Automated Testing for Sustainable Remote Laboratory System

2021 ◽  
pp. 55-65
Author(s):  
Kyathsandra Narasimhamurthy Chandrashekar ◽  
Susheen Srivatsa Chelur Nataraja ◽  
Bharath Gangarpu Chandrasekhar ◽  
Adithya Prasanna ◽  
Suchitra Vankalkunti
Author(s):  
Sho Yokota ◽  
Yuta Nakamoto ◽  
Takamasa Umetsu ◽  
Yasuhiro Ohyama ◽  
Jin-Hua She

2011 ◽  
Vol 44 (1) ◽  
pp. 9176-9180
Author(s):  
A. Rosado-Muñoz ◽  
E.T. Yurivilca ◽  
M. Bataller-Mompeán ◽  
J. Muñoz-Marí ◽  
J. Vila-Francés

This paper presents a web-based remote access real-time laboratory using IOT (Internet of Things) control. The suggested architecture helps to improve safety for user to work in hazardous environment or the handling of hazardous chemical substances at industry. This system also creates new opportunities for distance learning among students and researches, particularly within in engineering disciplines where hands-on experience is regarded as essential to acquire knowledge and reinforce professional skills. The remote laboratory presented here offers an economical solution for multi-users to access real instruments in real industry via internet. This remote laboratory system uses real instruments such as Robotic arm, DC pump, Water flow sensor and Cameras and the developer user interface was designed using python ad tkinter module which allows users to access the lab and information about the conducted experiment


Author(s):  
F. Yudi Limpraptono ◽  
Eko Nurcahyo ◽  
Ahmad Faisol

This paper will discuss the results of research on the development of remote laboratory architectures for electronics telecommunications courses based on mobile devices. The background of study for the development of this system is to meet the demands of the world of education in the era of the industrial revolution 4.0 and the needs for online learning that is caused by the Covid-19 pandemic. Besides, with the development of cellular communication technology and mobile devices that have PC-level capabilities, mobile devices can support remote laboratory development. The design of remote laboratory system is based on an embedded system consisting of a user management server based on the Raspberry Pi 4 and an instrumentation system using Red Pitaya. Remote  Laboratory applications can be accessed using mobile devices such as Android based smart phones or tablets. The aim of the development of this remote          laboratory is to complete remote experiment activities in electronics telecommunications   courses in the Electrical Engineering study program.


2013 ◽  
Vol 333-335 ◽  
pp. 480-484
Author(s):  
Hua Zhong Wang ◽  
Hua Cheng ◽  
Jun Yao

This paper presents an internet-based remote laboratory for process control on double holding water tanks using supervisory control and data acquisition (SCADA) technology. A three layer distributed system supporting web application was proposed. Programmable logic controller, measurement instruments, display instruments and configuration software were used as the main hardware and software to develop the laboratory system. Remote operations by the engineering students show that the laboratory system is useful in helping the students understand the control theory through remote experiments.


2014 ◽  
pp. 16-21
Author(s):  
Emil Michta ◽  
Wieslaw Miczulski ◽  
Piotr Powroznik ◽  
Dariusz Eljasz

In the article, the evolution of remote laboratory architectures is presented and the benefits following from the use of an application environment in the form of Web services are pointed out. It is suggested that an education space comprising remote laboratory domains managed by a service broker, co-operating with clients and a laboratory server should be distinguished. A remote metrology laboratory solution is presented.


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