testing laboratory to solve the above problems. Summary of the Invention

[0009] This application provides a noise reduction method, earmuffs, and related equipment for a server testing laboratory. These methods serve as reminders and mandatory protection, maximizing the protection of laboratory personnel from noise pollution, reducing the probability of occupational diseases, and protecting the health of laboratory personnel.

[0010] The first aspect of this application provides a noise reduction method for a server testing laboratory, comprising:

[0011] Obtain the number of personnel in the server testing lab;

[0012] Obtain noise data from each server in the server testing laboratory;

[0013] Determine the target noise data;

[0014] Determine whether the noise data of each server is greater than or equal to the target noise data;

[0015] If so, a reminder message will be issued, which will remind laboratory personnel to wear noise-canceling earmuffs;

[0016] Once the time when the reminder message is sent reaches the preset time, data on laboratory personnel wearing the noise-canceling earmuffs is obtained;

[0017] Determine whether the number of laboratory personnel wearing the noise-canceling earmuffs is the same as the number of personnel in the server testing laboratory;

[0018] If not, an alarm message will be issued, which includes information that the server will be forcibly shut down after a preset time.

[0019] Optionally, obtaining the noise data of each server in the server testing laboratory includes:

[0020] Determine the preset distance between the noise detector and each server in the server testing laboratory;

[0021] Noise data of each server in the server testing laboratory is acquired within the preset distance.

[0022] Optionally, obtaining the number of personnel in the server testing lab includes:

[0023] The number of personnel conducting the server-side test experiment is obtained through the human body sensor.

[0024] Optionally, after determining whether the number of laboratory personnel wearing the noise-canceling earmuffs is the same as the number of personnel in the server testing laboratory, the method further includes:

[0025] If so, then obtain the in-ear noise data inside the noise-canceling earmuff;

[0026] Determine the target in-ear noise data;

[0027] When it is determined that the in-ear noise data is greater than or equal to the target in-ear noise data, a replacement prompt message is issued, which includes a prompt message to replace the noise-canceling ear tips.

[0028] Optionally, before acquiring data on laboratory personnel wearing the noise-canceling earmuffs after determining that the reminder message has been sent for a preset time, the method further includes:

[0029] Set the preset time.

[0030] The second aspect of this application provides a noise-canceling earmuff for personnel conducting server testing experiments, comprising: an earmuff body, a body temperature sensor, a noise detection module, a data processing module, and a data transmission module;

[0031] The body temperature sensor is installed on one side of the ear cup body, and the noise detection module, the data processing module and the data transmission module are installed on the other side of the ear cup body. The noise detection module and the body temperature sensor are respectively connected to the data processing module, and the data processing module is connected to the data transmission module.

[0032] The body temperature sensor is used to detect whether the experimental test personnel are wearing earmuffs and sends the data information to the data processing module.

[0033] The noise detection module is used to detect noise data transmitted to the ears of experimental test personnel after they wear ear covers.

[0034] The data processing module is used to process data information and noise data, and transmit them to the intelligent management processor through the data transmission module, so that the intelligent management processor can uniformly manage the relevant equipment in the server testing laboratory.

[0035] Optionally, the body temperature sensor, the noise detection module, the data processing module, and the data transmission module can all be detachably installed on the earpiece body.

[0036] A third aspect of this application provides a noise reduction system for a server testing laboratory, comprising:

[0037] The first acquisition unit is used to acquire the number of personnel in the server testing laboratory;

[0038] The second acquisition unit is used to acquire noise data of each server in the server testing laboratory;

[0039] The determination unit is used to determine the target noise data;

[0040] The first judgment unit is used to determine whether the noise data of each server is greater than or equal to the target noise data;

[0041] The first issuing unit is used to issue a reminder message when the first judging unit determines that the noise data of each server is greater than or equal to the target noise data. The reminder message is a message reminding laboratory personnel to wear noise-canceling earmuffs.

[0042] The third acquisition unit is used to acquire data on laboratory personnel wearing the noise-canceling earmuffs after determining that the reminder message was sent at a preset time.

[0043] The second judgment unit is used to determine whether the data of laboratory personnel wearing the noise-canceling earmuffs is the same as the number of personnel in the server test laboratory;

[0044] The second issuing unit is used to issue an alarm message when the second judgment unit determines that the number of laboratory personnel wearing the noise-canceling earmuffs is different from the number of personnel in the server test laboratory. The alarm message includes information that the server will be forcibly shut down after a preset time.

