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How Can Robust Control of Nonlinear Systems be Achieved? Examining Optimization Techniques

by Bhawna Tandon
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Current price ₹6,314.00
Original price ₹7,341.00
Original price ₹7,341.00
Original price ₹7,341.00
(-14%)
₹6,314.00
Current price ₹6,314.00

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Book cover type: Paperback
  • ISBN13: 9783346038661
  • Binding: Paperback
  • Subject: N/A
  • Publisher: Grin Verlag
  • Publisher Imprint: Grin Verlag
  • Publication Date:
  • Pages: 176
  • Original Price: USD 74.9
  • Language: English
  • Edition: N/A
  • Item Weight: 236 grams
  • BISAC Subject(s): Engineering (General)

Doctoral Thesis / Dissertation from the year 2019 in the subject Engineering - General, Basics, grade: A.00, language: English, abstract: The following text examines the questions, how nonlinear system can better be controlled by new optimisation techniques such as feedback linearization. Due to the inevitable nonlinearities in real systems, several nonlinear control methods like feedback linearization, sliding mode control, backstepping approach and further modes are described in detail in the literature. Due to limitations in application of well known classical methods, researchers have struggled for decades to realize robust and practical solutions for nonlinear systems by proposing different approaches or improving classical control methods. The feedback linearization approach is a control method which employs feedback to stabilize systems containing nonlinearities. In order to accomplish this, it assumes perfect knowledge of the system model to linearize the input-output relationship. In the absence of perfect system knowledge, modelling errors inevitably affect the performanceof the feedback controller. Many researchers have come up with a new form of feedback linearization, called robust feedback. This method gives a linearizing control law that transforms the nonlinear system into its linear approximation around an operating point. Thus, it causes only a small transformation in the natural behavior of the system, which is desired in order to obtain robustness. The controllers are required to provide various time domain and frequency domain performances while maintaining sufficient stability robustness. In this regard, the evolutionary optimization techniques provide better option as these are probabilistic search procedures and facilitate inclusion of wide variety of time and frequency domain performance functionals in the objective functions. A significant scope of work remains to be done which provides motivation for the research in the design of rob

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