2013Journal of Power SupplyRequires access

Research on Commutation Strategy for Two-Stage Matrix Converter

Wang Zhao

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Abstract

Aiming at the special commutation problem of two-stage matrix converter (TSMC), a commutation strategy is studied, which makes TSMC work safely and reliably. The commutation principle was deduced with an experimental setup. At last, an experimental prototype was established based on XE164+CPLD. The experimental results indicate that the four-step commutation is a safe and reliable commutation method, which would not affect the input and output performance, but also makes TSMC work safely and reliably.

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What this paper is about

Aiming at the special commutation problem of two-stage matrix converter (TSMC), a commutation strategy is studied, which makes TSMC work safely and reliably. The commutation principle was deduced with an experimental setup. At last, an experimental prototype was established based on XE164+CPLD. The experimental results indicate that the four-step commutation is a safe and reliable commutation method, which would not affect the input and output performance, but also makes TSMC work safely and reliably.

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Available abstract

Aiming at the special commutation problem of two-stage matrix converter (TSMC), a commutation strategy is studied, which makes TSMC work safely and reliably. The commutation principle was deduced with an experimental setup. At last, an experimental prototype was established based on XE164+CPLD. The experimental results indicate that the four-step commutation is a safe and reliable commutation method, which would not affect the input and output performance, but also makes TSMC work safely and reliably.

Key concepts: Commutation, Commutation cell, Control theory (sociology), Work (physics), Matrix (chemical analysis), Computer science, Stage (stratigraphy), Engineering

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