Device cabin temperature control method and device, computer device, and storage medium

By monitoring the operating status and sealing properties of the temperature control equipment in the equipment compartment, the object to be controlled is identified and corresponding control is implemented, thus solving the temperature regulation problem caused by the failure of the temperature control equipment or the failure of the sealing in the equipment compartment, and ensuring the stable operation of the equipment in the equipment compartment.

CN116880609BActive Publication Date: 2026-07-21CHINA TELECOM CORP LTD TECHNOLOGY INNOVATION CENTER +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHINA TELECOM CORP LTD TECHNOLOGY INNOVATION CENTER
Filing Date
2023-07-28
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

When the temperature control equipment in the equipment compartment malfunctions or the sealing fails, it cannot effectively provide cooling or heating, leading to operational accidents of the communication equipment in the equipment compartment, and there is a lack of effective solutions.

Method used

By monitoring the operating status of the temperature control equipment inside the equipment compartment and the sealing properties inside the compartment, the object to be controlled is determined to be the external temperature control equipment or the door, and corresponding control is carried out to adjust the temperature of the equipment compartment, including starting or stopping the external temperature control equipment and the door.

Benefits of technology

When the temperature control equipment malfunctions or the sealing performance changes, it can effectively adjust the temperature inside the equipment compartment, ensuring the stable operation of the equipment inside the compartment and preventing operational accidents.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a device cabin temperature control method and device, computer equipment and storage medium. The method can be applied to the technical field of intelligent control, and specifically can include: obtaining the running state of an in-cabin temperature control device arranged in a device cabin and the in-cabin sealing property of the device cabin, determining a to-be-controlled object of the device cabin according to the running state of the in-cabin temperature control device and the in-cabin sealing property of the device cabin, wherein the to-be-controlled object is an out-cabin temperature control device arranged outside the device cabin or the out-cabin temperature control device and a cabin door of the device cabin, and the temperature of the device cabin is adjusted by controlling the to-be-controlled object. In the case that the in-cabin temperature control device fails or the in-cabin sealing property of the device cabin changes, the temperature in the device cabin can be adjusted by controlling the to-be-controlled object, so that the devices in the device cabin can be ensured to stably and normally operate.
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Description

Technical Field

[0001] This application relates to the field of intelligent control technology, specifically to a method, apparatus, computer equipment, and storage medium for controlling the temperature of an equipment compartment. Background Technology

[0002] In the latest generation of equipment compartments (e.g., micro-DC compartments), temperature control equipment and the cabinets being cooled or heated are housed in the same enclosed environment, isolating the interior from the exterior and reducing heat exchange between the two environments. This effectively improves the energy efficiency ratio of the temperature control equipment while significantly enhancing cooling or heating performance. For example, the new generation of micro-DC compartments includes an in-cabin air conditioner to provide cooling for the communication equipment within the compartment, improving both the energy efficiency ratio of the air conditioner and the overall cooling effect.

[0003] However, if the temperature control equipment in the equipment compartment malfunctions and cannot provide cooling or heating normally, the communication equipment in the equipment compartment may experience operational accidents due to the inability to receive effective cooling or heating. Currently, there is no effective solution. Summary of the Invention

[0004] Therefore, it is necessary to provide a method, apparatus, computer equipment, and storage medium for effectively controlling the temperature inside an equipment compartment, in response to the aforementioned technical problems.

[0005] In a first aspect, this application provides a method for controlling the temperature of an equipment compartment, the method comprising:

[0006] Obtain the operating status of the cabin temperature control equipment deployed in the equipment compartment, as well as the cabin sealing properties;

[0007] Based on the operating status of the temperature control equipment inside the cabin and the sealing properties of the cabin, the object to be controlled in the equipment cabin is determined; wherein, the object to be controlled is the external temperature control equipment deployed outside the equipment cabin, or the external temperature control equipment and the cabin door;

[0008] The temperature of the equipment compartment is adjusted by controlling the object to be controlled.

[0009] In one embodiment, obtaining the operating status of the cabin temperature control equipment deployed in the equipment compartment includes:

[0010] Obtain the operating parameters of the cabin temperature control equipment deployed in the equipment compartment;

[0011] The operating status of the cabin temperature control equipment is determined based on the relationship between its operating parameters and parameter thresholds.

[0012] In one embodiment, the operating parameters of the cabin temperature control device deployed in the equipment compartment are obtained, including:

[0013] The monitoring equipment monitors the air outlet speed, air outlet temperature, and power supply information of the cabin temperature control equipment deployed in the equipment compartment, which serve as the operating parameters of the cabin temperature control equipment; among which, the power supply information includes power supply voltage information and power supply current information.

[0014] In one embodiment, obtaining the internal sealing properties of the equipment compartment includes:

[0015] Obtain the status information of the equipment compartment doors;

[0016] Based on the status information of the hatch, determine the internal sealing properties of the equipment compartment.

[0017] In one embodiment, obtaining the status information of the equipment compartment door includes:

[0018] Obtain the status information of the electromagnetic lock on the equipment compartment door;

[0019] If the status information of the electromagnetic lock on the hatch is locked, then the status information of the hatch in the equipment compartment is determined to be closed.

[0020] If the status information of the electromagnetic lock on the hatch is unlocked, then the status information of the hatch in the equipment compartment is determined to be open.

[0021] In one embodiment, the internal sealing properties of the equipment compartment are determined based on the hatch status information, including:

[0022] If the status information of the hatch indicates that at least one hatch in the equipment compartment is open, then the internal sealing property of the equipment compartment is determined to be a sealing failure.

[0023] If the status information of the hatches indicates that all hatches in the equipment compartment are closed, then the internal sealing property of the equipment compartment is determined to be effective.

[0024] In one embodiment, the object to be controlled in the equipment compartment is determined based on the operating status of the in-chamber temperature control equipment and the in-chamber sealing properties, including:

[0025] If the internal temperature control equipment is operating normally and the internal sealing property of the equipment compartment is in a state of sealing failure, then the object to be controlled in the equipment compartment is determined to be the external temperature control equipment, or the external temperature control equipment and the doors of one or more equipment compartments.

[0026] If the operating status of the internal temperature control equipment is abnormal, then the objects to be controlled in the equipment compartment are determined to be the external temperature control equipment and all the doors of the equipment compartment.

[0027] In one embodiment, controlling the object to be controlled includes:

[0028] If the internal temperature control equipment is operating normally and the internal sealing of the equipment compartment is in failure, then the external temperature control equipment will be started; or, the external temperature control equipment will be started and the doors of more than one equipment compartment will be opened.

[0029] If the internal temperature control equipment is malfunctioning, the external temperature control equipment will be activated and all doors of the control equipment compartment will be opened.

[0030] In one embodiment, the external temperature control equipment is activated, including:

[0031] A start command is sent to the power supply terminal of the external temperature control equipment. The start command is used to instruct the power supply terminal to supply power to the external temperature control equipment so as to control the external temperature control equipment to start operation.

[0032] Secondly, this application also provides a temperature control device for an equipment compartment, the device comprising:

[0033] The monitoring module is used to acquire the operating status of the cabin temperature control equipment deployed in the equipment cabin, as well as the cabin sealing properties;

[0034] The object determination module is used to determine the object to be controlled in the equipment compartment based on the operating status of the temperature control equipment inside the compartment and the sealing properties of the equipment compartment; wherein, the object to be controlled is the external temperature control equipment deployed outside the equipment compartment, or the external temperature control equipment and the door of the equipment compartment;

[0035] The control module is used to adjust the temperature of the equipment compartment by controlling the object to be controlled.

