WO2019036959A1 - Machine room harmful gas monitoring system based on internet of things - Google Patents
Machine room harmful gas monitoring system based on internet of things Download PDFInfo
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- WO2019036959A1 WO2019036959A1 PCT/CN2017/098708 CN2017098708W WO2019036959A1 WO 2019036959 A1 WO2019036959 A1 WO 2019036959A1 CN 2017098708 W CN2017098708 W CN 2017098708W WO 2019036959 A1 WO2019036959 A1 WO 2019036959A1
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- G01—MEASURING; TESTING
- G01D—MEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
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- G01D21/02—Measuring two or more variables by means not covered by a single other subclass
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- the invention relates to the field of computer room monitoring, in particular to a system for monitoring harmful lifting of a computer room.
- the object of the present invention is to solve the above problems, and provide a harmful gas monitoring system for a computer room based on the Internet of Things, and timely detect harmful gases in the equipment room to ensure the safety of the equipment room.
- the invention discloses an operating room harmful gas system based on the Internet of Things, comprising:
- a harmful gas detection module for detecting the presence of harmful gases in the equipment room
- a data processing module configured to determine whether the concentration of the harmful gas is greater than a set threshold
- An alert alert module that sends an alert and sends harmful gas data to the room manager.
- the harmful gas comprises one or more of the harmful gases including carbon monoxide, sulfur dioxide, hydrogen sulfide, nitrogen dioxide, ozone, chlorine, nitrogen, toluene and formaldehyde.
- the notification is in any form or any combination of a telephone, a short message, a mailbox.
- the foregoing is sent to the computer room manager in 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 or more of a WeChat group message, a QQ group message or a nail group message.
- an air purifying device closing unit is further included, configured to turn off the air purifying device when the harmful gas concentration is below a certain threshold and reaches a certain time.
- the formaldehyde has a threshold in the range of 0.2 to 0.5 ppm
- the sulfur dioxide has a threshold in the range of 1 to 2 ppm
- the carbon monoxide has a threshold in the range of 30 to 50 ppm.
- the air purifying device is blown by a high-power fan, and the ventilation in the machine room is increased to blow harmful gas out of the machine room; or the chemical filter is used for filtering neutralization, or the adsorption function is used for adsorption. .
- the present invention has the following beneficial effects: the invention detects whether there is harmful gas in the equipment room; determines that the harmful gas concentration is greater than a certain threshold; turns on the air purifying device; issues an alarm and sends the harmful gas data to the engine room management personnel.
- the invention ensures the concentration of harmful gas in the machine room and activates the air purifying device in time to ensure the environment of the machine room.
- FIG. 1 is a flow chart showing an embodiment of an IoT-based room harmful gas monitoring method of the present invention.
- FIG. 2 is a block diagram showing an embodiment of an Internet of Things-based hazardous gas system of the present invention.
- FIG. 1 is a flow chart showing an embodiment of an IoT-based room harmful gas monitoring method of the present invention.
- the method for monitoring harmful gas in the equipment room based on the Internet of Things includes the following steps.
- Step S11 detecting whether there is harmful gas in the equipment room.
- the harmful gases include carbon monoxide, sulfur dioxide, hydrogen sulfide, nitrogen dioxide, ozone, chlorine, nitrogen, toluene, formaldehyde, etc., which are corrosive to equipment room equipment and harmful to human health.
- carbon monoxide when the carbon monoxide is above a set concentration, an alarm is sent to the fire department.
- Step S12 determining that the harmful gas concentration is greater than a certain threshold.
- the threshold range of different gases is different.
- the threshold of formaldehyde may range from 0.2 to 0.5 ppm
- the threshold of sulfur dioxide may range from 1 to 2 ppm
- the threshold of carbon monoxide may range from 30 to 50 ppm.
- Step S13 Turn on the air purifying device.
