CN217688877U - Water quality online monitoring data grabbing and remote risk early warning device - Google Patents

Water quality online monitoring data grabbing and remote risk early warning device Download PDF

Info

Publication number
CN217688877U
CN217688877U CN202121630995.1U CN202121630995U CN217688877U CN 217688877 U CN217688877 U CN 217688877U CN 202121630995 U CN202121630995 U CN 202121630995U CN 217688877 U CN217688877 U CN 217688877U
Authority
CN
China
Prior art keywords
water quality
risk
early warning
monitoring data
module
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202121630995.1U
Other languages
Chinese (zh)
Inventor
许文涛
唐明
周涵杰
李燕磊
刘彦甫
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nanchang Institute of Technology
Original Assignee
Nanchang Institute of Technology
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Nanchang Institute of Technology filed Critical Nanchang Institute of Technology
Priority to CN202121630995.1U priority Critical patent/CN217688877U/en
Application granted granted Critical
Publication of CN217688877U publication Critical patent/CN217688877U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A20/00Water conservation; Efficient water supply; Efficient water use
    • Y02A20/152Water filtration

Landscapes

  • Telephonic Communication Services (AREA)

Abstract

本实用新型公开了一种水质在线监测数据抓取与远程风险预警装置,包括信息抓取装置、风险评估云平台和预警装置,所述信息抓取装置用于收集多个监测站点的水质监测数据;所述风险评估云平台与所述信息抓取装置通信连接以获取所述水质监测数据,所述风险评估云平台包括风险评估模块,所述风险评估模块用于对所述水质监测数据进行风险评估以得到风险预报信息;所述预警装置与所述风险评估云平台通信连接,所述预警装置用于调用所述水质监测数据和所述风险预报信息,以及根据所述风险预报信息输出风险预警信息,能够对零散孤立数据进行集中风险预警,有利于实现多站点水质风险管理。

Figure 202121630995

The utility model discloses a water quality online monitoring data capture and remote risk early warning device, comprising an information capture device, a risk assessment cloud platform and an early warning device. The information capture device is used to collect water quality monitoring data of multiple monitoring sites ; The risk assessment cloud platform is connected in communication with the information grabbing device to obtain the water quality monitoring data, the risk assessment cloud platform includes a risk assessment module, and the risk assessment module is used for risk assessment of the water quality monitoring data assessment to obtain risk forecast information; the early warning device is connected in communication with the risk assessment cloud platform, and the early warning device is used to call the water quality monitoring data and the risk forecast information, and output a risk early warning according to the risk forecast information It can provide centralized risk early warning for scattered and isolated data, which is conducive to the realization of multi-site water quality risk management.

Figure 202121630995

Description

水质在线监测数据抓取与远程风险预警装置Water quality online monitoring data capture and remote risk early warning device

技术领域technical field

本实用新型涉及水质管理技术领域,特别涉及一种水质在线监测数据抓取与远程风险预警装置。The utility model relates to the technical field of water quality management, in particular to a water quality online monitoring data capture and remote risk early warning device.

背景技术Background technique

近年来,随着城市化和工业化进程的不断发展,水污染的问题越来越严重,依据各自职责,水利、环保、应急、城市管理等部门相继建起水质监测系统,传统的水质监测多采用巡检技术,需要依赖大量的人力、物力进行采集与分析,这种人工采集方式对精确度和时效性都有较大影响,目前多采用水质在线监测设施进行监测,并基于实时水质监测数据与国家规范的标准值比对,进行水质达标评价,但是由于水质监测设施点多面广,同时面临多行业监管与多主体运营,导致水质监测数据孤岛问题突出,系统整合与数据分享难度极高。In recent years, with the continuous development of urbanization and industrialization, the problem of water pollution has become more and more serious. According to their respective responsibilities, departments such as water conservancy, environmental protection, emergency response, and urban management have successively established water quality monitoring systems. Traditional water quality monitoring mostly uses Patrol inspection technology needs to rely on a lot of manpower and material resources for collection and analysis. This manual collection method has a great impact on accuracy and timeliness. At present, water quality online monitoring facilities are mostly used for monitoring, and based on real-time water quality monitoring data and Comparing the standard value of the national standard to evaluate the water quality compliance. However, due to the wide range of water quality monitoring facilities, multi-industry supervision and multi-subject operation at the same time, the problem of islands of water quality monitoring data is prominent, and system integration and data sharing are extremely difficult.

实用新型内容Utility model content

本实用新型旨在至少解决现有技术中存在的技术问题之一。为此,本实用新型提出一种水质在线监测数据抓取与远程风险预警装置,能够对零散孤立数据进行集中风险预警,有利于实现多站点水质风险管理。The utility model aims at at least solving one of the technical problems existing in the prior art. For this reason, the utility model proposes a water quality online monitoring data capture and remote risk early warning device, which can perform centralized risk early warning for scattered and isolated data, and is beneficial to realize multi-site water quality risk management.

本实用新型实施例提供一种水质在线监测数据抓取与远程风险预警装置,包括信息抓取装置、风险评估云平台和预警装置,所述信息抓取装置用于收集多个监测站点的水质监测数据;所述风险评估云平台与所述信息抓取装置通信连接以获取所述水质监测数据,所述风险评估云平台包括风险评估模块,所述风险评估模块用于对所述水质监测数据进行风险评估以得到风险预报信息;所述预警装置与所述风险评估云平台通信连接,所述预警装置用于调用所述水质监测数据和所述风险预报信息,以及根据所述风险预报信息输出风险预警信息。The embodiment of the utility model provides a water quality online monitoring data capture and remote risk early warning device, including an information capture device, a risk assessment cloud platform, and an early warning device. The information capture device is used to collect water quality monitoring from multiple monitoring stations Data; the risk assessment cloud platform communicates with the information grabbing device to obtain the water quality monitoring data, the risk assessment cloud platform includes a risk assessment module, and the risk assessment module is used to perform the water quality monitoring data Risk assessment to obtain risk forecast information; the early warning device is connected in communication with the risk assessment cloud platform, and the early warning device is used to call the water quality monitoring data and the risk forecast information, and output risk according to the risk forecast information Early warning information.

