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Relay Tuning of PID Controllers For Unstable MIMO Processes / by M. Chidambaram, Nikita Saxena.

By: Chidambaram, M, autor
Contributor(s): Saxena, Nikita, autor
Material type: materialTypeLabelE-bookSeries: (Advances in Industrial Control, 1430-9491); (Engineering (Springer-11647)).Publisher: Singapore : Springer International Publishing, 2018Description: 1 recurso en línea (XXX, 202 páginas 124 ilustraciones, 27 ilustraciones a color).ISBN: 9789811077272.Subject: Control de procesosOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Chapter 1: Introduction -- Chapter 2: Relay feedback control -- Chapter 3: Auto Tuning of Unstable SOPTD Systems -- Chapter 4: Decentralised PID Controllers for stable system -- Chapter 5: Decentralised PID Controllers for unstable system -- Chapter 6: Centralised PID Controllers for unstable systems -- Chapter 7: Refined Ziegler-Nichols method for unstable SISO systems -- Chapter 8: Tuning rules for PID controllers for unstable systems -- Chapter 9:  Auto tuning of Decentralised unstable system with refined Z-N method.         .
Abstract: This book presents comprehensive information on the relay auto-tuning method for unstable systems in process control industries, and introduces a new, refined Ziegler-Nichols method for designing controllers for unstable systems. The relay auto-tuning method is intended to assist graduate students in chemical, electrical, electronics and instrumentation engineering who are engaged in advanced process control. The book's main focus is on developing a controller tuning method for scalar and multivariable systems, particularly for unstable processes. It proposes a much simpler technique, avoiding the shortcomings of the popular relay-tuning method. The effects of higher-order harmonics are incorporated, owing to the shape of output waveforms. In turn, the book demonstrates the applicability and effectiveness of the Ziegler-Nichols method through simulations on a number of linear and non-linear unstable systems, confirming that it delivers better performance and robust stability in the presence of uncertainty. The proposed method can also be easily implemented across industries with the help of various auto-tuners available on the market. Offering a professional and modern perspective on profitably and efficiently automating controller tuning, the book will be of interest to graduate students, researchers, and industry professionals alike.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería TA169.7 2018 EB (Browse shelf(Opens below)) Acceso electrónico eBook.15112983
Total holds: 0

Chapter 1: Introduction -- Chapter 2: Relay feedback control -- Chapter 3: Auto Tuning of Unstable SOPTD Systems -- Chapter 4: Decentralised PID Controllers for stable system -- Chapter 5: Decentralised PID Controllers for unstable system -- Chapter 6: Centralised PID Controllers for unstable systems -- Chapter 7: Refined Ziegler-Nichols method for unstable SISO systems -- Chapter 8: Tuning rules for PID controllers for unstable systems -- Chapter 9:  Auto tuning of Decentralised unstable system with refined Z-N method.         .

This book presents comprehensive information on the relay auto-tuning method for unstable systems in process control industries, and introduces a new, refined Ziegler-Nichols method for designing controllers for unstable systems. The relay auto-tuning method is intended to assist graduate students in chemical, electrical, electronics and instrumentation engineering who are engaged in advanced process control. The book's main focus is on developing a controller tuning method for scalar and multivariable systems, particularly for unstable processes. It proposes a much simpler technique, avoiding the shortcomings of the popular relay-tuning method. The effects of higher-order harmonics are incorporated, owing to the shape of output waveforms. In turn, the book demonstrates the applicability and effectiveness of the Ziegler-Nichols method through simulations on a number of linear and non-linear unstable systems, confirming that it delivers better performance and robust stability in the presence of uncertainty. The proposed method can also be easily implemented across industries with the help of various auto-tuners available on the market. Offering a professional and modern perspective on profitably and efficiently automating controller tuning, the book will be of interest to graduate students, researchers, and industry professionals alike.

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