WO2019036921A1 - 基于物联网的机房风道监控方法、装置及存储介质 - Google Patents

基于物联网的机房风道监控方法、装置及存储介质 Download PDF

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Publication number
WO2019036921A1
WO2019036921A1 PCT/CN2017/098554 CN2017098554W WO2019036921A1 WO 2019036921 A1 WO2019036921 A1 WO 2019036921A1 CN 2017098554 W CN2017098554 W CN 2017098554W WO 2019036921 A1 WO2019036921 A1 WO 2019036921A1
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air duct
cold air
internet
things
message
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PCT/CN2017/098554
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English (en)
French (fr)
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付妍文
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深圳企管加企业服务有限公司
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Priority to PCT/CN2017/098554 priority Critical patent/WO2019036921A1/zh
Publication of WO2019036921A1 publication Critical patent/WO2019036921A1/zh

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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • G05B19/048Monitoring; Safety

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  • the invention relates to the field of computer room monitoring, and particularly relates to a method, a device and a storage medium for monitoring a computer room air duct based on sensor data.
  • the hot air duct of the equipment room discharges the hot air, and the cold air duct is used to input the cold air cooling equipment and discharge through the hot air duct. If the cold air duct is abnormal, the heat dissipation of the equipment may be difficult.
  • the concept of the Internet of Things is getting hotter and hotter, and the number of data center rooms is increasing.
  • a large number of computer systems, servers and other equipment are stored in the equipment room, which serves as a hub for information exchange in various industries. Therefore, it is extremely important to perform airway monitoring on the data center room.
  • the management equipment of the computer room is relatively backward. Some even adopt the mode of patrolling the computer room on a regular basis. This not only increases the burden on the management personnel, but also may result in false negatives reporting, and it is impossible to find security risks in a timely and accurate manner.
  • the object of the present invention is to solve the above problems, and provide a method for monitoring a wind tunnel of a computer room based on the Internet of Things, and timely discover the problem of the air duct of the equipment room and alarm to ensure the safety of the equipment room.
  • the technical solution of the present invention is as follows:
  • the present invention discloses a method for monitoring a machine room air passage based on the Internet of Things, comprising:
  • the detection frequency of the hot air duct and/or the cold air duct is increased, and the abnormality alarm prompt is issued to the equipment room manager when the number of abnormal times is determined to be a preset number of times within a predetermined number of times.
  • the detection frequency is increased by 1-3 orders of magnitude when it is first determined that an abnormality has occurred.
  • the detection frequency is 1 time per second, 3 times per second, 5 times per second, 7 times per second, 9 times per second, 11 times per second, 10 times per second, 10 times per second, each 50 times in a second, 100 times per second, 500 times per second or 1000 times per second.
  • the threshold range of the hot air duct can be set to 25 to 30 degrees Celsius.
  • the temperature of the cold air duct can be set to 12 to 18 degrees Celsius.
  • the sending may include any form or any combination of a telephone, a short message, a mailbox, an instant messaging short message or an instant messaging group message.
  • the instant messaging message is one or more of a WeChat message, a QQ message or a nail message; the instant messaging group message is one of a WeChat group message, a QQ group message or a nail group message. Or a variety.
  • the invention also discloses an Internet of Things-based room airway monitoring device, comprising a memory and a processor, wherein the memory stores computer instructions capable of running on the processor, the processor running the computer instruction The steps of the above-mentioned IoT-based room airway monitoring method are executed.
  • the present invention also discloses a computer readable storage medium having stored thereon computer instructions that, when executed, perform the steps of the above-described Internet of Things based room airway monitoring method.
  • the present invention has the following beneficial effects: the invention detects the temperature data of the hot air duct; determines whether the temperature data exceeds a certain threshold; detects and determines whether the cold air duct system is working normally; if the cold air duct system is normal, reduces the cold air duct The temperature and / or strengthen the wind of the cold air duct; if the cold air system is abnormal, send an alert to the engine room manager.
  • the invention detects the temperature of the hot air duct and detects the cold air duct system, thereby ensuring the ventilation safety of the equipment room.
  • FIG. 1 is a flow chart showing an embodiment of an Internet of Things-based room airway monitoring method of the present invention.
  • FIG. 2 is a block diagram showing an embodiment of an Internet of Things based room airway monitoring system of the present invention.
