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This book aims to investigate emerging power quality and stability
problems as well as their solutions in more-electronics power
systems. The majority of methods presented here are validated
through simulation and/or experimental results, thereby improving
their credibility. The ultimate objective of these methods is to
achieve secured operation of modern power systems with increased
(up to 100%) renewable energy penetration, which is an emerging
topic in this field. Readers will not only learn about the
knowledge of more-electronics power systems but also the
step-by-step process of how they can implement this to their
research work or industrial practice. This book caters to engineers
and academics working in the field of power systems with the main
focus of improving power quality and stability.
This book aims to investigate emerging power quality and stability
problems as well as their solutions in more-electronics power
systems. The majority of methods presented here are validated
through simulation and/or experimental results, thereby improving
their credibility. The ultimate objective of these methods is to
achieve secured operation of modern power systems with increased
(up to 100%) renewable energy penetration, which is an emerging
topic in this field. Readers will not only learn about the
knowledge of more-electronics power systems but also the
step-by-step process of how they can implement this to their
research work or industrial practice. This book caters to engineers
and academics working in the field of power systems with the main
focus of improving power quality and stability.
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