Krank Biyel Mekanizmasının Pozisyon Kontrolü

Author:

AYDIN Muhammet1

Affiliation:

1. FIRAT ÜNİVERSİTESİ

Abstract

This paper presents the position control of the slider-crank mechanism in the simulation environment. The slider-crank mechanism was first 3D modeled in the Solidworks environment. This model was afterwards converted to xml format. The slider-crank mechanism's simulink blocks were made using the xml file from the Matlab model, which allowed the 3D model to be imported into Matlab. These Simulink blocks were used to implement the PID control approach for angle control of the model's input limb. In order to achieve this purpose, additional blocks required from the simulink have been added to other existing blocks. It has been determined that the mechanism's target reference point rotates 90 degrees in 0.01367 seconds. It was discovered that the error value was 0.03114. It is evident from the results that the mechanism's PID control method allows for quick position control with a very tiny margin of error. Solidworks is a program that may be used to create the final design of the slider-crank mechanism that will be created using this method. By deciding on the material that will be used to make the mechanism, it is simpler to achieve adequate control coefficients for practical applications when the same operations are repeated. This will free up time for additional study.

Publisher

European Journal of Science and Technology

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference17 articles.

1. Ahmad, F., Hitam, A. L., Hudha, K., & Jamaluddin, H. (2011). Position tracking of slider crank mechanism using PID controller optimized by Ziegler Nichol’s method. Journal of Mechanical Engineering and Technology (JMET), 3(2), 27-41.

2. Lin, F. J., & Wai, R. J. (2001). Sliding-mode-controlled slider-crank mechanism with fuzzy neural network. IEEE Transactions on Industrial Electronics, 48(1), 60-70.

3. Lin, F. J., Fung, R. F., Lin, H. H., & Hong, C. M. (2001). A supervisory fuzzy neural network controller for slider-crank mechanism. Mechatronics, 11(2), 227-250.

4. Lee, C. D., Chuang, C. W., & Kao, C. C. (2004, December). Apply fuzzy PID rule to PDA based control of position control of slider crank mechanisms. In IEEE Conference on Cybernetics and Intelligent Systems, 2004. (Vol. 1, pp. 508-513). IEEE.

5. Faraji, H., & Farzadpour, F. (2013, April). Intelligent position control of slider-crank mechanism in the ship's propeller. In 2013 3rd Joint Conference of AI & Robotics and 5th RoboCup Iran Open International Symposium (pp. 1-7). IEEE.

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