- the air purifying device can be blown with a high-powered fan to increase the ventilation in the machine room to blow harmful gases out of the machine room. It is also possible to carry out filtration neutralization using a chemical filter or adsorption using a substance having an adsorption function. It can also be used in combination in several ways.
- Step S14 Send an alarm and send the harmful gas data to the engine room management personnel.
- the notification may be in the form of a phone, a short message, a mailbox, or any combination.
- the foregoing is sent to the computer room manager in 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 above 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 or more of a WeChat group message, a QQ group message or a nail group message.
- Step S15 Continue to detect harmful gas data.
- Step S16 When the harmful gas concentration is below a certain threshold and reaches a certain time, the alarm is released and the air purifying device is turned off.
- the Internet of Things-based harmful gas system of the present embodiment includes the following modules: a harmful gas detecting module 21, a data processing module 22, an air purifying device starting module 23, an alarm prompting module 24, and an air purifying device closing unit. 25.
- the harmful gas detecting module 21 detects whether there is harmful gas in the equipment room.
- the harmful gases include carbon monoxide, sulfur dioxide, hydrogen sulfide, nitrogen dioxide, ozone, chlorine, nitrogen, toluene, formaldehyde, etc., which are corrosive to equipment room equipment and harmful to human health.
- carbon monoxide when the carbon monoxide is above a set concentration, an alarm is sent to the fire department.
- the data processing module 22 determines whether the concentration of the harmful gas is greater than a set threshold.
- the threshold range of different gases is different.
- the threshold of formaldehyde may range from 0.2 to 0.5 ppm
- the threshold of sulfur dioxide may range from 1 to 2 ppm
- the threshold of carbon monoxide may range from 30 to 50 ppm.
- the air purifying device activates the module 23 to turn on the air purifying device.
- the air purifying device can be blown with a high-powered fan to increase the ventilation in the machine room to blow harmful gases out of the machine room. It is also possible to carry out filtration neutralization using a chemical filter or adsorption using a substance having an adsorption function. It can also be used in combination in several ways.
- the alert prompt module 24 issues an alert and sends harmful gas data to the room manager.
- the notification may be in the form of a phone, a short message, a mailbox, or any combination.
- the foregoing is sent to the computer room manager in 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 above 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 or more of a WeChat group message, a QQ group message or a nail group message.
- the air purifying device shuts down the unit 25 to turn off the air purifying device when the harmful gas concentration is below a certain threshold and reaches a certain time.
- the present invention detects whether there is a harmful gas in the equipment room; determines that the harmful gas concentration is greater than a certain threshold; turns on the air purifying device; issues an alarm and sends the harmful gas data to the engine room management personnel.
- the invention ensures the concentration of harmful gas in the machine room and activates the air purifying device in time to ensure the environment of the machine room.
- An embodiment of the present invention further provides an Internet of Things-based harmful gas device, comprising a memory and a processor, wherein the memory stores computer instructions executable on the processor, and the processor runs the computer instruction Any method for monitoring harmful gas in a room based on the Internet of Things provided by the above embodiments of the present invention is performed.
- the embodiment of the present invention further provides a computer readable storage medium, where the computer instruction is executed, and the computer instruction executes the method for monitoring the harmful gas of the equipment room based on the Internet of Things provided by the above 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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Abstract
Provided is a machine room harmful gas monitoring system based on the Internet of Things, the system being used for discovering a harmful gas in a machine room in a timely manner and giving an alarm to guarantee the environmental safety of the machine room. The system comprises: a harmful gas detection module for detecting whether a harmful gas is present in a machine room (S11); a data processing module for determining that the concentration of the harmful gas is greater than a certain threshold value (S12); an air purification apparatus turn-on module for turning on an air purification apparatus (S13); and an alarm prompt module for giving an alarm and sending harmful gas data to a machine room administrator (S14). An air purification apparatus is started in a timely manner by detecting the concentration of a harmful gas in a machine room, thereby guaranteeing the air quality of the machine room.
