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Indrek Roasto

Researcher at Tallinn University of Technology

Publications -  104
Citations -  1818

Indrek Roasto is an academic researcher from Tallinn University of Technology. The author has contributed to research in topics: Flyback converter & Forward converter. The author has an hindex of 17, co-authored 100 publications receiving 1599 citations.

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Quasi-Z-Source-Based Isolated DC/DC Converters for Distributed Power Generation

TL;DR: This paper presents new step-up dc/dc converter topologies intended for distributed power generation systems and describes the operation principles of the proposed topologies and analyzes the theoretical and experimental results.
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Power converter interfaces for electrochemical energy storage systems – A review

TL;DR: In this paper, a review of the literature covering the various types of interfaces developed for electrochemical energy storage systems is presented, including standard, multilevel and multiport technology.
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Step-Up DC/DC Converters With Cascaded Quasi-Z-Source Network

TL;DR: The proposed cascaded qZSI inherits all the advantages of the traditional solution (voltage boost and buck functions in a single stage, continuous input current, and improved reliability) and reduces the shoot-through duty cycle by over 30% at the same voltage boost factor.
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High-Performance Quasi-Z-Source Series Resonant DC-DC Converter for Photovoltaic Module Level Power Electronics Applications

TL;DR: In this paper, a quasi-Z-source series resonant dc-dc converter is proposed for photovoltaic module-level power electronics applications, where the shoot-through pulse width modulation and phase shift modulation are combined in a single switching stage to realize the boost and buck operating modes.
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New Shoot-Through Control Methods for qZSI-Based DC/DC Converters

TL;DR: A new modulation technique, pulse width modulation (PWM) with shifted shoot-through, is compared with the conventional PWM shoot- through control method, and the new method reduces switching frequency of bottom side transistors and inherently features partial soft switching.