[0045] A fourth aspect of this application provides a noise reduction device for a server testing laboratory, comprising:

[0046] Processor, memory, input / output units, and bus;

[0047] The processor is connected to the memory, the input / output unit, and the bus;

[0048] The memory stores a program that the processor invokes to execute a noise reduction method for a server testing laboratory as described in the first aspect and any one of the first aspects.

[0049] The fifth aspect of this application provides a computer-readable storage medium on which a program is stored, which, when executed on a computer, performs the noise reduction method for a server testing laboratory as described in the first aspect and any one of the first aspects.

[0050] As can be seen from the above technical solutions, the embodiments of this application have the following advantages:

[0051] This application provides a noise reduction method for a server testing laboratory. First, the number of personnel in the server testing laboratory is obtained. Then, noise data for each server in the server testing laboratory is obtained, a target noise data is determined, and it is determined whether the noise data of each server is greater than or equal to the target noise data. If so, a reminder message is issued, which reminds laboratory personnel to wear noise-canceling earmuffs. After a preset time has elapsed since the reminder message was issued, data on laboratory personnel wearing the noise-canceling earmuffs is obtained. It is determined whether the data on laboratory personnel wearing the noise-canceling earmuffs is the same as the number of personnel in the server testing laboratory. If not, an alarm message is issued, which includes information that the server will be forcibly shut down after a preset time.

[0052] Therefore, it can be seen that the noise reduction method of this application for server testing laboratories can play a role in reminding and enforcing protection, maximizing the protection of laboratory personnel from noise disturbance, reducing the probability of occupational diseases, and protecting the physical health of laboratory personnel. Attached Figure Description

[0053] Figure 1 This is a schematic diagram of an embodiment of the noise reduction method used in a server testing laboratory according to this application;

[0054] Figure 2 This is a structural schematic diagram of the noise-canceling earmuffs used in the server testing laboratory according to this application;

[0055] Figure 3 This is a schematic diagram of an embodiment of the noise reduction system used in a server testing laboratory according to this application;

[0056] Figure 4 This is a schematic diagram of an embodiment of the noise reduction device used in a server testing laboratory according to this application. Detailed Implementation

[0057] Currently, some server testing labs address noise issues by providing sound-absorbing foam. Testers insert the foam into their ears for noise reduction. However, the sound-absorbing foam has poor sound insulation, a short lifespan, and cannot provide warnings or forced protection. For testers in server testing labs, noise is a problem that urgently needs to be solved.

[0058] Based on this, this application provides a noise reduction method, ear covers and related equipment for server testing laboratories, which can serve as a reminder and mandatory protection, maximizing the protection of laboratory personnel from noise disturbance, reducing the probability of occupational diseases, and protecting the physical health of laboratory personnel.

[0059] It should be noted that the noise reduction method for server testing laboratories provided in this application can be applied to terminals, systems, and servers. For example, the terminal can be a smartphone, computer, tablet, intelligent management processor, smart TV, portable computer terminal, or a desktop computer or other fixed terminal. For ease of explanation, this application uses an intelligent management processor as the execution subject for illustration.

[0060] Please see Figure 1 The first aspect of this application provides an embodiment of a noise reduction method for a server testing laboratory, comprising:

[0061] 101. The intelligent management processor obtains the number of personnel in the server testing laboratory;

[0062] In this embodiment, human body sensors are installed in various locations within the server testing laboratory. The number and placement of these sensors are not specifically limited in this application and can be set according to actual conditions. The human body sensors accurately detect the number of testers in the server testing laboratory and send this information to the intelligent management processor. Upon receiving the number of testers, the intelligent management server executes step 102.

[0063] 102. The intelligent management processor acquires noise data from each server in the server testing laboratory;

[0064] In this embodiment of the application, after obtaining the number of personnel in the server testing laboratory, the intelligent management processor further obtains the noise data of each server in the server testing laboratory. Since there are multiple servers in the server testing laboratory, when collecting the noise data of the server testing laboratory, it is necessary to collect the noise data of each server in the server testing laboratory.

