WO2017088538A1 - 基于微信的大型土木工程施工安全隐患管理方法及系统 - Google Patents

基于微信的大型土木工程施工安全隐患管理方法及系统 Download PDF

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WO2017088538A1
WO2017088538A1 PCT/CN2016/096754 CN2016096754W WO2017088538A1 WO 2017088538 A1 WO2017088538 A1 WO 2017088538A1 CN 2016096754 W CN2016096754 W CN 2016096754W WO 2017088538 A1 WO2017088538 A1 WO 2017088538A1
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information
rectification
parsed
terminal
wechat
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PCT/CN2016/096754
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English (en)
French (fr)
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林鹏
高向友
汪志林
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清华大学
中国长江三峡集团公司
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/10Office automation; Time management
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/10Office automation; Time management
    • G06Q10/103Workflow collaboration or project management
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/90Details of database functions independent of the retrieved data types
    • G06F16/95Retrieval from the web
    • G06F16/958Organisation or management of web site content, e.g. publishing, maintaining pages or automatic linking

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  • the invention relates to the field of mobile computing, in particular to a method and system for managing hidden dangers of large civil engineering construction based on WeChat.
  • the topographic environment of large-scale civil engineering construction site is generally very complicated, and due to its large-scale construction, high speed, long construction period and complicated cross-operation, the number of operators, construction and supervision parties is numerous, and the number of people, machines and environment is complex and variable. All kinds of accidents on the construction site have occurred, causing serious social impact and major economic losses. How to ensure the quality and quantity to complete the operation requirements, and to avoid personal injury and economic property loss at the construction site, as well as to avoid major casualties and major secondary natural disasters, is a real problem in front of relevant practitioners and related units. .
  • the present invention aims to solve at least one of the technical problems existing in the prior art.
  • an object of the present invention is to provide a WeChat based large-scale civil engineering construction safety hazard management method, which is safe and reliable, and is simple and convenient to operate.
  • a second object of the present invention is to provide a WeChat based large-scale civil engineering construction safety hazard management system.
  • the embodiment of the first aspect of the present invention provides a WeChat-based large-scale civil engineering construction security risk management method, including the following steps: the cloud server receives the security risk information from the construction site reported by the WeChat client; The cloud server parses the security risk information to identify the type and source of the security risk information, and pushes the analyzed hidden danger information to the WeChat client of the first terminal; the first terminal according to the parsed The hidden danger information, the corresponding rectification plan is formulated, and the rectification information is generated, and the rectification information is reported to the cloud server by the WeChat client of the first terminal; the cloud server parses the rectification information to identify the The content and source of the rectification information are described, and the parsed rectification information is pushed to the WeChat client of the second terminal; the second terminal judges the parsed rectification information, and processes the security risk.
  • the WeChat-based large-scale civil engineering construction security risk management method uploads the construction site security risk information and the rectification information through the WeChat client, and analyzes the security risk information and the rectification information through the cloud server corresponding to the WeChat client. Organize and then push to the corresponding WeChat terminal.
  • the method of the embodiment of the invention is safe and reliable, and the operation is simple and convenient.
  • the WeChat-based large-scale civil engineering construction security risk management method according to the above embodiment of the present invention further includes the following additional technical features:
  • the cloud server parses the rectification information to identify the content and source of the rectification information, and pushes the parsed rectification information to the WeChat client of the second terminal, including: The cloud server identifies the uploader of the rectification information; the cloud server parses the rectification information, and sorts the rectification information to query the WeChat client of the second terminal corresponding to the security risk information; The cloud server sends the parsed rectification information to the WeChat client of the second terminal; determines whether the push is successful; if the push is unsuccessful, the cloud server adds the parsed rectification information to the delayed push list. And push again; if the preset value is continuously pushed, if it is still unsuccessful, the push is abandoned and the system administrator is notified.
  • the parsed security risk information and the parsed rectification information are stored in the cloud while the parsed security risk information and the parsed rectification information are pushed. server.
  • the preset value is 3.
  • the embodiment of the second aspect of the present invention provides a WeChat-based large-scale civil engineering construction security risk management system, the system comprising: a first terminal, a second terminal, and a cloud server, wherein
  • the cloud server is configured to receive the security risk information from the construction site reported by the WeChat client, and parse the security risk information to identify the type and source of the security risk information, and push the parsed security risk information to the network
  • the first terminal is configured to: according to the parsed security risk information, formulate a corresponding rectification plan, generate rectification information, and report the rectification information to the WeChat client of the first terminal to The cloud server; the second terminal is configured to judge the parsed rectification information, and process the security risk.
  • the WeChat-based large-scale civil engineering construction safety hazard management system uploads the construction site security risk information and the rectification information through the WeChat client, and analyzes the security risk information and the rectification information through the cloud server corresponding to the WeChat client. Organize and then push to the corresponding WeChat terminal.
  • the system of the embodiment of the invention is safe and reliable, and the operation is simple and convenient.