[0036] Thirdly, this application also provides a computer device, which includes a memory and a processor. The memory stores a computer program, and the processor executes the computer program to perform the following steps:

[0037] Obtain the operating status of the cabin temperature control equipment deployed in the equipment compartment, as well as the cabin sealing properties;

[0038] Based on the operating status of the temperature control equipment inside the cabin and the sealing properties of the cabin, the object to be controlled in the equipment cabin is determined; wherein, the object to be controlled is the external temperature control equipment deployed outside the equipment cabin, or the external temperature control equipment and the cabin door;

[0039] The temperature of the equipment compartment is adjusted by controlling the object to be controlled.

[0040] Fourthly, this application also provides a computer-readable storage medium on which a computer program is stored, and which, when executed by a processor, performs the following steps:

[0041] Obtain the operating status of the cabin temperature control equipment deployed in the equipment compartment, as well as the cabin sealing properties;

[0042] Based on the operating status of the temperature control equipment inside the cabin and the sealing properties of the cabin, the object to be controlled in the equipment cabin is determined; wherein, the object to be controlled is the external temperature control equipment deployed outside the equipment cabin, or the external temperature control equipment and the cabin door;

[0043] The temperature of the equipment compartment is adjusted by controlling the object to be controlled.

[0044] Fifthly, this application also provides a computer program product comprising a computer program that, when executed by a processor, performs the following steps:

[0045] Obtain the operating status of the cabin temperature control equipment deployed in the equipment compartment, as well as the cabin sealing properties;

[0046] Based on the operating status of the temperature control equipment inside the cabin and the sealing properties of the cabin, the object to be controlled in the equipment cabin is determined; wherein, the object to be controlled is the external temperature control equipment deployed outside the equipment cabin, or the external temperature control equipment and the cabin door;

[0047] The temperature of the equipment compartment is adjusted by controlling the object to be controlled.

[0048] The aforementioned equipment compartment temperature control method, device, computer equipment, and storage medium acquire the operating status of the internal temperature control equipment deployed within the equipment compartment, as well as the internal sealing properties of the equipment compartment. Based on the operating status of the internal temperature control equipment and the internal sealing properties of the equipment compartment, this application determines the object to be controlled within the equipment compartment. The object to be controlled is either an external temperature control device deployed outside the equipment compartment, or an external temperature control device and the equipment compartment door. By controlling the object to be controlled, the temperature of the equipment compartment can be adjusted. In the event of a malfunction in the internal temperature control equipment or a change in the internal sealing properties of the equipment compartment, this application can adjust the temperature inside the equipment compartment by controlling the object to be controlled, thereby ensuring the safe and stable operation of the equipment inside the equipment compartment. Attached Figure Description

[0049] Figure 1 This is an application environment diagram of an equipment compartment temperature control method provided in this embodiment;

[0050] Figure 2 This is a flowchart illustrating the first equipment compartment temperature control method provided in this embodiment;

[0051] Figure 3 This is a flowchart illustrating the process of determining the operating status of the cabin temperature control equipment provided in this embodiment;

[0052] Figure 4 This is a flowchart illustrating the process for determining the internal sealing properties of the equipment compartment in this embodiment.

[0053] Figure 5 This is a flowchart illustrating the second equipment compartment temperature control method provided in this embodiment;

[0054] Figure 6 This is a block diagram illustrating the principle of temperature control in the equipment compartment provided in this embodiment.

[0055] Figure 7 This is a schematic diagram of the equipment compartment with all doors closed, as provided in this embodiment.

[0056] Figure 8 A schematic diagram of the equipment compartment with all doors fully open, as provided in this embodiment;

[0057] Figure 9 This is a structural block diagram of the first type of equipment compartment temperature control device provided in this embodiment;

[0058] Figure 10 This is a structural block diagram of the second type of equipment compartment temperature control device provided in this embodiment;

[0059] Figure 11 This is a structural block diagram of the third type of equipment compartment temperature control device provided in this embodiment;

[0060] Figure 12 This is a structural block diagram of the fourth type of equipment compartment temperature control device provided in this embodiment;

[0061] Figure 13 This is an internal structural diagram of the computer device provided in this embodiment. Detailed Implementation

[0062] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.

[0063] The equipment compartment temperature control method provided in this application embodiment can be applied to, for example... Figure 1 In the application environment shown, the control device 104 acquires the operating status of the cabin temperature control equipment deployed in the equipment compartment 102, as well as the cabin sealing properties. Based on the operating status of the cabin temperature control equipment and the cabin sealing properties, the control device 104 determines the object to be controlled in the equipment compartment. The object to be controlled is either the external temperature control equipment 106 deployed outside the equipment compartment, or the external temperature control equipment and the door of the equipment compartment 102. The control device 104 adjusts the temperature of the equipment compartment by controlling the object to be controlled.

[0064] In this embodiment, the control device 104 may be, but is not limited to, a computer, server, industrial computer, smart terminal, etc. The computer may be, but is not limited to, a tablet computer, laptop computer, desktop computer, etc., and the smart terminal may be, but is not limited to, a mobile phone, etc.

[0065] In one embodiment, Figure 2 This is a flowchart illustrating a method for controlling the temperature of an equipment compartment according to an embodiment of this application, applied to... Figure 1 Taking the control device in the example, the method includes the following steps:

[0066] S201, obtain the operating status of the cabin temperature control equipment deployed in the equipment compartment, as well as the cabin sealing properties of the equipment compartment.

[0067] The equipment compartment refers to the cabin used to house equipment, which can be operational equipment, such as a micro-DC (Data Center) compartment. This compartment houses communication equipment requiring continuous cooling. The internal temperature control equipment refers to the device used to control the temperature within the equipment compartment by providing cooling or heating, such as the variable vent air conditioner in a micro-DC compartment. A micro-DC compartment is a rack-type compartment, with each rack consisting of multiple racks, each with a corresponding door. The variable vent air conditioner within the micro-DC compartment provides cooling for the communication equipment in each rack. Internal sealing properties refer to attributes that characterize the effectiveness, failure, or degree of sealing of the micro-DC compartment.

[0068] One optional implementation method for obtaining the operating status of the cabin temperature control equipment deployed in the equipment compartment in this embodiment includes: monitoring the status of key components of the cabin temperature control equipment using monitoring equipment, and obtaining the operating status of the cabin temperature control equipment deployed in the equipment compartment based on the status of the key components. For example, monitoring the status of the compressor of the cabin temperature control equipment using monitoring equipment, and obtaining the operating status of the cabin temperature control equipment deployed in the equipment compartment based on the status of the compressor. The status of the compressor can be obtained by monitoring various indicators of the compressor.

[0069] Another optional implementation of this embodiment for obtaining the operating status of the cabin temperature control equipment deployed in the equipment compartment includes: monitoring the operating status of the cabin temperature control equipment using monitoring equipment, and obtaining the operating status of the cabin temperature control equipment deployed in the equipment compartment based on the operating status of the cabin temperature control equipment. For example, monitoring the cooling capacity or heating capacity of the cabin temperature control equipment using monitoring equipment, and obtaining the operating status of the cabin temperature control equipment deployed in the equipment compartment based on the relationship between the cooling capacity or heating capacity of the cabin temperature control equipment and the cooling capacity threshold or heating capacity threshold. For example, if the cooling capacity is lower than the cooling capacity threshold, or the heating capacity is lower than the heating capacity threshold, then it is determined that the operating status of the cabin temperature control equipment deployed in the equipment compartment is abnormal.

