ANALYSIS OF DYNAMIC ERROR OF MOVEMENT MEASUREMENT METHOD BY MEASURING CONVERTER OF INDUCTOSYN TYPE BASED ON PHASE SHIFT MEASURING
DOI:
https://doi.org/10.24025/2306-4412.1.2019.164805Keywords:
measurement error, measurement method, movement measurement, measuring converter, inductosynAbstract
Movement meters are used in various technical and technological areas. Movement meters of the following types: inductosyns, rotary transformers, selsyns, optical grating displacement transducers and also laser based movement meters, are known. Movement meters of the inductosyn type based on conversion of angular moving to amplitude the greatest distribution was gained now. But currently a significant amount of equipment, in which inductosyn movement measuring meters are used, is in operation. Inductosyns are characterized by such features as reliability, durability, low static measurement error and ease of maintenance. The method based on angular displacement conversion into a phase is one of the methods for movement measuring with inductosyns. The availability of dynamic error is a significant disadvantage of this method. Thus, the task of the analysis of dynamic error of movement measurement method by measuring converter of inductosyn type based on phase shift measuring is relevant and has scientific and practical interest. The article describes a movement measurement method by measuring converter of inductosyn type based on phase shift measuring. The occurrence and time behavior of dynamic error of the method are considered. The dependence of maximum absolute dynamic error of movement on the movement speed and supply voltage frequency is determined. As a result of the performed analysis, it is concluded that the considered method can be used without dynamic error compensation at the correct choice of speed, frequency of inductosyn supply voltage and measurement accuracy values. However, the use of dynamic error compensation methods will give the possibility to expand the measurement method characteristics that is to increase the maximum value of movement speed and measurement accuracy
References
1. Koshkin, V. L. (1989). Hardware systems of numerical program control. Moscow: Mashinostroenie, 248 p. [in Russian].
Resolvers – angular displacement transducers based on a rotating transformer. SKBIS. URL: http://www.skbis.ru/index.php?p=3&c=10
Incremental linear photoelectric displacement transducers. SKBIS. URL: http://www.skbis. ru/index.php?p=3&c=1
Laser displacement sensors. SKBIS. URL: http://www.mega-sensor.ru/measure/mes-displ/
Petropavlovskiy, V. P., Sinitsyn, N. V. (1984). Phase angle converters. Moscow: Mashinostroenie, 134 p. [in Russian].
Synchro/resolver conversion: handbook. Data Device Corporation 105 Wilbur Place, Bohemia, New York 11716-2482. URL: https://www.ddc-web.com/documents/synhd bk.pdf
The device 2С42–65: operation manual 3.035.090 RE (1991). P. 1, 84 p. [in Russian].
Mironov, E. G., Bessonov, N. P. (2015). Metrology and technical measurements: study guide. Moscow: KNORUS, 422 p. [in Russian].
Khrulev, N. V. (2015). Structure of a microcontroller displacement meter based on inductosin. Visnyk Khmelnytskoho natsionalnoho universytetu. Seriya: Tehnіchni nauky. Khmelnitsky, No. 1, pp. 136–139 [in Russian].
Liu, C. J., Qi, M., & Zou, J. B. (2009). Error modeling of inductosyn angle measuring system. Journal of the Harbin Institute of Technology, No. 41.9, pp. 51–55.
Zhenghua, C. J. E. L. L., Yunjie, W. (2005). High speed and accuracy position measuring method based on inductosyn. Journal of Beijing University of Aeronautics and Astronautics, No. 4.
Downloads
Published
How to Cite
Issue
Section
URN
License
Copyright (c) 2020 В. М. Рудницький, М. В. Хрульов, Г. В. Канашевич, А. І. Числов, Г. В. Кривоус, А. Б. Скуцький The authors who publish in this journal agree to the following terms:The authors reserve the right to authorship of their work and give the journal the right to first publish this work under the terms of the Creative Commons Attribution License CC BY-NC, which allows other persons to freely distribute published work with a mandatory reference to authors of the original work and the first publication of the work in this journal.
Authors have the right to conclude separate additional agreements for the non-exclusive distribution of the paper in the form in which it was published by this journal (for example, posting work in electronic repository or publishing as part of a monograph), provided that the link to the first publication in this journal is maintained.
The journal policy allows and encourages authors to post on the Internet (for example, in repositories of institutions or on personal websites) the manuscript of work, both before the submission of this manuscript to the editorial staff, and during its editorial work, as it contributes to the emergence of productive scientific discussion and positively affects the efficiency and dynamics of published work citation (see The Effect of Open Access).