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Title: Design of H{sub {infinity}}-PSS using numerator-denominator uncertainty representation

Journal Article · · IEEE Transactions on Energy Conversion
DOI:https://doi.org/10.1109/60.577279· OSTI ID:465118
; ;  [1]
  1. Hiroshima Univ., Higashi-Hiroshima (Japan). Dept. of Electrical Engineering

This paper presents a new method of designing a robust H{sub {infinity}}-PSS to deal with some limitations of the existing H{sub {infinity}}-PSSs (standard H{sub {infinity}}-PSSs). These limitations include (1) the inability to treat the system uncertainty when a stable nominal plant becomes an unstable perturbed plant; (2) the cancellation of the plant`s poorly damped poles by the controller`s zeros. The proposed multiple inputs single output controller for the excitation system is based on the numerator-denominator uncertainty representation which is not restricted in the modeling of uncertainty as compared to the standard additive or multiplicative uncertainty representation. Furthermore, the bilinear transformation has been used in the design to prevent the pole-zero cancellation of the poorly damped poles and to improve the control system performance. Simulation results have shown satisfactory performance of the proposed PSS for a wide range of operating conditions and good stability margin as compared to both the conventional PSS and the standard H{sub {infinity}}-PSS.

OSTI ID:
465118
Report Number(s):
CONF-9603111-; ISSN 0885-8969; TRN: IM9720%%333
Journal Information:
IEEE Transactions on Energy Conversion, Vol. 12, Issue 1; Conference: 7. biennial IEEE conference on electromagnetic field computation, Okayama (Japan), 18-21 Mar 1996; Other Information: PBD: Mar 1997
Country of Publication:
United States
Language:
English

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