[0070] One optional implementation method for obtaining the internal sealing properties of the equipment compartment in this embodiment is as follows: the internal pressure changes of the equipment compartment can be obtained by monitoring equipment, and the internal sealing properties of the equipment compartment can be obtained based on the internal pressure changes. For example, if under normal circumstances, the pressure inside the equipment compartment should be higher than the outside pressure, and the internal pressure gradually decreases over a certain period of time, it can be determined that a gap has appeared in the equipment compartment (e.g., the door is open), the internal sealing degree has decreased, and the seal has failed.

[0071] Another optional implementation method for obtaining the internal sealing properties of the equipment compartment in this embodiment is to obtain the internal sealing properties of the equipment compartment through a visual monitoring device. For example, the captured image of the current equipment compartment is matched with reference images of the equipment compartment under different sealing properties, and the sealing properties of the equipment compartment corresponding to the successfully matched reference image are taken as the sealing properties of the current equipment compartment.

[0072] S202, Based on the operating status of the internal temperature control equipment and the sealing properties of the equipment compartment, determine the object to be controlled in the equipment compartment. The object to be controlled may be either the external temperature control equipment deployed outside the equipment compartment, or the external temperature control equipment and the door of the equipment compartment.

[0073] The object to be controlled refers to the object that needs to be controlled in order to adjust the temperature of the equipment compartment. External temperature control equipment refers to temperature control equipment used to control the temperature of the external environment of the equipment compartment. For example, if the equipment compartment is located inside a computer room, then the temperature control equipment of the computer room (such as the computer room air conditioner) is the external temperature control equipment.

[0074] An optional implementation method of this embodiment is as follows: If the operating status of the temperature control equipment inside the cabin is normal and the sealing attribute of the equipment cabin is high, it indicates that the equipment cabin is currently in a normal state. At this time, the objects to be controlled in the equipment cabin are the temperature control equipment outside the cabin and the door of the equipment cabin.

[0075] Another optional implementation of this embodiment is as follows: If the operating status of the temperature control equipment inside the cabin is normal, and the sealing property of the equipment cabin is low, it indicates that the current sealing property of the equipment cabin is abnormal. At this time, the object to be controlled in the equipment cabin is determined to be the temperature control equipment outside the cabin.

[0076] Another optional implementation of this embodiment is as follows: if the operating status of the cabin temperature control equipment is abnormal, it indicates that there is a problem with the temperature control of the cabin temperature control equipment. At this time, the objects to be controlled in the cabin are determined to be the cabin temperature control equipment and the cabin door.

[0077] S203, by controlling the object to be controlled, adjusts the temperature of the equipment compartment.

[0078] When the internal temperature control equipment is operating normally and the internal sealing property of the equipment compartment is highly airtight, one optional implementation method is to control the object to be controlled to adjust the temperature of the equipment compartment: control and close all equipment compartment doors and external temperature control equipment to ensure that the temperature of the equipment compartment remains constant and to save energy.

[0079] When the temperature control equipment inside the cabin is operating normally and the cabin's sealing properties are low, one possible implementation method is to control the object to be controlled to adjust the temperature of the cabin: control the external temperature control equipment to start operation to adjust the temperature of the cabin.

[0080] When the operating status of the temperature control equipment inside the cabin is abnormal, one optional implementation method is to control the object to be controlled to adjust the temperature of the equipment cabin: control the opening of the doors of all equipment cabins and control the start-up of the external temperature control equipment to adjust the temperature of the equipment cabin.

[0081] This embodiment obtains the operating status of the cabin temperature control equipment deployed inside the equipment compartment, as well as the cabin sealing properties. Based on the operating status of the cabin temperature control equipment and the cabin sealing properties, this application determines the object to be controlled in the equipment compartment. The object to be controlled is either the external temperature control equipment deployed outside the equipment compartment, or the external temperature control equipment and the equipment compartment door. By controlling the object to be controlled, the temperature of the equipment compartment can be adjusted. In the event of a malfunction in the cabin temperature control equipment or a change in the cabin sealing properties, this application can adjust the temperature inside the equipment compartment by controlling the object to be controlled, thereby ensuring the stable and normal operation of the equipment inside the equipment compartment.

[0082] In one embodiment, such as Figure 3 As shown, in order to obtain the operating status of the cabin temperature control equipment deployed in the equipment compartment, the following implementation methods can be selected:

[0083] S301, obtain the operating parameters of the cabin temperature control equipment deployed in the equipment compartment.

[0084] Among them, operating parameters refer to some parameters collected by the cabin temperature control equipment during operation.

[0085] Optionally, in this embodiment, the control device can monitor the air outlet wind speed, air outlet temperature, and power supply information of the cabin temperature control device deployed in the equipment compartment through the monitoring device, as operating parameters of the cabin temperature control device; wherein, the power supply information includes power supply voltage information and power supply current information.

[0086] In this embodiment, the monitoring equipment can be some sensors, such as a wind speed sensor to collect the air outlet wind speed of the cabin temperature control equipment, a temperature sensor to collect the air outlet temperature, a current sensor to collect the power supply current information of the cabin temperature control equipment, and a voltage sensor to collect the power supply voltage information of the cabin temperature control equipment.

[0087] S302, determine the operating status of the cabin temperature control equipment based on the relationship between the operating parameters and parameter thresholds of the cabin temperature control equipment.

[0088] Among them, the parameter threshold refers to the definition conditions used to indicate whether the operating status of the cabin temperature control equipment is normal.

[0089] Optionally, in this embodiment, if at least one of the operating parameters of the in-cabin temperature control device—such as the air outlet velocity, air outlet temperature, power supply voltage, and power supply current—exceeds the corresponding parameter threshold, the operating status of the in-cabin temperature control device is determined to be abnormal. Preferably, if any one of the operating parameters of the in-cabin temperature control device exceeds the corresponding parameter threshold, the operating status of the in-cabin temperature control device is determined to be abnormal. If all the above operating parameters are within the corresponding parameter threshold range, the operating status of the in-cabin temperature control device is determined to be normal.

[0090] In this embodiment, the operating parameters of the cabin temperature control equipment deployed in the equipment compartment are obtained. Based on the relationship between the operating parameters and parameter thresholds of the cabin temperature control equipment, the operating status of the cabin temperature control equipment can be determined quickly and accurately.

[0091] In one embodiment, such as Figure 4 As shown, to obtain the internal sealing properties of the equipment compartment, the optional implementation methods include:

[0092] S401, obtain the status information of the equipment compartment doors.

[0093] The status information of the hatch refers to whether the hatch is open or closed.

[0094] An optional implementation of this embodiment is as follows: the status information of the equipment compartment doors can be obtained by comparing the acquired images of the equipment compartment with images of the equipment compartment in an image database. The image database stores images of each equipment compartment door when closed and images of each equipment compartment door when open.

[0095] One optional implementation of this embodiment is as follows: The status information of the electromagnetic lock on the equipment compartment door is obtained. If the electromagnetic lock is in a locked state, the equipment compartment door is determined to be in a closed state; if it is in an unlocked state, the equipment compartment door is determined to be in an open state. In this embodiment, the equipment compartment includes one or more doors, each equipped with a corresponding electromagnetic lock. When the electromagnetic lock is in the unlocked state, the door loses its magnetic attraction and springs open under the action of an elastic element. In this embodiment, both the control device and the manual switch can control the status of the electromagnetic lock, i.e., control its unlocked and locked states. When the electromagnetic lock is in a faulty state, it will lose power and also be in the unlocked state. The status of the electromagnetic lock can be monitored by the monitoring device, i.e., the locked and unlocked states can be monitored. The unlocked state includes unlocking controlled by the control device, unlocking by a manual switch, and unlocking due to a fault.

