Stability and performance of first-order linear time-delay feedback systems: an eigenvalue approach (Q763147)
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scientific article; zbMATH DE number 6013369
| Language | Label | Description | Also known as |
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| English | Stability and performance of first-order linear time-delay feedback systems: an eigenvalue approach |
scientific article; zbMATH DE number 6013369 |
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Stability and performance of first-order linear time-delay feedback systems: an eigenvalue approach (English)
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9 March 2012
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Summary: Linear time-delay systems with transcendental characteristic equations have infinitely many eigenvalues which are generally hard to compute completely. However, the spectrum of first-order linear time-delay systems can be analyzed with the Lambert function. This paper studies the stability and state feedback stabilization of first-order linear time-delay system in detail via the Lambert function. The main issues concerned are the rightmost eigenvalue locations, stability robustness with respect to delay time, and the response performance of the closed-loop system. Examples and simulations are presented to illustrate the analysis results.
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Linear time-delay systems
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transcendental characteristic equations
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Lambert function
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state feedback stabilization
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