2020
DOI: 10.24003/emitter.v8i2.500
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Review on Multi Level Inverter Topologies and Control Strategies for Solar Power Conversion

Abstract: Nowadays solar power has become an alternate method of power generation for standalone systems for both urban and rural electrification. The Power Electronics converters used for the power conversion should provide quality AC output to have near sinusoidal voltage. The inverter topology and the PWM technique of the inverter play a vital role in providing quality output. This paper reviews recent contribution to establish the current status and development of the technology to provide reader with an insightful … Show more

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Cited by 11 publications
(9 citation statements)
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References 27 publications
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“…Fundamental switching frequency techniques can be broken down into a few categories: space vector control, SHEPWM, and optimal switching method. Techniques such as sinusoidal pulsewidth modulation and space vector modulation fall within the category of high switching frequency methods [5], [7], [33]. The fundamental switching frequency approaches allow for the creation of energy conversion systems that are both low-cost and highly efficient.…”
Section: Selective Harmonic Eliminationmentioning
confidence: 99%
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“…Fundamental switching frequency techniques can be broken down into a few categories: space vector control, SHEPWM, and optimal switching method. Techniques such as sinusoidal pulsewidth modulation and space vector modulation fall within the category of high switching frequency methods [5], [7], [33]. The fundamental switching frequency approaches allow for the creation of energy conversion systems that are both low-cost and highly efficient.…”
Section: Selective Harmonic Eliminationmentioning
confidence: 99%
“…Meanwhile, low frequency switching includes Optimal Switching Angle (OSA), Selective Harmonic Elimination (SHE) PWM, Space Vector Control (SVC), and Nearest Level Control (NLC) [5]- [7]. SHEPWM, a low frequency technique, has recently gained popularity [8]- [10].…”
Section: Introductionmentioning
confidence: 99%
“…Berdasarkan [4]- [6], MLI memiliki tiga topologi dasar yang banyak digunakan saat ini, yaitu Neutral Point Clamped Multilevel Inverter (NPC-MLI), Cascaded H-Bridge Multilevel Inverter (CHB-MLI), , dan Flying Capacitor Multilevel Inverter (FC-MLI). Keuntungan dari MLI adalah [7]- [9]: tegangan rendah pada komponen saklar daya, pengurangan Total Harmonic Distortion (THD) pada tegangan keluaran, Interferensi Elektromagnetik (EMI) rendah, beroperasi pada frekuensi penyaklaran yang lebih tinggi dan frekuensi fundamental, serta pengurangan ukuran filter . Meskipun lebih baik dari inverter konvensional, MLI yang beroperasi pada frekuensi rendah masih mengandung harmonisa orde rendah pada tegangan dan arus keluaran yang berdampak negatif pada sistem kelistrikan.…”
Section: Pendahuluanunclassified
“…FC-MLI mirip dengan NPC-MLI. Satu-satunya perbedaan adalah bahwa dibandingkan menggunakan dioda, clamping dilakukan dengan menggunakan kapasitor [7], [18]. Kapasitor di sisi DC terhubung mirip dengan struktur tangga, di mana tegangan berbeda di setiap kapasitor dan kapasitor berikutnya.…”
Section: B Flying Capacitor-mli (Fc-mli)unclassified
“…Inverter sumber tegangan bertingkat secara luas terdiri dari tiga kelo mpok utama yaitu inverter bertingkat-dioda atau konverter multi-jep it [10], inverter bertingkat-kapasitor atau inverter mult i-sel [11], dan cascade inverter atau H-bridge bertingkat [12]. Setiap kelo mpok memiliki kontrol yang berbeda [13]. Kontrol yang d igunakan dapat berupa unipolar atau bipolar [14].…”
unclassified