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Research Article Open access CC BY 4.0

Comparative Design and Analysis of PIDA Controller Using Kitti's and Jung-Dorf Approach for Third Order Practical Systems

D. K. Sambariya, Deepak Paliwal

Journal of Advances in Mathematics and Computer Science · pp. 1–16 · Published 9 May 2016

10.9734/BJMCS/2016/26223

Abstract

In this paper, PIDA controller is designed for third-order control systems using Novel Analytical methods. These approaches are based on Jung-Dorf method and Kittis method. This paper demonstrated the PIDA controller design for application of DC motor, Induction motor and AVR power system. The PIDA controller is an extension to the PID controller. The additional term A stands for acceleration, with this new term, a closed-loop system can respond faster with less overshoot. Originally, the PIDA controller design utilizes the Dominant pole concept proceeded in the s-plan.

Proportional- Integral- Derivative -Acceleration (PIDA) DC motor induction motor Automatic Voltage Regulator (AVR) system

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Sunita Patel, Banaja Mohanty, Kumaraswamy Simhadri · 2022 IEEE 2nd International Symposium on Sustainable Energy, Signal Processing and Cyber Security (iSSSC) · 2022

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