Search results for: POWER ELECTRONICS, BOOST-BUCK CONVERTER, Z-INVERTER, NPC-INVERTER - Bridge of Knowledge

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Search results for: POWER ELECTRONICS, BOOST-BUCK CONVERTER, Z-INVERTER, NPC-INVERTER

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Search results for: POWER ELECTRONICS, BOOST-BUCK CONVERTER, Z-INVERTER, NPC-INVERTER

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Search results for: POWER ELECTRONICS, BOOST-BUCK CONVERTER, Z-INVERTER, NPC-INVERTER

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Search results for: POWER ELECTRONICS, BOOST-BUCK CONVERTER, Z-INVERTER, NPC-INVERTER

  • Novel single-stage buck-boost inverter with unfolding circuit

    Publication

    - Year 2017

    A novel solution of a single-stage buck-boost inverter with unfolding circuit at the output stage is presented. The inverter has a wide range of input voltage regulation, minimum passive components and a very flexible control structure. It can be applied for renewable energy systems where high power density is required. Our simulation results confirmed all theoretical statements

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  • MPPT and GMPPT Implementation for Buck-Boost Mode Control of quasi-Z-Source Inverter

    Publication
    • O. Husev
    • D. Vinnikov
    • C. Roncero-Clemente
    • F. Blaabjerg
    • R. Strzelecki

    - IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS - Year 2022

    The focus is on the maximum power point tracking implementation for the buck-boost voltage mode control of a single-phase multilevel inverter based on a three-level neutral point clamped quasi-Z-source topology. To utilize shoot-through states only when boost function is needed and avoid it in the buck mode, two different control approaches are required. This work proposes merged control system which provides switching between...

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  • Comparison of Impedance-Source Networks for Two and Multilevel Buck–Boost Inverter Applications

    Publication
    • O. Husev
    • F. Blaabjerg
    • C. Roncero-Clemente
    • E. Romero-Cadaval
    • D. Vinnikov
    • Y. Siwakoti
    • R. Strzelecki

    - IEEE TRANSACTIONS ON POWER ELECTRONICS - Year 2016

    mpedance-source networks are an increasingly popular solution in power converter applications, especially in single-stage buck-boost power conversion to avoid additional front-end dc-dc power converters. In the survey papers published, no analytical comparisons of different topologies have been described, which makes it difficult to choose the best option. Thus, the aim of this paper is to present a comprehensive analytical comparison...

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  • Design and experimental validation of a single-stage PV string inverter with optimal number of interleaved buck-boost cells.

    Publication

    - ENERGIES - Year 2021

    Increasing converter power density is a problem of topical interest. This paper discusses an interleaved approach of the efficiency increase in the buck-boost stage of an inverter with unfolding circuit in terms of losses in semiconductors, output voltage ripples and power density. Main trends in the power converter development are reviewed. A losses model was designed and used for the proposed solution to find an optimal number...

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  • Buck-Boost Inverters with Symmetrical Passive Four-terminal Networks

    Publication

    Alternating Voltage Inverters (Converters) supplied by low-voltage sources DC (ex. fuel cell, photovoltaic cell) are most frequently realized on the basis of the three fundamental topologies: a) PWM voltage inverter with boost-converter" system, b) PWM voltage inverter with transformed converter DC/DC in the ,,boost-converter" system, c) PWM current converter. However none of these solutions is claimed to be the best and dominant...

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