[0096] The elastic element in this embodiment can be a spring or other components with elastic properties. The elastic element can be installed on the hatch or the equipment compartment. When the hatch is in the closed state, the elastic element is in the compressed state. When the hatch electromagnetic lock switches from the locked state to the unlocked state, or when a malfunction occurs, the hatch loses its magnetic attraction and will automatically open under the action of the elastic element, changing the hatch from the closed state to the open state.

[0097] S402, determine the internal sealing properties of the equipment compartment based on the status information of the hatch.

[0098] Optionally, in this embodiment, if the status information of the hatch indicates that at least one hatch of the equipment compartment is in the open state, then the internal sealing attribute of the equipment compartment is determined to be a seal failure; if the status information of the hatch indicates that all hatches of the equipment compartment are in the closed state, then the internal sealing attribute of the equipment compartment is determined to be a seal effective.

[0099] In this embodiment, by obtaining the status information of the equipment compartment door, and based on the status information of the door, it is possible to accurately determine whether the sealing property of the equipment compartment is effective or ineffective.

[0100] Based on the above embodiments, according to the operating status of the in-cabin temperature control equipment and the in-cabin sealing properties, the object to be controlled in the equipment cabin is determined. Optional implementation methods include:

[0101] If the internal temperature control equipment is operating normally, but the internal sealing of the equipment compartment is considered to be in failure, then the object to be controlled in the equipment compartment is determined to be the external temperature control equipment, or the external temperature control equipment and one or more doors of the equipment compartment. Here, failure to seal refers to the equipment compartment's sealing properties failing when one of the doors is open. One optional implementation of this embodiment is as follows: If the internal temperature control equipment is operating normally, but the internal sealing of the equipment compartment is considered to be in failure (e.g., one door is open), determine if there is a convection door at the position opposite to the open door. If not, the object to be controlled in the equipment compartment is determined to be the external temperature control equipment; if so, the objects to be controlled are the external temperature control equipment and the convection door. Here, a convection door refers to the door opposite the open door; when the convection door is open, it can create a convection effect, adjusting the internal temperature more quickly. Another optional implementation of this embodiment is as follows: if the operating status of the temperature control equipment inside the cabin is normal, the sealing property of the equipment cabin is in failure, and the temperature inside the equipment cabin is higher than the set temperature threshold, then the objects to be controlled in the equipment cabin are determined to be the external temperature control equipment and all the doors of the equipment cabin.

[0102] If the operating status of the internal temperature control equipment is abnormal, then the objects to be controlled in the equipment compartment are determined to be the external temperature control equipment and all the doors of the equipment compartment.

[0103] Optionally, in this embodiment, if the operating status of the cabin temperature control device is abnormal, the door of the equipment cabin that is currently in a closed state is obtained, and the door of the closed equipment cabin and the cabin temperature control device are used as control objects.

[0104] It should be noted that if the internal temperature control equipment is malfunctioning and all equipment compartment doors are currently open, then the object to be controlled in the equipment compartment is determined to be the external temperature control equipment.

[0105] In this embodiment, if the operating status of the internal temperature control equipment is normal and the internal sealing attribute of the equipment compartment is a sealing failure, then the object to be controlled in the equipment compartment is determined to be the external temperature control equipment, or the external temperature control equipment and the doors of one or more equipment compartments. If the operating status of the internal temperature control equipment is abnormal, then the object to be controlled in the equipment compartment is determined to be the external temperature control equipment and the doors of the equipment compartment, thus realizing the rapid determination of the control object.

[0106] Based on the above embodiments, in S203, by controlling the object to be controlled, optional implementation methods include:

[0107] If the internal temperature control equipment is operating normally and the internal sealing of the equipment compartment is in failure, then the external temperature control equipment will be started; or, the external temperature control equipment will be started and the doors of one or more equipment compartments will be opened.

[0108] If the internal temperature control equipment is malfunctioning, the external temperature control equipment will be activated, and all doors of the equipment compartment will be opened.

[0109] One optional implementation method of this embodiment is as follows: if the operating status of the temperature control equipment inside the cabin is normal, and the sealing property of the equipment cabin is a sealing failure, if the sealing failure is caused by the opening of the cabin door, and there is no convection cabin door in the opened cabin door, then the temperature control equipment outside the cabin is controlled to start operation.

[0110] Another optional implementation of this embodiment is as follows: if the operating status of the temperature control equipment inside the cabin is normal, and the sealing property of the equipment cabin is a sealing failure, if the sealing failure is caused by the opening of the cabin door, and there is no convection cabin door in the opened cabin door, then the temperature control equipment outside the cabin is started to operate.

[0111] Another optional implementation of this embodiment is as follows: if the operating status of the internal temperature control equipment is normal, the internal sealing property of the equipment compartment is a sealing failure, and the internal temperature of the equipment compartment is higher than the set temperature threshold, then control the external temperature control equipment to start operation and control all compartment doors to open.

[0112] One optional implementation of this embodiment is as follows: if the operating status of the internal temperature control equipment is abnormal, the external temperature control equipment is started and the doors of all equipment compartments that are in a closed state are opened.

[0113] Optionally, in this embodiment, the method for controlling the start of the external temperature control device is to send a start command to the power supply terminal (e.g., emergency equipment) of the external temperature control device. The start command is used to instruct the power supply terminal to supply power to the external temperature control device so as to control the external temperature control device to start and operate.

[0114] Optionally, in this embodiment, if the operating status of the internal temperature control equipment is abnormal and the internal sealing property of the equipment compartment is in failure, the external temperature control equipment will be activated, and after all the doors of the equipment compartment are opened, an alarm message needs to be sent to the backend system. It should be noted that if the electromagnetic lock on the door malfunctions and causes the door to open, an alarm message also needs to be sent to the backend system.

[0115] In this embodiment, when controlling the controlled object, the main functions include: if the operating status of the internal temperature control equipment is normal and the internal sealing property of the equipment compartment is in failure, then controlling the external temperature control equipment to start operation; or, controlling the external temperature control equipment to start operation and controlling the opening of the doors of more than one equipment compartment; if the operating status of the internal temperature control equipment is abnormal, then controlling the external temperature control equipment to start operation and controlling all the doors of the equipment compartment to open.

[0116] In one embodiment, such as Figure 5 As shown, an equipment compartment temperature control method, in an optional implementation, includes:

[0117] S501 monitors the air pressure, air temperature, and power supply information of the cabin temperature control equipment deployed in the equipment compartment through monitoring devices, which serve as the operating parameters of the cabin temperature control equipment; among which, the power supply information includes power supply voltage information and power supply current information.

[0118] S502, determine the operating status of the cabin temperature control equipment based on the relationship between the operating parameters and parameter thresholds of the cabin temperature control equipment.

[0119] S503, Obtain the status information of the electromagnetic lock on the equipment compartment door. If the electromagnetic lock is in a locked state, the equipment compartment door is determined to be in a closed state; if the electromagnetic lock is in an unlocked state, the equipment compartment door is determined to be in an open state.