  • weChat-based large-scale civil engineering construction safety hazard management system of the above embodiment of the present invention further includes the following additional technical features:
  • the cloud server is specifically configured to identify the rectification information uploader, And determining whether the parsed rectification information is sent to the WeChat client of the second terminal is successful, if the push is unsuccessful, adding the parsed rectification information to the delayed push list, and pushing again, and if continuously pushing If the default value is not successful, the push is discarded and the system administrator is notified.
  • the cloud server is further configured to store the parsed security threat information and the parsed rectification information.
  • the preset value is 3.
  • FIG. 1 is a flow chart of a method for managing a hidden danger of a large-scale civil engineering construction based on WeChat according to an embodiment of the present invention
  • FIG. 2 is a flow chart of a WeChat based large-scale civil engineering construction safety hazard management method according to an embodiment of the present invention
  • FIG. 3 is a structural block diagram of a WeChat based large-scale civil engineering construction safety hazard management system according to an embodiment of the present invention
  • FIG. 4 is a structural block diagram of a cloud server according to an embodiment of the present invention.
  • FIG. 1 is a flow chart of a WeChat based large-scale civil engineering construction security risk management method according to an embodiment of the present invention.
  • the method of the embodiment of the present invention includes the following steps:
  • S101 The cloud server receives the security risk information of the construction site reported by the WeChat client.
  • the construction site personnel can use the WeChat client to report various hidden danger information on the construction site. For example, if it is found that the construction site does not wear the seat belt according to the regulations, the personnel at the construction site can open the WeChat client, take photos and record the fact that the operator does not wear the seat belt, and upload the photo to the WeChat client.
  • the corresponding form can also be accompanied by a text description when uploading photos. Finally, the corresponding photos, texts, etc. are passed to the cloud server through the above form.
  • the above form may be an application option in the WeChat client, for example, the public number "construction security management” ⁇ "dialog box", or the public number “construction security management” ⁇ "security problem” option.
  • the cloud server parses the security risk information to identify the type and source of the security risk information, and push the parsed hidden danger information to the WeChat client of the first terminal.
  • the cloud server receives the text, photos, and the like uploaded by the S101, and parses out the information about the security risk contained in the cloud and the information of the reporter, such as a security risk information related to the seat belt that the Li** engineer responds to, and The parsed information is stored in the cloud server.
  • the cloud server queries the cloud database for the responsible person associated with the security risk information, and the user name of the relevant responsible person, such as a micro signal, and pushes the security risk information to the responsible person through the corresponding micro signal.
  • the responsible person may be the safety officer at the construction site, the leader of the illegal construction personnel or the personnel of the relevant management department.
  • S103 The first terminal, according to the analyzed hidden danger information, formulates a corresponding rectification plan, and generates rectification information, and reports the rectification information to the cloud server by using the WeChat client of the first terminal.
  • the first terminal is the relevant responsible person mentioned above.
  • the rectification plan may be to criticize and educate the illegal construction personnel in S101, to impose fines, etc., or to order the relevant responsible person or relevant departments to improve the safety facilities on the construction site, or to make some measures for the construction site supervisors. It can be understood that if a rectification plan such as a fine or a notice of criticism is involved, the relevant paper or audio credentials are required. Therefore, when the rectification plan is uploaded, the relevant voucher must be uploaded at the same time.
  • the cloud server parses the rectification information to identify the content and source of the rectification information, and pushes the parsed rectification information to the WeChat client of the second terminal.
  • step S104 may specifically include the following steps:
  • the cloud server identifies the uploader of the rectification information.
  • the cloud server stores an associated associated information table, such as a WeChat-user table, which can identify the user by using a micro signal.
  • an associated associated information table such as a WeChat-user table, which can identify the user by using a micro signal.
  • the cloud server parses the rectification information, and classifies the rectification information to query the WeChat client of the second terminal corresponding to the security risk information.
  • the rectification plan may include rectification time, rectification content, rectification object and other information
  • the cloud server may sort and rectify the rectification plan according to the rectification time of the rectification plan, the rectification content, the rectification object, and the like, and each category in the cloud server has The corresponding responsible person, therefore, can query the corresponding responsible person, that is, the second terminal, according to the category of the rectification information.
  • S203 The cloud server pushes the parsed rectification information to the WeChat client of the second terminal.
  • the cloud server adds the parsed rectification information to the delayed push list and pushes it again.
  • the preset value can be 3.
  • the rectification information uploader can notify the system administrator by phone or SMS, and the administrator directly pushes the information in the delayed push list through the background management system.
  • the second terminal evaluates the rectified information after parsing, and processes the security risk.
  • the second terminal that is, the corresponding person responsible for the security risk information
  • the second terminal may judge according to the rectification information pushed by the system, and the rectification information received by the WeChat client of the second terminal may be in the form of text, picture, video, etc., according to the above information.
  • the responsible person can also go to the site to check the situation, and after the on-site confirmation, the safety hazard will be closed according to the results of the rectification plan.
  • the WeChat-based large-scale civil engineering construction security risk management method uploads the construction site security risk information and the rectification information through the WeChat client, and analyzes the security risk information and the rectification information through the cloud server corresponding to the WeChat client. Organize and then push to the corresponding WeChat terminal.
  • the method of the embodiment of the invention is safe and reliable, and the operation is simple and convenient.
