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Control strategies for non-minimum p...
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Yadav, Manish.
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Control strategies for non-minimum phase systems
Record Type:
Electronic resources : Monograph/item
Title/Author:
Control strategies for non-minimum phase systems/ by Manish Yadav, Ashutosh K. Giri, Stepan Ozana.
Author:
Yadav, Manish.
other author:
Giri, Ashutosh K.
Published:
Singapore :Springer Nature Singapore : : 2025.,
Description:
xii, 180 p. :ill. (chiefly color), digital ;24 cm.
[NT 15003449]:
Outline of non-minimum phase systems -- Improved series cascade control schemes for non-minimum phase zeros and dead-Time systems -- An enhancement in series cascade control scheme -- Improved parallel cascade control for non minimum phase system -- Modified tuning approaches for non-minimum phase systems -- Tuning of fractional order filter with non-minimum phase zeros -- A combined approach for tuning optimal fractional IMC-based series cascade control -- Conclusion and Future scope.
Contained By:
Springer Nature eBook
Subject:
Automatic control. -
Online resource:
https://doi.org/10.1007/978-981-96-2351-8
ISBN:
9789819623518
Control strategies for non-minimum phase systems
Yadav, Manish.
Control strategies for non-minimum phase systems
[electronic resource] /by Manish Yadav, Ashutosh K. Giri, Stepan Ozana. - Singapore :Springer Nature Singapore :2025. - xii, 180 p. :ill. (chiefly color), digital ;24 cm. - Studies in infrastructure and control,2730-6461. - Studies in infrastructure and control..
Outline of non-minimum phase systems -- Improved series cascade control schemes for non-minimum phase zeros and dead-Time systems -- An enhancement in series cascade control scheme -- Improved parallel cascade control for non minimum phase system -- Modified tuning approaches for non-minimum phase systems -- Tuning of fractional order filter with non-minimum phase zeros -- A combined approach for tuning optimal fractional IMC-based series cascade control -- Conclusion and Future scope.
This book provides overview of numerous control schemes for non-minimum phase and dead-time systems. The inverse response arises from the conflict of two first-order systems with opposite effects. This feature of the system is known as non-minim phase (NMP) process. The opposite response initiates from odd multiplicity of NMP open-loop zeros. As a result, the controller shows a limited gain margin and bandwidth, implying a robustness restriction. If the user tries to increase the gain, system sometimes gets unstable. Thus, the fundamental notion of providing a suitable balance control theory can potentially improve the performance of those processes. This book is useful to researchers working in the field of control system. The book provides comprehensive philosophy of different control schemes used for the non-minimum phase zeros and dead-time systems. The researcher working on non-minimum phase zeros can find innovative algorithms and novel schemes. Further, they can design innovative control schemes by referring to the content of chapters and specifically tuning after encountering NMP zeros and delay terms.
ISBN: 9789819623518
Standard No.: 10.1007/978-981-96-2351-8doiSubjects--Topical Terms:
535879
Automatic control.
LC Class. No.: TJ213
Dewey Class. No.: 629.8
Control strategies for non-minimum phase systems
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by Manish Yadav, Ashutosh K. Giri, Stepan Ozana.
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Outline of non-minimum phase systems -- Improved series cascade control schemes for non-minimum phase zeros and dead-Time systems -- An enhancement in series cascade control scheme -- Improved parallel cascade control for non minimum phase system -- Modified tuning approaches for non-minimum phase systems -- Tuning of fractional order filter with non-minimum phase zeros -- A combined approach for tuning optimal fractional IMC-based series cascade control -- Conclusion and Future scope.
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This book provides overview of numerous control schemes for non-minimum phase and dead-time systems. The inverse response arises from the conflict of two first-order systems with opposite effects. This feature of the system is known as non-minim phase (NMP) process. The opposite response initiates from odd multiplicity of NMP open-loop zeros. As a result, the controller shows a limited gain margin and bandwidth, implying a robustness restriction. If the user tries to increase the gain, system sometimes gets unstable. Thus, the fundamental notion of providing a suitable balance control theory can potentially improve the performance of those processes. This book is useful to researchers working in the field of control system. The book provides comprehensive philosophy of different control schemes used for the non-minimum phase zeros and dead-time systems. The researcher working on non-minimum phase zeros can find innovative algorithms and novel schemes. Further, they can design innovative control schemes by referring to the content of chapters and specifically tuning after encountering NMP zeros and delay terms.
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Intelligent Technologies and Robotics (SpringerNature-42732)
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