CN118041955A - Dangerous chemical storage monitoring system for chemical experiments - Google Patents

Dangerous chemical storage monitoring system for chemical experiments Download PDF

Info

Publication number
CN118041955A
CN118041955A CN202410328973.1A CN202410328973A CN118041955A CN 118041955 A CN118041955 A CN 118041955A CN 202410328973 A CN202410328973 A CN 202410328973A CN 118041955 A CN118041955 A CN 118041955A
Authority
CN
China
Prior art keywords
module
service
total
data
sub
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.)
Pending
Application number
CN202410328973.1A
Other languages
Chinese (zh)
Inventor
曹良荣
李丽涛
谭润全
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.)
Guangzou Yihui Information Technology Co ltd
Original Assignee
Guangzou Yihui Information Technology Co ltd
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 Guangzou Yihui Information Technology Co ltd filed Critical Guangzou Yihui Information Technology Co ltd
Priority to CN202410328973.1A priority Critical patent/CN118041955A/en
Publication of CN118041955A publication Critical patent/CN118041955A/en
Pending legal-status Critical Current

Links

Landscapes

  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)

Abstract

The invention relates to the technical field of chemical experiment monitoring systems, and discloses a dangerous chemical storage monitoring system for chemical experiments, which comprises a total platform unit, a school terminal unit and an access unit, wherein the total platform unit is in signal connection with the school terminal unit, the school terminal unit is in signal connection with the access unit, and the total platform unit comprises a total client module, a data service module, a total unified authentication module, a total service layer module, a total data layer module, a total database module and a total operation environment module. The dangerous chemical storage monitoring system for the chemical experiments is characterized in that a set of laboratory safety management platform is built based on information technology, the Internet of things, big data, a cloud platform and other technologies, the laboratory safety work of schools is uniformly managed and supervised, the system adopts a mature technical architecture, an advanced network topology architecture and integrated distributed deployment technology and software and hardware combination technology, and high stability, high concurrency and high availability are achieved.