[0120] S504, Based on the hatch status information, determine the internal sealing properties of the equipment compartment. Specifically, if the hatch status information indicates that at least one hatch of the equipment compartment is open, then the internal sealing properties of the equipment compartment are determined to be sealed failure; if the hatch status information indicates that all hatches of the equipment compartment are closed, then the internal sealing properties of the equipment compartment are determined to be sealed effectively.

[0121] S505, based on the operating status of the in-cabin temperature control equipment and the in-cabin sealing properties of the equipment cabin, determine the object to be controlled in the equipment cabin; wherein, the object to be controlled is the external temperature control equipment deployed outside the equipment cabin, or the external temperature control equipment and the cabin door.

[0122] S506, if the operating status of the internal temperature control equipment is normal, and the internal sealing property of the equipment compartment is a seal failure, then the object to be controlled in the equipment compartment is determined to be the external temperature control equipment. Then execute S507.

[0123] S507 sends a start command to the power supply terminal of the external temperature control equipment. The start command is used to instruct the power supply terminal to supply power to the external temperature control equipment in order to control the start-up and operation of the machine room air conditioner to adjust the temperature of the equipment compartment.

[0124] S508, if the operating status of the internal temperature control equipment is abnormal, and the internal sealing property of the equipment compartment is a seal failure, then the objects to be controlled in the equipment compartment are determined to be the external temperature control equipment and the equipment compartment door. Then execute S509.

[0125] S509: A start command is sent to the power supply terminal of the external temperature control equipment. The start command instructs the power supply terminal to supply power to the external temperature control equipment to control the start-up and operation of the machine room air conditioner, and to open all doors of the control equipment compartment to adjust the temperature of the equipment compartment. Then, S5010 is executed.

[0126] S5010 sends alarm information to the backend system.

[0127] In this embodiment, by acquiring the operating status of the cabin temperature control equipment deployed inside the equipment compartment and the cabin sealing properties, this application determines the object to be controlled in the equipment compartment based on the operating status of the cabin temperature control equipment and the cabin sealing properties. The object to be controlled is the external temperature control equipment deployed outside the equipment compartment, or the external temperature control equipment and the door of the equipment compartment. By controlling the object to be controlled, the temperature of the equipment compartment can be adjusted. In the event of a malfunction of the cabin temperature control equipment or a change in the cabin sealing properties, this application can adjust the temperature inside the equipment compartment by controlling the object to be controlled, thereby ensuring the stable and normal operation of the equipment inside the equipment compartment.

[0128] To better understand the above embodiments, a detailed explanation is provided below with reference to a specific embodiment. In one embodiment, equipment compartment 701 is a micro-DC compartment, the internal temperature control device is an internal air conditioner, and the external temperature control device is a computer room air conditioner. For example... Figure 6 As shown, the monitoring equipment monitors the operating parameters of the cabin air conditioner, including the air outlet speed, air outlet temperature, and power supply information, as well as the status information of the electromagnetic lock on door 702, including locked and unlocked states. The unlocked state includes unlocking via control equipment, manual switch unlocking, and unlocking due to power failure caused by an electromagnetic lock malfunction. If all the above operating parameters are normal, meaning the cabin air conditioner is operating normally, and door 702 is always closed (e.g., ...), then the system is considered to be operating normally. Figure 7 As shown in the diagram, the equipment compartment is effectively sealed. At this time, equipment compartment 701 is in normal condition, with the air conditioning unit providing normal cooling for the communication equipment inside. The computer room air conditioning unit is off. If it is detected that the door electromagnetic lock is unlocked (unlocked by control equipment, manually switched, or due to a power outage caused by a malfunction of the electromagnetic lock, one of these three unlocking methods is used), and the air conditioning unit is operating normally, the control equipment sends a start command to the emergency equipment. The emergency equipment restores power to the computer room air conditioning unit, triggering its automatic start-up function to start cooling and adjust the temperature inside the equipment compartment. If any parameter of the air conditioning unit's operating parameters is detected to be abnormal, the air conditioning unit is determined to be in an abnormal operating state. The control equipment controls all door electromagnetic locks corresponding to the doors to be unlocked, and all doors 702 automatically open under the action of the elastic element (e.g., Figure 8 As shown), the control equipment sends a start command to the emergency equipment, the emergency equipment controls the power supply of the computer room air conditioner to restore power, triggers the power-on self-start function of the computer room air conditioner, so as to control the computer room air conditioner to start cooling, thereby adjusting the temperature in the equipment compartment 701, and sending an alarm command to the background system.

[0129] It should be understood that although the steps in the flowcharts of the embodiments described above are shown sequentially according to the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless explicitly stated herein, there is no strict order restriction on the execution of these steps, and they can be executed in other orders. Moreover, at least some steps in the flowcharts of the embodiments described above may include multiple steps or multiple stages. These steps or stages are not necessarily completed at the same time, but can be executed at different times. The execution order of these steps or stages is not necessarily sequential, but can be performed alternately or in turn with other steps or at least some of the steps or stages of other steps.

[0130] Based on the same inventive concept, this application also provides an equipment compartment temperature control device for implementing the above-described equipment compartment temperature control method. The solution provided by this device is similar to the solution described in the above method; therefore, the specific limitations in one or more equipment compartment temperature control device embodiments provided below can be found in the limitations of the equipment compartment temperature control method described above, and will not be repeated here.

[0131] In one embodiment, by Figure 9 A structural block diagram of an equipment compartment temperature control device in one embodiment is shown. Figure 9 As shown, a temperature control device 1 for an equipment compartment is provided. The device includes: a monitoring module 10, an object determination module 20, and a control module 30, wherein:

[0132] The monitoring module 10 is used to acquire the operating status of the cabin temperature control equipment deployed in the equipment cabin, as well as the cabin sealing properties of the equipment cabin;

[0133] The object determination module 20 is used to determine the object to be controlled in the equipment compartment based on the operating status of the temperature control equipment inside the compartment and the sealing properties inside the equipment compartment; wherein, the object to be controlled is the external temperature control equipment deployed outside the equipment compartment, or the external temperature control equipment and the door of the equipment compartment;

[0134] The control module 30 is used to adjust the temperature of the equipment compartment by controlling the object to be controlled.

[0135] The aforementioned equipment compartment temperature control device obtains the operating status of the internal temperature control equipment deployed in the equipment compartment, as well as the internal sealing properties of the equipment compartment. Based on the operating status of the internal temperature control equipment and the internal sealing properties of the equipment compartment, this application determines the object to be controlled in the equipment compartment. The object to be controlled is either an external temperature control device deployed outside the equipment compartment, or an external temperature control device and the equipment compartment door. By controlling the object to be controlled, the temperature of the equipment compartment can be adjusted. In the event of a malfunction in the internal temperature control equipment or a change in the internal sealing properties of the equipment compartment, this application can adjust the temperature inside the equipment compartment by controlling the object to be controlled, thereby ensuring the stable and normal operation of the equipment inside the equipment compartment.

[0136] In one embodiment, such as Figure 10 As shown, above Figure 9 The monitoring module 10 further includes:

[0137] The first monitoring unit 101 acquires the operating parameters of the cabin temperature control equipment deployed in the equipment compartment.

[0138] The first determining unit 102 determines the operating status of the in-cabin temperature control equipment based on the relationship between the operating parameters and parameter thresholds of the in-cabin temperature control equipment.

[0139] In one embodiment, the upper Figure 10 The first monitoring unit 101 is specifically used to: monitor the air outlet pressure, air outlet temperature and power supply information of the cabin temperature control equipment deployed in the equipment compartment through monitoring equipment, as operating parameters of the cabin temperature control equipment; wherein, the power supply information includes power supply voltage information and power supply current information.

