2014 IEEE International Energy Conference (ENERGYCON) 2014
DOI: 10.1109/energycon.2014.6850416
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Comparative performance of wind turbine driven PMSG with PI-controllers tuned using heuristic optimization algorithms

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Cited by 8 publications
(3 citation statements)
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References 19 publications
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“…Kassem and Zaid (2014) developed a controller for an autonomous variable-speed PMSG WT with an energy storing system based on Takagi-Sugeno fuzzy logic algorithm. Ali et al (2014b) applied a self-adaptive global best harmony search algorithm for tuning PI controllers for the generator-side converter of a PMSG-based WT. ANFIS controllers produced faster speed response than PI controllers in terms of rise time, overshoot, settling time and steady state in Ali et al (2014a).…”
Section: Control Strategiesmentioning
confidence: 99%
“…Kassem and Zaid (2014) developed a controller for an autonomous variable-speed PMSG WT with an energy storing system based on Takagi-Sugeno fuzzy logic algorithm. Ali et al (2014b) applied a self-adaptive global best harmony search algorithm for tuning PI controllers for the generator-side converter of a PMSG-based WT. ANFIS controllers produced faster speed response than PI controllers in terms of rise time, overshoot, settling time and steady state in Ali et al (2014a).…”
Section: Control Strategiesmentioning
confidence: 99%
“…Nowadays, optimization algorithms are effective in fine-tuning the CPI controller to boost the dynamic behavior of PMSG. Many optimization techniques such as Jaya optimizer (JO), particle swarm optimizer (PSO), and whale optimizer algorithm (WOA) were applied to improve the dynamic behavior of PMSG (Ali et al, 2014;Mahmoud et al, 2020). These studies focused on only one issue of variable wind speed or fault incidents.…”
Section: Introductionmentioning
confidence: 99%
“…Saat ini permanent magnet synchronous generator (PMSG) merupakan salah satu generator sinkron yang paling banyak digunakan pada aplikasi sistem VSWT karena memilliki beberapa keuntungan yaitu (1) tidak memerlukan sistem eksitasi eksternal, tidak terdapat rugi-rugi tembaga pada rangkaian rotor, biaya perawatan rendah dan kerapatan daya tinggi [7], (2) reliabilitas yang lebih baik, membutuhkan perawatan yang tidak rumit, ringan, volume rendah, performansi tinggi [8], (3) tidak membutuhkan gearbox sehingga dapat beroperasi pada kecepatan rendah dan menggurangi rugi-rugi, berat, dan biaya perawatan, (4) efisiensi tinggi [9], (5) Jika terdapat gangguan pada grid tidak berpengaruh secara langsung pada generator, (5) amplitudo dan frekuensi tegangan generator dapat dikontrol penuh oleh konverter [10]. Penggunaan PMSG pada turbin angin jenis variable speed…”
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