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This book focuses on impedance source inverters, discussing their
classification, advantages, topologies, analysis methods, working
mechanisms, improvements, reliability, and applications. It
summarizes methods for suppressing DC-link voltage spikes and duty
loss, which can pose a problem for researchers; and presents novel,
efficient, steady state and transient analysis methods that are of
significant practical value, along with specific calculation
examples. Further, the book addresses the reliability of impedance
source inverters, adopting a methodology from reliability
engineering to do so. Given its scope, it offers a valuable
resource for researchers, engineers, and graduate students in
fields involving impedance source inverters and new energy sources.
This book focuses on impedance source inverters, discussing their
classification, advantages, topologies, analysis methods, working
mechanisms, improvements, reliability, and applications. It
summarizes methods for suppressing DC-link voltage spikes and duty
loss, which can pose a problem for researchers; and presents novel,
efficient, steady state and transient analysis methods that are of
significant practical value, along with specific calculation
examples. Further, the book addresses the reliability of impedance
source inverters, adopting a methodology from reliability
engineering to do so. Given its scope, it offers a valuable
resource for researchers, engineers, and graduate students in
fields involving impedance source inverters and new energy sources.
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