Control techniques for DC-link voltage ripples minimization in cascaded multilevel converter structures

Cascaded multilevel converters allow driving high power AC motors. Unfortunately, each H-bridge module is single-phase and the DC-link capacitance must be very large to reduce the DC-link voltage ripple. This paper shows how to minimize such a ripple by using new devised control techniques, while th...

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Hauptverfasser: Leskovar, S., Marchesoni, M.
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Marchesoni, M.
description Cascaded multilevel converters allow driving high power AC motors. Unfortunately, each H-bridge module is single-phase and the DC-link capacitance must be very large to reduce the DC-link voltage ripple. This paper shows how to minimize such a ripple by using new devised control techniques, while the most significant results are reported
doi_str_mv 10.1109/EPE.2005.219659
format Conference Proceeding
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Unfortunately, each H-bridge module is single-phase and the DC-link capacitance must be very large to reduce the DC-link voltage ripple. This paper shows how to minimize such a ripple by using new devised control techniques, while the most significant results are reported</abstract><pub>IEEE</pub><doi>10.1109/EPE.2005.219659</doi></addata></record>
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subjects AC motors
Adjustable speed drive
Capacitance
Control systems
Converter control
Costs
Electronic components
Modulation strategy
Multilevel converter
Passive filter
Power system management
Thyristors
Topology
Uniform resource locators
Voltage control
title Control techniques for DC-link voltage ripples minimization in cascaded multilevel converter structures
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