[0140] In one embodiment, such as Figure 11 As shown, above Figure 9 The monitoring module 10 further includes:

[0141] The second monitoring unit 103 is used to acquire the status information of the equipment compartment doors.

[0142] The second determining unit 104 is used to determine the internal sealing properties of the equipment compartment based on the status information of the hatch.

[0143] In one embodiment, the upper Figure 11 The second monitoring unit 103 specifically includes:

[0144] The monitoring subunit is used to acquire the status information of the electromagnetic locks on the equipment compartment doors.

[0145] The first determining subunit is used to determine that the status information of the equipment compartment door is closed if the status information of the door electromagnetic lock is locked.

[0146] The second determining subunit is used to determine the state information of the equipment compartment door as open if the state information of the door electromagnetic lock is unlocked.

[0147] In one embodiment, the upper Figure 11 The second determining unit 104 is specifically used for: if the status information of the hatch indicates that at least one hatch of the equipment compartment is in the open state, then determining that the internal sealing attribute of the equipment compartment is a sealing failure. If the status information of the hatch indicates that all hatches of the equipment compartment are in the closed state, then determining that the internal sealing attribute of the equipment compartment is a sealing success.

[0148] In one embodiment, the upper Figure 9 The object determination module 20 includes:

[0149] The third determining unit is used to determine the object to be controlled in the equipment compartment as either the external temperature control equipment, or the external temperature control equipment and the doors of one or more equipment compartments if the operating status of the internal temperature control equipment is normal and the internal sealing attribute of the equipment compartment is a sealing failure.

[0150] The fourth determining unit is used to determine the objects to be controlled in the equipment compartment as the external temperature control equipment and all doors of the equipment compartment if the operating status of the internal temperature control equipment is abnormal.

[0151] In one embodiment, the upper Figure 9 The control module 30 includes:

[0152] The first control unit is used to control the external temperature control equipment to start operation if the internal temperature control equipment is operating normally and the internal sealing property of the equipment compartment is a sealing failure; or, control the external temperature control equipment to start operation and control the opening of the doors of more than one equipment compartment.

[0153] The second control unit is used to control the external temperature control equipment to start operation and open all doors of the control equipment compartment if the internal temperature control equipment is in an abnormal operating state.

[0154] In one embodiment, such as Figure 12 As shown, above Figure 9 The equipment compartment temperature control device 1 also includes:

[0155] The alarm module is used to send alarm information to the background system after the temperature control equipment outside the control cabin is started and all the doors of the control equipment cabin are opened.

[0156] In one embodiment, the first control unit and the second control unit are further specifically used to: send a start command to the power supply terminal of the external temperature control device, the start command being used to instruct the power supply terminal to supply power to the external temperature control device in order to control the start-up and operation of the computer room air conditioner.

[0157] Each module in the aforementioned equipment compartment temperature control device can be implemented entirely or partially through software, hardware, or a combination thereof. These modules can be embedded in the processor of a computer device in hardware form or independent of it, or stored in the memory of a computer device in software form, so that the processor can call and execute the operations corresponding to each module.

[0158] In one embodiment, a computer device is provided, which may be a platform-side device, and its internal structure diagram may be as follows: Figure 13 As shown, the computer device includes a processor, memory, and a network interface connected via a system bus. The processor provides computing and control capabilities. The memory includes non-volatile storage media and internal memory. The non-volatile storage media stores the operating system, computer programs, and a database. The internal memory provides an environment for the operation of the operating system and computer programs in the non-volatile storage media. The database stores equipment compartment information. The network interface communicates with an external user via a network connection. When executed by the processor, the computer program implements a method for controlling the temperature of the equipment compartment.

[0159] Those skilled in the art will understand that Figure 13 The structure shown is merely a block diagram of a portion of the structure related to the present application and does not constitute a limitation on the computer device to which the present application is applied. Specifically, the computer device may include more or fewer components than shown in the figure, or combine certain components, or have different component arrangements.

[0160] In one embodiment, a computer device is provided, including a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to perform the following steps:

[0161] Obtain the operating status of the cabin temperature control equipment deployed in the equipment compartment, as well as the cabin sealing properties;

[0162] Based on the operating status of the temperature control equipment inside the cabin and the sealing properties of the cabin, the object to be controlled in the equipment cabin is determined; wherein, the object to be controlled is the external temperature control equipment deployed outside the equipment cabin, or the external temperature control equipment and the cabin door;

[0163] The temperature of the equipment compartment is adjusted by controlling the object to be controlled.

[0164] In one embodiment, when the processor executes the computer program, it further performs the following steps: obtaining the operating status of the cabin temperature control equipment deployed in the equipment compartment, including:

[0165] Obtain the operating parameters of the cabin temperature control equipment deployed in the equipment compartment;

[0166] The operating status of the cabin temperature control equipment is determined based on the relationship between its operating parameters and parameter thresholds.

[0167] In one embodiment, when the processor executes the computer program, it further performs the following steps: obtaining the operating parameters of the cabin temperature control equipment deployed in the equipment compartment, including:

[0168] The monitoring equipment monitors the air pressure, air temperature, and power supply information of the cabin temperature control equipment deployed in the equipment compartment, which serve as the operating parameters of the cabin temperature control equipment; among which, the power supply information includes power supply voltage information and power supply current information.

[0169] In one embodiment, when the processor executes the computer program, it further performs the following steps: obtaining the internal sealing properties of the equipment compartment, including:

[0170] Obtain the status information of the equipment compartment doors;

[0171] Based on the status information of the hatch, determine the internal sealing properties of the equipment compartment.

[0172] In one embodiment, when the processor executes the computer program, it further performs the following steps: obtaining status information of the equipment compartment door, including:

[0173] Obtain the status information of the electromagnetic lock on the equipment compartment door;

[0174] If the status information of the electromagnetic lock on the hatch is locked, then the status information of the hatch in the equipment compartment is determined to be closed.

[0175] If the status information of the electromagnetic lock on the hatch is unlocked, then the status information of the hatch in the equipment compartment is determined to be open.

[0176] In one embodiment, when the processor executes the computer program, it further performs the following steps: determining the internal sealing properties of the equipment compartment based on the hatch status information, including:

[0177] If the status information of the hatch indicates that at least one hatch in the equipment compartment is open, then the internal sealing property of the equipment compartment is determined to be a sealing failure.

[0178] If the status information of the hatches indicates that all hatches in the equipment compartment are closed, then the internal sealing attribute of the equipment compartment is determined to be effective.

[0179] In one embodiment, when the processor executes the computer program, it further performs the following steps: determining the object to be controlled in the equipment compartment based on the operating status of the in-compartment temperature control equipment and the in-compartment sealing properties, including:

[0180] If the internal temperature control equipment is operating normally and the internal sealing property of the equipment compartment is in a state of sealing failure, then the object to be controlled in the equipment compartment is determined to be the external temperature control equipment, or the external temperature control equipment and the doors of one or more equipment compartments.

[0181] If the operating status of the internal temperature control equipment is abnormal, then the objects to be controlled in the equipment compartment are determined to be the external temperature control equipment and all the doors of the equipment compartment.

[0182] In one embodiment, when the processor executes the computer program, it further performs the following steps: controlling the object to be controlled, including:

[0183] If the internal temperature control equipment is operating normally, and the internal sealing of the equipment compartment is defective, then the external temperature control equipment will be activated; or,

[0184] Control the start-up and operation of the external temperature control equipment, and control the opening of the doors of more than one equipment compartment;

[0185] If the internal temperature control equipment is malfunctioning, the external temperature control equipment will be activated and all doors of the control equipment compartment will be opened.