[0065] Specifically, firstly, a preset distance is determined between the noise detectors and each server in the server testing laboratory. This means placing a noise detector around each server. This preset distance can be 30cm, 40cm, or 50cm, etc., and is not specifically limited here; it can be set according to the actual situation. In the following embodiment, a preset distance of 30cm is used as an example. A noise detector is placed 30cm away from each server. Each noise detector is wirelessly connected to the intelligent management processor. The noise detectors send the acquired noise data to the intelligent management processor in real time, and the intelligent management processor can perform further analysis and processing based on the acquired noise data.

[0066] 103. The intelligent management processor determines the target noise data;

[0067] In this application embodiment, the determination of the target noise data first needs to comply with the requirements of WHO (World Health Organization). Specifically, in this application, the target noise data is set to 50 dB, but the target noise data can also be set to other decibels, which can be set according to the actual situation.

[0068] 104. The intelligent management processor determines whether the noise data of each server is greater than or equal to the target noise data;

[0069] In this embodiment of the application, after the intelligent management processor obtains the noise data and target noise data of each server in the server testing laboratory, the intelligent management processor further determines whether the noise data of each server is greater than or equal to the target noise data. For example, when the noise data of one server is 80dB and the noise data of another server is 50dB, since the target noise data is determined to be 50dB, the intelligent management processor determines that the noise data of the two servers is greater than or equal to the target noise data, and then executes step 105.

[0070] 105. The intelligent management processor issues a reminder message, which is a reminder to laboratory personnel to wear noise-canceling earmuffs;

[0071] In this embodiment of the application, when the intelligent management processor determines that the noise data of each server is greater than or equal to the target noise data, it issues a reminder message. The reminder message is used to remind laboratory personnel to wear noise-canceling headphones. The reminder message can be in the form of an audible alarm or a light alarm, etc. The main purpose is to remind laboratory personnel to pay attention to wearing noise-canceling earmuffs to protect their ears from the influence of noise.

[0072] 106. The intelligent management processor determines a preset time;

[0073] 107. When the intelligent management processor determines that the reminder message was sent at a preset time, it acquires data on laboratory personnel wearing the noise-canceling earmuffs;

[0074] In this embodiment, the intelligent management processor determines a preset time, such as 5 minutes, 6 minutes, or 7 minutes. After the preset time is reached, the intelligent management processor issues a reminder message. Then, the intelligent management processor obtains data on laboratory personnel wearing noise-canceling earmuffs. It should be noted that a body temperature sensor is installed on the noise-canceling earmuffs, and the earmuffs are connected to the intelligent management processor. The body temperature sensor can determine whether laboratory personnel are wearing noise-canceling earmuffs. The noise-canceling earmuffs send the data obtained by the body temperature sensor to the intelligent management processor, enabling the intelligent management processor to determine the data of laboratory personnel wearing noise-canceling earmuffs.

[0075] 108. The intelligent management processor determines whether the data of laboratory personnel wearing the noise-canceling earmuffs is the same as the number of personnel in the server testing laboratory;

[0076] In this embodiment of the application, after the intelligent management processor obtains the data of laboratory personnel wearing noise-canceling earmuffs within a preset time, it further determines whether the data of laboratory personnel wearing noise-canceling earmuffs within the preset time is the same as the data of personnel in the server test laboratory. If they are the same, it means that all personnel in the test laboratory have worn noise-canceling earmuffs. If they are different, it means that not all personnel in the test laboratory have worn noise-canceling earmuffs. The intelligent management processor then executes step 109.

[0077] It should be noted that some noise-canceling earmuffs may experience a decrease or weakening of their noise-canceling effect after prolonged use, thus failing to provide noise protection when used by laboratory personnel. To effectively address this issue, this application provides the following solution:

[0078] When the intelligent management processor determines that the data of laboratory personnel wearing noise-canceling earmuffs within a preset time period is the same as the data of personnel in the server's testing laboratory, it further acquires the in-ear noise data inside the earmuffs. The earmuffs contain a noise detection module used to detect the noise data transmitted to the ears of the test personnel after they wear the earmuffs. It then determines the target in-ear noise data, which conforms to WHO requirements, i.e., the noise data entering the ear. When the determined in-ear noise data is greater than or equal to the target in-ear noise data, a replacement prompt is issued, including a message suggesting the replacement of the noise-canceling earmuffs. This means that the noise-canceling earmuffs are no longer effective at blocking noise, and the noise-canceling headphones need to be replaced to protect the health of the laboratory personnel and reduce or eliminate the impact of noise.