  • FIG. 3 is a structural block diagram of a WeChat based large-scale civil engineering construction safety hazard management system according to an embodiment of the present invention.
  • the system of the embodiment of the present invention includes: a first terminal 10, a second terminal 20, and a cloud server 30.
  • the cloud server 30 is configured to receive the security risk information from the construction site reported by the WeChat client, and analyze the security risk information to identify the type and source of the security risk information, and push the parsed security risk information to the first The WeChat client of the terminal 10, and the rectification information reported by the WeChat client from the first terminal 10, to identify the content and source of the rectification information, and push the parsed rectification information to the WeChat client of the second terminal 20;
  • the first terminal 10 is configured to formulate a corresponding rectification plan according to the parsed security risk information, and generate rectification information, and report the rectification information to the cloud server 30 through the WeChat client of the first terminal 10;
  • the second terminal 20 is used for judging Parsing the rectified information and handling security risks.
  • the WeChat client can be installed on a smart phone or a tablet.
  • the system in the embodiment of the present invention can establish an association between the WeChat public account and the WeChat client.
  • the cloud server 30 is specifically configured to identify the rectification information uploader, and determine whether the WeChat client that pushes the parsed rectification information to the second terminal is successful. If the push is unsuccessful, the cloud server is parsed. The rectification information is added to the delayed push list and pushed again, and if the preset value is continuously pushed, if it is still unsuccessful, the push is abandoned and the system administrator is notified.
  • the preset value can be 3
  • the cloud server is further configured to store the parsed security threat information and the parsed rectification information.
  • the cloud server 30 may include:
  • the data collection module 31 is configured to obtain various security risk information on the construction site; the data analysis module 32 is configured to parse the security risk information to identify the type and source of the security risk information, and analyze the security risk information.
  • the information is sent to the data processing center 33; the data processing center 33 is configured to store information, including the parsed security risk information and the parsed rectification information.
  • the user management module 34 is configured to manage user information; the cloud pushing module 35 is configured to push information that needs to be pushed by the data processing center 33 to be personalized, and provide a personalized service; and the data mining module 36 is configured to perform data between the data based on the spatial location information. Association analysis and conditional query between spatial location information and attribute data.
  • the user information includes the user name, mobile phone number, QQ, and email address of the user.
  • the user named as the embodiment of the present invention is uniquely used as the number for identifying the user, and the user can define the number by himself, for example, the ID number, the QQ number, and the like can be used.
  • the security risk information acquired by the data collection module 31 includes various attributes of the security risk, such as the name and number of the dangerous source, the type of the hidden danger, the severity, the degree of harm, and the possible accident, and the rectification obtained.
  • the information includes the method and measures adopted, the deadline for rectification, the subject of responsibility, the subject of supervision, the description of hidden dangers, and additional pictures.
  • the data collection module 31 can also acquire the geographic location as additional information of the system, obtain the location of the user and the location information of the hidden danger through the positioning device (GPS, Bluetooth, etc.) on the mobile phone, and through the enterprise information base and contract contracting.
  • the various bid sections of the party are related, which can provide digital support materials for contract management, construction quality, performance appraisal, etc., and form an important part of workflow management.
  • the data processing center 33 may be a data processing system, such as a NOSQL (Not Only SQL) database, which facilitates management of a large amount of data such as text, pictures, and video.
  • NOSQL Not Only SQL
  • the data processing center ensures data security, including data backup and recovery.
  • Conditional embodiments should consider the introduction of offsite backup and disaster backup mechanisms.
  • the user management module 34 can employ a whitelisting mechanism, that is, only those who enter and review the system can use the system.
  • the system can adopt a secondary authentication mechanism, that is, in addition to the user name (ie, micro-signal) identification in the original WeChat system, the user identity is authenticated by a user password or the like.
  • the information push form of the cloud push module 35 includes an active broadcast of the system and a subscription of the user.
  • the active broadcast can be arranged in the daily summary information broadcast, including the number of security risk information on the day, the number of rectification information, and the number of security risk information that has not been rectified.
  • the system user can click on a specific number to view the corresponding information content.
  • a subscription push can be a threat information that pushes a user to "follow".
  • the user can receive the information about the security risk pushed by the system by "focusing on” the public number of the certain type of information, such as the rectification information and processing information of the security risk. It can be understood that the user can also cancel the "attention", that is, the system no longer pushes the threat related.
  • the pushed information may be merged, that is, several related information are combined into one push to the user, and the user can receive more information once received.
  • the pushed information can be a hyperlink, which is simple and convenient.
  • the data mining module 36 can obtain common problems and rules of massive security risk information.
  • the law can help the relevant management personnel of the enterprise to know which safety hazards are easy to occur and frequent, so as to upgrade the corresponding rectification plan into an emergency plan, and train the relevant personnel periodically or irregularly so that the safety hazards on the construction site can be obtained in time. deal with.
  • the analysis mining module 60 can also provide various reports and statistical analysis results to facilitate reference by enterprise decision makers.
  • the above report and statistical analysis results can be pushed to the WeChat client of each user through the cloud pushing module 45.