Description

Dangerous chemical storage monitoring system for chemical experiments
Technical Field
The invention relates to the technical field of chemical experiment monitoring systems, in particular to a dangerous chemical storage monitoring system for chemical experiments.
Background
The primary and middle school chemistry experiment course is an important component of scientific education, and has irreplaceable effects of improving scientific literacy of students and promoting comprehensive development of students. Because of the chemical disciplines, the experiments of these courses all involve some chemical reagents which are corrosive, toxic and flammable. If stored, used or operated improperly, there is some safety hazard.
At present, most schools have imperfect safety systems in chemical laboratories, and the laboratory is basically managed by adopting a manual inspection mode, so that the safety coefficient is low, the intelligent degree is insufficient, and therefore, when an accident occurs, the reaction cannot be carried out for the first time, so that the accident risk is reduced, and therefore, the dangerous chemical storage monitoring system for chemical experiments needs to be invented to solve the problems.
Disclosure of Invention
The invention aims to provide a dangerous chemical storage monitoring system for chemical experiments, which aims to solve the problems in the background technology.
In order to achieve the above purpose, the present invention provides the following technical solutions: the dangerous chemical storage monitoring system for the chemical experiments comprises a total platform unit, a school terminal unit and an access unit, wherein the total platform unit is in signal connection with the school terminal unit, and the school terminal unit is in signal connection with the access unit.
The total platform unit comprises a total client module, a data service module, a total unified authentication module, a total service layer module, a total data layer module, a total database module and a total operation environment module.
The school terminal unit comprises a sub-client module, a data access module, a sub-unified authentication module, a sub-service layer module, a sub-data layer module, a sub-database module and a sub-operation environment module.
The access unit comprises an access control module, a monitoring module, a temperature detection module, a gas monitoring module, a temperature control module, an intelligent cabinet module and a ban module.
Preferably, the total client module and the sub-client modules comprise a PC end, a mobile phone end and an alignment interface.
The data service module is provided with a data interaction system, a service communication system, a message notification system and a data display system, and the data access module is provided with the data interaction system and the message notification system.
And the total unified authentication module and the sub-unified authentication module are both provided with an interactive system between the background management end and the service.
The total service layer comprises basic service, detection service, resource service, QMS service, auxiliary service, query statistics, system service, SSO service, log storage and authority control.
The sub-service layer module comprises a reagent cabinet service, an intelligent lock service, an intelligent balance service, a basic service, a system service, an environment monitoring service, an intelligent monitoring service, a hardware service, a query statistics service and a resource service.
The total data layer module and the sub data layer module comprise business data storage, hot spot data storage, home page full text retrieval data storage, distributed task debugging batch processing data and data real-time processing and statistical analysis.
The total database module and the sub database module comprise relational database persistent storage, cache storage, full text retrieval special and persistent storage.
The total running environment module comprises a cloud server, cloud MySQL, object cloud storage, middleware cloud and middleware.
The sub-operation environment module comprises a host independent terminal, an operation time environment and a third party plug-in.
Preferably, the data service module, the data interaction system and the message notification system in the data access module respectively adopt a back-end interface Api interaction-JSON and a connection WebSocket based on a TCP/HTTP, and the service communication system in the data service module can adopt an API of RPC communication and Restful style, wherein hot word searching in the data display system adopts a cache Redis/Redisson.
Preferably, the generic authentication module and a background management end in the distributed authentication module use shiro+Redis cluster Session sharing, wherein an interactive system between services adopts RPC JWT Token authentication/OAuth 2 JWT Token authentication.
Preferably, a Java Web development framework is adopted among the total platform unit, the school terminal unit and the access unit, and an application program architecture mode of combining B/S and C/S is adopted.
Preferably, the output end signal connection of entrance guard's module has entrance guard's all-in-one, monitor module's output end signal connection has the camera, temperature detection module's output end signal connection has temperature and humidity detector, gas monitoring module's output end signal connection has gas monitor, temperature control module's output end signal connection has intelligent fan coil temperature controller, intelligent cabinet module output end signal connection has intelligent cabinet and intelligent lock, the output end signal connection of ban tablet module has ban tablet module.
Compared with the prior art, the invention provides a dangerous chemical storage monitoring system for chemical experiments, which has the following beneficial effects:
Preferably, the method comprises the steps of,
1. The dangerous chemical storage monitoring system for the chemical experiments is characterized in that a set of laboratory safety management platform is built based on information technology, the Internet of things, big data, a cloud platform and other technologies, the laboratory safety work of schools is uniformly managed and supervised, the system adopts a mature technical architecture, an advanced network topology architecture and integrated distributed deployment technology and software and hardware combination technology, and high stability, high concurrency and high availability are achieved.
2. The system for monitoring the storage of dangerous chemicals for chemical experiments enables a total platform of the education bureau to be positioned in unified centralized supervision, enables an administrator of the education bureau to inquire and check the management system of each school in a laboratory, the implementation condition of responsibility, the safe education examination, instrument equipment, the management of dangerous chemicals, the safe examination, the laboratory emergency plan, the laboratory environment monitoring and other work implementation conditions, enables the administrator of the education bureau to log in the system, select the laboratory of the school, conduct real-time picture monitoring, check historical video, monitor the inventory condition of dangerous chemicals of each school in real time, comprise the types, the number, the records of in-out and in-out of the warehouse, use records and the like, inquire and check the implementation condition of the laboratory safe examination of each school in real time, check the safety examination implementation condition of each school through inquiry and monitor the safety examination implementation condition of each school.
