Araştırma Makalesi

Novel Fault Analysis and Compensation in 5-Level Multilevel DC-AC Converter

Cilt: 10 Sayı: 1 31 Ocak 2023
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Novel Fault Analysis and Compensation in 5-Level Multilevel DC-AC Converter

Öz

Existing Neutral clamped active (NCA) inverter has the property of common mode voltage with high frequency which can reduce the severity with less voltage gain. A newly designed 5L NCA inverter can capable have achieved voltage step-up with a one stage inversion process. Proposed circuit common ground increases voltage utilization in DC link and also mitigates common mode voltage with high frequency. Proposed topology has advantage of more compact and less voltage stress over existing two stage topology. Proposed circuit has only seven power switches with two capacitors, whereas existing topology is designed with 10 switches with 3 capacitors, so arrangement can obtain more efficiency. Implementation of this proposed topology is initially design in simulink platform, and the simulation results are finally verified in a proto-type model with power rating of 2000 W to validate its feasibility and performances with its fault clearance ability.

Anahtar Kelimeler

Kaynakça

  1. [1]. Kim, K., H. Cha, S. Park and I. Lee, “A Modified Series-Capacitor High Conversion Ratio DC–DC Converter Eliminating Start-Up Voltage Stress Problem”. IEEE Transactions on Power Electronics, 2018, 33(1): 08-12.
  2. [2]. Su, U., and W. Ki, "Component-Efficient Multiphase Switched-Capacitor DC–DC Converter With Configurable Conversion Ratios for LCD Driver Applications,". IEEE Transactions on Circuits and Systems II: Express Briefs, 2008, 55(8): 753-757.
  3. [3]. Narimani, M., and G. Moschopoulos, "An Investigation on the Novel Use of High-Power Three-Level Converter Topologies to Improve Light-Load Efficiency in Low Power DC/DC Full-Bridge Converters,". IEEE Transactions on Industrial Electronics, 2014, 61(10): 5690-5692.
  4. [4]. Wu, W., H. Wang, Y. Liu, M. Huang and F. Blaabjerg, "A Dual-Buck–Boost AC/DC Converter for DC Nanogrid With Three Terminal Outputs,". IEEE Transactions on Industrial Electronics, 2017, 64(1): 295-299.
  5. [5]. Luo, F. and D. Ma, "An Integrated Switching DC–DC Converter With Dual-Mode Pulse-Train/PWM Control,". IEEE Transactions on Circuits and Systems II: Express Briefs, 2009, 56, (2): 152-156.
  6. [6]. Shrivastava, Y., S. Y. Hui, S. Sathiakumar, H. Shu-Hung Chung and K. K. Tse, "Harmonic analysis of nondeterministic switching methods for DC-DC power converters,". IEEE Transactions on Circuits and Systems I: Fundamental Theory and Applications, 2000, 47(6): 868-884.
  7. [7]. Zhang, S., and X. Yu, "A Unified Analytical Modeling of the Interleaved Pulse Width Modulation (PWM) DC–DC Converter and Its Applications,". IEEE Transactions on Power Electronics, 2013, 28(11): 5147-5158.
  8. [8]. Bryant, B., and M. K. Kazimierczuk, "Open-loop power-stage transfer functions relevant to current-mode control of boost PWM converter operating in CCM,". IEEE Transactions on Circuits and Systems I: Regular Papers, 2005, 52(10): 2158-2164.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

31 Ocak 2023

Gönderilme Tarihi

19 Ağustos 2022

Kabul Tarihi

19 Aralık 2022

Yayımlandığı Sayı

Yıl 2023 Cilt: 10 Sayı: 1

Kaynak Göster

APA
Ezhilvannan, P., & Krishnan, S. (2023). Novel Fault Analysis and Compensation in 5-Level Multilevel DC-AC Converter. El-Cezeri, 10(1), 99-108. https://doi.org/10.31202/ecjse.1164246
AMA
1.Ezhilvannan P, Krishnan S. Novel Fault Analysis and Compensation in 5-Level Multilevel DC-AC Converter. ECJSE. 2023;10(1):99-108. doi:10.31202/ecjse.1164246
Chicago
Ezhilvannan, Parimalasundar, ve Suresh Krishnan. 2023. “Novel Fault Analysis and Compensation in 5-Level Multilevel DC-AC Converter”. El-Cezeri 10 (1): 99-108. https://doi.org/10.31202/ecjse.1164246.
EndNote
Ezhilvannan P, Krishnan S (01 Ocak 2023) Novel Fault Analysis and Compensation in 5-Level Multilevel DC-AC Converter. El-Cezeri 10 1 99–108.
IEEE
[1]P. Ezhilvannan ve S. Krishnan, “Novel Fault Analysis and Compensation in 5-Level Multilevel DC-AC Converter”, ECJSE, c. 10, sy 1, ss. 99–108, Oca. 2023, doi: 10.31202/ecjse.1164246.
ISNAD
Ezhilvannan, Parimalasundar - Krishnan, Suresh. “Novel Fault Analysis and Compensation in 5-Level Multilevel DC-AC Converter”. El-Cezeri 10/1 (01 Ocak 2023): 99-108. https://doi.org/10.31202/ecjse.1164246.
JAMA
1.Ezhilvannan P, Krishnan S. Novel Fault Analysis and Compensation in 5-Level Multilevel DC-AC Converter. ECJSE. 2023;10:99–108.
MLA
Ezhilvannan, Parimalasundar, ve Suresh Krishnan. “Novel Fault Analysis and Compensation in 5-Level Multilevel DC-AC Converter”. El-Cezeri, c. 10, sy 1, Ocak 2023, ss. 99-108, doi:10.31202/ecjse.1164246.
Vancouver
1.Parimalasundar Ezhilvannan, Suresh Krishnan. Novel Fault Analysis and Compensation in 5-Level Multilevel DC-AC Converter. ECJSE. 01 Ocak 2023;10(1):99-108. doi:10.31202/ecjse.1164246

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