根据本实用新型实施例提供的水质在线监测数据抓取与远程风险预警装置,至少具有如下有益效果:通过设置信息抓取装置可以收集现有的多个监测站点的水质监测数据,并将水质监测数据进行缓存,通过风险评估云平台与信息抓取装置通信连接,可以将水质监测数据传输至风险评估云平台,通过设置风险评估模块,能够对水质监测数据进行风险评估,从而计算得出风险预报信息,有利于整合多站点的水质监测数据,便于实现数据分享,通过设置预警装置,能够调用水质监测数据和风险预报信息,从而可以实现对多个监测站点的监控和数据分析,同时预警装置还可以根据风险预报信息输出风险预警信息,能够实现水质风险的远程自动预警,通过实时获取多个监测站点的水质监测数据并进行风险评估,能够对零散孤立数据进行集中风险预警,有利于实现多站点水质风险管理。The water quality online monitoring data capture and remote risk early warning device provided according to the embodiment of the present invention has at least the following beneficial effects: by setting the information capture device, the water quality monitoring data of multiple existing monitoring stations can be collected, and the water quality monitoring The data is cached, and the risk assessment cloud platform communicates with the information capture device, and the water quality monitoring data can be transmitted to the risk assessment cloud platform. By setting up a risk assessment module, the risk assessment of the water quality monitoring data can be performed to calculate the risk forecast Information is conducive to the integration of multi-site water quality monitoring data, which is convenient for data sharing. By setting up early warning devices, water quality monitoring data and risk forecast information can be called, so that the monitoring and data analysis of multiple monitoring sites can be realized. At the same time, the early warning devices can also Risk early warning information can be output according to risk forecast information, and remote automatic early warning of water quality risks can be realized. By obtaining water quality monitoring data from multiple monitoring stations in real time and performing risk assessment, centralized risk early warning can be carried out for scattered and isolated data, which is conducive to the realization of multi-site Water quality risk management.

在上述的水质在线监测数据抓取与远程风险预警装置中,所述风险评估云平台包括预处理模块和数据存储模块,所述预处理模块与所述数据存储模块连接,所述预处理模块用于对所述水质监测数据进行清洗处理以筛选出合格数据,所述数据存储模块用于存储经所述预处理模块清洗处理后的所述水质监测数据。In the above-mentioned water quality online monitoring data capture and remote risk early warning device, the risk assessment cloud platform includes a preprocessing module and a data storage module, the preprocessing module is connected to the data storage module, and the preprocessing module uses After cleaning the water quality monitoring data to screen out qualified data, the data storage module is used to store the water quality monitoring data after cleaning and processing by the preprocessing module.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,监测站点的水质监测数据上传到风险评估云平台后,先通过预处理模块进行预处理,通过先对水质监测数据进行清洗,筛选出合格的数据,并将筛选后的合格数据存储在数据存储模块内,便于进行后续的风险评估。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, after the water quality monitoring data of the monitoring site is uploaded to the risk assessment cloud platform, it is first preprocessed by the preprocessing module, and the water quality monitoring data is cleaned first. Qualified data is screened out, and the screened qualified data is stored in the data storage module to facilitate subsequent risk assessment.

在上述的水质在线监测数据抓取与远程风险预警装置中,所述数据存储模块包括多个数据表,多个所述数据表用于存储不同监测站点的所述水质监测数据,所述数据表包括用于存储单个监测站点的水质监测数据的第一数据项和用于存储所述监测站点的位置信息的第二数据项。In the above-mentioned water quality online monitoring data capture and remote risk early warning device, the data storage module includes a plurality of data tables, and the plurality of data tables are used to store the water quality monitoring data of different monitoring stations, and the data tables It includes a first data item for storing the water quality monitoring data of a single monitoring site and a second data item for storing the location information of the monitoring site.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,通过将水质监测数据根据不同监测站点分为不同的数据表,便于对不同监测断面进行风险管理,通过在数据表设置第一数据项用于存储水质监测数据,同时还设置有第二数据项用于存储监测站点的位置信息,方便水质管理部门及时了解水质出现风险的位置。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, the water quality monitoring data is divided into different data tables according to different monitoring stations, which facilitates risk management for different monitoring sections. By setting the first The data item is used to store water quality monitoring data, and a second data item is also set to store the location information of the monitoring station, so that the water quality management department can know the location of water quality risk in time.

在上述的水质在线监测数据抓取与远程风险预警装置中,所述信息抓取装置包括第一控制器和第一通信模块,所述第一控制器用于与在线监测设施通信连接以收集所述水质监测数据,所述第一通信模块与所述第一控制器连接,所述第一通信模块用于将所述水质监测数据传输至所述风险评估云平台。In the above-mentioned water quality online monitoring data capture and remote risk early warning device, the information capture device includes a first controller and a first communication module, and the first controller is used to communicate with the online monitoring facility to collect the For water quality monitoring data, the first communication module is connected to the first controller, and the first communication module is used to transmit the water quality monitoring data to the risk assessment cloud platform.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,信息抓取装置包括第一控制器和第一通信模块,通过第一控制器抓取监测现场的水质监测数据,并通过第一通信模块将水质监测数据传输至风险评估云平台,基于已有的在线监测设施进行数据抓取,不需专门设置新的水质监测传感器,便于收集多个监测站点的水质监测数据。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, the information capture device includes a first controller and a first communication module, and captures the water quality monitoring data of the monitoring site through the first controller, and through the second A communication module transmits water quality monitoring data to the risk assessment cloud platform, and captures data based on existing online monitoring facilities. It does not need to set up new water quality monitoring sensors, which facilitates the collection of water quality monitoring data from multiple monitoring stations.

在上述的水质在线监测数据抓取与远程风险预警装置中,所述信息抓取装置包括第一显示模块,所述第一显示模块与所述第一控制器连接,所述第一显示模块用于显示所述水质监测数据。In the above-mentioned online water quality monitoring data capture and remote risk early warning device, the information capture device includes a first display module, the first display module is connected to the first controller, and the first display module uses to display the water quality monitoring data.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,通过设置第一显示模块,将第一控制器抓取的水质监测数据实时显示出来,可以对现场水质情况进行监控,便于水质管理人员及时了解监测站点的水质情况。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, by setting the first display module, the water quality monitoring data captured by the first controller can be displayed in real time, and the on-site water quality can be monitored, which is convenient for water quality monitoring. Managers keep abreast of the water quality at monitoring sites.

在上述的水质在线监测数据抓取与远程风险预警装置中,所述预警装置包括第二通信模块,所述第二通信模块用于与所述风险评估云平台通信连接以获取所述水质监测数据。In the above-mentioned water quality online monitoring data capture and remote risk early warning device, the early warning device includes a second communication module, and the second communication module is used to communicate with the risk assessment cloud platform to obtain the water quality monitoring data .

在本实施例的水质在线监测数据抓取与远程风险预警装置中,通过设置第二通信模块,预警装置可以通过第二通信模块从风险评估云平台获取相关的数据与信息,从而实现对多个监测站点的监控。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, by setting the second communication module, the early warning device can obtain relevant data and information from the risk assessment cloud platform through the second communication module, thereby realizing multiple Monitoring of monitoring sites.