  • FIG. 1 is a flow chart showing an embodiment of an Internet of Things-based room airway monitoring method of the present invention.
  • the Internet of Things-based room airway monitoring method of the present embodiment includes the following steps.
  • Step S10 detecting temperature data of the hot air duct.
  • the temperature data for detecting the hot air duct can be measured using a temperature sensor.
  • the hot air ducts may be disposed at an upper portion of the equipment room or at intervals between the rows and rows of the cabinets.
  • Step S12 It is judged whether the temperature data exceeds a certain threshold.
  • the threshold range of the hot air duct can be set to 25 to 30 degrees Celsius.
  • the hot air duct is the wind sent by the cold air after passing through the cooling cabinet, and the temperature is higher than the cold air duct system. Therefore, the normal temperature range of the hot air duct is different from the normal temperature range of the cold air duct, and different temperature standards are respectively set.
  • Step S14 Detect and determine whether the cold air duct system is working normally.
  • the normal operation of the cold air duct system means that the temperature of the cold air duct is normal, and/or the wind power of the cold air duct is normal.
  • the temperature of the cold air duct can be set to 12 to 18 degrees Celsius.
  • the wind of the cold air duct is used to cool the cabinet and pass through the hot air duct.
  • Step S16 If the cold air duct system is normal, the temperature of the cold air duct is lowered and/or the wind power of the cold air duct is strengthened.
  • the cold air duct system may indicate that the heat dissipation of the cabinet itself may be increased, and the heat dissipation may be enhanced by reducing the temperature of the cold air duct and/or enhancing the wind power of the cold air duct. By acting to lower the temperature through the air conditioner, and/or to strengthen the wind by a fan.
  • Step S18 If the cold air system is abnormal, an alarm is sent to the equipment room manager.
  • the sending may include any form or any combination of a telephone, a short message, a mailbox, an instant messaging short message, or an instant messaging group message. It can also be prompted by the room manager in the form of a warning light or a horn, or it can be displayed in a screen display.
  • the abnormal operation of the cold air duct system means Abnormal temperature of the cold air duct, and/or abnormal wind power of the cold air duct, usually manifested as abnormal air conditioning, and/or abnormality of the fan.
  • the detection frequency of the hot air duct and/or the cold air duct is increased, and when the number of abnormal times is determined to be a preset number of times within a predetermined number of times, the abnormal alarm is issued to the engine room management personnel.
  • the detection frequency is increased by 1-3 orders of magnitude when it is first determined that an abnormality has occurred.
  • the detection frequency is once per second, 3 times per second, 5 times per second, 7 times per second, 9 times per second, 11 times per second, 10 per second, 10 per second Times, 50 times per second, 100 times per second, 500 times per second or 1000 times per second.
  • the instant messaging message is one or more of a WeChat message, a QQ message, or a nail message;
  • the instant messaging group message is a WeChat group message, a QQ group message, or a nail group.
  • One or more of the group messages are one or more of the group messages.
  • the Internet of Things-based room airway monitoring system of the present embodiment includes the following modules: a hot air duct temperature detecting unit 21, a cold air duct system detecting unit 22, a data processing unit 23, a temperature adjusting unit 24, and a wind adjusting unit. 25.
  • Alarm alert unit 26 is included in the Internet of Things-based room airway monitoring system of the present embodiment.
  • a hot air duct temperature detecting unit 21 configured to detect temperature data of the hot air duct
  • the temperature detecting unit can perform measurement using a temperature sensor.
  • the hot air ducts may be disposed at an upper portion of the equipment room or at intervals between the rows and rows of the cabinets.
  • the cold air duct system detecting unit 22 is configured to detect and determine whether the cold air duct system is working normally;
  • the normal operation of the cold air duct system means that the temperature of the cold air duct is normal, and/or the wind power of the cold air duct is normal.
  • the temperature of the cold air duct can be set to 12 to 18 degrees Celsius.
  • the wind of the cold air duct is used to cool the cabinet and pass through the hot air duct.
  • the data processing unit 23 is configured to determine whether the hot air duct temperature data exceeds a certain threshold and determine whether the cold air duct system is working normally;
  • the threshold range of the hot air duct can be set to 25 to 30 degrees Celsius.
  • the hot air duct is the wind sent by the cold air after passing through the cooling cabinet, and the temperature is higher than the cold air duct system. Therefore, the normal temperature range of the hot air duct and The normal temperature range of the cold air duct is different, and different temperature standards are set separately.