3. The dangerous chemical storage monitoring system for the chemical experiments provides a laboratory safety management system template and a laboratory safety management responsibility system template for the first and the second schools, the schools are combined with the self conditions, the laboratory safety management system and responsibility system of the schools are built up quickly and in compliance, a safety education website platform is built in the platform, the safety knowledge is suitable for various laboratory safety knowledge in the first and the second schools, the laboratory and the teacher can learn the safety knowledge anytime and anywhere, various safety question banks and general safety examination papers are built in the platform, the laboratory safety examination can be arranged quickly by the experimenter or the teacher, after the examination passes, the laboratory safety examination can enter a dangerous chemical storage room and a practical training room, a dangerous chemical full life cycle management information system is provided, the schools can use informatization to manage dangerous chemicals of the schools, the dangerous chemical storage room comprises common reagent consumables, the dangerous chemical storage cabinet is accurate in inventory, the use of compliance, the overtime alarm is performed, the chemical storage room is provided with temperature and humidity, the OC probe is provided with a dangerous chemical storage cabinet, the intelligent terminal and other hardware, the dangerous chemical storage cabinet is monitored in real time, and the dangerous chemical storage cabinet is monitored and the abnormal and the human is monitored and the dangerous chemical storage cabinet is monitored and the abnormal by the intelligent face is monitored and has real time to enter and forbidden. Ensure the compliance and warehousing of dangerous chemicals, and store and use the dangerous chemicals.
Drawings
For a clearer description of the technical solutions of the embodiments of the present invention, the drawings that are needed in the description of the embodiments will be briefly described below, it will be apparent that the drawings in the description below are only some embodiments of the present invention, and that other drawings can be obtained according to these drawings without inventive effort for a person skilled in the art:
FIG. 1 is a schematic diagram of a system architecture of the present invention;
FIG. 2 is a schematic diagram of the overall platform unit structure of the present invention;
FIG. 3 is a schematic diagram of a terminal unit structure of the school according to the present invention;
FIG. 4 is a schematic diagram of an access unit structure according to the present invention;
FIG. 5 is a schematic diagram of a system architecture according to the present invention.
In the figure: 1. a total platform unit; 11. a master client module; 12. a data service module; 13. a president authentication module; 14. a total service layer module; 15. a total data layer module; 16. a total database module; 17. a total operating environment module; 2. a school terminal unit; 21. a client module; 22. a data access module; 23. a unified authentication module; 24. a sub-service layer module; 25. a data layering module; 26. a database dividing module; 27. a branch operation environment module; 3. an access unit; 31. an access control module; 32. a monitoring module; 33. a temperature detection module; 34. a gas monitoring module; 35. a temperature control module; 36. an intelligent cabinet module; 37. and a ban card module.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
In the present invention, unless explicitly specified and limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally formed; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communicated with the inside of two elements or the interaction relationship of the two elements. The specific meaning of the above terms in the present invention can be understood by those of ordinary skill in the art according to the specific circumstances.
Referring to fig. 1-5, the present invention provides a technical solution: the dangerous chemical storage monitoring system for the chemical experiments comprises a total platform unit 1, a school terminal unit 2 and an access unit 3, wherein the total platform unit 1 is in signal connection with the school terminal unit 2, and the school terminal unit 2 is in signal connection with the access unit 3.
The total platform unit 1 comprises a total client module 11, a data service module 12, a total authentication module 13, a total service layer module 14, a total data layer module 15, a total database module 16, and a total operating environment module 17.
The school terminal unit 2 includes a sub-client module 21, a data access module 22, a sub-unified authentication module 23, a sub-service layer module 24, a sub-data layer module 25, a sub-database module 26, and a sub-operation environment module 27.
The access unit 3 comprises an access control module 31, a monitoring module 32, a temperature detection module 33, a gas monitoring module 34, a temperature control module 35, an intelligent cabinet module 36 and a ban module 37.
Further, the total client module 11 and the sub-client module 21 each include a PC end, a mobile phone end, and an alignment interface.
The data service module 12 is provided with a data interaction system, a service communication system, a message notification system, and a data presentation system, and the data access module 22 is provided with a data interaction system and a message notification system.
The general unified authentication module 13 and the unified authentication module 23 are both provided with a background management end and service interaction system.
The total service layer comprises basic service, detection service, resource service, QMS service, auxiliary service, query statistics, system service, SSO service, log storage and authority control.
The sub-service layer module 24 includes a reagent cabinet service, an intelligent lock service, an intelligent balance service, a base service, a system service, an environment monitoring service, an intelligent monitoring service, a hardware service, a query statistics service, and a resource service.
The total data layer module 15 and the sub data layer module 25 each include business data storage, hot spot data storage, home page full text retrieval data storage, distributed task debugging batch processing data, and data real-time processing and statistical analysis.
The total database module 16 and the fractional database module 26 each include relational database persistent storage, cache storage, full text retrieval specialization, and persistent storage.
The total running environment module 17 comprises a cloud server, cloud MySQL, object cloud storage, middleware cloud and middleware.
The branch runtime environment module 27 includes a host independent terminal, a runtime environment, and a third party plug-in.
Further, the data service module 12, the data interaction system and the message notification system in the data access module 22 respectively adopt a back-end interface Api interaction-JSON and a WebSocket based on TCP/HTTP connection, and the service communication system in the data service module 12 can adopt an Api of RPC communication and Restful style, wherein hot word searching in the data display system adopts a cache Redis/Redisson.
Further, the generic authentication module 13 is shared with a background management end in the distributed authentication module 23 by using a shiro+redis cluster Session, wherein the inter-service interaction system adopts RPC JWT Token authentication/OAuth 2 JWT Token authentication.
Furthermore, a Java Web development framework is adopted among the general platform unit 1, the school terminal unit 2 and the access unit 3, and an application program architecture mode combining B/S and C/S is adopted.
Further, the output end signal connection of entrance guard's module 31 has entrance guard's all-in-one, and the output end signal connection of monitoring module 32 has the camera, and the output end signal connection of temperature detection module 33 has the temperature and humidity detector, and the output end signal connection of gas monitoring module 34 has the gas monitoring appearance, and the output end signal connection of temperature control module 35 has intelligent fan coil temperature controller, and intelligent cabinet module 36 output end signal connection has intelligent cabinet and intelligent lock, and the output end signal connection of ban tablet module 37 has ban tablet module 37.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one does not exclude the presence of other like elements in a process, method, article, or apparatus that comprises an element.

