Multilevel Voltage-Source-Converter Topologies for Industrial Medium-Voltage Drives
This paper presents a technology review of voltage-source-converter topologies for industrial medium-voltage drives. In this highly active area, different converter topologies and circuits have found their application in the market. This paper covers the high-power voltage-source inverter and the mo...
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Published in | IEEE transactions on industrial electronics (1982) Vol. 54; no. 6; pp. 2930 - 2945 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
New York
IEEE
01.12.2007
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Subjects | |
Online Access | Get full text |
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Abstract | This paper presents a technology review of voltage-source-converter topologies for industrial medium-voltage drives. In this highly active area, different converter topologies and circuits have found their application in the market. This paper covers the high-power voltage-source inverter and the most used multilevel-inverter topologies, including the neutral-point-clamped, cascaded H-bridge, and flying-capacitor converters. This paper presents the operating principle of each topology and a review of the most relevant modulation methods, focused mainly on those used by industry. In addition, the latest advances and future trends of the technology are discussed. It is concluded that the topology and modulation-method selection are closely related to each particular application, leaving a space on the market for all the different solutions, depending on their unique features and limitations like power or voltage level, dynamic performance, reliability, costs, and other technical specifications. |
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AbstractList | This paper presents a technology review of voltage-source-converter topologies for industrial medium-voltage drives. In this highly active area, different converter topologies and circuits have found their application in the market. This paper covers the high-power voltage-source inverter and the most used multilevel-inverter topologies, including the neutral-point-clamped, cascaded H-bridge, and flying-capacitor converters. This paper presents the operating principle of each topology and a review of the most relevant modulation methods, focused mainly on those used by industry. In addition, the latest advances and future trends of the technology are discussed. It is concluded that the topology and modulation-method selection are closely related to each particular application, leaving a space on the market for all the different solutions, depending on their unique features and limitations like power or voltage level, dynamic performance, reliability, costs, and other technical specifications. This paper presents a technology review of voltage-source-converter topologies for industrial medium-voltage drives. In this highly active area, different converter topologies and circuits have found their application in the market. [abstract truncated by publisher]. |
Author | Rodriguez, J. Pontt, J.O. Kouro, S. Bin Wu Bernet, S. |
Author_xml | – sequence: 1 givenname: J. surname: Rodriguez fullname: Rodriguez, J. organization: Univ. Tecnica Federico Santa Marfa, Valparaiso – sequence: 2 givenname: S. surname: Bernet fullname: Bernet, S. – sequence: 3 surname: Bin Wu fullname: Bin Wu – sequence: 4 givenname: J.O. surname: Pontt fullname: Pontt, J.O. – sequence: 5 givenname: S. surname: Kouro fullname: Kouro, S. |
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CODEN | ITIED6 |
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Snippet | This paper presents a technology review of voltage-source-converter topologies for industrial medium-voltage drives. In this highly active area, different... |
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SubjectTerms | Cement industry Circuit topology Converters Costs Electric potential High-power applications Inverters Markets Mechanical variables control Medium voltage Metals industry Modulation Multilevel multilevel converters Power electronics Space technology Specifications Thyristors Topology Voltage voltage-source inverters (VSIs) |
Title | Multilevel Voltage-Source-Converter Topologies for Industrial Medium-Voltage Drives |
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