  • the temperature adjustment unit 24 is configured to reduce the temperature of the cold air duct and/or strengthen the wind power of the cold air duct when the temperature data of the hot air duct exceeds a certain threshold and the cold air duct system works normally.
  • the wind adjusting unit 25 is configured to strengthen the wind of the cold air duct when the temperature data of the hot air duct exceeds a certain threshold and the cold air duct system works normally.
  • the cold air duct system may indicate that the heat dissipation of the cabinet itself may be increased, and the heat dissipation may be enhanced by reducing the temperature of the cold air duct and/or enhancing the wind power of the cold air duct. By acting to lower the temperature through the air conditioner, and/or to strengthen the wind by a fan.
  • the alarm prompting unit 26 is configured to send an alarm prompt to the equipment room manager when the temperature data of the hot air passage exceeds a certain threshold and the cold air system works abnormally.
  • the sending may include any form or any combination of a telephone, a short message, a mailbox, and the like. It can also be prompted by the room manager in the form of a warning light or a horn, or it can be displayed in a screen display.
  • the abnormal operation of the cold air duct system refers to an abnormal temperature of the cold air duct, and/or an abnormal wind power of the cold air duct, which usually manifests as an abnormality of the air conditioner, and/or an abnormality of the fan.
  • the detection frequency of the hot air duct and/or the cold air duct is increased, and when the number of abnormal times is determined to be a preset number of times within a predetermined number of times, the abnormal alarm is issued to the engine room management personnel.
  • the detection frequency is increased by 1-3 orders of magnitude when it is first determined that an abnormality has occurred.
  • the detection frequency is once per second, 3 times per second, 5 times per second, 7 times per second, 9 times per second, 11 times per second, 10 per second, 10 per second Times, 50 times per second, 100 times per second, 500 times per second or 1000 times per second.
  • the instant messaging message is one or more of a WeChat message, a QQ message, or a nail message;
  • the instant messaging group message is a WeChat group message, a QQ group message, or a nail group.
  • One or more of the group messages are one or more of the group messages.
  • the present invention detects the temperature data of the hot air duct; determines whether the temperature data exceeds a certain threshold; detects and determines whether the cold air duct system is working normally; if the cold air duct system is normal, lowers the temperature of the cold air duct and/or strengthens the wind of the cold air duct If the cold air system is abnormal, send an alert to the machine Room manager.
  • the invention detects the temperature of the hot air duct and detects the cold air duct system, thereby ensuring the ventilation safety of the equipment room.
  • An embodiment of the present invention further provides an Internet of Things-based room airway monitoring device, including a memory and a processor, wherein the memory stores computer instructions executable on the processor, and the processor runs the computer Any one of the Internet of Things-based room airway monitoring methods provided by the above embodiments of the present invention is executed when instructed.
  • an Internet of Things-based room airway monitoring device including a memory and a processor, wherein the memory stores computer instructions executable on the processor, and the processor runs the computer Any one of the Internet of Things-based room airway monitoring methods provided by the above embodiments of the present invention is executed when instructed.
  • the embodiment of the present invention further provides a computer readable storage medium, wherein the computer instruction is executed, and the computer instruction is executed to execute any of the Internet of Things-based room airway monitoring methods provided by the foregoing embodiments of the present invention.
