2009•IEEE Transactions on Industrial ElectronicsRequires access

Performance Evaluation of Fault-Tolerant Neutral-Point-Clamped Converters

Salvador Ceballos, Josep Pou, Eider Robles, Jordi Zaragoza, José Luis Martín Martín

Open publisher page 123 citations

Abstract

This paper presents a study of the fault tolerance capacity of a neutral-point-clamped converter. Different faults in power semiconductors are considered, and the available postfault states of the converter are shown. In regard of the operation limits, two possible solutions are presented. In these solutions, adding a reduced number of additional components, the behavior of the converter when a switch fails improves considerably. Furthermore, an analysis of the neutral-point voltage balancing conditions after a fault and reconfiguration of the system is also evaluated. Experimental results that prove the correct operation of the proposed topologies are shown.

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What this paper is about

This paper presents a study of the fault tolerance capacity of a neutral-point-clamped converter. Different faults in power semiconductors are considered, and the available postfault states of the converter are shown. In regard of the operation limits, two possible solutions are presented. In these solutions, adding a reduced number of additional components, the behavior of the converter when a switch fails improves considerably. Furthermore, an analysis of the neutral-point voltage balancing conditions after a fault and reconfiguration of the system is also evaluated. Experimental results that prove the correct operation of the proposed topologies are shown.

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OpenAlex reports 123 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper presents a study of the fault tolerance capacity of a neutral-point-clamped converter. Different faults in power semiconductors are considered, and the available postfault states of the converter are shown. In regard of the operation limits, two possible solutions are presented. In these solutions, adding a reduced number of additional components, the behavior of the converter when a switch fails improves considerably. Furthermore, an analysis of the neutral-point voltage balancing conditions after a fault and reconfiguration of the system is also evaluated. Experimental results that prove the correct operation of the proposed topologies are shown.

Key concepts: Converters, Network topology, Fault tolerance, Control reconfiguration, Control theory (sociology), Topology (electrical circuits), Point (geometry), Voltage

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