  • the WeChat-based large-scale civil engineering construction safety hazard management system uploads the construction site security risk information and the rectification information through the WeChat client, and analyzes the security risk information and the rectification information through the cloud server corresponding to the WeChat client. Organize and then push to the corresponding WeChat terminal.
  • the system of the embodiment of the invention is safe and reliable, and the operation is simple and convenient.
  • a "computer-readable medium” can be any apparatus that can contain, store, communicate, propagate, or transport a program for use in an instruction execution system, apparatus, or device, or in conjunction with the instruction execution system, apparatus, or device.
  • computer readable media include the following: electrical connections (electronic devices) having one or more wires, portable computer disk cartridges (magnetic devices), random access memory (RAM), Read only memory (ROM), erasable editable read only memory (EPROM or flash memory), fiber optic devices, and portable compact disk read only memory (CDROM).
  • the computer readable medium may even be a paper or other suitable medium on which the program may be printed, as it may be optically scanned, for example by paper or other medium, followed by editing, interpretation or, if appropriate, in other suitable manners. Processing to obtain the program electronically and then storing it in computer memory.
  • portions of the invention may be implemented in hardware, software, firmware or a combination thereof.
  • multiple steps or methods may be implemented in software or firmware stored in a memory and executed by a suitable instruction execution system.
  • a suitable instruction execution system For example, if implemented in hardware, as in another embodiment, it can be implemented by any one or combination of the following techniques well known in the art: having logic gates for implementing logic functions on data signals. Discrete logic circuits, application specific integrated circuits with suitable combinational logic gates, programmable gate arrays (PGAs), field programmable gate arrays (FPGAs), etc.
  • each functional unit in each embodiment of the present invention may be integrated into one processing module, or each unit may exist physically separately, or two or more units may be integrated into one module.
