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PID Controllers for Time-Delay Systems [Hardcover]

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  • Category: Books (Technology & Engineering)
  • Author:  Silva, Guillermo J., Datta, Aniruddha, Bhattacharyya, Shankar P.
  • Author:  Silva, Guillermo J., Datta, Aniruddha, Bhattacharyya, Shankar P.
  • ISBN-10:  0817642668
  • ISBN-10:  0817642668
  • ISBN-13:  9780817642662
  • ISBN-13:  9780817642662
  • Publisher:  Birkh?user
  • Publisher:  Birkh?user
  • Binding:  Hardcover
  • Binding:  Hardcover
  • Pub Date:  01-Feb-2004
  • Pub Date:  01-Feb-2004
  • Pages:  400
  • Pages:  400
  • SKU:  0817642668-11-SPRI
  • SKU:  0817642668-11-SPRI
  • Item ID: 100850709
  • List Price: $109.99
  • Seller: ShopSpell
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  • Delivery by: Jul 05 to Jul 07
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Filling a gap in the literature, this book is a presentation of recent results in the field of PID controllers, including their design, analysis, and synthesis. Emphasis is placed on the efficient computation of the entire set of PID controllers achieving stability and various performance specifications, which is important for the development of future software design packages, as well as further capabilities such as adaptive PID design and online implementation.

 

The results presented here are timely given the resurgence of interest in PID controllers and will find widespread application, specifically in the development of computationally efficient tools for PID controller design and analysis. Serving as a catalyst to bridge the theory--practice gap in the control field as well as the classical--modern gap, this monograph is an excellent resource for control, electrical, chemical, and mechanical engineers, as well as researchers in the field of PID controllers.

This monograph presents our recent results on the proportional-integr- derivative (PID) controller and its design, analysis, and synthesis. The fo? cus is on linear time-invariant plants that may contain a time delay in the feedback loop. This setting captures many real-world practical and in? dustrial situations. The results given here include and complement those published in Structure and Synthesis of PID Controllers by Datta, Ho, and Bhattacharyya [10]. In [10] we mainly dealt with the delay-free case. The main contribution described here is the efficient computation of the entire set of PID controllers achieving stability and various performance specifications. The performance specifications that can be handled within our machinery are classical ones such as gain and phase margin as well as modern ones such as Hoo norms of closed-loop transfer functions. Finding the entire set is the key enabling step to realistic design with several designl#
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