scholarly journals GUI based Industrial Monitoring and Control System

Author(s):  
Gaurav V. Barmase ◽  
Gaurav V. Khopade ◽  
Shital P. Thawkar ◽  
Sahil P. Bawankule ◽  
Nikhil D. Gajbhiye ◽  
...  

The main aim of this project is to develop a Graphical User Interface (GUI) based system to monitor and control the industrial process. The proposed protocol os user-friendly and it is more efficient due to the incorporation of a simple GUI. Moreover, the proposed system is installed to collect the valuable information.

Author(s):  
L. VENKATESAN ◽  
A.D. JANARTHANAN ◽  
S. GOWRISHANKAR ◽  
R. ARULMOZHIYAL

Today's Industrial Control Applications are done by Remote Process only. Lab VIEW Software plays major role in Industrial Monitoring and control systems. In this paper i am going to discuss about Lab View based induction motor drive control system. It is One of the most common applications required in remote control and monitoring. Drive control system has various types of controller, in order to perform some actions such as control the speed, forward and reverse turning direction of the motor. This approach can be done by Lab VIEW programming, and with the rise of the technology, Ethernet module will be used in order to achieve the remote control system. Lab VIEW is a human machine interfaces design software that is user friendly. It can be easily communicate with different hardware.


Author(s):  
Alessandro Marassi ◽  
Marco Brambilla ◽  
Simone Riggi ◽  
Adriano Ingallinera ◽  
Corrado Trigilio ◽  
...  

2021 ◽  
Author(s):  
Kota P.N. ◽  
Chandak A.S. ◽  
Patil B.P.

Abstract Industry 4.0 makes manufacturers more vulnerable to current challenges and makes it easier to adapt to market changes. This will increase the speed of innovation, make it more customer-oriented and lead to faster design processes. It is essential to focus on monitoring and controlling the production system before complex accidents occur. Moreover, an industrial control system facing information security problems in recent times because of the nature of IoT which affects the evaluation of abnormal predication. To overcome above research gaps, we shift to industrial 4.0 which combine IoT and mechanism learning for industrial monitor and manage. We propose a hybrid machine learning technique for IoT enabled industrial monitoring and control system (IoT-HML). Here, we concentrate both information security issues with accurate monitoring and control system. The first section of proposed IoT-HML system is to introduce the cat induced wheel optimization (IWO) algorithm for cluster formation. The process consists of clustering and cluster head (CH) selection. The source node forward information to destination through CH only which avoids the unwanted data loss and improve the security, because the information travel through trusted path. For route selection process, we utilize the cuckoo search algorithm to compute the optimal best path among multiples. In second section, we illustrate a coach and player learned neural network (CP-LNN) for monitoring the industrial and prevent from accidents by basic control strategies. Finally, the proposed IoT-HML system can evaluate with different set of data’s to prove the effectiveness.


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.


2019 ◽  
pp. 41-48
Author(s):  
Yan Guojun ◽  
Oleksiy Kozlov ◽  
Oleksandr Gerasin ◽  
Galyna Kondratenko

The article renders the special features of the design of a tracked mobile robot (MR) for moving over inclined ferromagnetic surfaces while performing specified technological operations. There is conducted a synthesis of the functional structure and selective technological parameters (such as control coordinates) of the computerized monitoring and control system (CMCS) intended for use with this MR. Application of the CMCS with the proposed functional structure allows substantially increasing the accuracy of the MR monitoring and control, which in turn provides for a considerable enhancement in the quality and economic efficiency of the operations on processing of large ferromagnetic surfaces.


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