Description
本发明涉及机房监控领域,尤其涉及对计算机机房有害提起进行监控的系统。The invention relates to the field of computer room monitoring, in particular to a system for monitoring harmful lifting of a computer room.
对计算机设备有影响的腐蚀性气体很多,大气中含有的各种盐、酸及冶炼、化工等工业生产中排出的有害气体对计算机设备具有很大的腐蚀作用,腐蚀性气体对计算机设备的影响是不能恢复的,其腐蚀量与有害气体的浓度和暴露时间成正比。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有害气体检测是极其重要的。There are many corrosive gases that affect computer equipment. The various gases, acids, and harmful gases emitted from industrial production such as smelting and chemical industry have great corrosive effects on computer equipment. The impact of corrosive gases on computer equipment It cannot be recovered, and the amount of corrosion is proportional to the concentration of harmful gases and the exposure time. With the development of Internet technology, especially in recent years, 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 harmful gas detection in the data center room.
发明内容Summary of the invention
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有害气体监控系统,及时发现机房有害气体,以保障机房设备安全。The object of the present invention is to solve the above problems, and provide a harmful gas monitoring system for a computer room based on the Internet of Things, and timely detect harmful gases in the equipment room to ensure the safety of the equipment room.
本发明的技术方案为:The technical solution of the present invention is:
本发明揭示了一种基于物联网的机房有害气体系统,包括:The invention discloses an operating room harmful gas system based on the Internet of Things, comprising:
有害气体检测模块,用于检测机房内是否存在有害气体;A harmful gas detection module for detecting the presence of harmful gases in the equipment room;
数据处理模块,用于判断有害气体浓度是否大于设定阈值;a data processing module, configured to determine whether the concentration of the harmful gas is greater than a set threshold;
空气净化装置启动模块,用于开启空气净化装置;An air purifying device starting module for opening the air purifying device;
警报提示模块,用于发出警报并将有害气体数据发送给机房管理人员。
An alert alert module that sends an alert and sends harmful gas data to the room manager.
优选地,所述有害气体包括所述有害气体包括一氧化碳、二氧化硫、硫化氢、二氧化氮、臭氧、氯气、氮气、甲苯、甲醛其中的一种或几种。Preferably, the harmful gas comprises one or more of the harmful gases including carbon monoxide, sulfur dioxide, hydrogen sulfide, nitrogen dioxide, ozone, chlorine, nitrogen, toluene and formaldehyde.
优选地,所述一氧化碳高于设定浓度时,同时向消防机关发送警报。Preferably, when the carbon monoxide is higher than the set concentration, an alarm is sent to the fire department.
优选地,所述通知包括以电话、短消息、邮箱中的任一形式或任意组合形式。Preferably, the notification is in any form or any combination of a telephone, a short message, a mailbox.
优选地,上述发送给机房管理人员以电话、短消息、邮箱、即时通讯短消息或即时通讯群组消息中的任一形式或任意组合形式。Preferably, the foregoing is sent to the computer room manager in any form or any combination of a telephone, a short message, a mailbox, an instant messaging short message or an instant messaging group message.
优选地,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。Preferably, the instant messaging message is one or more of a WeChat message, a QQ message or a nail message.
优选地,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。Preferably, the instant messaging group message is one or more of a WeChat group message, a QQ group message or a nail group message.
优选地,还包括空气净化装置关闭单元,用于当有害气体浓度低于一定阈值且达到一定时间时,关闭空气净化装置。Preferably, an air purifying device closing unit is further included, configured to turn off the air purifying device when the harmful gas concentration is below a certain threshold and reaches a certain time.
优选地,所述甲醛的阈值范围为0.2~0.5ppm,所述二氧化硫的阈值范围为1~2ppm,所述一氧化碳的阈值范围可为30~50ppm。Preferably, the formaldehyde has a threshold in the range of 0.2 to 0.5 ppm, the sulfur dioxide has a threshold in the range of 1 to 2 ppm, and the carbon monoxide has a threshold in the range of 30 to 50 ppm.
