scholarly journals IoT Enabled Ventilator Monitoring System for Covid-19 Patients

2021 ◽  
Vol 2111 (1) ◽  
pp. 012035
Author(s):  
Mashoedah ◽  
Umi Rochayati ◽  
Indra Hidayatulloh ◽  
Arya Sony ◽  
Ferda Ernawan ◽  
...  

Abstract The use of the IoT protocol on medical equipment is expected to provide protection for medical personnel in dealing with Covid-19 patients, especially when medical personnel are monitoring and setting up an equipment. This study aims to (1) produce a monitoring and control system for a breathing apparatus (Ventilator) based on the Internet of Thing (IoT), (2) test the ventilator control function, (3) test the data transmission function with the IoT protocol. The method used is Define, Design, Develop, and Disseminate (4D). Data collection is done through (1) Testing and Observation (2) Limited field test. This research produces a control and monitoring system for mechanical ventilators. The mechanical ventilator consists of a gripper motion mechanism driven by a dc motor. The movement of the gripper creates pressure and releases pressure on the ambu bag. The depth of pressure exerted by the gripper is measured as the volume and pressure of the air delivered to the lungs. The rate of pressure exerted is measured as the velocity of air flowing into the lungs.

2013 ◽  
Vol 427-429 ◽  
pp. 961-964
Author(s):  
Guo Huan Lou ◽  
Yang Yin

In view of the central heating problems for remote, a realization scheme of remote monitoring system for central heating is presented. In this paper, the composition and functions of the heat supply network monitoring center, the heating station monitoring and control system and the wireless communication system are introduced, the control system hardware configuration is discussed. The system has already been used and run in a good effect.


2014 ◽  
Vol 496-500 ◽  
pp. 1376-1380 ◽  
Author(s):  
Guan Li ◽  
Wen Jun Li ◽  
Qian Qian Su ◽  
Chun Feng Sun ◽  
Zeng Ye Ge

Based on Industrial Ethernet, PLC and Industrial Computer, Monitoring and Control System of Underground Coal Gasification (UCG) were developed. Distributed measured sensor signals and complex monitoring tasks are realized by a PLC and an Industrial Computer. Star topology network is used. The connection between Monitoring system and PLC is realized by an industrial Ethernet module. The solution in laboratory condition appears reliability and quick data exchange was realized between PLC and Monitoring system.


2014 ◽  
Vol 602-605 ◽  
pp. 2281-2284
Author(s):  
Xiao Song Bai ◽  
Jing Yang

An intelligent monitoring and control system for highway daily maintenance is described in this paper. To manage maintenance machinery and operators more effectively, geographical information system (GIS), global positioning system (GPS), and wireless communication technologies are applied to the system which consists of three subsystems, detection and maintenance sequence planning system, detection and maintenance monitoring system, and PDA execution system. Maintenance machinery sequence planning system generates routes and schedules for maintenance machinery using GIS and optimization techniques. Maintenance machinery monitoring system monitors current positions of machinery and actual maintenance results as compared with planned sequences, routes and visit times, while PDA execution system transmits information for machinery positions and actual maintenance results using GPS and wireless communication technologies. The intelligent monitoring and control system can promote operation efficiency and reduce maintenance costs.


2013 ◽  
Vol 655-657 ◽  
pp. 773-776
Author(s):  
Jun Wang ◽  
Cheng Dong Wu ◽  
Feng Wang

To satisfy the requirement of the control parameters in greenhouse, this paper introduced the design scheme of monitoring and control system based on Zigbee due to its low-cost, simplicity and mobility. We designed the sensor node, control node and gateway node based on CC2430, described the design method of hardware circuit and the flow chart of software. By monitoring the environment factors in real time, such as illumination, temperature, humility and carbon dioxide, the spray system, ventilation fans and lighting lamps were automated controlled to satisfy crop growth requirement. The monitoring system is easy to expand and update, and the program interface is friendly to operate.