在上述的水质在线监测数据抓取与远程风险预警装置中,所述预警装置包括第二控制器和预警模块,所述第二控制器分别与所述第二通信模块和所述预警模块连接,所述预警模块用于输出所述风险预警信息。In the above-mentioned water quality online monitoring data capture and remote risk early warning device, the early warning device includes a second controller and an early warning module, and the second controller is connected to the second communication module and the early warning module respectively, The early warning module is used to output the risk early warning information.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,第二通信模块从风险评估云平台获取相关的数据与信息后,通过第二控制器进行分析处理,再通过预警模块输出风险预警信息,能够实现水质风险的自动预警。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, after the second communication module obtains relevant data and information from the risk assessment cloud platform, it analyzes and processes through the second controller, and then outputs the risk information through the early warning module. Early warning information can realize automatic early warning of water quality risks.

在上述的水质在线监测数据抓取与远程风险预警装置中,所述预警模块包括第二显示单元和声音警示单元,所述第二显示单元和所述声音警示单元分别与所述第二控制器连接。In the above-mentioned water quality online monitoring data capture and remote risk early warning device, the early warning module includes a second display unit and a sound warning unit, and the second display unit and the sound warning unit communicate with the second controller respectively. connect.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,通过设置第二显示单元和声音警示单元,可以在预警装置现场发出灯光和声音警示,提醒水质管理人员及时对监测站点进行监管。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, by setting the second display unit and the sound warning unit, light and sound warnings can be issued on the site of the early warning device to remind water quality management personnel to supervise the monitoring site in time .

在上述的水质在线监测数据抓取与远程风险预警装置中,所述预警模块还包括信息警示单元,所述信息警示单元与所述第二控制器连接,所述信息警示单元用于向水质管理人员发送所述风险预警信息。In the above-mentioned water quality online monitoring data capture and remote risk early warning device, the early warning module also includes an information warning unit connected to the second controller, and the information warning unit is used to provide information to the water quality management Personnel send the risk warning information.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,通过设置信息警示单元,可以根据风险管理预案将相关水质风险情况及时反馈给水质管理人员,例如可以向水质管理人员的手机发送风险预警信息,或通过邮件方式发送给水质管理人员。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, by setting up an information warning unit, the relevant water quality risk situation can be fed back to the water quality management personnel in time according to the risk management plan, for example, it can be sent to the mobile phone of the water quality management personnel. Risk warning information, or sent to water quality management personnel by email.

本实用新型的其它特征和优点将在随后的说明书中阐述,并且,部分地从说明书中变得显而易见,或者通过实施本实用新型而了解。本实用新型的目的和其他优点可通过在说明书、权利要求书以及附图中所特别指出的结构来实现和获得。Other features and advantages of the present invention will be set forth in the following description, and, in part, will be apparent from the description, or can be learned by practicing the present invention. The objectives and other advantages of the utility model can be realized and obtained by the structures particularly pointed out in the specification, claims and accompanying drawings.

附图说明Description of drawings

附图用来提供对本实用新型技术方案的进一步理解,并且构成说明书的一部分,与本实用新型的实施例一起用于解释本实用新型的技术方案,并不构成对本实用新型技术方案的限制。The accompanying drawings are used to provide a further understanding of the technical solution of the utility model, and constitute a part of the description, and are used together with the embodiments of the utility model to explain the technical solution of the utility model, and do not constitute a limitation to the technical solution of the utility model.

下面结合附图和实施例对本实用新型进一步地说明;Below in conjunction with accompanying drawing and embodiment, the utility model is further described;

图1是本实用新型实施例提供的水质在线监测数据抓取与远程风险预警装置的结构示意图;Fig. 1 is a schematic structural diagram of the water quality online monitoring data capture and remote risk early warning device provided by the embodiment of the utility model;

图2是本实用新型另一实施例提供的水质在线监测数据抓取与远程风险预警装置的结构示意图;Fig. 2 is a schematic structural diagram of the water quality online monitoring data capture and remote risk early warning device provided by another embodiment of the utility model;

图3是本实用新型另一实施例提供的水质在线监测数据抓取与远程风险预警装置的结构示意图;Fig. 3 is a schematic structural diagram of an online water quality monitoring data capture and remote risk early warning device provided by another embodiment of the utility model;

图4是本实用新型另一实施例提供的水质在线监测数据抓取与远程风险预警装置的结构示意图;Fig. 4 is a schematic structural diagram of an online water quality monitoring data capture and remote risk early warning device provided by another embodiment of the utility model;

图5是本实用新型另一实施例提供的信息抓取装置的结构示意图;Fig. 5 is a schematic structural diagram of an information grabbing device provided by another embodiment of the present invention;

图6是本实用新型另一实施例提供的水质在线监测数据抓取与远程风险预警装置的结构示意图。Fig. 6 is a schematic structural diagram of a water quality online monitoring data capture and remote risk early warning device provided by another embodiment of the utility model.

具体实施方式Detailed ways

本部分将详细描述本实用新型的具体实施例,本实用新型之较佳实施例在附图中示出,附图的作用在于用图形补充说明书文字部分的描述,使人能够直观地、形象地理解本实用新型的每个技术特征和整体技术方案,但其不能理解为对本实用新型保护范围的限制。This part will describe the concrete embodiment of the utility model in detail, and the preferred embodiment of the utility model is shown in the accompanying drawing, and the function of the accompanying drawing is to supplement the description of the text part of the specification with figures, so that people can visually and vividly Each technical feature and overall technical solution of the present utility model should be understood, but they should not be construed as limiting the protection scope of the present utility model.

应了解,在本实用新型实施例的描述中,如果有描述到“第一”、“第二”等只是用于区分技术特征为目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量或者隐含指明所指示的技术特征的先后关系。“至少之一”是指一个或者多个,“多个”是指两个或两个以上。It should be understood that in the description of the embodiments of the present utility model, if there are descriptions of "first", "second", etc., it is only for the purpose of distinguishing technical features, and it cannot be understood as indicating or implying relative importance or implicitly indicating The number of indicated technical features may implicitly indicate the order of the indicated technical features. "At least one" means one or more, and "plurality" means two or more.

此外,除非另有明确的规定和限定,术语“连接/相连”应做广义理解,例如,可以是机械连接,也可以是电连接或可以相互通讯;可以是直接相连,也可以通过中间媒介间接相连,所属技术领域技术人员可以结合技术方案的具体内容合理确定上述词语在本实用新型中的具体含义。In addition, unless otherwise clearly stipulated and limited, the term "connected" should be understood in a broad sense, for example, it can be mechanically connected, electrically connected or can communicate with each other; it can be directly connected or indirectly through an intermediary Connected, those skilled in the art can reasonably determine the specific meanings of the above words in the utility model in combination with the specific content of the technical solution.

