Truncated Predictor Based Feedback Designs for Linear Systems With Input Delay

Truncated Predictor Based Feedback Designs for Linear Systems With Input Delay - Control Engineering

1st Edition 2021

Hardback (01 Nov 2020)

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Publisher's Synopsis

This monograph is the first of its kind to present innovative research results on truncated predictor feedback (TPF) designs for general linear systems with input delay. Beginning with a brief review of time delay systems, the first half of the book focuses on TPF with a constant feedback parameter. Both state feedback and output feedback are considered. It is established that TPF achieves stabilization in the presence of an arbitrarily large bounded delay if the open loop system is not exponentially unstable. Examples are presented to illustrate that TPF may fail to stabilize an exponentially unstable system when the delay is sufficiently large. Bounds on the delay are then established under which stabilization can be achieved. The second half of the book explores variations of the TPF laws designed with a non-constant feedback parameter to accommodate unknown delays and improve closed-loop performance. The authors employ a step-by-step approach to presenting the ultimate resulton a completely delay-independent feedback law. 

Truncated Predictor Based Feedback Designs for Linear Systems with Input Delay will appeal to control engineers, control theorists, and graduate students studying control systems. This volume will also be a valuable resource for engineers and applied mathematicians interested in dynamic systems with time delays.

Book information

ISBN: 9783030534288
Publisher: Springer International Publishing
Imprint: Birkhauser
Pub date:
Edition: 1st Edition 2021
Language: English
Number of pages: 349
Weight: 717g
Height: 235mm
Width: 155mm
Spine width: 21mm