FEATURES OF DYNAMIC CHARACTERISTICS OF REGULATION SYSTEMS WITH ONE-SIDED AND TWO-SIDED PULSE-WIDTH MODULATIONS

Author:

Shcherback Y.V., ,Ivakina K.Y.,

Abstract

The purpose of the article is: to determine the dynamic properties of automatic control systems of the pulse DC voltage converter with one-way and two-way modulations by studying the influence of the form of the reference signal on dy-namic processes in the systems of automatic control of the output coordinate of the converter with widely used propor-tional (P), integral (I) and proportionally - by integral (PI) regulators. The novelty of the proposed work lies in the de-termination of the influence of one-sided and two-sided pulse width modulation on the stability and conditions of the process of the finite duration of the automatic control system of the pulse converter of constant voltage. The dynamic characteristics of the system are investigated using impulse models of the pulse DC voltage converter and the use of the Z-transformation mathematical apparatus and simulation modeling. Analytical dependencies were obtained: stability conditions for proportional, integral and proportional-integral regulators; conditions of the process of finite duration of finite duration in a system with an aperiodic link in the load circuit; oscillograms of transition processes that confirm the theoretical results. The practical value lies in the fact that the results obtained in the work provide, during the de-velopment of an automatic regulation system with given parameters, the possibility of optimal selection of the type of pulse-width modulation. References 17, figures 15.

Publisher

National Academy of Sciences of Ukraine (Co. LTD Ukrinformnauka) (Publications)

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology

Reference17 articles.

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2. 2. Sivarani T.S., Joseph Jawhar S. Sawtooth carrier based Random PWM technique for AC drives. International Conference on Control, Instrumentation, Communication and Computational Technologies (ICCICCT). Kumaracoil, India, 18-19 December 2015. Pp. 818-820. DOI: https://doi.org/10.1109/ICCICCT.2015.7475391.

3. 3. Fahad A.H., Reza M.S. Single-Phase Shunt Active Power Filter Using Parabolic PWM for Current Control. IEEE 7th International Conference on Smart Energy Grid Engineering (SEGE). Oshawa, ON, Canada, 12-14August 2019. Pp. 134-138. DOI: https://doi.org/10.1109/SEGE.2019.8859868.

4. 4. Wang X., Liu S., Li Q. Research on control strategy of PWM rectifier technology based on DSP. IEEE International Conference on Information and Automation (ICIA). Macao, China. 18-20 July 2017. Pp. 1050-1053. DOI: https://doi.org/10.1109/ICInfA.2017.8079057.

5. 5. Yingchao Z., Zhengming Z., Ting L., Liping J. An integrated control method for three-level NPC based PWM rectifier-inverter. The 2nd International Symposium on Power Electronics for Distributed Generation Systems. Hefei, China, 16-18 June 2010. Pp. 616-620. DOI: https://doi.org/10.1109/PEDG.2010.5545876.

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