在本实用新型中,对上述术语的示意性表述不一定指的是相同的实施例或实施方式。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或实施方式中以合适的方式结合。此外,下面所描述的本实用新型各个实施方式中所涉及到的技术特征只要彼此之间未构成冲突就可以相互组合。In the present invention, the schematic representations of the above terms do not necessarily refer to the same embodiment or implementation. Furthermore, the particular features, structures, materials or characteristics described may be combined in any suitable manner in any one or more embodiments or implementations. In addition, the technical features involved in the various embodiments of the present invention described below can be combined with each other as long as they do not constitute conflicts with each other.

本实用新型实施例提供一种水质在线监测数据抓取与远程风险预警装置,能够对零散孤立数据进行集中风险预警,有利于实现多站点水质风险管理。The embodiment of the utility model provides a water quality online monitoring data capture and remote risk early warning device, which can perform centralized risk early warning for scattered and isolated data, and is beneficial to realize multi-site water quality risk management.

下面结合附图,对本实用新型实施例作进一步阐述。Below in conjunction with accompanying drawing, the utility model embodiment is described further.

参照图1,本实用新型实施例提供一种水质在线监测数据抓取与远程风险预警装置,包括信息抓取装置100、风险评估云平台200和预警装置300,信息抓取装置100用于收集多个监测站点的水质监测数据;风险评估云平台200与信息抓取装置100通信连接以获取水质监测数据,风险评估云平台200包括风险评估模块230,风险评估模块230用于对水质监测数据进行风险评估以得到风险预报信息;预警装置300与风险评估云平台200通信连接,预警装置300用于调用水质监测数据和风险预报信息,以及根据风险预报信息输出风险预警信息。Referring to Fig. 1, an embodiment of the utility model provides a water quality online monitoring data capture and remote risk early warning device, including an information capture device 100, a risk assessment cloud platform 200, and an early warning device 300. The information capture device 100 is used to collect multiple The water quality monitoring data of each monitoring station; The risk assessment cloud platform 200 communicates with the information grabbing device 100 to obtain the water quality monitoring data, and the risk assessment cloud platform 200 includes a risk assessment module 230, and the risk assessment module 230 is used to perform risk assessment on the water quality monitoring data. Evaluate to obtain risk forecast information; the early warning device 300 communicates with the risk assessment cloud platform 200, and the early warning device 300 is used to call water quality monitoring data and risk forecast information, and output risk early warning information according to the risk forecast information.

通过设置信息抓取装置100可以收集现有的多个监测站点的水质监测数据,并将水质监测数据进行缓存,通过风险评估云平台200与信息抓取装置100通信连接,可以将水质监测数据传输至风险评估云平台200,通过设置风险评估模块230,能够对水质监测数据进行风险评估,从而计算得出风险预报信息,有利于整合多站点的水质监测数据,便于实现数据分享,通过设置预警装置300,能够远程调用水质监测数据和风险预报信息,从而可以实现对多个监测站点的监控和数据分析,同时预警装置300还可以根据风险预报信息输出风险预警信息,能够实现水质风险的远程自动预警,通过实时获取多个监测站点的水质监测数据并进行风险评估,能够对零散孤立数据进行集中风险预警,有利于实现多站点水质风险管理。By setting the information grabbing device 100, the water quality monitoring data of multiple existing monitoring sites can be collected, and the water quality monitoring data can be cached. The risk assessment cloud platform 200 can communicate with the information grabbing device 100, and the water quality monitoring data can be transmitted. To the risk assessment cloud platform 200, by setting the risk assessment module 230, the water quality monitoring data can be risk assessed, thereby calculating the risk forecast information, which is conducive to the integration of multi-site water quality monitoring data, and facilitates data sharing. 300, which can remotely call water quality monitoring data and risk forecast information, so as to realize the monitoring and data analysis of multiple monitoring stations. At the same time, the early warning device 300 can also output risk early warning information according to the risk forecast information, and can realize remote automatic early warning of water quality risks , through real-time acquisition of water quality monitoring data from multiple monitoring stations and risk assessment, it is possible to conduct centralized risk warnings for scattered and isolated data, which is conducive to the realization of multi-site water quality risk management.

如图2所示,在上述的水质在线监测数据抓取与远程风险预警装置中,风险评估云平台 200包括预处理模块210和数据存储模块220,预处理模块210与数据存储模块220连接,预处理模块210用于对水质监测数据进行清洗处理以筛选出合格数据,数据存储模块220用于存储经预处理模块210清洗处理后的水质监测数据。As shown in Figure 2, in the above-mentioned water quality online monitoring data capture and remote risk early warning device, the risk assessment cloud platform 200 includes a preprocessing module 210 and a data storage module 220, the preprocessing module 210 is connected with the data storage module 220, pre-processing The processing module 210 is used for cleaning the water quality monitoring data to screen out qualified data, and the data storage module 220 is used for storing the water quality monitoring data cleaned and processed by the preprocessing module 210 .

在本实施例的水质在线监测数据抓取与远程风险预警装置中,监测站点的水质监测数据上传到风险评估云平台200后,先通过预处理模块210进行预处理,通过先对水质监测数据进行清洗,筛选出合格的数据,并将筛选后的合格数据存储在数据存储模块220内,便于进行后续的风险评估。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, after the water quality monitoring data of the monitoring site is uploaded to the risk assessment cloud platform 200, the preprocessing module 210 is used to preprocess first, and the water quality monitoring data is firstly processed. Cleaning, screening out qualified data, and storing the filtered qualified data in the data storage module 220 for subsequent risk assessment.

如图2和图3所示,在上述的水质在线监测数据抓取与远程风险预警装置中,数据存储模块220包括多个数据表221,多个数据表221用于存储不同监测站点的水质监测数据,数据表221包括用于存储单个监测站点的水质监测数据的第一数据项2211和用于存储监测站点的位置信息的第二数据项2212。As shown in Figure 2 and Figure 3, in the above-mentioned online water quality monitoring data capture and remote risk early warning device, the data storage module 220 includes a plurality of data tables 221, and the multiple data tables 221 are used to store water quality monitoring data from different monitoring stations. Data, the data table 221 includes a first data item 2211 for storing the water quality monitoring data of a single monitoring site and a second data item 2212 for storing the location information of the monitoring site.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,通过将水质监测数据根据不同监测站点分为不同的数据表221,便于对不同监测断面进行风险管理,通过在数据表221 设置第一数据项2211用于存储水质监测数据,同时还设置有第二数据项2212用于存储监测站点的位置信息,方便水质管理部门及时了解水质出现风险的位置。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, the water quality monitoring data is divided into different data tables 221 according to different monitoring stations, so as to facilitate risk management for different monitoring sections. The first data item 2211 is used to store the water quality monitoring data, and the second data item 2212 is also set to store the location information of the monitoring stations, so that the water quality management department can know the location of the water quality risk in time.