  • the program may be stored in a computer readable storage medium, and the storage medium may include: ROM, RAM, disk or CD.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

一种基于物联网的机房风道监控方法、装置以及存储介质,用于控制机房通风,保证机房设备安全,方法包括:检测热风道的温度数据(S10);判断温度数据是否超过一定阈值(S12);检测并判断冷风道系统是否工作正常(S14);如果冷风道系统正常,则降低冷风道的温度和/或加强冷风道的风力(S16);如果冷风系统异常,则发送警报提示给机房管理人员(S18)。通过检测热风道的温度,并检测冷风道系统,从而保障机房通风安全。

Description

基于物联网的机房风道监控方法、装置及存储介质 技术领域
本发明涉及机房监控领域,尤其涉及基于传感器数据对计算机机房风道进行监控的方法、装置及存储介质。
背景技术
由于机房内的通讯设备众多,运行时散发出大量的热量,而通讯设备对工作环境的要求较高,过高、过低或剧烈变化的环境温度都会使计算机设备参数和几何尺寸发生变化,影响设备的可靠性和寿命。机房的热风道将热风排出,而冷风道则用于输入冷空气冷却设备并经过热风道排出,如果冷风道异常,会导致设备散热困难。随着互联网技术的发展,尤其是近些年物联网概念愈来愈火热,数据中心机房数量越来越多。机房中存放大量的计算机系统、服务器等设备,充当着各个行业信息交换的枢纽。因此,对数据中心机房进行风道监控极其重要。目前机房管理设备比较落后,有些甚至还是采取专人值班定时巡查机房环境的方式,这不仅增加了管理人员的负担,而且还可能存在漏报误报的情况,无法及时和准确地发现安全隐患。
发明内容
本发明的目的在于解决上述问题,提供了一种基于物联网的机房风道监控方法,及时发现机房风道问题并报警,以保障机房设备安全。
本发明的技术方案为:本发明揭示了一种基于物联网的机房风道监控方法,包括:
检测热风道的温度数据;
判断温度数据是否超过一定阈值;
检测并判断冷风道系统是否工作正常;
如果冷风道系统正常,则降低冷风道的温度和/或加强冷风道的风力;
如果冷风系统异常,则发送警报提示给机房管理人员。
优选地,在首次判断发生异常时,提高热风道和/或冷风道的检测频率,在预定次数内判断异常的次数多余设定次数时才向机房管理人员发出异常报警提示。
优选地,在首次判断发生异常时,检测频率提高1-3个数量级。
优选地,上述检测频率为每秒钟1次、每秒钟3次、每秒钟5次、每秒钟7次、每秒钟9次、每秒钟11次、每秒钟10次、每秒钟50次、每秒钟100次、每秒钟500次或每秒钟1000次。
优选地,所述热风道的阈值范围可设置为25~30摄氏度。
优选地,所述冷风道的温度可设置为12~18摄氏度。
优选地,所述发送可以包括电话、短消息、邮箱、即时通讯短消息或即时通讯群组消息中等任一形式或任意组合方式。
上述的即时通讯消息为微信消息、QQ消息或钉钉消息中的一种或多种;上述的即时通讯群组消息为微信群组消息、QQ群组消息或钉钉群组消息中的一种或多种。
本发明还揭示了一种基于物联网的机房风道监控装置,包括存储器和处理器,所述存储器上存储有能够在所述处理器上运行的计算机指令,所述处理器运行所述计算机指令时执行上述基于物联网的机房风道监控方法的步骤。
本发明还揭示了一种计算机可读存储介质,其上存储有计算机指令,所述计算机指令运行时执行上述基于物联网的机房风道监控方法的步骤。
本发明对比现有技术有如下的有益效果:本发明通过检测热风道的温度数据;判断温度数据是否超过一定阈值;检测并判断冷风道系统是否工作正常;如果冷风道系统正常,则降低冷风道的温度和/或加强冷风道的风力;如果冷风系统异常,则发送警报提示给机房管理人员。本发明检测热风道的温度,并检测冷风道系统,从而保障机房通风安全。
附图说明
图1示出了本发明的基于物联网的机房风道监控方法的实施例的流程图。
图2示出了本发明的基于物联网的机房风道监控系统的实施例的模块图。
具体实施方式
下面结合附图和实施例对本发明作进一步的描述。
图1示出了本发明的基于物联网的机房风道监控方法的实施例的流程图。请参见图1,本实施例的基于物联网的机房风道监控方法包括如下的步骤。
步骤S10:检测热风道的温度数据。
所述检测热风道的温度数据可以采用温度传感器进行测量。所述热风道可以设置在机房的上部,或在机柜排与排之间间隔设置。
步骤S12:判断温度数据是否超过一定阈值。