  • the above integrated modules can be implemented in the form of hardware or in the form of software functional modules.
  • An integrated module can also be stored in a computer readable storage medium if it is implemented as a software functional module and sold or used as a standalone product.

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Abstract

本发明提出了一种基于微信的大型土木工程施工安全隐患管理方法及系统,该方法包括以下步骤:云端服务器接收来自微信客户端上报的施工现场的安全隐患信息,并解析该安全隐患信息,以识别安全隐患信息的类型和来源,将解析后的隐患信息推送给第一终端的微信客户端,第一终端根据解析后的隐患信息,制定相应整改方案,并生成整改信息,以及通过第一终端的微信客户端将整改信息上报给云端服务器,云端服务器解析整改信息,以识别整改信息的内容和来源,并将解析后的整改信息推送给第二终端的微信客户端,第二终端评判解析后的整改信息,并对安全隐患进行处理。本发明实施例的方法安全可靠,且操作方便。

Description

基于微信的大型土木工程施工安全隐患管理方法及系统 技术领域
本发明涉及移动计算领域,特别涉及一种基于微信的大型土木工程施工安全隐患管理方法及系统。
背景技术
大型土木工程施工现场的地形环境一般很复杂,且由于其建设规模大、速度快,施工周期长、交叉作业复杂,业主、施工、监理各方作业人数众多,人、机、环境复杂多变,使得施工现场各类事故时有发生,造成了严重社会影响和重大经济损失。如何既能保质保量完成作业要求,又能在施工现场避免人员伤害和经济财产损失,以及避免重大伤亡事故及重大次生自然灾害的发生,是摆在相关从业人员和相关单位面前的现实问题。
目前,由于各地方、各单位信息化应用水平不一,很多单位仍使用手工记录整理存档施工现场的各种信息,不仅保管不便,而且会产生数据失真等问题。同时,也有单位投入了大量的人力物力财力,开发了一系列的信息管理系统,以管理现场各种信息,但这些系统要么基于PC,现场作业条件下使用不便;要么基于手机APP,存在适配机型困难、版本管理复杂、用户培训任务重、使用率低等问题。
此外,腾讯公司在2011年推出了一个基于移动互联网的崭新即时通信平台——微信,得到了广大用户的认可。一方面,微信装机量大,可以存储大量信息;另一方面,用户已习惯于使用微信进行日常交流,容易普及推广。但其仍存在一些问题,如信息缺乏整理和深入利用,无法提供个性化推送等。
发明内容
本发明旨在至少解决现有技术中存在的技术问题之一。
有鉴于此,本发明的一个目的在于提出一种基于微信的大型土木工程施工安全隐患管理方法,该方法安全可靠,且操作简单方便。
本发明的第二个目的在于提出一种基于微信的大型土木工程施工安全隐患管理系统。
为达到上述目的,本发明第一方面的实施例提出了一种基于微信的大型土木工程施工安全隐患管理方法,包括以下步骤:云端服务器接收来自微信客户端上报的施工现场的安全隐患信息;所述云端服务器解析所述安全隐患信息,以识别所述安全隐患信息的类型和来源,并将解析后的隐患信息推送给第一终端的微信客户端;所述第一终端根据所述解析后的隐患信息,制定相应整改方案,并生成整改信息,以及通过所述第一终端的微信客户端将所述整改信息上报给所述云端服务器;所述云端服务器解析所述整改信息,以识别所 述整改信息的内容和来源,并将解析后的整改信息推送给第二终端的微信客户端;所述第二终端评判所述解析后的整改信息,并对所述安全隐患进行处理。
本发明实施例的基于微信的大型土木工程施工安全隐患管理方法,通过微信客户端上传施工现场安全隐患信息和整改信息,并通过微信客户端对应的云端服务器对上述安全隐患信息和整改信息进行分析整理,然后推送到相应的微信终端。本发明实施例的方法安全可靠,且操作简单方便。
另外,本发明上述实施例的基于微信的大型土木工程施工安全隐患管理方法,还包括如下附加技术特征:
根据本发明的一个实施例,所述云端服务器解析所述整改信息,以识别所述整改信息的内容和来源,并将解析后的整改信息推送给第二终端的微信客户端,包括:所述云端服务器识别所述整改信息的上传人;所述云端服务器解析所述整改信息,对所述整改信息进行分类整理,以查询所述安全隐患信息对应的所述第二终端的微信客户端;所述云端服务器将解析后的整改信息推送给所述第二终端的微信客户端;判断推送是否成功;如果推送不成功,则所述云端服务器将所述解析后的整改信息加入到延时推送列表,并再次进行推送;如果连续推送预设值次,仍未成功,则放弃推送,并通知系统管理员。
根据本发明的一个实施例,推送所述解析后的安全隐患信息和所述解析后的整改信息的同时,将所述解析后的安全隐患信息和所述解析后的整改信息存储在所述云端服务器。
根据本发明的一个的实施例,所述预设值是3。
为达到上述目的,本发明第二方面的实施例提出了一种基于微信的大型土木工程施工安全隐患管理系统,该系统包括:第一终端、第二终端和云端服务器,其中,
所述云端服务器用于接收来自微信客户端上报的施工现场的安全隐患信息,并解析所述安全隐患信息,以识别所述安全隐患信息的类型和来源,并将解析后的安全隐患信息推送给所述第一终端的微信客户端,以及解析来自所述第一终端的微信客户端上报的整改信息,以识别所述整改信息的内容和来源,并将解析后的整改信息推送给第二终端的微信客户端;所述第一终端用于根据所述解析后的安全隐患信息,制定相应整改方案,并生成整改信息,以及通过所述第一终端的微信客户端将所述整改信息上报给所述云端服务器;所述第二终端用于评判所述解析后的整改信息,并对所述安全隐患进行处理。
