Design and Realization of a Synchronous Cooperative Shared Electronic Board

1997 ◽  
pp. 245-261
Author(s):  
V. Baudin ◽  
M. Diaz ◽  
P. Owezarski ◽  
T. Villemur
Keyword(s):  
2020 ◽  
Author(s):  
Sumit Kumar Upadhyay ◽  
Indu Bhardwaj
Keyword(s):  

2014 ◽  
Vol 9 (12) ◽  
pp. C12030-C12030 ◽  
Author(s):  
P Aspell ◽  
M Dabrowski ◽  
A Conde Garcia ◽  
G De Lentdecker ◽  
A Marinov ◽  
...  

This paper presents the development of an artificial intelligent algorithm to control circuits structuring of flexible remote experiments in engineering fields of electronics and electricity within a switching matrix architecture. In addition, this paper presents a technical analyze and characterization of VISIR system to point itsadvantages and its inconveniences.The developedartificial intelligent algorithm controlsthe interconnections between electrical and electronic components and monitorsthe power supplying and measurements conducting onVISIR system.We also developed an electronic board to provide the physical possibility of connecting any component to any other component on VISIR’s switching system, and thereby manifesting a switching matrix architecture within VISIR. The developed switching matrix architecture and the developed algorithm enable to have flexible remote experiments in engineeringfields of electronics and electricitywhile havingresilient control on circuits structuring for e-learning purposes.Inaddition, they open the way to havemore circuit combinations of experiments by offering the possibility of connecting any component to any other componentwhile respecting the electrical limits of current and voltage.


Author(s):  
Lama Nazim Al-Droubi

The aim of this research is to explore the most important features of interactive learning and its impact on the success of the educational process by discussing the educational methods used in the educational institutions and presenting the most important problems observed by students and teachers in the traditional educational process, In the educational institutions, and then try to explore the weakness of the educational process in which students find it difficult to education, by asking a questionnaire directed to different segments of the students were randomly selected from some of the university Which showed the need for students to introduce modern methods in education to increase the effectiveness of education and access to the ability to communicate more with teachers, so we have looked at the most important techniques that entered the educational process (electronic board, Which led to the transformation of the teaching process from its traditional form to interactive e-learning. Thus, relying on MVC technology, we introduced a reliable e-learning model to help interact between the learning process Taking into account the results of the questionnaire we have presented in advance. This model helps to standardize the various e-learning systems as a general framework that can be applied in different languages Software, and can handle various end-user operating platforms such as mobile phones with their various systems, computers, tablets and others.


Kursor ◽  
2020 ◽  
Vol 10 (4) ◽  
Author(s):  
Basuki Rahmat ◽  
Budi Nugroho

The paper presents the intelligent surveillance robotic control techniques via web and mobile via an Internet of Things (IoT) connection. The robot is equipped with a Kinect Xbox 360 camera and a Deep Learning algorithm for recognizing objects in front of it. The Deep Learning algorithm used is OpenCV's Deep Neural Network (DNN). The intelligent surveillance robot in this study was named BNU 4.0. The brain controlling this robot is the NodeMCU V3 microcontroller. Electronic board based on the ESP8266 chip. With this chip, NodeMCU V3 can connect to the cloud Internet of Things (IoT). Cloud IoT used in this research is cloudmqtt (https://www.cloudmqtt.com). With the Arduino program embedded in the NodeMCU V3 microcontroller, it can then run the robot control program via web and mobile. The mobile robot control program uses the Android MQTT IoT Application Panel.


IOT could be a trending in technology that can transform any device into a wise one a lot of industries setting out to utilize these technologies to extend their capacity and improve potency. These system has been created to detect people who are suffering with heart diseases, this framework is powered by Raspberry pi electronic board, which is worked on power control supply, Remote web availability by utilizing USB modem, it incorporates with sensors. pulse sensor which detects each beats per minute price. Temperature sensor detects the temperature variation, blood pressure sensor reads blood pressure and heart rate, ECG sensor which measures the electrical signal of the heart. it is an analog from converted in digital by using of SPI protocol. If any emergency occurs, it will raise a caution send it to the website and mobile though NOOBS Software. If any sensor parameter value more than the instructed value it will raise a beep sound


2016 ◽  
Vol 109 ◽  
pp. 23-32 ◽  
Author(s):  
Minh-Nhat Nguyen ◽  
Eric Monier-Vinard ◽  
Najib Laraqi ◽  
Valentin Bissuel

Author(s):  
Paolo Visconti ◽  
Daniele Romanello ◽  
Giovanni Zizzari ◽  
Vito Ventura ◽  
Giorgio Cavalera

This work presents an electronic board for driving and control of High Intensity Discharge (HID) lamps and Light Emitting Diode (LED) lamps. The proposed electronic board is able to drive HID or LED lamps by means of a reconfigurable output. This feature allows using the ballast in lighting systems that currently use traditional discharge lamps, as well as keeping the same ballast when discharge lamps are replaced by LED modules in the near future, when LED street lighting systems will be more affordable. Additionally, since the lighting system is designed to be used in rural areas where there is no public electricity, each lighting point incorporates a system to convert solar energy into continuous voltage by means of photovoltaic panels. In this work, energy saving issues are taken into account.


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