Claims (6)

1. Dangerous chemical storage monitored control system that chemistry experiments were used, including total platform unit (1), school's terminal unit (2) and access unit (3), its characterized in that: the main platform unit (1) is in signal connection with the school terminal unit (2), and the school terminal unit (2) is in signal connection with the access unit (3);
The total platform unit (1) comprises a total client module (11), a data service module (12), a total unified authentication module (13), a total service layer module (14), a total data layer module (15), a total database module (16) and a total operation environment module (17);
The school terminal unit (2) comprises a sub-client module (21), a data access module (22), a sub-unified authentication module (23), a sub-service layer module (24), a sub-service layer module (25), a sub-database module (26) and a sub-operation environment module (27);
The access unit (3) comprises an access control module (31), a monitoring module (32), a temperature detection module (33), a gas monitoring module (34), a temperature control module (35), an intelligent cabinet module (36) and a ban module (37).
2. A hazardous chemical storage monitoring system for chemical experiments according to claim 1, wherein: the total client module (11) and the sub-client modules (21) comprise a PC end, a mobile phone end and an alignment interface;
The data service module (12) is provided with a data interaction system, a service communication system, a message notification system and a data display system, and the data access module (22) is provided with the data interaction system and the message notification system;
the general authentication module (13) and the sub-general authentication module (23) are both provided with a background management end and service interaction system;
the total service layer comprises basic service, detection service, resource service, QMS service, auxiliary service, query statistics, system service, SSO service, log storage and authority control;
the sub-service layer module (24) comprises a reagent cabinet service, an intelligent lock service, an intelligent balance service, a basic service, a system service, an environment monitoring service, an intelligent monitoring service, a hardware service, a query statistics service and a resource service;
The total data layer module (15) and the sub data layer module (25) comprise business data storage, hot spot data storage, home page full text retrieval data storage, distributed task debugging batch processing data and data real-time processing and statistical analysis;
The total database module (16) and the sub database module (26) comprise relational database persistent storage, cache storage, full text retrieval special and persistent storage;
The total running environment module (17) comprises a cloud server, cloud MySQL, object cloud storage, middleware cloud and middleware;
the sub-runtime environment module (27) includes a host independent terminal, a runtime environment, and a third party plug-in.
3. A hazardous chemical storage monitoring system for chemical experiments according to claim 2, wherein: the data service module (12) and the data interaction system and the message notification system in the data access module (22) respectively adopt a back end interface Api interaction-JSON and a TCP/HTTP connection-based WebSocket, and the service communication system in the data service module (12) can adopt RPC communication and a Restful-style API, wherein hot word search in the data display system adopts a cache Redis/Redisson.
4. A hazardous chemical storage monitoring system for chemical experiments according to claim 2, wherein: the general unified authentication module (13) and a background management end in the distributed unified authentication module (23) use shiro+Redis cluster Session sharing, wherein an interaction system between services adopts RPC JWT Token authentication/OAuth 2 JWT Token authentication.
5. A hazardous chemical storage monitoring system for chemical experiments according to claim 1, wherein: the Java Web development framework is adopted among the total platform unit (1), the school terminal unit (2) and the access unit (3), and an application program architecture mode combining B/S and C/S is adopted.
6. A hazardous chemical storage monitoring system for chemical experiments according to claim 1, wherein: the intelligent door control system is characterized in that an access control integrated machine is connected with an output end signal of the access control module (31), a camera is connected with an output end signal of the monitoring module (32), a temperature and humidity detector is connected with an output end signal of the temperature detection module (33), a gas monitor is connected with an output end signal of the gas monitoring module (34), an intelligent fan coil temperature controller is connected with an output end signal of the temperature control module (35), an intelligent cabinet and an intelligent door lock are connected with an output end signal of the intelligent cabinet module (36), and a ban board module (37) is connected with an output end signal of the ban board module (37).
CN202410328973.1A 2024-03-21 2024-03-21 Dangerous chemical storage monitoring system for chemical experiments Pending CN118041955A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202410328973.1A CN118041955A (en) 2024-03-21 2024-03-21 Dangerous chemical storage monitoring system for chemical experiments