[0186] In one embodiment, when the processor executes the computer program, it further performs the following steps: after the control cabin external temperature control equipment is started and all the doors of the control equipment cabin are opened, it further includes:

[0187] Send alarm information to the backend system.

[0188] In one embodiment, when the processor executes the computer program, it further performs the following steps: controlling the external temperature control equipment to start operation, including:

[0189] A start command is sent to the power supply terminal of the external temperature control equipment. The start command is used to instruct the power supply terminal to supply power to the external temperature control equipment in order to control the start-up and operation of the computer room air conditioner.

[0190] The principles and specific processes of the computer equipment provided above in implementing the various embodiments can be found in the description of the equipment compartment temperature control method in the foregoing embodiments, and will not be repeated here.

[0191] In one embodiment, a computer-readable storage medium is provided having a computer program stored thereon, which, when executed by a processor, performs the following steps:

[0192] Obtain the operating status of the cabin temperature control equipment deployed in the equipment compartment, as well as the cabin sealing properties;

[0193] Based on the operating status of the temperature control equipment inside the cabin and the sealing properties of the cabin, the object to be controlled in the equipment cabin is determined; wherein, the object to be controlled is the external temperature control equipment deployed outside the equipment cabin, or the external temperature control equipment and the cabin door;

[0194] The temperature of the equipment compartment is adjusted by controlling the object to be controlled.

[0195] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: obtaining the operating status of the cabin temperature control equipment deployed in the equipment compartment, including:

[0196] Obtain the operating parameters of the cabin temperature control equipment deployed in the equipment compartment;

[0197] The operating status of the cabin temperature control equipment is determined based on the relationship between its operating parameters and parameter thresholds.

[0198] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: obtaining the operating parameters of the cabin temperature control equipment deployed in the equipment compartment, including:

[0199] The monitoring equipment monitors the air pressure, air temperature, and power supply information of the cabin temperature control equipment deployed in the equipment compartment, which serve as the operating parameters of the cabin temperature control equipment; among which, the power supply information includes power supply voltage information and power supply current information.

[0200] In one embodiment, when the computer program is executed by a processor, it further performs the following steps: obtaining the internal sealing properties of the equipment compartment, including:

[0201] Obtain the status information of the equipment compartment doors;

[0202] Based on the status information of the hatch, determine the internal sealing properties of the equipment compartment.

[0203] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: obtaining the status information of the equipment compartment door, including:

[0204] Obtain the status information of the electromagnetic lock on the equipment compartment door;

[0205] If the status information of the electromagnetic lock on the hatch is locked, then the status information of the hatch in the equipment compartment is determined to be closed.

[0206] If the status information of the electromagnetic lock on the hatch is unlocked, then the status information of the hatch in the equipment compartment is determined to be open.

[0207] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: determining the internal sealing properties of the equipment compartment based on the hatch status information, including:

[0208] If the status information of the hatch indicates that at least one hatch in the equipment compartment is open, then the internal sealing property of the equipment compartment is determined to be a sealing failure.

[0209] If the status information of the hatches indicates that all hatches in the equipment compartment are closed, then the internal sealing attribute of the equipment compartment is determined to be effective.

[0210] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: determining the object to be controlled in the equipment compartment based on the operating status of the in-compartment temperature control equipment and the in-compartment sealing properties, including:

[0211] If the internal temperature control equipment is operating normally and the internal sealing property of the equipment compartment is in a state of sealing failure, then the object to be controlled in the equipment compartment is determined to be the external temperature control equipment, or the external temperature control equipment and the doors of one or more equipment compartments.

[0212] If the operating status of the internal temperature control equipment is abnormal, then the objects to be controlled in the equipment compartment are determined to be the external temperature control equipment and all the doors of the equipment compartment.

[0213] In one embodiment, when the computer program is executed by a processor, it further performs the following steps: controlling the object to be controlled, including:

[0214] If the internal temperature control equipment is operating normally and the internal sealing of the equipment compartment is in failure, then the external temperature control equipment will be started; or, the external temperature control equipment will be started and the doors of more than one equipment compartment will be opened.

[0215] If the internal temperature control equipment is malfunctioning, the external temperature control equipment will be activated and all doors of the control equipment compartment will be opened.

[0216] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: after the control cabin external temperature control equipment is started and all doors of the control equipment cabin are opened, it further includes:

[0217] Send alarm information to the backend system.

[0218] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: controlling the external temperature control equipment to start operation, including:

[0219] A start command is sent to the power supply terminal of the external temperature control equipment. The start command is used to instruct the power supply terminal to supply power to the external temperature control equipment in order to control the start-up and operation of the computer room air conditioner.

[0220] The principles and specific processes of the computer-readable storage medium provided above in implementing the various embodiments can be found in the descriptions of the target detection method embodiments in the foregoing embodiments, and will not be repeated here.

[0221] In one embodiment, a computer program product is provided, including a computer program that, when executed by a processor, performs the following steps:

[0222] Obtain the operating status of the cabin temperature control equipment deployed in the equipment compartment, as well as the cabin sealing properties;

[0223] Based on the operating status of the temperature control equipment inside the cabin and the sealing properties of the cabin, the object to be controlled in the equipment cabin is determined; wherein, the object to be controlled is the external temperature control equipment deployed outside the equipment cabin, or the external temperature control equipment and the cabin door;

[0224] The temperature of the equipment compartment is adjusted by controlling the object to be controlled.

[0225] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: obtaining the operating status of the cabin temperature control equipment deployed in the equipment compartment, including:

[0226] Obtain the operating parameters of the cabin temperature control equipment deployed in the equipment compartment;

[0227] The operating status of the cabin temperature control equipment is determined based on the relationship between its operating parameters and parameter thresholds.

[0228] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: obtaining the operating parameters of the cabin temperature control equipment deployed in the equipment compartment, including:

[0229] The monitoring equipment monitors the air pressure, air temperature, and power supply information of the cabin temperature control equipment deployed in the equipment compartment, which serve as the operating parameters of the cabin temperature control equipment; among which, the power supply information includes power supply voltage information and power supply current information.

[0230] In one embodiment, when the computer program is executed by a processor, it further performs the following steps: obtaining the internal sealing properties of the equipment compartment, including:

[0231] Obtain the status information of the equipment compartment doors;

[0232] Based on the status information of the hatch, determine the internal sealing properties of the equipment compartment.

[0233] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: obtaining the status information of the equipment compartment door, including:

[0234] Obtain the status information of the electromagnetic lock on the equipment compartment door;

[0235] If the status information of the electromagnetic lock on the hatch is locked, then the status information of the hatch in the equipment compartment is determined to be closed.

[0236] If the status information of the electromagnetic lock on the hatch is unlocked, then the status information of the hatch in the equipment compartment is determined to be open.

[0237] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: determining the internal sealing properties of the equipment compartment based on the hatch status information, including:

[0238] If the status information of the hatch indicates that at least one hatch in the equipment compartment is open, then the internal sealing property of the equipment compartment is determined to be a sealing failure.

[0239] If the status information of the hatches indicates that all hatches in the equipment compartment are closed, then the internal sealing attribute of the equipment compartment is determined to be effective.

[0240] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: determining the object to be controlled in the equipment compartment based on the operating status of the in-compartment temperature control equipment and the in-compartment sealing properties, including:

[0241] If the internal temperature control equipment is operating normally and the internal sealing property of the equipment compartment is in a state of sealing failure, then the object to be controlled in the equipment compartment is determined to be the external temperature control equipment, or the external temperature control equipment and the doors of one or more equipment compartments.