优选地,所述空气净化装置为大功率风扇猛吹,加大机房内的通风力度,以将有害气体吹出机房外;或者采用化学过滤器进行过滤中和,或者采用具有吸附功能的物质进行吸附。Preferably, the air purifying device is blown by a high-power fan, and the ventilation in the machine room is increased to blow harmful gas out of the machine room; or the chemical filter is used for filtering neutralization, or the adsorption function is used for adsorption. .
本发明对比现有技术有如下的有益效果:本发明通过检测机房内是否存在有害气体;判断有害气体浓度大于一定阈值;开启空气净化装置;发出警报并将有害气体数据发送给机房管理人员。本发明通过检测机房有害气体浓度,及时启用空气净化装置,使机房环境得到保障。Compared with the prior art, the present invention has the following beneficial effects: the invention detects whether there is harmful gas in the equipment room; determines that the harmful gas concentration is greater than a certain threshold; turns on the air purifying device; issues an alarm and sends the harmful gas data to the engine room management personnel. The invention ensures the concentration of harmful gas in the machine room and activates the air purifying device in time to ensure the environment of the machine room.
图1示出了本发明的基于物联网的机房有害气体监控方法的实施例的流程图。1 is a flow chart showing an embodiment of an IoT-based room harmful gas monitoring method of the present invention.
图2示出了本发明的基于物联网的机房有害气体系统的实施例的模块图。2 is a block diagram showing an embodiment of an Internet of Things-based hazardous gas system of the present invention.
下面结合附图和实施例对本发明作进一步的描述。The invention will now be further described with reference to the drawings and embodiments.
图1示出了本发明的基于物联网的机房有害气体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有害气体监控方法包括如下的步骤。1 is a flow chart showing an embodiment of an IoT-based room harmful gas monitoring method of the present invention. Referring to FIG. 1, the method for monitoring harmful gas in the equipment room based on the Internet of Things according to the embodiment includes the following steps.
步骤S11:检测机房内是否存在有害气体。Step S11: detecting whether there is harmful gas in the equipment room.
所述有害气体包括一氧化碳、二氧化硫、硫化氢、二氧化氮、臭氧、氯气、氮气、甲苯、甲醛等对机房设备具有腐蚀性以及对人体健康具有危害的气体。在一实施例中,所述一氧化碳高于设定浓度时,同时向消防机关发送警报。The harmful gases include carbon monoxide, sulfur dioxide, hydrogen sulfide, nitrogen dioxide, ozone, chlorine, nitrogen, toluene, formaldehyde, etc., which are corrosive to equipment room equipment and harmful to human health. In one embodiment, when the carbon monoxide is above a set concentration, an alarm is sent to the fire department.
步骤S12:判断有害气体浓度大于一定阈值。Step S12: determining that the harmful gas concentration is greater than a certain threshold.
不同气体的阈值范围不同。比如,甲醛的阈值范围可为0.2~0.5ppm,二氧化硫的阈值范围可为1~2ppm,一氧化碳的阈值范围可为30~50ppm。The threshold range of different gases is different. For example, the threshold of formaldehyde may range from 0.2 to 0.5 ppm, the threshold of sulfur dioxide may range from 1 to 2 ppm, and the threshold of carbon monoxide may range from 30 to 50 ppm.
步骤S13:开启空气净化装置。Step S13: Turn on the air purifying device.
所述空气净化装置可使用大功率风扇猛吹,加大机房内的通风力度,以将有害气体吹出机房外。也可以采用化学过滤器进行过滤中和,或者采用具有吸附功能的物质进行吸附。也可以采用上述几种方式结合使用。The air purifying device can be blown with a high-powered fan to increase the ventilation in the machine room to blow harmful gases out of the machine room. It is also possible to carry out filtration neutralization using a chemical filter or adsorption using a substance having an adsorption function. It can also be used in combination in several ways.
