Design and Control of a Single Phase DC/Rectified AC/AC Inverter for Low THD Applications

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Date

2018

Journal Title

Journal ISSN

Volume Title

Publisher

Institute of Electrical and Electronics Engineers Inc.

Open Access Color

Green Open Access

Yes

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94

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114

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Abstract

In this paper, a single phase DC/Rectified AC/AC (DC/RAC/AC) inverter is analyzed and compared to classical single phase PWM inverters. A traditional AC power supply (PS) system consists of a DC/DC converter, a cascaded H-bridge inverter, and a passive filter to generate the sinusoidal output voltage. The presented DC/RAC/AC inverter has a similar structure; however, the control of the cascaded units differ. The presented method generates rectified sine wave at the output of the DC/DC converter unit and the H-bridge inverter alternates the rectified sine wave to generate the full sine wave without having an additional output filter; hence, the switching losses at the H-bridge inverter is limited to the line frequency (50-60 Hz). Moreover, the bulk DC bus capacity at the output of the DC/DC converter is reduced significantly. Therefore, the power consumed by the passive elements are minimized. The circuit modes of operation are analyzed and the system is simulated in Matlab/Simulink environment for both traditional and proposed topologies. Results show that the proposed system is superior to the traditional one in terms of efficiency, generated THD with a simplified control structure, and it offers a reduced system size and cost. © 2019 Elsevier B.V., All rights reserved.

Description

Isahaya Electronics Corporation (IDC); TMEIC
Tekgun, Burak/0000-0003-2720-8816;

Keywords

Fast Control, High Efficiency, Inverter, Low Cost, Low Thd, Reduced Size, Sine Wave Generation, Wide Band Gap, Ac-Ac Power Converters, Bridge Circuits, Cost Reduction, Electric Inverters, Energy Gap, Passive Filters, Fast Control, High-Efficiency, Inverter, Low Costs, Low Thd, Reduced Size, Sine-Wave, Wide Band Gap, DC-DC Converters, high efficiency, low THD, low cost, inverter, sine wave generation, wide band gap, reduced size, fast control

Fields of Science

0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

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OpenCitations Citation Count
5

Source

-- 7th International IEEE Conference on Renewable Energy Research and Applications, ICRERA 2018 -- Paris -- 143564

Volume

Issue

Start Page

424

End Page

430
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Scopus : 5

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7

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