2021 ◽  
Vol 31 (2) ◽  
pp. 59-66

High speed of spindle for high-speed machining is the mission and development trend of today's machine tools. However, improper lubrication can cause a large temperature difference on the bearings, causing thermal deformation that affects the accuracy of the spindle. Heat experimental equipment for high-speed vertical spindle bearing is necessary. This paper presents a design and manufacture of control and monitoring system of heat experimental equipment for high-speed vertical spindle bearing based on PLC, WinCC and Webserver. This experimental device with supervisory control solution allows easy implementation of the test mode and data collection to plan out the appropriate lubrication mode. The system includes motor control and monitoring, observing of sensors, alarm and reporting at local and on site remotely. This solution can be applied to other industrial equipment to meet the needs of Industry 4.0.


2015 ◽  
Vol 713-715 ◽  
pp. 534-538 ◽  
Author(s):  
Ying Jian Wang ◽  
Xue Man Fan ◽  
Feng Yuan ◽  
Hai Bo Hao

SOFC laid in complicated Marine environment, are extremely vulnerable to all kinds of external factors, and anchor damage is the biggest threat to submarine cable communication. In order to overcome the limitations of existing SOFC monitoring technology, the double M-Z distributed optical fiber sensing technology is selected to apply in on-line monitoring of SOFC, and the monitoring system is designed both in software and hardware. The optimization scheme of being in conjunction with monitoring and control system of SOFC is put forward in anticipation of the possible problem of false alarm in the future application of the monitoring system.


2014 ◽  
Vol 721 ◽  
pp. 486-489
Author(s):  
Yong Li ◽  
Xiao Dong Ding ◽  
Yu Ting Li

The electrical monitoring is the most important part of industrial production, with industrial production situation of increasingly complex, also more and more high to the requirement of wireless industrial monitoring and control system. In this context strengthen monitoring system based on ZigBee wireless industry research is of great significance. Wireless electric monitoring system based on ZigBee has more advantages compared with traditional wireless monitoring technology. To strengthen the research of this technique is a necessary choice to meet the requirements of the actual industrial production. This article will revolve around ZigBee technology to explore how to enhance the level of electrical control system.


2012 ◽  
Vol 605-607 ◽  
pp. 844-847
Author(s):  
Bin Qian ◽  
Hong Ying Zhang

In recent years, China's coal industry, a gas explosion frequently on people's lives and property caused a great threat, in order to reduce this from happening, our large, medium and small coal mines with high gas or gas outburst after another mine monitoring and control system in the equipment, particularly equipment wireless monitoring system has greatly enhanced the level of mine safety and production safety management efficiency. In this paper, computer technology allows for wireless monitoring system for a more detailed analysis of the description.


2019 ◽  
pp. 37-47
Author(s):  
Yao Yueqin ◽  
Oleksiy Kozlov ◽  
Oleksandr Gerasin ◽  
Galyna Kondratenko

Analysis and formalization of the monitoring and automatic control tasks of the MR for the movement and execution of various types of technological operations on inclined and vertical ferromagnetic surfaces are obtained. Generalized structure of mobile robotic complex is shown with main subsystems consideration. Critical analysis of the current state of the problem of development of universal structures of mobile robots (MRs) for the various types of technological operations execution and elaborations of computerized systems for monitoring and control of MR movement is done. In particular, wheeled, walked and crawler type MRs with pneumatic, vacuum-propeller, magnetic and magnetically operated clamping devices to grip with vertical and ceiling surfaces are reviewed. The constructive features of the crawler MR with magnetic clamping devices capable of moving along sloping ferromagnetic surfaces are considered. The basic technical parameters of the MR are shown for the further synthesis of computerized monitoring and automatic control systems. Formalization of the tasks of monitoring and control of the MR positioning at the processing of large area ferromagnetic surfaces is considered from the point of view of control theory.


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