步骤S14:发出警报并将有害气体数据发送给机房管理人员。Step S14: Send an alarm and send the harmful gas data to the engine room management personnel.
所述通知可以以电话、短消息、邮箱任一形式或任意组合形式。The notification may be in the form of a phone, a short message, a mailbox, or any combination.
上述发送给机房管理人员以电话、短消息、邮箱、即时通讯短消息或即时通讯群组消息中的任一形式或任意组合形式。
The foregoing is sent to the computer room manager in any form or any combination of a telephone, a short message, a mailbox, an instant messaging short message or an instant messaging group message.
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。The above instant messaging message is one or more of a WeChat message, a QQ message or a nail message.
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。The instant messaging group message is one or more of a WeChat group message, a QQ group message or a nail group message.
步骤S15:继续检测有害气体数据。Step S15: Continue to detect harmful gas data.
步骤S16:当有害气体浓度低于一定阈值且达到一定时间时,解除警报并关闭空气净化装置。Step S16: When the harmful gas concentration is below a certain threshold and reaches a certain time, the alarm is released and the air purifying device is turned off.
为安全起见,必须要保证有害气体浓度低于一定阈值且达到一定时间,才能确认危险以消除并关闭净化装置。但警报解除之后,有害气体依旧继续检测。For safety reasons, it is necessary to ensure that the harmful gas concentration is below a certain threshold and for a certain period of time to confirm the hazard to eliminate and shut down the purification device. However, after the alarm is released, harmful gases continue to be detected.
图2示出了本发明的基于物联网的机房有害气体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有害气体系统包括如下的模块:有害气体检测模块21,数据处理模块22,空气净化装置启动模块23,警报提示模块24,空气净化装置关闭单元25。2 shows the structure of an embodiment of the invention-based room-based hazardous gas system of the present invention. Referring to FIG. 2, the Internet of Things-based harmful gas system of the present embodiment includes the following modules: a harmful gas detecting module 21, a data processing module 22, an air purifying device starting module 23, an alarm prompting module 24, and an air purifying device closing unit. 25.
有害气体检测模块21,检测机房内是否存在有害气体。The harmful gas detecting module 21 detects whether there is harmful gas in the equipment room.
所述有害气体包括一氧化碳、二氧化硫、硫化氢、二氧化氮、臭氧、氯气、氮气、甲苯、甲醛等对机房设备具有腐蚀性以及对人体健康具有危害的气体。在一实施例中,所述一氧化碳高于设定浓度时,同时向消防机关发送警报。The harmful gases include carbon monoxide, sulfur dioxide, hydrogen sulfide, nitrogen dioxide, ozone, chlorine, nitrogen, toluene, formaldehyde, etc., which are corrosive to equipment room equipment and harmful to human health. In one embodiment, when the carbon monoxide is above a set concentration, an alarm is sent to the fire department.
数据处理模块22,判断有害气体浓度是否大于设定阈值。The data processing module 22 determines whether the concentration of the harmful gas is greater than a set threshold.
不同气体的阈值范围不同。比如,甲醛的阈值范围可为0.2~0.5ppm,二氧化硫的阈值范围可为1~2ppm,一氧化碳的阈值范围可为30~50ppm。The threshold range of different gases is different. For example, the threshold of formaldehyde may range from 0.2 to 0.5 ppm, the threshold of sulfur dioxide may range from 1 to 2 ppm, and the threshold of carbon monoxide may range from 30 to 50 ppm.
空气净化装置启动模块23,开启空气净化装置。The air purifying device activates the module 23 to turn on the air purifying device.
