Modeling and Simulation of Feed Forward Temperature Controller for Chemical Reactors Heat Exchangers

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Опубліковано в::Journal of Electrical Systems vol. 21, no. 1 (2025), p. 218-226
Автор: Vishwakarma, Ram Kumar
Інші автори: Suresh, H N
Опубліковано:
Engineering and Scientific Research Groups
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045 2 |b d20250101  |b d20250126 
100 1 |a Vishwakarma, Ram Kumar 
245 1 |a Modeling and Simulation of Feed Forward Temperature Controller for Chemical Reactors Heat Exchangers 
260 |b Engineering and Scientific Research Groups  |c 2025 
513 |a Journal Article 
520 3 |a - The heat exchanger (HE) is the most crucial part of any chemical reactor. Using MATLAB to evaluate the computer simulation framework for the HE's temperature compensator used for Stirred tank chemical reactors (STCR) is the study's ultimate objective. The design and validation of the feedback control and its combination to feed forward (FF) temperature compensation for stirred tank chemical reactors is the aim of this study. Simulink model based approach is used for analyzing the temperature control methods performance.. Reducing the impact of rise time and settling time is the primary goal of the PI compensator. It is recommended that the temperature management for the heat exchanger designs be integrated and simulated using MATLAB using softcomputing-based analysis and Simulink. The expected results of the step reaction of the temperature controller are shown for HE design. The model functions and their parameters are also validated from step response using the two-point procedure. The temperature control step responses are validated over the settling time of 70 sec for Feedback and FF based controls. 
653 |a Temperature compensation 
653 |a Heat exchangers 
653 |a Chemical reactors 
653 |a Matlab 
653 |a Compensators 
653 |a Temperature control 
653 |a Feedforward control 
653 |a Computer simulation 
653 |a Control systems 
653 |a Control methods 
653 |a Controllers 
653 |a Feedback control 
653 |a Step response 
653 |a Settling 
700 1 |a Suresh, H N 
773 0 |t Journal of Electrical Systems  |g vol. 21, no. 1 (2025), p. 218-226 
786 0 |d ProQuest  |t Engineering Database 
856 4 1 |3 Citation/Abstract  |u https://www.proquest.com/docview/3224658060/abstract/embedded/7BTGNMKEMPT1V9Z2?source=fedsrch 
856 4 0 |3 Full Text - PDF  |u https://www.proquest.com/docview/3224658060/fulltextPDF/embedded/7BTGNMKEMPT1V9Z2?source=fedsrch