Journal Information-measuring and Control Systems №2 for 2021 г.
Article in number:
K1986BE92QI and STM32F103C8 microcontrollers as signal processing devices: comparative analysis
Type of article: scientific article
DOI: https://doi.org/10.18127/j20700814-202102-05
UDC: 621.391
Authors:

G.A. Osipov, T.V. Kudinova

 RTU MIREA (Moscow, Russia)

Abstract:

The subject of the research is to compare domestic microcontroller versus foreign microcontroller while used as signal processing devices in general applications.

The purpose of the research was to conduct a comparative analysis of the popular foreign microcontroller STM32F103C8T6 and its domestic analogue K1986BE92QI in plastic package through solving a typical problem in the form of a 64-point FFT computation and calculating the value of π number by the geometrical method.

The obtained results are in line with those expected in terms of program execution time and stability of the debug mode in the MDKARM v5 development environment. In the course of research, the key features of working with the examined microcontrollers were identified.

Practical relevance of the research consists in its practical applicability: the findings can be used as a supportive material in the creation of programmable radio engineering systems based on the microcontrollers under consideration.

Pages: 47-53
For citation

Osipov G.A., Kudinova T.V. K1986BE92QI and STM32F103C8 microcontrollers as signal processing devices: comparative analysis. Information-measuring and Control Systems. 2021. V. 26. № 2. P. 47−53. DOI: https://doi.org/10.18127/j20700814-202102-05 (in Russian)

References
  1. Gol’tsov Yu.A., Morgunov A.S., Andrianov A.Yu. Primenenie otechestvennogo mikrokontrollera MILANDR 1986VE93 v sistemakh avtomatiki. VIII Mezhdunar. molodezhnyy forum «OBRAZOVANIE, NAUKA, PROIZVODSTVO» 15−16 oktyabrya 2016 g. Belgorodskiy gosudarstvennyy tekhnologicheskiy universitet im. V.G. Shukhova. 2016. S. 1636−1640. (in Russian)
  2. Snitsaruk D.G., Konyashov V.V. Laboratornyy stend dlya issledovaniya tsifrovykh sistem obrabotki informatsii na baze mikrokontrollera STM32. Energo- i resursosberezhenie: promyshlennost’ i transport. 2019. № 2(27). S. 44−49. (in Russian)
  3. Bartenev V.G. Model’no-orientirovannoe programmirovanie radiotekhnicheskikh ustroystv. Prakticheskiy kurs. M.: Goryachaya liniya – Telekom. 2019. 116 s. (in Russian)
  4. Bass A.V. Osobennosti raboty s mikrokontrollerom STM32. Izvestiya TulGU. Tekhnicheskie nauki. 2019. № 3. S. 35−40. (in Russian)
  5. Akopyan B.K., Gorodetskaya A.V., Zharinov O.O. Mikroprotsessornyy kardiomonitor. Apparatnaya realizatsiya. Sb. dokladov nauchnoy sessii, posvyashchennoy Vsemirnomu dnyu aviatsii i kosmonavtiki. V 3-kh chastyakh. 2019. S. 239−242. (in Russian)
  6. Artamonov V.Yu., Dubov N.V. Obzor kharakteristik mikrokontrollerov semeystva CORTEX-M3. Materialy nauchnoy konf. «XLVII Ogarevskie chteniya». V 3-kh chastyakh. 2019. S. 236−239. (in Russian)
  7. Gol’tsov Yu.A., Vlasenko M.S., Morgunov A.S. Programmirovanie i otladka programm na otechestvennom mikrokontrollere MILANDR 1986VE93. Sb. trudov Mezhdunar. nauchno-tekhnich. konf. molodykh uchenykh BGTU im. V.G. Shukhova. 2016. S. 3675−3680. (in Russian)
  8. Ma M., Huang B., Wang B., Chen J., Liao L. Development of an Energy-Efficient Smart Socket Based on STM32F103. Appl. Sci. 2018. № 8(11). P. 2276. DOI: 10.3390/app8112276.
  9. Wang X., Li W., Wang L., Zhang Y., Zhao H. Based on STM32F103 cowshed environment intelligent control system. IOP Conference Series: Materials Science and Engineering. 2020. V. 782. DOI: 10.1088/1757-899x/782/5/052040.
  10. Kouki R., Salhi H., Bouani F. Application of model predictive control for a thermal process using STM32 microcontroller. Proc. of 2017 International Conference on Control, Automation and Diagnosis (ICCAD). Hammamet, Tunisia. 2017. IEEE. P. 146−151. DOI: 10.1109/CADIAG.2017.8075647.
  11. Xuemin Zhang et al. Hardware Design of Non-contact Voltage Detector Based on STM32 Microcontroller. IOP Conference Series: Materials Science and Engineering.V. 768. Electronic and Electrical Engineering. 2020. doi.org/10.1088/1757-899X/768/6/062036.
Date of receipt: 26.02.2021 г.
Approved after review: 15.03.2021 г.
Accepted for publication: 11.04.2021 г.