ISSN 0869-6632 (Print)
ISSN 2542-1905 (Online)


For citation:

Ponomarenko V. I., Karavaev A. S. Using arduino platform in the measurements and the physical experiment. Izvestiya VUZ. Applied Nonlinear Dynamics, 2014, vol. 22, iss. 4, pp. 77-90. DOI: 10.18500/0869-6632-2014-22-4-77-90

This is an open access article distributed under the terms of Creative Commons Attribution 4.0 International License (CC-BY 4.0).
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Language: 
Russian
Article type: 
Article
UDC: 
537.86

Using arduino platform in the measurements and the physical experiment

Autors: 
Ponomarenko Vladimir Ivanovich, Saratov Branch of Kotel`nikov Institute of Radiophysics and Electronics of Russian Academy of Sciences
Karavaev Anatolij Sergeevich, Saratov State University
Abstract: 

This paper discusses the possibility of a hardware­software platform Arduino, as a relatively simple and flexible tool that could occupy a niche in the research tools. Radiophysical chaotic oscillator with delayed feedback was created on the base of Arduino.

Reference: 
  1. Engineer Ambitiously [Electronic resource]. Available from: http://www.ni.com.
  2. Zetlab [Electronic resource]. Available from: http://www.zetms.ru.
  3. Korchagin SA. Modernization of physical laboratories through the introduction of integrated information and measurement systems. In: Information Technology In Education. Saratov: Nauka; 2013. P. 139—142 (in Russian).
  4. Parallax Inc [Electronic resource]. Available from: http://www.parallax.com/catalog/microcontrollers/basic-stamp.
  5. The Handy Board and the Super Cricket [Electronic resource]. Available from: http://www.handyboard.com.
  6. Rapsberry Pi Foundation [Electronic resource]. Available from: http://www.raspberrypi.org.
  7. Arduino [Electronic resource]. Available from: http://arduino.cc.
  8. Evstifeev AV. Microcontrollers AVR Classic Family of Atmel. Vol. 3. Moscow: «Dodeka-XXI»; 2006. 288 p. (in Russian).
  9. Atmel Corporation [Electronic resource]. Available from: http://www.atmel.com/products/microcontrollers/avr/default.aspx.
  10. Arduino [Electronic resource]. Available from: http://arduino.ru.
  11. Arduino [Electronic resource]. Available from: http://ru.wikipedia.org/wiki/Arduino.
  12. Processing [Electronic resource]. Available from: http://ru.wikipedia.org/wiki/Processing.
  13. Wiring [Electronic resource]. Available from: http://wiring.org.co.
  14. Fisher DK, Gould PJ. Open-source hardware is a low-cost alternative for scientific instrumentation and research. Modern Instrumentation. 2012;1(2):8—20. DOI: 10.4236/mi.2012.12002.
  15. Belov AV. AVR Microcontrollers In Amateur Radio Practice. Saint Petersburg: SAT; 2007. 352 p. (in Russian).
  16. Bezruchko BP, Karavaev AS, Ponomarenko VI, Prokhorov MD. Reconstruction of time-delay systems from chaotic time series. Phys. Rev. E. 2001;64(5):056216. DOI: 10.1103/PhysRevE.64.056216.
  17. Ponomarenko VI, Prokhorov MD, Karavaev AS, Kulminskiy DD. An experimental digital communication scheme based on chaotic time-delay system. Nonlinear Dynamics. 2013;74(4):1013—1020. DOI: 10.1007/s11071-013-1019-0.
  18. Karavaev AS, Kulminskiy DD, Ponomarenko VI, Prokhorov MD. A system of digital transmission of information masked by a chaotic signal of a time-delay system. Information and Control Systems. 2013;65(4):30—35 (in Russian).
Received: 
05.05.2014
Accepted: 
20.06.2014
Published: 
31.12.2014
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