2016
DOI: 10.1016/j.epsr.2016.06.030
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Simplification and unification of IEEE standard models for excitation systems

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Cited by 14 publications
(6 citation statements)
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“…Pro zadání TI = 0 se integrační část regulátoru neuvažuje -regulátor je pak jen proporcionální se zesílením kP a odpovídá strukturou modelu stejnosměrného budiče modelu DC1 podle doporučení IEEE [26] nebo modelům ExcAVR1 nebo ExcCZ podle novějšího standardu IEC [27]. Podrobněji je modelování budicích systémů popsáno i v článku [28].…”
Section: Obr 31-6 Blokové Schéma Modelu Buzení Stanunclassified
“…Pro zadání TI = 0 se integrační část regulátoru neuvažuje -regulátor je pak jen proporcionální se zesílením kP a odpovídá strukturou modelu stejnosměrného budiče modelu DC1 podle doporučení IEEE [26] nebo modelům ExcAVR1 nebo ExcCZ podle novějšího standardu IEC [27]. Podrobněji je modelování budicích systémů popsáno i v článku [28].…”
Section: Obr 31-6 Blokové Schéma Modelu Buzení Stanunclassified
“…A program for high-speed signal processing/calculation and power system stabilization equipment was embedded [22][23][24]. Karel Maslo conducted research on the simplification and integration of an IEEE (Institute of Electrical and Electronics Engineers) standard model for excitation systems [25], whereas Hassan Soo-Hwan Jin tested the dynamic stability of a digital excitation system's thyristor, and Ho-Sun Ryu conducted research involving the functional testing of a simulator-mounted digital excitation system. More recently, his work has been applied to a 500 W synchronous generator.…”
Section: Related Researchmentioning
confidence: 99%
“…A program for high-speed signal processing/calculation and power system stabilization equipment was embedded [22][23][24]. Karel Maslo conducted research on the simplification and integration of an IEEE (Institute of Electrical and Electronics Engineers) standard model for excitation systems [25], whereas Hassan Karel Maslo conducted research on the simplification and integration of an IEEE (Institute of Electrical and Electronics Engineers) standard model for excitation systems [25], whereas Hassan Yousef studied the control of a non-linear power system using an adaptive phablet network [26]. Jiawei Yang conducted research involving the analysis and evaluation of a VSC (Voltage Source Converter) excitation system in a bid to improve the stability of power systems [27], with M. Aldeen researching on the detection, identification, and mitigation of failures of distributed excitation systems [28].…”
Section: Related Researchmentioning
confidence: 99%
“…PID controller design has been presented for an AVR system based on a combination of ant colony optimization and Nelder-Mead approach by Blondin et al [20]. Maslo et al [21] proposed generalized model for excitation systems and also reduced higher order model to lower order standard model. PIDA controller is better alternative for AVR system to exiting controller design in this area.…”
Section: Introductionmentioning
confidence: 99%