[0079] 109. The intelligent management processor issues an alarm message, which includes information that the server will be forcibly shut down after a preset time.

[0080] In this embodiment, if the data on laboratory personnel wearing noise-canceling earmuffs within a preset time period differs from the data on personnel in the server-tested laboratory, it indicates that some personnel in the laboratory are not wearing noise-canceling earmuffs. In this case, to protect the health of laboratory personnel and reduce the probability of occupational diseases, the intelligent management processor will issue an alarm message. This alarm message includes information that the server will be forcibly shut down after a preset time, meaning the server generating noise will be forcibly shut down. If laboratory personnel wear noise-canceling earmuffs within the specified time after receiving the alarm message, the alarm message and the forced shutdown instruction will be revoked.

[0081] Therefore, it can be seen that the noise reduction method of this application for server testing laboratories can play a role in reminding and enforcing protection, maximizing the protection of laboratory personnel from noise disturbance, reducing the probability of occupational diseases, and protecting the physical health of laboratory personnel.

[0082] Please see Figure 2 The second aspect of this application provides a noise-canceling earmuff for personnel conducting server testing experiments, comprising: an earmuff body 1, a body temperature sensor 2, a noise detection module 3, a data processing module 4, and a data transmission module 5;

[0083] A body temperature sensor 2 is installed on one side of the earbud body 1, and a noise detection module 3, a data processing module 4, and a data transmission module 5 are installed on the other side of the earbud body 1. The noise detection module 3 and the body temperature sensor 2 are respectively connected to the data processing module 4, and the data processing module 4 is connected to the data transmission module 5. The body temperature sensor 2 is used to detect whether the test personnel are wearing the earbuds and sends the data information to the data processing module 4. The noise detection module 3 is used to detect the noise data transmitted to the ears after the test personnel are wearing the earbuds. The data processing module 4 is used to process the data information and noise data and transmit them to the intelligent management processor through the data transmission module 5, so that the intelligent management processor can uniformly manage the relevant equipment in the server test laboratory. Among them, the body temperature sensor 2, the noise detection module 3, the data processing module 4, and the data transmission module 5 can all be detachably installed on the earbud body 1.

[0084] Please see Figure 3 The third aspect of this application provides a schematic diagram of an embodiment of a noise reduction system for a server testing laboratory, including:

[0085] The first acquisition unit 301 is used to acquire the number of personnel in the server testing laboratory;

[0086] The second acquisition unit 302 is used to acquire noise data of each server in the server testing laboratory;

[0087] Determining unit 303 is used to determine target noise data;

[0088] The first judgment unit 304 is used to determine whether the noise data of each server is greater than or equal to the target noise data;

[0089] The first issuing unit 305 is used to issue a reminder message when the first judging unit determines that the noise data of each server is greater than or equal to the target noise data. The reminder message is a reminder to laboratory personnel to wear noise-canceling earmuffs.

[0090] The third acquisition unit 306 is used to acquire data of laboratory personnel wearing the noise-canceling earmuffs after determining that the reminder information has been sent for a preset time.

[0091] The second judgment unit 307 is used to determine whether the data of laboratory personnel wearing the noise-canceling earmuffs is the same as the number of personnel in the server test laboratory;

[0092] The second issuing unit 308 is used to issue an alarm message when the second judgment unit determines that the number of laboratory personnel wearing the noise-canceling earmuffs is different from the number of personnel in the server test laboratory. The alarm message includes information that the server will be forcibly shut down after a preset time.

[0093] Please see Figure 4 The fourth aspect of this application provides a noise reduction device for a server testing laboratory, comprising:

[0094] Processor 401, memory 402, input / output unit 403, and bus 404;

[0095] The processor 401 is connected to the memory 402, the input / output unit 403 and the bus 404;

[0096] The memory 402 stores a program, which the processor 401 calls to execute the noise reduction method for a server testing laboratory as described in the first aspect and any one of the first aspects.

[0097] The fifth aspect of this application provides a computer-readable storage medium on which a program is stored, which, when executed on a computer, performs the noise reduction method for a server testing laboratory as described in the first aspect and any one of the first aspects.

