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Design and development of scalable systems of energy-efficient mechatronic devices
Bagutdinov Ravil

PhD student of the Engineering School of Information Technology and Robotics, Assistant of the Department of Automation and Robotics, Programmer of the Scientific and Educational Laboratory of 3D Modeling and Industrial Design, National Research Tomsk Polytechnic University

634034, Russia, Tomskaya oblast', g. Tomsk, ul. Sovetskaya, 84/3, of. 216

ravil_bagutdinov@yahoo.com
Другие публикации этого автора
 

 
Zavyalov Dmitry Alekseevich

graduate student, Department of Engineering Graphics and Industrial Design, National Research Tomsk Polytechnic University

634034, Russia, Tomskaya oblast', g. Tomsk, ul. Sovetskaya, 84/3, of. 216

zda@tpu.ru
Ivanov Maksim Anatolyevich

PhD in Technical Science

Head of Department of Optimizing Control Systems, Institute of Cybernetics, National Research Tomsk Polytechnic University

634034, Russia, Tomskaya oblast', g. Tomsk, ul. Sovetskaya, 84/3, of. 323

ivanovma@tpu.ru
Sokolova Veronika Valer'evna

PhD in Technical Science

Associate Professor, Department of optimizing control systems, Institute of Cybernetics, National Research Tomsk Polytechnic University

634034, Russia, Tomskaya oblast', g. Tomsk, ul. Sovetskaya, 84/3, of. 323

veronica@tpu.ru

Abstract.

An important to ensure the efficiency of the solar panels is to carry out periodic monitoring of tightness of connections and inspect their cleanliness. In order for solar cells to work more efficiently the authors suggest use of intelligent monitoring and measurement system. This article presents the development of a scalable system of energy-efficient mechatronic devices with an intelligent control system. Development refers to computer engineering and can be used in services of highly reliable fault-tolerant integrated onboard control complexes in the energy sector and other fields requiring high reliability computing complex, while maintaining fault tolerance and hardware failures. As a means of decision-making when selecting development tools used by the analytic hierarchy process (AHP, Saaty method). The novelty of the research is to create a new system service software, the full adjustment of the system software of the automated collection and storage of information on observed parameters, visualization parameters of the four storages and solar converters, real time software updating, safeguarding the basic functionality of the system at the damage and loss of data and protection against emergencies. The purpose of this system is the management of solar panels in real-time automatic monitoring and analysis of the performance of solar panels.

Keywords: programming, optimization of control systems, alternative energy, solar power, scalable systems of energy-efficient mechatronic d, intelligent Control Systems, development of software, service maintenance, software, radioelectronics

DOI:

10.7256/2306-4196.2016.5.20116

Article was received:

19-09-2016


Review date:

23-08-2016


Publish date:

29-01-2017


This article written in Russian. You can find full text of article in Russian here .

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