如图4所示,在上述的水质在线监测数据抓取与远程风险预警装置中,风险评估模块230 包括超标预测单元231和风险预测单元232,超标预测单元231用于根据水质监测数据计算得到超标概率信息,风险预测单元232用于根据超标概率信息得到风险预报信息,风险预报信息包括第一风险等级、第二风险等级、第三风险等级和第四风险等级。As shown in Figure 4, in the above-mentioned water quality online monitoring data capture and remote risk early warning device, the risk assessment module 230 includes an exceeding standard prediction unit 231 and a risk prediction unit 232, and the exceeding standard prediction unit 231 is used to calculate and obtain the exceeding standard according to the water quality monitoring data. Probability information, the risk prediction unit 232 is used to obtain risk forecast information according to the exceeding probability information, and the risk forecast information includes the first risk level, the second risk level, the third risk level and the fourth risk level.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,通过设置超标预测单元 231,利用历史数据构建各断面水质“超限”概率的计算模型,基于水质监测数据计算得到超标概率信息,超标概率信息用于表示未来一段时间的水质“超限”概率,通过设置风险预测单元232,由超标概率信息得到风险预报信息,可以根据计算得到的概率所在的阈值区间判定水质风险等级,风险预报信息包括四个不同的风险等级,可以反映水质监测数据的水质超标程度,便于进行针对性的风险预警。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, by setting the exceeding standard prediction unit 231, the historical data is used to construct the calculation model of the "over limit" probability of water quality in each section, and the exceeding standard probability information is calculated based on the water quality monitoring data , the over-standard probability information is used to indicate the probability of water quality "over-limit" for a period of time in the future. By setting the risk prediction unit 232, the risk forecast information is obtained from the over-standard probability information, and the water quality risk level can be determined according to the threshold interval where the calculated probability is located. The risk The forecast information includes four different risk levels, which can reflect the degree of water quality exceeding the standard of the water quality monitoring data, and facilitate targeted risk early warning.

区别于单站点在线水质数据实时监测的方案,本实用新型实施例的水质在线监测数据抓取与远程风险预警装置基于风险评估云平台200,可以实现多站点水质监测数据的获取、清洗、储存等常规功能,解决现有的水质监测数据孤岛问题,通过设置风险评估模块230,基于历史监测数据构建各监测指标的水质超标概率计算模型,并根据水质监测数据计算出未来某一时间段的超标概率与风险等级,实现水质风险管理。Different from the single-site online water quality data real-time monitoring scheme, the water quality online monitoring data capture and remote risk early warning device of the embodiment of the utility model is based on the risk assessment cloud platform 200, which can realize the acquisition, cleaning, storage, etc. of multi-site water quality monitoring data Conventional functions, to solve the existing island problem of water quality monitoring data, by setting up the risk assessment module 230, based on the historical monitoring data to construct the calculation model of the probability of water quality exceeding the standard of each monitoring index, and calculate the probability of exceeding the standard in a certain period of time in the future based on the water quality monitoring data and risk levels to achieve water quality risk management.

需要说明的是,风险评估云平台200为网络层,基于ONENET云平台设置一个包括预处理模块210、数据存储模块220和风险评估模块230的虚拟监控平台,各监测断面的水质监测数据上传到云平台后,先经预处理模块210进行数据清洗,筛选出合格的数据,并将其保存到数据存储模块220中,实现常规的数据获取、存储、查询等功能,风险评估模块230可以对存储在数据存储模块220中的数据进行调用进行风险评估,并将相关的水质信息传送到预警装置300。It should be noted that the risk assessment cloud platform 200 is the network layer, and a virtual monitoring platform including a preprocessing module 210, a data storage module 220 and a risk assessment module 230 is set based on the ONENET cloud platform, and the water quality monitoring data of each monitoring section is uploaded to the cloud. After the platform, the preprocessing module 210 performs data cleaning, screens out qualified data, and saves it in the data storage module 220 to realize routine data acquisition, storage, query and other functions. The risk assessment module 230 can store in the The data in the data storage module 220 is invoked for risk assessment, and the relevant water quality information is transmitted to the early warning device 300 .

如图4所示,在上述的水质在线监测数据抓取与远程风险预警装置中,信息抓取装置100 包括第一控制器110和第一通信模块120,第一控制器110用于与在线监测设施通信连接以收集水质监测数据,第一通信模块120与第一控制器110连接,第一通信模块120用于将水质监测数据传输至风险评估云平台200。As shown in Figure 4, in the above-mentioned water quality online monitoring data capture and remote risk early warning device, the information capture device 100 includes a first controller 110 and a first communication module 120, and the first controller 110 is used to communicate with the online monitoring The facilities are connected by communication to collect water quality monitoring data, the first communication module 120 is connected to the first controller 110 , and the first communication module 120 is used to transmit the water quality monitoring data to the risk assessment cloud platform 200 .

在本实施例的水质在线监测数据抓取与远程风险预警装置中,信息抓取装置100包括第一控制器110和第一通信模块120,通过第一控制器110抓取监测现场的水质监测数据,并通过第一通信模块120将水质监测数据传输至风险评估云平台200,基于已有的在线监测设施进行数据抓取,不需专门设置新的水质监测传感器,便于收集多个监测站点的水质监测数据。In the water quality online monitoring data capture and remote risk warning device of this embodiment, the information capture device 100 includes a first controller 110 and a first communication module 120, and captures the water quality monitoring data of the monitoring site through the first controller 110 , and transmit the water quality monitoring data to the risk assessment cloud platform 200 through the first communication module 120, based on the existing online monitoring facilities for data capture, without specially setting up new water quality monitoring sensors, it is convenient to collect the water quality of multiple monitoring sites Monitoring data.