所述空气净化装置可使用大功率风扇猛吹,加大机房内的通风力度,以将有害气体吹出机房外。也可以采用化学过滤器进行过滤中和,或者采用具有吸附功能的物质进行吸附。也可以采用上述几种方式结合使用。The air purifying device can be blown with a high-powered fan to increase the ventilation in the machine room to blow harmful gases out of the machine room. It is also possible to carry out filtration neutralization using a chemical filter or adsorption using a substance having an adsorption function. It can also be used in combination in several ways.
警报提示模块24,发出警报并将有害气体数据发送给机房管理人员。
The alert prompt module 24 issues an alert and sends harmful gas data to the room manager.
所述通知可以以电话、短消息、邮箱任一形式或任意组合形式。The notification may be in the form of a phone, a short message, a mailbox, or any combination.
上述发送给机房管理人员以电话、短消息、邮箱、即时通讯短消息或即时通讯群组消息中的任一形式或任意组合形式。The foregoing is sent to the computer room manager in any form or any combination of a telephone, a short message, a mailbox, an instant messaging short message or an instant messaging group message.
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。The above instant messaging message is one or more of a WeChat message, a QQ message or a nail message.
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。The instant messaging group message is one or more of a WeChat group message, a QQ group message or a nail group message.
空气净化装置关闭单元25,当有害气体浓度低于一定阈值且达到一定时间时,关闭空气净化装置。The air purifying device shuts down the unit 25 to turn off the air purifying device when the harmful gas concentration is below a certain threshold and reaches a certain time.
为安全起见,必须要保证有害气体浓度低于一定阈值且达到一定时间,才能确认危险以消除并关闭净化装置。但警报解除之后,有害气体依旧继续检测。For safety reasons, it is necessary to ensure that the harmful gas concentration is below a certain threshold and for a certain period of time to confirm the hazard to eliminate and shut down the purification device. However, after the alarm is released, harmful gases continue to be detected.
因此,本发明通过检测机房内是否存在有害气体;判断有害气体浓度大于一定阈值;开启空气净化装置;发出警报并将有害气体数据发送给机房管理人员。本发明通过检测机房有害气体浓度,及时启用空气净化装置,使机房环境得到保障。Therefore, the present invention detects whether there is a harmful gas in the equipment room; determines that the harmful gas concentration is greater than a certain threshold; turns on the air purifying device; issues an alarm and sends the harmful gas data to the engine room management personnel. The invention ensures the concentration of harmful gas in the machine room and activates the air purifying device in time to ensure the environment of the machine room.
本发明实施例还提供一种基于物联网的机房有害气体装置,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有害气体监控方法。An embodiment of the present invention further provides an Internet of Things-based harmful gas device, comprising a memory and a processor, wherein the memory stores computer instructions executable on the processor, and the processor runs the computer instruction Any method for monitoring harmful gas in a room based on the Internet of Things provided by the above embodiments of the present invention is performed.
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有害气体监控方法。The embodiment of the present invention further provides a computer readable storage medium, where the computer instruction is executed, and the computer instruction executes the method for monitoring the harmful gas of the equipment room based on the Internet of Things provided by the above embodiments of the present invention.
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。
A person skilled in the art may understand that all or part of the various steps of the foregoing embodiments may be performed by a program to instruct related hardware. The program may be stored in a computer readable storage medium, and the storage medium may include: ROM, RAM, disk or CD.
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。
The above embodiments are provided to enable a person skilled in the art to implement or use the present invention. Those skilled in the art can make various modifications or changes to the above embodiments without departing from the inventive concept. The scope of protection of the invention is not limited by the embodiments described above, but should be the maximum range of the innovative features mentioned in the claims.
Claims (10)
- 一种基于物联网的机房有害气体系统,包括:A machine room-based hazardous gas system based on the Internet of Things, including:有害气体检测模块,用于检测机房内是否存在有害气体;A harmful gas detection module for detecting the presence of harmful gases in the equipment room;数据处理模块,用于判断有害气体浓度是否大于设定阈值;a data processing module, configured to determine whether the concentration of the harmful gas is greater than a set threshold;空气净化装置启动模块,用于开启空气净化装置;An air purifying device starting module for opening the air purifying device;警报提示模块,用于发出警报并将有害气体数据发送给机房管理人员。An alert alert module that sends an alert and sends harmful gas data to the room manager.
