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Problem of Improving the Characteristics of Photoelectric Angle Converters

https://doi.org/10.17586/0021-3454-2022-65-2-132-139

Abstract

The current problems and limitations associated with improving the accuracy parameters, resolution, reliability indicators, as well as reducing the mass and size characteristics of photoelectric digital angle converters in products with a high degree of reliability, are analyzed. The degree of influence and causal relationships of factors preventing the improvement of the main parameters of the rotation angle sensors are systematized, and a conclusion on possible directions of reducing their impact to improve the characteristics of the converters is given.

About the Author

S. V. Baidenko
SRTI Avangard JSC
Russian Federation

Sergey V. Baidenko — Leading Engineer



References

1. Domrachev V.G., Meiko B.S. Tsifrovyye preobrazovateli ugla: printsipypostroyeniya, teoriya tochnosti, metody kontrolya (Digital Angle Transducers: Principles of Construction, Theory of Accuracy, Control Methods), Moscow, 1984, 328 р. (in Russ.)

2. Patent USSR 1619398, Preobrazovatel' ugol-kod (Angle-Code Converter), I.V. Meskin, L.N. Maltsev, Yu.A. Storozhuk, A.A. Ozhiganov, Priority 24.11.1987, Published 07.01.1991. (in Russ.)

3. Patent RU 79360U1, Preobrazovatel' ugol-kod (Angle-Code Converter), A.A. Ozhiganov, Priority 28.07.2008, Published 27.12.2008. (in Russ.)

4. Patent RU 2553079С1, Inversno-sopryazhennaya kodovaya shkala(Inverse Conjugate Code Scale), K.M. Rostovskiy, P.A. Pribytkin, A.A. Ozhiganov, Priority 15.11.2013, Published 10.06.2015. (in Russ.)

5. Patent US2019017053, Inductive position detector, M.A. Howard, D. Kreit, Published 2019-06-06.

6. Patent US10823550, Optical position measuring device, K. Sändig, W. Huber, Published 2020-11-03.

7. Patent WO2021116660, Rotary encoder, F.J. Evans, J.R. Henshaw, Published 2021-06-17.

8. Asinovsky E.N. et al. Vysokotochnyye preobrazovateli uglovykh peremeshcheniy(High-Precision Angular Displacement Transducers), Moscow, 1986, 128 р. (in Russ.)

9. Riedl M. Optical Design Fundamentals for Infrared Systems, Second Edition, Bellingham, WA, SPIE Press, 2001, 202 p.

10. Renishaw Plc. The accuracy of rotary encoders, 2019, https://resources.renishaw.com/en/details/white-paper-the-accuracy-of-angle-encoders--113122.

11. Vostokov S.B. Interpolyatsionnyye tsifrovyye preobrazovateli ugla (Interpolating Angle Digitizers), Leningrad, 1987, 62 р. (in Russ.)

12. Volder J.E. IRE Trans. Electron. Comput., 1959, no. 3(EC-8), pp. 330–334.

13. https://www.compel.ru/lib/140072. (in Russ.)

14. STMicroelectronics. Getting started with the CORDIC accelerator using STM32CubeG4 MCU Pa, https://www.st.com.

15. Smirnov N.V., Latyev S.M., Theska R. Shaping the Future by Engineering, 2014, no. 4(58), pp. 4.

16. Celera motion. How does scale eccentricity or bearing runout affect https://www.celeramotion.com/microe/support/faqs/how-does-scale-eccentricity-or-bearing-runout-affect-angular-error.

17. NSK Europe Ltd. Bearing life – Calculating thebasic fatigue life expectancy of rolling bearing, https://www.nskeurope.com/content/dam/nskcmsr/downloads/literature_bearing/P_TI-0102_EN.pdf.

18. Ozhiganov A.A., Pribytkin P.A. Journal of Instrument Engineering, 2020, no. 7(63), pp. 620‒625. (in Russ.)

19. Johnston A. Optoelectronic devices with complex failure modes, https://trs.jpl.nasa.gov/handle/2014/15609.

20. Marshall C., Marshall P. Proton Effects and Test Issues for Satellite Designers: Displacement Effe, https://ntrs.nasa.gov/citations/19990099117.

21. European Space Agency. Position sensor: European space technology harmonization technical dossier, 2009, https://www.sme4space.org/wp-content/uploads/harmonisationbrochure2016finale1.pdf.

22. Patent US20090084945, Photodiode array for an optical encoder, photodiode detection system, and optical encoder, R.E. Franklin, Published 2010-03-16.

23. Korolev A.A., Korolev A.V., Tyurin A.V., Mukhina E.V. Komplektovaniye sharikovykh podshipnikov po kriteriyam minimal'noy nagruzki na tela kacheniya i trebuyemoy velichiny zazora(Completion of Ball Bearings According to the Criteria of the Minimum Load on the Rolling Elements and The Required Clearance), Moscow, 2021, 248 р. (in Russ.)

24. Li X., Ye G., Liu H., Ban Y., Shi Y., Yin L., Lu B. Review of Scientific Instruments, 2017, no. (88), pp. (11), p. 115005.

25.


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For citations:


Baidenko S.V. Problem of Improving the Characteristics of Photoelectric Angle Converters. Journal of Instrument Engineering. 2022;65(2):132-139. (In Russ.) https://doi.org/10.17586/0021-3454-2022-65-2-132-139

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ISSN 0021-3454 (Print)
ISSN 2500-0381 (Online)