如图4和图5所示,具体地,第一控制器110为STM32微控制器,第一通信模块120为NB-IOT通信模块,信息抓取装置100为感知层,第一控制器110采用串口通信方式,通过将第一控制器110与在线监测设施连接,可进行UART串口通信,以抓取监测现场的水质监测数据,水质监测数据经过第一控制器110分析后,由第一通信模块120通过MQTT、LWM2M等通讯协议传输至风险评估云平台200,区别于其他相似的研究,本实施例的水质在线监测数据抓取与远程风险预警装置不专门设置新的水质监测传感器,而是直接获取目标监测站点的水质监测数据,再由第一通信模块120进行接收和发送。另外第一控制器110还设置有调试接口111,调试接口111选用USB串口,用于代码调试,信息抓取装置100还设置有供电模块140,供电模块140与第一控制器110连接,用于为第一控制器110提供正常的工作电源,需要说明的是,供电模块140采用5V电源输入接口。As shown in Figure 4 and Figure 5, specifically, the first controller 110 is an STM32 microcontroller, the first communication module 120 is an NB-IOT communication module, the information grabbing device 100 is a perception layer, and the first controller 110 adopts Serial port communication mode, by connecting the first controller 110 with the online monitoring facility, UART serial port communication can be performed to capture the water quality monitoring data at the monitoring site. After the water quality monitoring data is analyzed by the first controller 110, the first communication module 120 is transmitted to the risk assessment cloud platform 200 through communication protocols such as MQTT and LWM2M. Different from other similar studies, the water quality online monitoring data capture and remote risk warning device in this embodiment does not specifically set up new water quality monitoring sensors, but directly The water quality monitoring data of the target monitoring site is obtained, and then received and sent by the first communication module 120 . In addition, the first controller 110 is also provided with a debugging interface 111, and the debugging interface 111 is a USB serial port for code debugging. The information capture device 100 is also provided with a power supply module 140, which is connected to the first controller 110 for To provide normal working power for the first controller 110, it should be noted that the power supply module 140 uses a 5V power input interface.

需要说明的是,第一通信模块120选用的NB-IOT通信模块能够实现广覆盖、高安全、低功耗的数据传输,随着NB-IOT技术的不断发展,其在国内的通信基站覆盖率将越来越广,本实用新型实施例的水质在线监测数据抓取与远程风险预警装置能够更好地覆盖偏远郊区。It should be noted that the NB-IOT communication module selected by the first communication module 120 can realize data transmission with wide coverage, high security, and low power consumption. With the continuous development of NB-IOT technology, its coverage of domestic communication base stations It will become more and more widespread, and the water quality online monitoring data capture and remote risk early warning device of the embodiment of the utility model can better cover remote suburbs.

如图4或图5所示,在上述的水质在线监测数据抓取与远程风险预警装置中,信息抓取装置100包括第一显示模块130,第一显示模块130与第一控制器110连接,第一显示模块 130用于显示水质监测数据。As shown in FIG. 4 or FIG. 5 , in the above-mentioned water quality online monitoring data capture and remote risk early warning device, the information capture device 100 includes a first display module 130, and the first display module 130 is connected to the first controller 110, The first display module 130 is used for displaying water quality monitoring data.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,通过设置第一显示模块 130,将第一控制器110抓取的水质监测数据实时显示出来,可以对现场水质情况进行监控,便于水质管理人员及时了解监测站点的水质情况。需要说明的是,第一显示模块130为OLED 显示屏,具有良好的抗震性能,低温特性好,适用于多种不同的环境,发光效率高,有利于降低能耗。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, by setting the first display module 130, the water quality monitoring data captured by the first controller 110 can be displayed in real time, and the on-site water quality can be monitored. It is convenient for water quality management personnel to keep abreast of the water quality of the monitoring station. It should be noted that the first display module 130 is an OLED display screen, which has good shock resistance, good low temperature characteristics, is suitable for many different environments, has high luminous efficiency, and is beneficial to reduce energy consumption.

如图6所示,在上述的水质在线监测数据抓取与远程风险预警装置中,预警装置300包括第二通信模块310,第二通信模块310用于与风险评估云平台200通信连接以获取水质监测数据。As shown in Figure 6, in the above-mentioned water quality online monitoring data capture and remote risk early warning device, the early warning device 300 includes a second communication module 310, and the second communication module 310 is used to communicate with the risk assessment cloud platform 200 to obtain water quality Monitoring data.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,通过设置第二通信模块 310,预警装置300可以通过第二通信模块310从风险评估云平台200获取相关的数据与信息,从而实现对多个监测站点的监控。需要说明的是,第二通信模块310为WI FI通信模块,可以实现远程获取数据,方便进行水质远程监控管理,除此之外,第二通信模块310还可以为蓝牙通信模块、LORA通信模块、4G-DTU通信模块等远程通信模块,本实用新型实施例不作具体限制。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, by setting the second communication module 310, the early warning device 300 can obtain relevant data and information from the risk assessment cloud platform 200 through the second communication module 310, thereby Realize the monitoring of multiple monitoring sites. It should be noted that the second communication module 310 is a WI FI communication module, which can realize remote acquisition of data and facilitate remote monitoring and management of water quality. In addition, the second communication module 310 can also be a Bluetooth communication module, a LORA communication module, Remote communication modules such as 4G-DTU communication modules are not specifically limited in the embodiments of the present utility model.

如图6所示,在上述的水质在线监测数据抓取与远程风险预警装置中,预警装置300包括第二控制器320和预警模块330,第二控制器320分别与第二通信模块310和预警模块330 连接,预警模块330用于输出风险预警信息。As shown in Figure 6, in the above-mentioned water quality online monitoring data capture and remote risk early warning device, the early warning device 300 includes a second controller 320 and an early warning module 330, and the second controller 320 communicates with the second communication module 310 and the early warning module 330 respectively. The module 330 is connected, and the early warning module 330 is used to output risk early warning information.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,第二通信模块310从风险评估云平台200获取相关的数据与信息后,通过第二控制器320进行分析处理,再通过预警模块330输出风险预警信息,能够实现水质风险的自动预警。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, after the second communication module 310 obtains relevant data and information from the risk assessment cloud platform 200, the second controller 320 performs analysis and processing, and then the early warning Module 330 outputs risk early warning information, which can realize automatic early warning of water quality risks.

如图6所示,在上述的水质在线监测数据抓取与远程风险预警装置中,预警模块330包括第二显示单元331和声音警示单元332,第二显示单元331和声音警示单元332分别与第二控制器320连接。As shown in Figure 6, in the above-mentioned water quality online monitoring data capture and remote risk early warning device, the early warning module 330 includes a second display unit 331 and a sound warning unit 332, and the second display unit 331 and the sound warning unit 332 are respectively connected to the first Two controllers 320 are connected.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,通过设置第二显示单元331 和声音警示单元332,可以在预警装置300现场发出灯光和声音警示,提醒水质管理人员及时对监测站点进行监管。需要说明的是,第二显示单元331可以为LED显示屏或OLED显示屏,声音警示单元332可以为蜂鸣器。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, by setting the second display unit 331 and the sound warning unit 332, lights and sound warnings can be issued on the scene of the early warning device 300 to remind water quality management personnel to monitor in time The site is supervised. It should be noted that the second display unit 331 may be an LED display or an OLED display, and the sound warning unit 332 may be a buzzer.