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202410328973.1A CN118041955A (en) 2024-03-21 2024-03-21 Dangerous chemical storage monitoring system for chemical experiments

Publications (1)

Publication Number Publication Date
CN118041955A true CN118041955A (en) 2024-05-14

Family

ID=91004226

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202410328973.1A Pending CN118041955A (en) 2024-03-21 2024-03-21 Dangerous chemical storage monitoring system for chemical experiments

Country Status (1)

Country Link
CN (1) CN118041955A (en)

Similar Documents

Publication Publication Date Title
Kassim et al. Web-based student attendance system using RFID technology
CN103348340B (en) Method and system for providing the improved access to data and measurement result in a management system
CN105190721B (en) Personnel's crisis communications management system
US8266127B2 (en) Systems and methods for directed forums
CN107958337A (en) A kind of information resources visualize mobile management system
CN111522922A (en) Log information query method and device, storage medium and computer equipment
Jayathilake Towards structured log analysis
CN104025516A (en) Systems and methods of remote communication
CN113157545A (en) Method, device and equipment for processing service log and storage medium
CN106533782A (en) Method and system for discovering service faults of offline places in real time
CN103886024A (en) Database auditing method and system based on multilayer business association
US11989743B2 (en) System and method for processing public sentiment, computer storage medium and electronic device
CN109901889A (en) The full link monitoring method of supporting business system O&M based on J2EE platform
Vaarandi et al. How to Build a SOC on a Budget
US20050021651A1 (en) Method and system for identification and presentation of statistical usage data for messaging systems
US20230367668A1 (en) Proactive root cause analysis
CN118041955A (en) Dangerous chemical storage monitoring system for chemical experiments
CN116089490A (en) Data analysis method, device, terminal and storage medium
CN114691741A (en) Information sharing method and device, electronic equipment and computer storage medium
CN115640457A (en) Information management method, apparatus, device, medium, and program product
da Silva Rocha et al. Aggregating data center measurements for availability analysis
Kamaruzaman et al. Supervisory mobile application for GuardExpert PRO security management system
CN112258162B (en) One-stop information application system
Li Laboratory Management System Based on Internet of Things
Lei et al. The research and implementation of engineering training system based on mobile internet of things

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination