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High-frequency soft-switching transf...
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Xiao, Huafeng.
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High-frequency soft-switching transformerless grid-connected inverters
Record Type:
Electronic resources : Monograph/item
Title/Author:
High-frequency soft-switching transformerless grid-connected inverters/ by Huafeng Xiao ... [et al.].
Author:
Xiao, Huafeng.
Published:
Singapore :Springer Nature Singapore : : 2022.,
Description:
vii, 162 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction -- High-Frequency Transformerless Grid-Connected Inverters and Related Issues -- Zero-Current-Transition TLIs with Switching-Loss-Free -- Zero-Current-Transition TLIs with Full Power Factor Range -- Zero-Voltage-Transition TLIs with Single-Quadrant Resonance Networks -- Zero-Voltage-Transition TLIs with Two-Quadrant Resonance Networks -- Summary.
Contained By:
Springer Nature eBook
Subject:
Electric inverters. -
Online resource:
https://doi.org/10.1007/978-981-19-3038-6
ISBN:
9789811930386
High-frequency soft-switching transformerless grid-connected inverters
Xiao, Huafeng.
High-frequency soft-switching transformerless grid-connected inverters
[electronic resource] /by Huafeng Xiao ... [et al.]. - Singapore :Springer Nature Singapore :2022. - vii, 162 p. :ill., digital ;24 cm. - CPSS power electronics series,2520-8861. - CPSS power electronics series..
Introduction -- High-Frequency Transformerless Grid-Connected Inverters and Related Issues -- Zero-Current-Transition TLIs with Switching-Loss-Free -- Zero-Current-Transition TLIs with Full Power Factor Range -- Zero-Voltage-Transition TLIs with Single-Quadrant Resonance Networks -- Zero-Voltage-Transition TLIs with Two-Quadrant Resonance Networks -- Summary.
This book is essential and valuable reference for graduate students and academics majored in power electronics, engineers engaged in developing distributed grid-connected inverters, and senior undergraduate students majored in electrical engineering and automation engineering. Soft-switching (SS) technique is an important way to achieve high conversion efficiency and high switching frequency for power converters, which is beneficial to improve power density and reduce volume and cost of power electronics equipment. This book mainly discusses SS technique for transformerless grid-connected inverters (TLIs), and a SS configuration named as "Freewheeling-Resonance-Tank Inverters" is proposed for TLIs fulfilling requirements of switching loss-free, full power factor range, and constant common-mode voltage performance. The detailed theoretical analysis and experimental validations are presented from ZCT and ZVT type topologies, respectively.
ISBN: 9789811930386
Standard No.: 10.1007/978-981-19-3038-6doiSubjects--Topical Terms:
909672
Electric inverters.
LC Class. No.: TK7872.I65
Dewey Class. No.: 621.3815322
High-frequency soft-switching transformerless grid-connected inverters
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Introduction -- High-Frequency Transformerless Grid-Connected Inverters and Related Issues -- Zero-Current-Transition TLIs with Switching-Loss-Free -- Zero-Current-Transition TLIs with Full Power Factor Range -- Zero-Voltage-Transition TLIs with Single-Quadrant Resonance Networks -- Zero-Voltage-Transition TLIs with Two-Quadrant Resonance Networks -- Summary.
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This book is essential and valuable reference for graduate students and academics majored in power electronics, engineers engaged in developing distributed grid-connected inverters, and senior undergraduate students majored in electrical engineering and automation engineering. Soft-switching (SS) technique is an important way to achieve high conversion efficiency and high switching frequency for power converters, which is beneficial to improve power density and reduce volume and cost of power electronics equipment. This book mainly discusses SS technique for transformerless grid-connected inverters (TLIs), and a SS configuration named as "Freewheeling-Resonance-Tank Inverters" is proposed for TLIs fulfilling requirements of switching loss-free, full power factor range, and constant common-mode voltage performance. The detailed theoretical analysis and experimental validations are presented from ZCT and ZVT type topologies, respectively.
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Engineering (SpringerNature-11647)
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