本发明实施例的基于微信的大型土木工程施工安全隐患管理系统,通过微信客户端上传施工现场安全隐患信息和整改信息,并通过微信客户端对应的云端服务器对上述安全隐患信息和整改信息进行分析整理,然后推送到相应的微信终端。本发明实施例的系统安全可靠,且操作简单方便。
另外,本发明上述实施例的基于微信的大型土木工程施工安全隐患管理系统,还包括如下附加技术特征:
根据本发明的一个实施例,所述云端服务器,具体用于识别所述整改信息上传人,以 及判断将解析后的整改信息推送给第二终端的微信客户端是否成功,如果推送不成功,则将所述解析后的整改信息加入到延时推送列表,并再次进行推送,以及如果连续推送预设值次,仍未成功,则放弃推送,并通知系统管理员。
根据本发明的一个实施例,所述云端服务器还用于存储所述解析后的安全隐患信息和所述解析后的整改信息。
根据本发明的一个实施例,所述预设值是3。
附图说明
图1为根据本发明一个实施例的基于微信的大型土木工程施工安全隐患管理方法的流程图;
图2为根据本发明一个具体实施例的基于微信的大型土木工程施工安全隐患管理方法的流程图;
图3为根据本发明一个实施例的基于微信的大型土木工程施工安全隐患管理系统的结构框图;
图4为根据本发明一个实施例的云端服务器的结构框图。
具体实施方式
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本发明,而不能理解为对本发明的限制。
下面参考附图来描述根据本发明实施例提出的基于微信的大型土木工程施工安全隐患管理方法及系统。
图1为根据本发明一个实施例的基于微信的大型土木工程施工安全隐患管理方法的流程图。
如图1所示,本发明实施例的方法,包括以下步骤:
S101,云端服务器接收来自微信客户端上报的施工现场的安全隐患信息。
具体地,施工现场人员可以利用微信客户端上报施工现场的各种隐患信息。举例说明,如发现施工现场有施工人员未按照规定佩戴安全带,在施工现场的人员可以打开微信客户端,拍照记录上述操作人员未佩戴安全带的事实,并将该照片上传到微信客户端里相应的表单,也可以在上传照片的同时附上文字说明。最终,通过上述表单将相应照片、文字等传到云端服务器。
其中,上述表单可以是微信客户端中的应用选项,例如可以是公众号“施工安全管理”→“对话框”,也可以是公众号“施工安全管理”→“安全问题”选项。
S102,云端服务器解析安全隐患信息,以识别安全隐患信息的类型和来源,并将解析后的隐患信息推送给第一终端的微信客户端。
具体地,云端服务器接收到S101上传的文字、照片等,解析出所包含的安全隐患信息,以及上报人的信息,如这是李**工程师反应的一个和安全带相关的安全隐患信息,并将该解析后的信息存储在云端服务器。
进一步地,云端服务器在云端数据库中查询与上述安全隐患信息相关的责任人,以及相关责任人的用户名,如微信号,并通过相应微信号将上述安全隐患信息推送给该责任人。其中,该责任人可以是施工现场的安全员、违规施工人员的领导或相关管理部门的人员。
S103,第一终端根据解析后的隐患信息,制定相应整改方案,并生成整改信息,以及通过第一终端的微信客户端将整改信息上报给云端服务器。
其中,第一终端即为上述的相关责任人。整改方案可以是对S101中的违规施工人员进行批评教育、罚款处理等,也可以是责令相关负责人或相关部门完善施工现场安全设施,还可以是对施工现场监管人员制定的一些措施。可以理解,若涉及罚款、通报批评等整改方案,则需要有相关的纸质或音频等凭据,因此,在将整改方案上传时,需同时上传相关凭证。
S104,云端服务器解析整改信息,以识别整改信息的内容和来源,并将解析后的整改信息推送给第二终端的微信客户端。
在本发明的实施例中,如图2所示,步骤S104具体可以包括以下步骤:
S201,云端服务器识别整改信息的上传人。
具体地,云端服务器存储有相关的关联的信息表,如微信-用户表,可以通过微信号识别到用户。
S202,云端服务器解析整改信息,对整改信息进行分类整理,以查询安全隐患信息对应的第二终端的微信客户端。
具体地,整改方案可以包括整改时间、整改内容、整改对象等信息,云端服务器可以根据整改方案的整改时间、整改内容、整改对象等信息对整改方案进行整理分类,云端服务器中每种类别均有相应的责任人,因此,可以根据整改信息的类别查询到相应的责任人,即第二终端。
S203,云端服务器将解析后的整改信息推送给第二终端的微信客户端。
S204,判断推送是否成功。
S205,如果推送不成功,则云端服务器将解析后的整改信息加入到延时推送列表,并再次进行推送。
可以理解,信息推送过程中可能会存在网络信号差等问题,而造成信息推送不成功,因此可以将所要推送的信息加入到延迟推送列表中,并尝试再次推送。
S206,如果连续推送预设值次,仍未成功,则放弃推送,并通知系统管理员。
其中,预设值可以是3。
具体地,如果推送3次均未成功,则可能不仅仅是网络信号的问题。因此,整改信息上传人可以电话或短信通知系统管理员,由管理员通过后台管理系统直接对延迟推送列表中的信息进行推送。
S105,第二终端评判解析后的整改信息,并对安全隐患进行处理。,
具体地,第二终端,即安全隐患信息相应责任人,可以根据系统推送的整改信息进行判断,第二终端的微信客户端接收到的整改信息可以是文字、图片和视频等形式,根据上述信息做相应安全隐患闭合处理。相应责任人也可以到现场实地查看,经现场确认后根据整改方案评判结果对安全隐患进行关闭处理。
本发明实施例的基于微信的大型土木工程施工安全隐患管理方法,通过微信客户端上传施工现场安全隐患信息和整改信息,并通过微信客户端对应的云端服务器对上述安全隐患信息和整改信息进行分析整理,然后推送到相应的微信终端。本发明实施例的方法安全可靠,且操作简单方便。
图3为根据本发明一个实施例的基于微信的大型土木工程施工安全隐患管理系统的结构框图。
