EN
Analysis of the Performance of a 5-Level Modular Multilevel Inverter for a Solar Grid-Connected System
Öz
The main purpose of a multilevel inverter is to combine numerous levels of dc voltage to create a nearly sinusoidal voltage. The synthesized output waveform has more stages as the number of levels rises, creating a staircase ripple which resembles the preferred waveform. As the number of voltage levels rises, the output wave's harmonic distortion diminishes and eventually approaches zero. In particular, the performance analysis of a five-level inverter with variable loads is highlighted in this paper. This topology has fewer devices than traditional multilevel inverters for the same five output levels, which makes it more affordable due to lesser driver circuits. The proposed modular five level topology is simulated using both high frequencies switching pulse width modulation and basic frequency switching modulation techniques. The output voltage, current waveform, and THD are examined and compared using Simulink to confirm the viability of the modular multilevel inverter topology.
Anahtar Kelimeler
Kaynakça
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- [4] E Parimalasundar, N M G Kumar, P Geetha, and K Suresh. Performance investigation of modular multilevel inverter topologies for photovoltaic applications with minimal switches. Electrical Engineering & Electromechanics, 6:28–34, 2022.
- [5] K Suresh and E Parimalasundar. A novel dual-leg dc-dc converter for wide range dc-ac conversion. Automatika, 63(3): 572–579, 2022.
- [6] M Venkatesan, B Adhavan, K Suresh, K Balachander, and M Lordwin Cenil Prabakar. Research on fpga controlled three phase pv inverter using multi carrier pwm control schemes. Microprocessors and Microsystems, 76:1–13, 2020.
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Ayrıntılar
Birincil Dil
İngilizce
Konular
Mühendislik
Bölüm
Araştırma Makalesi
Yazarlar
Yayımlanma Tarihi
13 Mart 2024
Gönderilme Tarihi
21 Ocak 2023
Kabul Tarihi
16 Kasım 2023
Yayımlandığı Sayı
Yıl 2024 Cilt: 11 Sayı: 1
APA
Ezhilvannan, P. (2024). Analysis of the Performance of a 5-Level Modular Multilevel Inverter for a Solar Grid-Connected System. El-Cezeri, 11(1), 103-108. https://doi.org/10.31202/ecjse.1240222
AMA
1.Ezhilvannan P. Analysis of the Performance of a 5-Level Modular Multilevel Inverter for a Solar Grid-Connected System. ECJSE. 2024;11(1):103-108. doi:10.31202/ecjse.1240222
Chicago
Ezhilvannan, Parimalasundar. 2024. “Analysis of the Performance of a 5-Level Modular Multilevel Inverter for a Solar Grid-Connected System”. El-Cezeri 11 (1): 103-8. https://doi.org/10.31202/ecjse.1240222.
EndNote
Ezhilvannan P (01 Mart 2024) Analysis of the Performance of a 5-Level Modular Multilevel Inverter for a Solar Grid-Connected System. El-Cezeri 11 1 103–108.
IEEE
[1]P. Ezhilvannan, “Analysis of the Performance of a 5-Level Modular Multilevel Inverter for a Solar Grid-Connected System”, ECJSE, c. 11, sy 1, ss. 103–108, Mar. 2024, doi: 10.31202/ecjse.1240222.
ISNAD
Ezhilvannan, Parimalasundar. “Analysis of the Performance of a 5-Level Modular Multilevel Inverter for a Solar Grid-Connected System”. El-Cezeri 11/1 (01 Mart 2024): 103-108. https://doi.org/10.31202/ecjse.1240222.
JAMA
1.Ezhilvannan P. Analysis of the Performance of a 5-Level Modular Multilevel Inverter for a Solar Grid-Connected System. ECJSE. 2024;11:103–108.
MLA
Ezhilvannan, Parimalasundar. “Analysis of the Performance of a 5-Level Modular Multilevel Inverter for a Solar Grid-Connected System”. El-Cezeri, c. 11, sy 1, Mart 2024, ss. 103-8, doi:10.31202/ecjse.1240222.
Vancouver
1.Parimalasundar Ezhilvannan. Analysis of the Performance of a 5-Level Modular Multilevel Inverter for a Solar Grid-Connected System. ECJSE. 01 Mart 2024;11(1):103-8. doi:10.31202/ecjse.1240222