[0242] If the operating status of the internal temperature control equipment is abnormal, then the objects to be controlled in the equipment compartment are determined to be the external temperature control equipment and all the doors of the equipment compartment.

[0243] In one embodiment, when the computer program is executed by a processor, it further performs the following steps: controlling the object to be controlled, including:

[0244] If the internal temperature control equipment is operating normally and the internal sealing of the equipment compartment is in failure, then the external temperature control equipment will be started; or, the external temperature control equipment will be started and the doors of more than one equipment compartment will be opened.

[0245] If the internal temperature control equipment is malfunctioning, the external temperature control equipment will be activated and all doors of the control equipment compartment will be opened.

[0246] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: after the control cabin external temperature control equipment is started and all doors of the control equipment cabin are opened, it further includes:

[0247] Send alarm information to the backend system.

[0248] In one embodiment, when the computer program is executed by the processor, it further performs the following steps: controlling the external temperature control equipment to start operation, including:

[0249] A start command is sent to the power supply terminal of the external temperature control equipment. The start command is used to instruct the power supply terminal to supply power to the external temperature control equipment in order to control the start-up and operation of the computer room air conditioner.

[0250] The principles and specific processes of implementing the computer program products provided above can be found in the descriptions of the target detection method embodiments in the foregoing embodiments, and will not be repeated here.

[0251] It should be noted that the data involved in this application (including but not limited to data on the temperature control process of the equipment compartment) are all data that have been fully authorized by all parties, and the collection, use and processing of the relevant data must comply with the relevant laws, regulations and standards of the relevant countries and regions.

[0252] Those skilled in the art will understand that all or part of the processes in the methods of the above embodiments can be implemented by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer-readable storage medium, and when executed, it can include the processes of the embodiments of the above methods. Any references to memory, databases, or other media used in the embodiments provided in this application can include at least one of non-volatile and volatile memory. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical memory, high-density embedded non-volatile memory, resistive random access memory (ReRAM), magnetic random access memory (MRAM), ferroelectric random access memory (FRAM), phase change memory (PCM), graphene memory, etc. Volatile memory can include random access memory (RAM) or external cache memory, etc. By way of illustration and not limitation, RAM can take many forms, such as Static Random Access Memory (SRAM) or Dynamic Random Access Memory (DRAM). The databases involved in the embodiments provided in this application may include at least one type of relational database and non-relational database. Non-relational databases may include, but are not limited to, blockchain-based distributed databases. The processors involved in the embodiments provided in this application may be general-purpose processors, central processing units, graphics processing units, digital signal processors, programmable logic devices, quantum computing-based data processing logic devices, etc., and are not limited to these.

[0253] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0254] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of this patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this application should be determined by the appended claims.

Claims

1. A method for controlling the temperature of an equipment compartment, characterized in that, The method includes: Obtain the operating status of the cabin temperature control equipment deployed in the equipment compartment, as well as the cabin sealing properties of the equipment compartment; If the operating status of the in-cabin temperature control device is normal and the in-cabin sealing property of the equipment cabin is a sealing failure, then the object to be controlled in the equipment cabin is determined to be the external temperature control device deployed outside the equipment cabin, or the external temperature control device and one or more doors of the equipment cabin. If the operating status of the cabin temperature control equipment is abnormal, then the objects to be controlled in the equipment cabin are the cabin external temperature control equipment and all the doors of the equipment cabin. If the internal temperature control device is operating normally and the internal sealing of the equipment compartment is in failure, then the external temperature control device is started; or, the external temperature control device is started and one or more doors of the equipment compartment are opened; wherein, starting the external temperature control device includes: sending a start command to the power supply terminal of the external temperature control device, the start command being used to instruct the power supply terminal to supply power to the external temperature control device in order to control the external temperature control device to start. If the operating status of the internal temperature control equipment is abnormal, then the external temperature control equipment will be started and all doors of the equipment compartment will be opened. The temperature of the equipment compartment is adjusted by controlling the object to be controlled.

2. The method according to claim 1, characterized in that, The acquisition of the operating status of the cabin temperature control equipment deployed in the equipment compartment includes: Obtain the operating parameters of the cabin temperature control equipment deployed in the equipment compartment; The operating status of the cabin temperature control device is determined based on the relationship between its operating parameters and parameter thresholds.

3. The method according to claim 2, characterized in that, The acquisition of operating parameters of the cabin temperature control equipment deployed in the equipment compartment includes: The monitoring equipment monitors the air outlet wind speed, air outlet temperature, and power supply information of the cabin temperature control equipment deployed in the equipment compartment, which serve as the operating parameters of the cabin temperature control equipment; wherein, the power supply information includes power supply voltage information and power supply current information.

4. The method according to claim 1, characterized in that, The process of obtaining the internal sealing properties of the equipment compartment includes: Obtain the status information of the equipment compartment doors; Based on the status information of the hatch, the internal sealing properties of the equipment compartment are determined.

5. The method according to claim 4, characterized in that, The step of obtaining the status information of the equipment compartment door includes: Obtain the status information of the electromagnetic lock on the door of the equipment compartment; If the status information of the electromagnetic lock of the hatch is locked, then the status information of the hatch of the equipment compartment is determined to be closed. If the status information of the electromagnetic lock of the hatch is unlocked, then the status information of the hatch of the equipment compartment is determined to be open.

6. The method according to claim 4, characterized in that, Determining the internal sealing properties of the equipment compartment based on the status information of the hatch includes: If the status information of the hatch indicates that at least one hatch of the equipment compartment is in the open state, then the internal sealing property of the equipment compartment is determined to be a sealing failure. If the status information of the hatch indicates that all hatches in the equipment compartment are closed, then the internal sealing property of the equipment compartment is determined to be effective.

7. A temperature control device for an equipment compartment, characterized in that, include: The monitoring module is used to acquire the operating status of the cabin temperature control equipment deployed in the equipment cabin, as well as the cabin sealing properties of the equipment cabin; The object determination module is used to determine the object to be controlled in the equipment compartment as either the external temperature control device deployed outside the equipment compartment, or the external temperature control device and one or more doors of the equipment compartment if the operating status of the internal temperature control device is normal and the internal sealing attribute of the equipment compartment is a sealing failure; if the operating status of the internal temperature control device is abnormal, the object to be controlled in the equipment compartment is determined to be the external temperature control device and all doors of the equipment compartment. The control module is configured to: if the internal temperature control device is operating normally and the internal sealing of the equipment compartment is defective, control the external temperature control device to start operating; or control the external temperature control device to start operating and open one or more doors of the equipment compartment; wherein controlling the external temperature control device to start operating includes: sending a start command to the power supply terminal of the external temperature control device, the start command instructing the power supply terminal to supply power to the external temperature control device to control its start operating; if the internal temperature control device is operating abnormally, control the external temperature control device to start operating and open all doors of the equipment compartment; and adjust the temperature of the equipment compartment by controlling the object to be controlled.

8. A computer device comprising a memory and a processor, wherein the memory stores a computer program, characterized in that, When the processor executes the computer program, it implements the steps of the method according to any one of claims 1 to 6.

9. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the steps of the method according to any one of claims 1 to 6.

10. A computer program product, comprising a computer program, characterized in that, When the computer program is executed by a processor, it implements the steps of the method according to any one of claims 1 to 6.