- 根据权利要求1所述的基于物联网的机房有害气体系统,其特征在于,所述有害气体包括所述有害气体包括一氧化碳、二氧化硫、硫化氢、二氧化氮、臭氧、氯气、氮气、甲苯、甲醛其中的一种或几种。The Internet of Things-based harmful gas system according to claim 1, wherein the harmful gas comprises the harmful gases including carbon monoxide, sulfur dioxide, hydrogen sulfide, nitrogen dioxide, ozone, chlorine, nitrogen, toluene, formaldehyde. One or more of them.
- 根据权利要求2所述的基于物联网的机房有害气体监控系统,其特征在于,所述一氧化碳高于设定浓度时,同时向消防机关发送警报。The equipment-based harmful gas monitoring system for an Internet of Things according to claim 2, wherein when the carbon monoxide is higher than a set concentration, an alarm is sent to the fire department.
- 根据权利要求1所述的基于物联网的机房有害气体系统,其特征在于,所述通知包括以电话、短消息、邮箱中的任一形式或任意组合形式。The Internet of Things-based room harmful gas system according to claim 1, wherein the notification comprises any one of a telephone, a short message, a mailbox, or any combination.
- 根据权利要求1所述的基于物联网的机房有害气体监控系统,其特征在于,上述发送给机房管理人员以电话、短消息、邮箱、即时通讯短消息或即时通讯群组消息中的任一形式或任意组合形式。The Internet of Things-based room harmful gas monitoring system according to claim 1, wherein the sending to the equipment room manager is any one of a telephone, a short message, a mailbox, an instant messaging short message or an instant messaging group message. Or any combination.
- 根据权利要求3所述的基于物联网的机房门禁监控系统,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。The IoT-based computer room access control monitoring system according to claim 3, wherein the instant messaging message is one or more of a WeChat message, a QQ message or a nail message.
- 根据权利要求3所述的基于物联网的机房门禁监控系统,其特征在于,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。The Internet of Things-based access control system according to claim 3, wherein the instant messaging group message is one or more of a WeChat group message, a QQ group message or a nail group message. .
- 根据权利要求1-7任一项所述的基于物联网的机房有害气体系统,其特征在于,还包括空气净化装置关闭单元,用于当有害气体浓度低于一定阈值 且达到一定时间时,关闭空气净化装置。The Internet of things-based room harmful gas system according to any one of claims 1 to 7, characterized by further comprising an air purifying device closing unit, configured to when the harmful gas concentration is lower than a certain threshold When the time is up, the air purifying device is turned off.
- 根据权利要求2所述的基于物联网的机房门禁监控系统,其特征在于,所述甲醛的阈值范围为0.2~0.5ppm,所述二氧化硫的阈值范围为1~2ppm,所述一氧化碳的阈值范围可为30~50ppm。The Internet of Things-based access control monitoring system according to claim 2, wherein the threshold value of the formaldehyde ranges from 0.2 to 0.5 ppm, the threshold value of the sulfur dioxide ranges from 1 to 2 ppm, and the threshold range of the carbon monoxide is It is 30 to 50 ppm.
- 根据权利要求3所述的基于物联网的机房门禁监控系统,其特征在于,所述空气净化装置为大功率风扇猛吹,加大机房内的通风力度,以将有害气体吹出机房外;或者采用化学过滤器进行过滤中和,或者采用具有吸附功能的物质进行吸附。 The Internet of Things-based access control monitoring system according to claim 3, wherein the air purifying device is blown by a high-power fan, and the ventilation in the machine room is increased to blow harmful gases out of the machine room; or The chemical filter is subjected to filtration neutralization or adsorption using a substance having an adsorption function.
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