所述热风道的阈值范围可设置为25~30摄氏度。热风道为冷风经过冷却机柜之后送出来的风,温度高于冷风道系统。因此,热风道的正常温度范围和冷风道的正常温度范围不同,分别设置不同的温度标准。
步骤S14:检测并判断冷风道系统是否工作正常。
所述冷风道系统工作正常是指冷风道的温度正常,和/或冷风道的风力正常。所述冷风道的温度可设置为12~18摄氏度。所述冷风道的风用于冷却机柜并通过热风道出。
步骤S16:如果冷风道系统正常,则降低冷风道的温度和/或加强冷风道的风力。
所述冷风道系统正常,则表示可能是因为机柜本身散热增多,则可通过降低冷风道的温度和/或加强冷风道的风力来增强散热。通过表现为通过空调降低温度,和/或通过风扇加强风力。
步骤S18:如果冷风系统异常,则发送警报提示给机房管理人员。
所述发送可以包括电话、短消息、邮箱、即时通讯短消息或即时通讯群组消息中等任一形式或任意组合方式。也可以通过警示灯或鸣喇叭的形式提示机房管理人员,或者以屏幕显示的方式醒目显示。所述冷风道系统工作异常是指 冷风道的温度异常,和/或冷风道的风力异常,通常表现为空调异常,和/或风扇异常。
在一实施例中,在首次判断发生异常时,提高热风道和/或冷风道的检测频率,在预定次数内判断异常的次数多余设定次数时才向机房管理人员发出异常报警提示。
在一实施例中,在首次判断发生异常时,检测频率提高1-3个数量级。
在一实施例中,上述检测频率为每秒钟1次、每秒钟3次、每秒钟5次、每秒钟7次、每秒钟9次、每秒钟11次、每秒钟10次、每秒钟50次、每秒钟100次、每秒钟500次或每秒钟1000次。
在一实施例中,上述的即时通讯消息为微信消息、QQ消息或钉钉消息中的一种或多种;上述的即时通讯群组消息为微信群组消息、QQ群组消息或钉钉群组消息中的一种或多种。
图2示出了本发明的基于物联网的机房风道监控系统的实施例的结构。请参见图2,本实施例的基于物联网的机房风道监控系统包括如下的模块:热风道温度检测单元21,冷风道系统检测单元22,数据处理单元23,温度调整单元24,风力调整单元25,警报提示单元26。
热风道温度检测单元21,用于检测热风道的温度数据;
所述温度检测单元可以采用温度传感器进行测量。所述热风道可以设置在机房的上部,或在机柜排与排之间间隔设置。
冷风道系统检测单元22,用于检测并判断冷风道系统是否工作正常;
所述冷风道系统工作正常是指冷风道的温度正常,和/或冷风道的风力正常。所述冷风道的温度可设置为12~18摄氏度。所述冷风道的风用于冷却机柜并通过热风道出。
数据处理单元23,用于判断热风道温度数据是否超过一定阈值以及判断冷风道系统是否工作正常;
所述热风道的阈值范围可设置为25~30摄氏度。热风道为冷风经过冷却机柜之后送出来的风,温度高于冷风道系统。因此,热风道的正常温度范围和 冷风道的正常温度范围不同,分别设置不同的温度标准。
温度调整单元24,用于当热风道的温度数据超过一定阈值且冷风道系统工作正常时,降低冷风道的温度和/或加强冷风道的风力。
风力调整单元25,用于当热风道的温度数据超过一定阈值且冷风道系统工作正常时,加强冷风道的风力。
所述冷风道系统正常,则表示可能是因为机柜本身散热增多,则可通过降低冷风道的温度和/或加强冷风道的风力来增强散热。通过表现为通过空调降低温度,和/或通过风扇加强风力。
警报提示单元26,用于当热风道的温度数据超过一定阈值且冷风系统工作异常,则发送警报提示给机房管理人员。
所述发送可以包括电话、短消息、邮箱等任一形式或任意组合方式。也可以通过警示灯或鸣喇叭的形式提示机房管理人员,或者以屏幕显示的方式醒目显示。所述冷风道系统工作异常是指冷风道的温度异常,和/或冷风道的风力异常,通常表现为空调异常,和/或风扇异常。
在一实施例中,在首次判断发生异常时,提高热风道和/或冷风道的检测频率,在预定次数内判断异常的次数多余设定次数时才向机房管理人员发出异常报警提示。
在一实施例中,在首次判断发生异常时,检测频率提高1-3个数量级。
在一实施例中,上述检测频率为每秒钟1次、每秒钟3次、每秒钟5次、每秒钟7次、每秒钟9次、每秒钟11次、每秒钟10次、每秒钟50次、每秒钟100次、每秒钟500次或每秒钟1000次。
在一实施例中,上述的即时通讯消息为微信消息、QQ消息或钉钉消息中的一种或多种;上述的即时通讯群组消息为微信群组消息、QQ群组消息或钉钉群组消息中的一种或多种。
因此,本发明通过检测热风道的温度数据;判断温度数据是否超过一定阈值;检测并判断冷风道系统是否工作正常;如果冷风道系统正常,则降低冷风道的温度和/或加强冷风道的风力;如果冷风系统异常,则发送警报提示给机 房管理人员。本发明检测热风道的温度,并检测冷风道系统,从而保障机房通风安全。
