Method for automated control of rotor engine blade synchronization

Main Article Content

Yurii O. Ushenko
Dmytro I. Uhryn
Artem O. Karachevtsev
Yurii O. Halin
Viktor A. Ilin

Abstract

This study addresses the critical issue of synchronization accuracy in rotary-blade internal combustion engines, which directly influences their efficiency and operational reliability. Traditional mechanical synchronization methods suffer from significant drawbacks, including rapid wear, high maintenance costs, and limited modernization potential. To overcome these limitations, we propose an innovative electrical synchronization approach based on adaptive torque control of electric machines. The developed algorithm dynamically adjusts torque in real time according to the displacement of the bisector of the angle between the blades forming the combustion chamber, ensuring precise synchronization during each engine cycle.


A mathematical model was formulated to describe the relationship between torque, bisector displacement, and engine dynamics. This model was implemented in a custom simulation environment developed in JavaScript with interactive visualization tools. Computer simulations were conducted under various operating conditions to evaluate the algorithm’s performance. Results demonstrate a substantial reduction in bisector displacement - from several degrees to thousandths of a degree and stabilization of cycle duration after only a few iterations. These findings confirm the algorithm’s ability to maintain synchronization accuracy and improve engine stability. The proposed approach offers practical benefits for the design of advanced rotary-blade internal combustion engines, reducing mechanical wear and enhancing energy efficiency. Future research will focus on optimizing the correction factor, adapting the algorithm for engines operating under variable loads and temperatures, and integrating PID-based control strategies for improved responsiveness.

Downloads

Download data is not yet available.

Article Details

Topics

Section

Applied information technologies in energy engineering and automation

Authors

Author Biographies

Yurii O. Ushenko, Fedkovych Chernivtsi National University, 2, Kotsyubynsky Str. Chernivtsi, 58002, Ukraine

Doctor of Physical-Mathematical Sciences, Head of Computer Science Department. Yuriy

Scopus Author ID: 6701840218

Dmytro I. Uhryn, Yuriy Fedkovych Chernivtsi National University, 2, Kotsyubynsky Str. Chernivtsi, 58002, Ukraine

Doctor of Engineering Sciences, Professor, Computer Science Department

Scopus Author ID: 57163746300

Artem O. Karachevtsev , Yuriy Fedkovych Chernivtsi National University, 2, Kotsyubynsky Str. Chernivtsi, 58002, Ukraine

Assistant Professor, Computer Science Department

Scopus Author ID: 36925155800

Yurii O. Halin, Yuriy Fedkovych Chernivtsi National University, 2, Kotsyubynsky Str. Chernivtsi, 58002, Ukraine

PhD student, Computer Science Department

Viktor A. Ilin, Yuriy Fedkovych Chernivtsi National University, 2, Kotsyubynsky Str. Chernivtsi, 58002,Ukraine

PhD student, Computer Science Department

Similar Articles

You may also start an advanced similarity search for this article.