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Disturbance attenuation properties of time-controlled switched systems

โœ Scribed by Guisheng Zhai; Bo Hu; Kazunori Yasuda; Anthony N. Michel


Publisher
Elsevier Science
Year
2001
Tongue
English
Weight
169 KB
Volume
338
Category
Article
ISSN
0016-0032

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โœฆ Synopsis


In this paper, we investigate the disturbance attenuation properties of time-controlled switched systems consisting of several linear time-invariant subsystems by using an average dwell time approach incorporated with a piecewise Lyapunov function. First, we show that when all subsystems are Hurwitz stable and achieve a disturbance attenuation level smaller than a positive scalar g 0 ; the switched system under an average dwell time scheme achieves a weighted disturbance attenuation level g 0 ; and the weighted disturbance attenuation approaches normal disturbance attenuation if the average dwell time is chosen sufficiently large. We extend this result to the case where not all subsystems are Hurwitz stable, by showing that in addition to the average dwell time scheme, if the total activation time of unstable subsystems is relatively small compared with that of the Hurwitz stable subsystems, then a reasonable weighted disturbance attenuation level is guaranteed. Finally, a discussion is made on the case for which nonlinear norm-bounded perturbations exist in the subsystems.


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