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Journal ArticleDOI

Design and Implementation of a Highly Efficient Three-Level T-Type Converter for Low-Voltage Applications

Mario Schweizer, +1 more
- 01 Feb 2013 - 
- Vol. 28, Iss: 2, pp 899-907
TLDR
The 3LT2C as mentioned in this paper combines the positive aspects of the two-level converter such as low conduction losses, small part count and a simple operation principle with the advantages of the three-level converters such as the low switching losses and superior output voltage quality.
Abstract
The demand for lightweight converters with high control performance and low acoustic noise led to an increase in switching frequencies of hard switched two-level low-voltage 3-phase converters over the last years. For high switching frequencies, converter efficiency suffers and can be kept high only by employing cost intensive switch technology such as SiC diodes or CoolMOS switches; therefore, conventional IGBT technology still prevails. In this paper, the alternative of using three-level converters for low-voltage applications is addressed. The performance and the competitiveness of the three-level T-type converter (3LT2C) is analyzed in detail and underlined with a hardware prototype. The 3LT2 C basically combines the positive aspects of the two-level converter such as low conduction losses, small part count and a simple operation principle with the advantages of the three-level converter such as low switching losses and superior output voltage quality. It is, therefore, considered to be a real alternative to two-level converters for certain low-voltage applications.

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Citations
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Topology Review and Derivation Methodology of Single-Phase Transformerless Photovoltaic Inverters for Leakage Current Suppression

TL;DR: The generation mechanism of leakage current is investigated and the concepts of dc-based and ac-based decoupling networks are proposed to not only cover the published symmetrical inductor-based topologies but also offer an innovative strategy to derive advanced inverters.
Journal ArticleDOI

Evolution of Topologies, Modeling, Control Schemes, and Applications of Modular Multilevel Converters

TL;DR: The development of MMC circuit topologies and their mathematical models over the years are presented and the evolution and technical challenges of the classical and model predictive control methods are discussed.
Journal ArticleDOI

Perspective: Ga2O3 for ultra-high power rectifiers and MOSFETS

TL;DR: In this article, the performance of high voltage rectifiers and enhancement-mode metal-oxide field effect transistors on Ga2O3 has been evaluated and shown to benefit from the larger critical electric field relative to either SiC or GaN.
Journal ArticleDOI

Symmetric and Asymmetric Design and Implementation of New Cascaded Multilevel Inverter Topology

TL;DR: In this paper, a new topology of multilevel inverter is proposed as fundamental block and the proposed topology is generalized using series connection of the fundamental blocks, which has been analyzed in both symmetric and asymmetric operation modes.
Journal ArticleDOI

New Modulation Techniques for a Leakage Current Reduction and a Neutral-Point Voltage Balance in Transformerless Photovoltaic Systems Using a Three-Level Inverter

TL;DR: In this paper, the authors proposed modulation techniques to reduce the leakage current and balance the dc-link voltages in transformerless photovoltaic (PV) systems using three-level inverter.
References
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TL;DR: In this article, the authors evaluate three-level topologies as alternatives to two level topologies in converters for lowvoltage applications and compare them for a grid interface, a conventional drive application, and a high speed drive application.
Journal ArticleDOI

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Journal ArticleDOI

Transformerless Split-Inductor Neutral Point Clamped Three-Level PV Grid-Connected Inverter

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Journal ArticleDOI

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TL;DR: A new space-vector pulsewidth-modulation strategy is presented to avoid that low-frequency output voltage distortion in three-level neutral-point-clamped voltage-source inverters.
Proceedings ArticleDOI

Comparison of the chip area usage of 2-level and 3-level voltage source converter topologies

TL;DR: In this article, an alternative 3-level topology referred to as T-type is presented, which is very high efficient for medium switching frequencies (4-20 kHz) for low voltage converter.
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