如图3所示,本发明实施例的系统包括:第一终端10、第二终端20和云端服务器30。
具体地,云端服务器30用于接收来自微信客户端上报的施工现场的安全隐患信息,并解析安全隐患信息,以识别安全隐患信息的类型和来源,并将解析后的安全隐患信息推送给第一终端10的微信客户端,以及解析来自第一终端10的微信客户端上报的整改信息,以识别整改信息的内容和来源,并将解析后的整改信息推送给第二终端20的微信客户端;第一终端10用于根据解析后的安全隐患信息,制定相应整改方案,并生成整改信息,以及通过第一终端10的微信客户端将整改信息上报给云端服务器30;第二终端20用于评判解析后的整改信息,并对安全隐患进行处理。
其中,微信客户端可以安装在智能手机或平板上,本发明实施例的系统可以通过微信公众号和微信客户端建立关联。
在本发明的一个实施例中,云端服务器30具体可用于识别整改信息上传人,以及判断将解析后的整改信息推送给第二终端的微信客户端是否成功,如果推送不成功,则将解析后的整改信息加入到延时推送列表,并再次进行推送,以及如果连续推送预设值次,仍未成功,则放弃推送,并通知系统管理员。其中,预设值可以是3
根据本发明的一个实施例,云端服务器还用于存储解析后的安全隐患信息和解析后的整改信息。
在本发明的一个实施例中,如图4所示,云端服务器30可以包括:
数据采集模块31用于获取施工现场的各种安全隐患信息;数据解析模块32用于对上述安全隐患信息进行解析,以识别安全隐患信息的类型及来源,并将解析后的安全隐患信 息发送到数据处理中心33;数据处理中心33用于存储信息,包括解析后的安全隐患信息和解析后的整改信息。用户管理模块34用于管理用户信息;云推送模块35用于将数据处理中心33需要推送的信息分门别类的进行推送,提供个性化服务;数据挖掘模块36用于基于空间位置信息进行数据之间、空间位置信息及属性数据之间的关联分析与条件查询。
其中,用户信息包括用户的用户名、手机号、QQ、邮箱等。其中,用户名为本发明实施例的系统唯一用作标识用户的编号,用户可以自行定义编号,如可以使用身份证号、QQ号等。
在本发明的一个实施例中,数据采集模块31获取的安全隐患信息包括安全隐患的各种属性,如危险源名称及编号、隐患类别、严重程度、危害程度及可能造成的事故,获取的整改信息包括采取的方法措施、限期整改期限、责任主体、监管主体、隐患的描述、附加图片等。
更进一步地,数据采集模块31还可以获取地理位置作为系统的附加信息,通过手机上的定位装置(GPS、蓝牙等)获取使用者所在位置以及隐患的位置信息,并通过企业信息库和合同承包方的各标段相关联,从而能够为合同管理,施工质量,绩效评比等提供数字化支撑材料,形成工作流程管理的重要一环。
在本发明的一个实施例中,数据处理中心33可以是一个数据处理系统,如NOSQL(Not Only SQL,非关系型数据库)数据库,方便对文字、图片、视频等海量多样化的数据进行管理。
进一步,数据处理中心确保数据的安全,包括进行数据的备份和恢复。条件具备的实施例应考虑引入异地备份和灾难备份的机制。
在本发明的一个实施例中,用户管理模块34可以采用白名单机制,即只有系统录入和审核的人员才能使用本系统。优选地,本系统可以采用二次认证机制,即在原有微信系统中用户名(即微信号)识别之外,再通过用户口令等进行使用者身份的鉴别。
在本发明的一个实施例中,云推送模块35的信息推送形式包括系统的主动广播和用户的订阅。其中,主动广播可以安排在每日的汇总性信息广播中,这些信息包括当天的安全隐患信息数、整改信息数、未完成整改的安全隐患信息数。优选地,系统用户可以点击具体数字,进而查看相应的信息内容。订阅推送可以是推送用户“关注”的某个安全隐患信息。具体地,用户可以通过“关注”某类信息的公众号,就可以收到系统推送的该安全隐患的相关信息,如该安全隐患的整改信息、处理信息等。可以理解,用户也可以取消“关注”,即系统不再推送该安全隐患相关。
优选地,为了获得更好的用户体验,可以合并推送的信息,即几条相关的信息合并到一条推送给用户,用户接收一次即可获得更多的信息。其中,推送的信息可以是超链接,简单方便。
在本发明的一个实施例中,数据挖掘模36可以获取海量安全隐患信息的共性问题和规 律,从而能够帮助企业相关管理人员知悉哪些安全隐患是容易发生且频繁的,从而将相应整改方案升级为应急预案,并周期性或不定期对相关人员进行培训,以使施工现场安全隐患及时得到处理。
进一步地,分析挖掘模块60还可以提供各种报表和统计分析成果,以方便企业决策者参考。优选地,可以通过云推送模块45将上述报表和统计分析成果通推送到各用户的微信客户端。
本发明实施例的基于微信的大型土木工程施工安全隐患管理系统,通过微信客户端上传施工现场安全隐患信息和整改信息,并通过微信客户端对应的云端服务器对上述安全隐患信息和整改信息进行分析整理,然后推送到相应的微信终端。本发明实施例的系统安全可靠,且操作简单方便。
流程图中或在此以其他方式描述的任何过程或方法描述可以被理解为,表示包括一个或更多个用于实现特定逻辑功能或过程的步骤的可执行指令的代码的模块、片段或部分,并且本发明的优选实施方式的范围包括另外的实现,其中可以不按所示出或讨论的顺序,包括根据所涉及的功能按基本同时的方式或按相反的顺序,来执行功能,这应被本发明的实施例所属技术领域的技术人员所理解。