本发明实施例还提供一种基于物联网的机房风道监控装置,包括存储器和处理器,所述存储器上存储有能够在所述处理器上运行的计算机指令,所述处理器运行所述计算机指令时执行本发明上述实施例提供的任一种基于物联网的机房风道监控方法。
本发明实施例还提供一种计算机可读存储介质,其上存储有计算机指令,所述计算机指令运行时执行本发明上述实施例提供的任一种基于物联网的机房风道监控方法。
本领域普通技术人员可以理解上述实施例的各种方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,该程序可以存储于一计算机可读存储介质中,存储介质可以包括:ROM、RAM、磁盘或光盘等。
上述实施例是提供给本领域普通技术人员来实现或使用本发明的,本领域普通技术人员可在不脱离本发明的发明思想的情况下,对上述实施例做出种种修改或变化,因而本发明的保护范围并不被上述实施例所限,而应该是符合权利要求书提到的创新性特征的最大范围。

Claims (10)

  1. 一种基于物联网的机房风道监控方法,包括:
    检测热风道的温度数据;
    判断温度数据是否超过一定阈值;
    检测并判断冷风道系统是否工作正常;
    如果冷风道系统正常,则降低冷风道的温度和/或加强冷风道的风力;
    如果冷风系统异常,则发送警报提示给机房管理人员。
  2. 根据权利要求1所述的基于物联网的机房风道监控方法,其特征在于,在首次判断发生异常时,提高热风道和/或冷风道的检测频率,在预定次数内判断异常的次数多余设定次数时才向机房管理人员发出异常报警提示。
  3. 根据权利要求2所述的基于物联网的机房风道监控方法,其特征在于,在首次判断发生异常时,检测频率提高1-3个数量级。
  4. 根据权利要求3所述的基于物联网的机房风道监控方法,其特征在于,上述检测频率为每秒钟1次、每秒钟3次、每秒钟5次、每秒钟7次、每秒钟9次、每秒钟11次、每秒钟10次、每秒钟50次、每秒钟100次、每秒钟500次或每秒钟1000次。
  5. 根据权利要求4所述的基于物联网的机房风道监控方法,其特征在于,所述热风道的阈值范围可设置为25~30摄氏度。
  6. 根据权利要求5所述的基于物联网的机房风道监控方法,其特征在于,所述冷风道的温度可设置为12~18摄氏度。
  7. 根据权利要求6所述的基于物联网的机房风道监控方法,其特征在于,所述发送可以包括电话、短消息、邮箱、即时通讯短消息或即时通讯群组消息中任一形式或任意组合方式。
  8. 根据权利要求7所述的基于物联网的机房风道监控方法,其特征在于,上述的即时通讯消息为微信消息、QQ消息或钉钉消息中的一种或多种;上述的即时通讯群组消息为微信群组消息、QQ群组消息或钉钉群组消息中的一种或多种。
  9. 一种基于物联网的机房风道监控装置,包括存储器和处理器,所述存储器上存储有能够在所述处理器上运行的计算机指令,其特征在于,所述处理器运行所述计算机指令时执行权利要求1至8任一项所述的基于物联网的机房风道监控方法的步骤。
  10. 一种计算机可读存储介质,其上存储有计算机指令,其特征在于,所述计算机指令运行时执行权利要求1至8任一项所述的基于物联网的机房风道监控方法的步骤。
PCT/CN2017/098554 2017-08-22 2017-08-22 基于物联网的机房风道监控方法、装置及存储介质 WO2019036921A1 (zh)

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CN103926961A (zh) * 2014-04-29 2014-07-16 国家电网公司 机房的整体调控系统和方法
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CN106196525A (zh) * 2016-08-23 2016-12-07 四川科冠电子有限公司 一种新型机房空调的智能检测控制系统
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CN103926961A (zh) * 2014-04-29 2014-07-16 国家电网公司 机房的整体调控系统和方法
CN205079400U (zh) * 2015-10-30 2016-03-09 国网安徽省电力公司寿县供电公司 一种通用机房的环境监测报警系统
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