[0098] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the systems, devices, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and will not be repeated here.

[0099] In the several embodiments provided in this application, it should be understood that the disclosed systems, apparatuses, and methods can be implemented in other ways. For example, the apparatus embodiments described above are merely illustrative; for instance, the division of units is only a logical functional division, and in actual implementation, there may be other division methods. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. Furthermore, the coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection between apparatuses or units through some interfaces, and may be electrical, mechanical, or other forms.

[0100] The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the units can be selected to achieve the purpose of this embodiment according to actual needs.

[0101] Furthermore, the functional units in the various embodiments of this application can be integrated into one processing unit, or each unit can exist physically separately, or two or more units can be integrated into one unit. The integrated unit can be implemented in hardware or as a software functional unit.

[0102] If the integrated unit is implemented as a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of this application. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.

Claims

1. A noise reduction method for a server testing laboratory, characterized in that, include: Obtain the number of personnel in the server testing lab; Obtain noise data from each server in the server testing laboratory; Determine the target noise data; Determine whether the noise data of each server is greater than or equal to the target noise data; If so, a reminder message will be issued, which will remind laboratory personnel to wear noise-canceling earmuffs; Once the time when the reminder message is sent reaches the preset time, data on laboratory personnel wearing the noise-canceling earmuffs is obtained; Determine whether the number of laboratory personnel wearing the noise-canceling earmuffs is the same as the number of personnel in the server testing laboratory; If not, an alarm message will be issued, which includes information that the server will be forcibly shut down after a preset time.

2. The noise reduction method for a server testing laboratory according to claim 1, characterized in that, The acquisition of noise data from each server in the server testing laboratory includes: Determine the preset distance between the noise detector and each server in the server testing laboratory; Noise data of each server in the server testing laboratory is acquired within the preset distance.

3. The noise reduction method for a server testing laboratory according to claim 1, characterized in that, The number of personnel in the server testing lab is obtained, including: The number of personnel in the server testing laboratory is obtained through human body sensors.

4. The noise reduction method for a server testing laboratory according to claim 1, characterized in that, After determining whether the number of laboratory personnel wearing the noise-canceling earmuffs is the same as the number of personnel in the server testing laboratory, the method further includes: If so, then obtain the in-ear noise data inside the noise-canceling earmuff; Determine the target in-ear noise data; When it is determined that the in-ear noise data is greater than or equal to the target in-ear noise data, a replacement prompt message is issued, which includes information on replacing the noise-canceling ear tips.

5. The noise reduction method for a server testing laboratory according to claim 1, characterized in that, Before acquiring data on laboratory personnel wearing the noise-canceling earmuffs after determining that the reminder message has been sent for a preset time, the method further includes: Set the preset time.

6. A noise reduction system for a server testing laboratory, characterized in that, include: The first acquisition unit is used to acquire the number of personnel in the server testing laboratory; The second acquisition unit is used to acquire noise data of each server in the server testing laboratory; The determination unit is used to determine the target noise data; The first judgment unit is used to determine whether the noise data of each server is greater than or equal to the target noise data; The first issuing unit is used to issue a reminder message when the first judging unit determines that the noise data of each server is greater than or equal to the target noise data. The reminder message is a message reminding laboratory personnel to wear noise-canceling earmuffs. The third acquisition unit is used to acquire data on laboratory personnel wearing the noise-canceling earmuffs after determining that the reminder message was sent at a preset time. The second judgment unit is used to determine whether the data of laboratory personnel wearing the noise-canceling earmuffs is the same as the number of personnel in the server test laboratory; The second issuing unit is used to issue an alarm message when the second judgment unit determines that the number of laboratory personnel wearing the noise-canceling earmuffs is different from the number of personnel in the server test laboratory. The alarm message includes information that the server will be forcibly shut down after a preset time.

7. A noise reduction device for a server testing laboratory, characterized in that, include: Processor, memory, input / output units, and bus; The processor is connected to the memory, the input / output unit, and the bus; The memory stores a program that the processor invokes to execute the noise reduction method for a server testing laboratory as described in any one of claims 1 to 4.

8. A computer-readable storage medium having a program stored thereon, the program performing, when executed on a computer, the noise reduction method for a server testing laboratory as described in any one of claims 1 to 4.

Citation Information

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