Published in: EighthMajor Electrical Engineering Conference
COI code: NCEEM08_036
Paper Language: English
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Authors Comparison of Fuzzy Controller and PID for A 3rd Order System as Three Consecutive Vessels in Single and Cascade StatesMehdi Shafiei - Department of Electrical Engineering, Majlesi Branch, Islamic Azad University, Isfahan, Iran
Amir Hossein Zaeri - Department of Electrical Engineering, Shahinshahr Branch, Islamic Azad University, Shahinshahr, Iran
Abstract:Water level controlling has a wide range of applications in various fields, such as liquid storage tanks, feed tanks, product tanks, intermediate buffer containers, boilers and other equipment. The aim of this study is examining two separate fuzzy control systems and PID for controlling the level of three storage tanks in series in two different states. First, we consider stability of PID controller for the single state and then we examine the PID for the cascade state. After that, we compare the time response specifications. For the next stage, we consider the two previous states for the fuzzy controller, and by the end, we compare the fuzzy and PID responses with each other.[1,2]
Keywords:P-I controller, PID controller, Fuzzy logic controller, Ziegler-Nichols method, Simulink, Level control, Single loop, Cascade Loop, conversion function
COI code: NCEEM08_036
how to cite to this paper:If you want to refer to this article in your research, you can easily use the following in the resources and references section:
Shafiei, Mehdi & Amir Hossein Zaeri, 2019, Comparison of Fuzzy Controller and PID for A 3rd Order System as Three Consecutive Vessels in Single and Cascade States, EighthMajor Electrical Engineering Conference, اصفهان, دانشگاه آزاد اسلامي واحد شهر مجلسي, https://www.civilica.com/Paper-NCEEM08-NCEEM08_036.htmlInside the text, wherever referred to or an achievement of this article is mentioned, after mentioning the article, inside the parental, the following specifications are written.
First Time: (Shafiei, Mehdi & Amir Hossein Zaeri, 2019)
Second and more: (Shafiei & Zaeri, 2019)
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