在上述的水质在线监测数据抓取与远程风险预警装置中,预警模块330还包括信息警示单元333,信息警示单元333与第二控制器320连接,信息警示单元333用于向水质管理人员发送风险预警信息。In the above-mentioned water quality online monitoring data capture and remote risk early warning device, the early warning module 330 also includes an information warning unit 333, the information warning unit 333 is connected to the second controller 320, and the information warning unit 333 is used to send risk information to water quality management personnel. Early warning information.

在本实施例的水质在线监测数据抓取与远程风险预警装置中,通过设置信息警示单元 333,可以根据风险管理预案将相关水质风险情况及时反馈给水质管理人员,例如可以向水质管理人员的手机远程发送风险预警信息,或通过邮件方式发送给水质管理人员。可以理解的是,风险预警信息可以包括灯光警示信号、声音警示信号和远程警示信息。In the water quality online monitoring data capture and remote risk early warning device of this embodiment, by setting the information warning unit 333, the relevant water quality risk situation can be fed back to the water quality management personnel in time according to the risk management plan, for example, the mobile phone of the water quality management personnel can be sent Remotely send risk warning information, or send it to water quality management personnel by email. It can be understood that the risk warning information may include light warning signals, sound warning signals and remote warning information.

需要说明的是,预警装置300为应用层,实现对风险评估云平台200水质监测数据和风险预报信息的调用,预警装置300可以为已有的监控平台,或移动监控终端,可以从风险评估云平台200获取所关注的监测站点的位置信息、水质监测数据、超标概率信息及风险预报信息,实现水质风险的自动预警。It should be noted that the early warning device 300 is an application layer, which realizes the calling of the water quality monitoring data and risk forecast information of the risk assessment cloud platform 200. The early warning device 300 can be an existing monitoring platform or a mobile monitoring terminal, which can be accessed from the risk assessment cloud platform The platform 200 acquires the location information, water quality monitoring data, over-standard probability information and risk forecast information of the monitoring sites concerned, so as to realize automatic early warning of water quality risks.

具体地,风险预报信息包括第一风险等级、第二风险等级、第三风险等级和第四风险等级,第一风险等级表示监测断面的水质处在高风险,第二风险等级表示监测断面的水质处在中风险,第三风险等级表示监测断面的水质处在低风险,第四风险等级表示监测断面的水质无风险,预警装置300根据不同的风险等级输出不同的风险预警,例如,当风险预报信息为第一风险等级即高风险时,预警装置300现场发出声音和红色灯光报警,当风险预报信息为第二风险等级即中风险时,预警装置300现场发出黄色灯光报警,当风险预报信息为第三风险等级即低风险时,预警装置300现场发出蓝色灯光报警,根据不同的报警形式可以直观地反馈不同的水质风险等级,另外,可以根据风险管理预案和预测的风险等级向不同层级的水质管理人员远程发布风险预报信息。Specifically, the risk forecast information includes the first risk level, the second risk level, the third risk level and the fourth risk level. The first risk level indicates that the water quality of the monitoring section is at high risk, and the second risk level indicates that the water quality of the monitoring section is at high risk. In medium risk, the third risk level indicates that the water quality of the monitoring section is at low risk, and the fourth risk level indicates that the water quality of the monitoring section has no risk. The early warning device 300 outputs different risk early warnings according to different risk levels. For example, when the risk forecast When the information is the first risk level, i.e. high risk, the early warning device 300 sends out a sound and red light alarm on site; when the risk forecast information is the second risk level, i. When the third risk level is low risk, the early warning device 300 will send out a blue light alarm on site, which can intuitively feed back different water quality risk levels according to different alarm forms. Water quality managers remotely release risk forecast information.

本实用新型实施例提出的水质在线监测数据抓取与远程风险预警装置首先将现有多个监测站点的水质监测数据收集到第一控制器110进行缓存,然后启动第一通信模块120连接到通信网络,将数据上传到风险评估云平台200,通过专门开发的风险评估模块230计算出水质监测数据在未来某一时间段的超标概率与风险等级,基于风险评估模块230得到分析成果并输出风险预警信息,通过第二通信模块310传输水质监测数据和风险预警信息,以使得预警装置300可以实现水质风险自动预警,通过声音、灯光等现场警报,并且根据风险等级向预设的水质管理人员发送即时信息,能够实现零散、孤立数据的集中存储、风险分析、自动预警与成果分享,有利于实现多站点水质风险管理。The water quality online monitoring data capture and remote risk early warning device proposed by the embodiment of the utility model first collects the water quality monitoring data of multiple existing monitoring stations to the first controller 110 for buffering, and then starts the first communication module 120 to connect to the communication Network, upload the data to the risk assessment cloud platform 200, calculate the probability of exceeding the standard and risk level of the water quality monitoring data in a certain period of time in the future through the specially developed risk assessment module 230, and obtain the analysis results based on the risk assessment module 230 and output the risk warning Information, through the second communication module 310 to transmit water quality monitoring data and risk early warning information, so that the early warning device 300 can realize automatic early warning of water quality risks, on-site alarms through sound, light, etc., and send instant messages to preset water quality management personnel according to the risk level Information can realize centralized storage of scattered and isolated data, risk analysis, automatic early warning and result sharing, which is conducive to the realization of multi-site water quality risk management.

上面结合附图对本实用新型实施例作了详细说明,但是本实用新型不限于上述实施例,在所述技术领域普通技术人员所具备的知识范围内,还可以在不脱离本实用新型宗旨的前提下作出各种变化。The above embodiments of the utility model have been described in detail in conjunction with the accompanying drawings, but the utility model is not limited to the above-mentioned embodiments. Make various changes below.

Claims (7)