在流程图中表示或在此以其他方式描述的逻辑和/或步骤,例如,可以被认为是用于实现逻辑功能的可执行指令的定序列表,可以具体实现在任何计算机可读介质中,以供指令执行系统、装置或设备(如基于计算机的系统、包括处理器的系统或其他可以从指令执行系统、装置或设备取指令并执行指令的系统)使用,或结合这些指令执行系统、装置或设备而使用。就本说明书而言,"计算机可读介质"可以是任何可以包含、存储、通信、传播或传输程序以供指令执行系统、装置或设备或结合这些指令执行系统、装置或设备而使用的装置。计算机可读介质的更具体的示例(非穷尽性列表)包括以下:具有一个或多个布线的电连接部(电子装置),便携式计算机盘盒(磁装置),随机存取存储器(RAM),只读存储器(ROM),可擦除可编辑只读存储器(EPROM或闪速存储器),光纤装置,以及便携式光盘只读存储器(CDROM)。另外,计算机可读介质甚至可以是可在其上打印程序的纸或其他合适的介质,因为可以例如通过对纸或其他介质进行光学扫描,接着进行编辑、解译或必要时以其他合适方式进行处理来以电子方式获得程序,然后将其存储在计算机存储器中。
应当理解,本发明的各部分可以用硬件、软件、固件或它们的组合来实现。在上述实施方式中,多个步骤或方法可以用存储在存储器中且由合适的指令执行系统执行的软件或固件来实现。例如,如果用硬件来实现,和在另一实施方式中一样,可用本领域公知的下列技术中的任一项或他们的组合来实现:具有用于对数据信号实现逻辑功能的逻辑门电路的离散逻辑电路,具有合适的组合逻辑门电路的专用集成电路,可编程门阵列(PGA),现场可编程门阵列(FPGA)等。
本技术领域的普通技术人员可以理解实现上述实施例方法携带的全部或部分步骤是可以通过程序来指令相关的硬件完成,的程序可以存储于一种计算机可读存储介质中,该程序在执行时,包括方法实施例的步骤之一或其组合。
此外,在本发明各个实施例中的各功能单元可以集成在一个处理模块中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个模块中。上述集成的模块既可以采用硬件的形式实现,也可以采用软件功能模块的形式实现。集成的模块如果以软件功能模块的形式实现并作为独立的产品销售或使用时,也可以存储在一个计算机可读取存储介质中。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。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示例中以合适的方式结合。
尽管已经示出和描述了本发明的实施例,本领域的普通技术人员可以理解:在不脱离本发明的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由权利要求及其等同限定。

Claims (8)

  1. 一种基于微信的大型土木工程施工安全隐患管理方法,其特征在于,包括以下步骤:
    云端服务器接收来自微信客户端上报的施工现场的安全隐患信息;
    所述云端服务器解析所述安全隐患信息,以识别所述安全隐患信息的类型和来源,并将解析后的隐患信息推送给第一终端的微信客户端;
    所述第一终端根据所述解析后的隐患信息,制定相应整改方案,并生成整改信息,以及通过所述第一终端的微信客户端将所述整改信息上报给所述云端服务器;
    所述云端服务器解析所述整改信息,以识别所述整改信息的内容和来源,并将解析后的整改信息推送给第二终端的微信客户端;
    所述第二终端评判所述解析后的整改信息,并对所述安全隐患进行处理。
  2. 如权利要求1所述的基于微信的大型土木工程施工安全隐患管理方法,其特征在于,所述云端服务器解析所述整改信息,以识别所述整改信息的内容和来源,并将解析后的整改信息推送给第二终端的微信客户端,包括:
    所述云端服务器识别所述整改信息的上传人;
    所述云端服务器解析所述整改信息,对所述整改信息进行分类整理,以查询所述安全隐患信息对应的所述第二终端的微信客户端;
    所述云端服务器将解析后的整改信息推送给所述第二终端的微信客户端;
    判断推送是否成功;
    如果推送不成功,则所述云端服务器将所述解析后的整改信息加入到延时推送列表,并再次进行推送;
    如果连续推送预设值次,仍未成功,则放弃推送,并通知系统管理员。
  3. 如权利要求1所述的基于微信的大型土木工程施工安全隐患管理方法,其特征在于,推送所述解析后的安全隐患信息和所述解析后的整改信息的同时,将所述解析后的安全隐患信息和所述解析后的整改信息存储在所述云端服务器。
  4. 如权利要求2所述的基于微信的大型土木工程施工安全隐患管理方法,其特征在于,所述预设值是3。
  5. 一种基于微信的大型土木工程施工安全隐患管理系统,其特征在于,包括:第一终端、第二终端和云端服务器,其中,
    所述云端服务器用于接收来自微信客户端上报的施工现场的安全隐患信息,并解析所述安全隐患信息,以识别所述安全隐患信息的类型和来源,并将解析后的安全隐患信息推送给所述第一终端的微信客户端,以及解析来自所述第一终端的微信客户端上报的整改信息,以识别所述整改信息的内容和来源,并将解析后的整改信息推送给第二终端的微信客户端;
    所述第一终端用于根据所述解析后的安全隐患信息,制定相应整改方案,并生成整改信息,以及通过所述第一终端的微信客户端将所述整改信息上报给所述云端服务器;
    所述第二终端用于评判所述解析后的整改信息,并对所述安全隐患进行处理。
  6. 如权利要求5所述的基于微信的大型土木工程施工安全隐患管理系统,其特征在于,所述云端服务器,具体用于识别所述整改信息上传人,以及判断将解析后的整改信息推送给第二终端的微信客户端是否成功,如果推送不成功,则将所述解析后的整改信息加入到延时推送列表,并再次进行推送,以及如果连续推送预设值次,仍未成功,则放弃推送,并通知系统管理员。
  7. 如权利要求5所述的基于微信的大型土木工程施工安全隐患管理系统,其特征在于,所述云端服务器还用于存储所述解析后的安全隐患信息和所述解析后的整改信息。
  8. 如权利要求6所述的基于微信的大型土木工程施工安全隐患管理系统,其特征在于,所述预设值是3。
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