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Page 1: A Fuzzy Logic-Controlled Superconducting Magnetic Energy ... · controller (FLC), proportional—integral (PI) controller, super- conductive magnetic enerw ... and unbalanced faults

A Fuzzy Logic-Controlled SuperconductingMagnetic Energy Storage (SMES) for TransientStability Augmentation

著者 Ali Mohd.Hasan, Murata Toshiaki, Tamura Junjijournal orpublication title

IEEE Transactions on Control SystemsTechnology

volume 15number 1page range 144-150year 2007-01URL http://id.nii.ac.jp/1450/00007232/

doi: http://doi.org/10.1109/TCST.2006.883342

Page 2: A Fuzzy Logic-Controlled Superconducting Magnetic Energy ... · controller (FLC), proportional—integral (PI) controller, super- conductive magnetic enerw ... and unbalanced faults
Page 3: A Fuzzy Logic-Controlled Superconducting Magnetic Energy ... · controller (FLC), proportional—integral (PI) controller, super- conductive magnetic enerw ... and unbalanced faults
Page 4: A Fuzzy Logic-Controlled Superconducting Magnetic Energy ... · controller (FLC), proportional—integral (PI) controller, super- conductive magnetic enerw ... and unbalanced faults
Page 5: A Fuzzy Logic-Controlled Superconducting Magnetic Energy ... · controller (FLC), proportional—integral (PI) controller, super- conductive magnetic enerw ... and unbalanced faults
Page 6: A Fuzzy Logic-Controlled Superconducting Magnetic Energy ... · controller (FLC), proportional—integral (PI) controller, super- conductive magnetic enerw ... and unbalanced faults
Page 7: A Fuzzy Logic-Controlled Superconducting Magnetic Energy ... · controller (FLC), proportional—integral (PI) controller, super- conductive magnetic enerw ... and unbalanced faults
Page 8: A Fuzzy Logic-Controlled Superconducting Magnetic Energy ... · controller (FLC), proportional—integral (PI) controller, super- conductive magnetic enerw ... and unbalanced faults

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