1.一种水质在线监测数据抓取与远程风险预警装置,其特征在于,包括:1. A water quality online monitoring data capture and remote risk early warning device, characterized in that it includes: 信息抓取装置,用于收集多个监测站点的水质监测数据;An information capture device for collecting water quality monitoring data from multiple monitoring stations; 风险评估云平台,与所述信息抓取装置通信连接以获取所述水质监测数据,所述风险评估云平台包括风险评估模块,所述风险评估模块用于对所述水质监测数据进行风险评估以得到风险预报信息;The risk assessment cloud platform is communicated with the information grabbing device to obtain the water quality monitoring data, the risk assessment cloud platform includes a risk assessment module, and the risk assessment module is used to perform risk assessment on the water quality monitoring data to Obtain risk forecast information; 预警装置,与所述风险评估云平台通信连接,所述预警装置用于调用所述水质监测数据和所述风险预报信息,以及根据所述风险预报信息输出风险预警信息;An early warning device is connected in communication with the risk assessment cloud platform, and the early warning device is used to call the water quality monitoring data and the risk forecast information, and output risk early warning information according to the risk forecast information; 其中,所述信息抓取装置包括第一控制器和第一通信模块,所述第一控制器用于与在线监测设施通信连接以收集所述水质监测数据,所述第一通信模块与所述第一控制器连接,所述第一通信模块用于将所述水质监测数据传输至所述风险评估云平台;Wherein, the information grabbing device includes a first controller and a first communication module, the first controller is used to communicate with online monitoring facilities to collect the water quality monitoring data, and the first communication module communicates with the first A controller is connected, and the first communication module is used to transmit the water quality monitoring data to the risk assessment cloud platform; 所述预警装置包括第二通信模块,所述第二通信模块用于与所述风险评估云平台通信连接以获取所述水质监测数据。The early warning device includes a second communication module, and the second communication module is used to communicate with the risk assessment cloud platform to obtain the water quality monitoring data. 2.根据权利要求1所述的水质在线监测数据抓取与远程风险预警装置,其特征在于,所述风险评估云平台包括预处理模块和数据存储模块,所述预处理模块与所述数据存储模块连接,所述预处理模块用于对所述水质监测数据进行清洗处理以筛选出合格数据,所述数据存储模块用于存储经所述预处理模块清洗处理后的所述水质监测数据。2. The water quality online monitoring data capture and remote risk early warning device according to claim 1, wherein the risk assessment cloud platform includes a preprocessing module and a data storage module, and the preprocessing module and the data storage module The modules are connected, the preprocessing module is used to clean and process the water quality monitoring data to screen out qualified data, and the data storage module is used to store the water quality monitoring data cleaned and processed by the preprocessing module. 3.根据权利要求2所述的水质在线监测数据抓取与远程风险预警装置,其特征在于,所述数据存储模块包括多个数据表,多个所述数据表用于存储不同监测站点的所述水质监测数据,所述数据表包括用于存储单个监测站点的水质监测数据的第一数据项和用于存储所述监测站点的位置信息的第二数据项。3. The water quality online monitoring data capture and remote risk early warning device according to claim 2, wherein the data storage module includes a plurality of data tables, and a plurality of the data tables are used to store all data of different monitoring stations. The water quality monitoring data, the data table includes a first data item for storing the water quality monitoring data of a single monitoring site and a second data item for storing the location information of the monitoring site. 4.根据权利要求1所述的水质在线监测数据抓取与远程风险预警装置,其特征在于,所述信息抓取装置包括第一显示模块,所述第一显示模块与所述第一控制器连接,所述第一显示模块用于显示所述水质监测数据。4. The online water quality monitoring data capture and remote risk early warning device according to claim 1, wherein the information capture device includes a first display module, and the first display module and the first controller connected, the first display module is used to display the water quality monitoring data. 5.根据权利要求1所述的水质在线监测数据抓取与远程风险预警装置,其特征在于,所述预警装置包括第二控制器和预警模块,所述第二控制器分别与所述第二通信模块和所述预警模块连接,所述预警模块用于输出所述风险预警信息。5. The water quality online monitoring data capture and remote risk early warning device according to claim 1, wherein the early warning device includes a second controller and an early warning module, and the second controller is connected to the second The communication module is connected with the early warning module, and the early warning module is used to output the risk early warning information. 6.根据权利要求5所述的水质在线监测数据抓取与远程风险预警装置,其特征在于,所述预警模块包括第二显示单元和声音警示单元,所述第二显示单元和所述声音警示单元分别与所述第二控制器连接。6. The water quality online monitoring data capture and remote risk early warning device according to claim 5, wherein the early warning module includes a second display unit and a sound warning unit, and the second display unit and the sound warning unit The units are respectively connected to the second controllers. 7.根据权利要求5所述的水质在线监测数据抓取与远程风险预警装置,其特征在于,所述预警模块还包括信息警示单元,所述信息警示单元与所述第二控制器连接,所述信息警示单元用于向水质管理人员发送所述风险预警信息。7. The water quality online monitoring data capture and remote risk early warning device according to claim 5, wherein the early warning module also includes an information warning unit, and the information warning unit is connected to the second controller, so that The information warning unit is used to send the risk warning information to water quality management personnel.
CN202121630995.1U 2021-07-16 2021-07-16 Water quality online monitoring data grabbing and remote risk early warning device Active CN217688877U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121630995.1U CN217688877U (en) 2021-07-16 2021-07-16 Water quality online monitoring data grabbing and remote risk early warning device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121630995.1U CN217688877U (en) 2021-07-16 2021-07-16 Water quality online monitoring data grabbing and remote risk early warning device

Publications (1)

Publication Number Publication Date
CN217688877U true CN217688877U (en) 2022-10-28

Family

ID=83702386

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121630995.1U Active CN217688877U (en) 2021-07-16 2021-07-16 Water quality online monitoring data grabbing and remote risk early warning device

Country Status (1)

Country Link
CN (1) CN217688877U (en)

Similar Documents

Publication Publication Date Title
CN102305643B (en) System for monitoring and supervising water quality on line in real time
CN202735329U (en) On-line water quality monitoring system
CN113804598A (en) Construction environment monitoring system and monitoring method based on big data
CN207150632U (en) A Remote Water Quality Monitoring System Based on GSM Network
CN102395221A (en) Museum environmental monitoring system based on wireless sensing network
CN107449884B (en) A kind of sewage monitoring system based on wireless sensor network
CN205156970U (en) Bridge health monitored control system based on thing networking
CN201222066Y (en) Automatic on-line monitoring system for water quality
CN206451017U (en) A kind of wisdom direct drinking business cloud platform
CN111638310A (en) River water quality monitoring system based on LoRa
CN203055099U (en) Multivariate detection intelligent landslide monitoring and early warning system
CN211206462U (en) An internet of things water quality monitoring system
CN113970627A (en) Water quality monitoring and early warning method and system
CN113570829B (en) A wireless gas detection and alarm system
CN204536807U (en) Based on the gas numerical potential policing services plateform system of technology of Internet of things
CN209787205U (en) wisdom fire control monitored control system based on thing networking
CN111443044A (en) Multi-water quality parameters and full spectrum scanning interactive confirmation of water quality monitoring and early warning system
CN217688877U (en) Water quality online monitoring data grabbing and remote risk early warning device
CN110204108A (en) Based on monolithic processor controlled Rural water supply station remote monitoring terminal and its application method
CN201229662Y (en) Remote solar noise automatic monitoring system
CN211454348U (en) Intelligent monitoring and control system for small and medium-sized reservoirs
CN211668039U (en) Boiler safety monitoring platform
CN113610358A (en) Remote water quality risk early warning system based on cloud platform
CN208537961U (en) Intelligent fire monitoring and management system based on Internet of Things technology
CN219421048U (en) Industrial equipment dynamic monitoring system based on cloud platform

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant