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Abstract

Conference Title: 2019 2nd International Conference on Power and Embedded Drive Control (ICPEDC)

Conference Start Date: 2019, Aug. 21

Conference End Date: 2019, Aug. 23

Conference Location: Chennai, India

Most of the industrial processes are employed with conventional Proportional Integral Derivative Controller. To keep up with the raising trends of automation, digital controller technology is employed using a low cost microcontroller to control various processes as per user requirement. This paper proposes a standalone embedded PID controller with enhanced features using an Arduino which is capable to be used for any small scale processes replacing the need of a PLC The Arduino UNO is set up in such a way that it can support plug and play functionality. The designed controller has seven variants of control schemes namely P, PI, PI with Anti-reset windup, PID, PID with anti-reset windup, Process Variable – derivative (PV-d), PV-d with anti-reset windup controllers. The real time validation of proposed closed loop control schemes is demonstrated using a series RLC circuit and the results of all variants of controller reveal that the design can achieve proper and effective control. The advantages of this design include low power consumption, simple structure and convenient installation.

Details

Business indexing term
Identifier / keyword
Title
Design and implementation of enhanced PID controller in embedded platform for realtime applications
Author
Thomas, V. Arun 1 ; Srinivasan, K. 1 

 NIT-Tiruchirappalli,Dept. of Instrumentation and Control Engineering,India 
Source details
2019 2nd International Conference on Power and Embedded Drive Control (ICPEDC)
Pages
129-133
Number of pages
5
Publication year
2019
Publication date
2019
Publisher
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Place of publication
Piscataway
Country of publication
United States
Source type
Conference Paper
Language of publication
English
Document type
Conference Proceedings
Publication history
 
 
Online publication date
2020-03-13
Publication history
 
 
   First posting date
13 Mar 2020
ProQuest document ID
2377374743
Document URL
https://www.proquest.com/conference-papers-proceedings/design-implementation-enhanced-pid-controller/docview/2377374743/se-2?accountid=208611
Copyright
Copyright The Institute of Electrical and Electronics Engineers, Inc. (IEEE) 2019
Last updated
2024-10-07
Database
ProQuest One Academic