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This book reports on the latest findings in the application of the
wide area measurement systems (WAMS) in the analysis and control of
power systems. The book collects new research ideas and
achievements including a delay-dependent robust design method, a
wide area robust coordination strategy, a hybrid assessment and
choice method for wide area signals, a free-weighting matrices
method and its application, as well as the online identification
methods for low-frequency oscillations. The main original research
results of this book are a comprehensive summary of the authors'
latest six-year study. The book will be of interest to academic
researchers, R&D engineers and graduate students in power
systems who wish to learn the core principles, methods, algorithms,
and applications of the WAMS.
This book reports on the latest findings in the application of the
wide area measurement systems (WAMS) in the analysis and control of
power systems. The book collects new research ideas and
achievements including a delay-dependent robust design method, a
wide area robust coordination strategy, a hybrid assessment and
choice method for wide area signals, a free-weighting matrices
method and its application, as well as the online identification
methods for low-frequency oscillations. The main original research
results of this book are a comprehensive summary of the authors'
latest six-year study. The book will be of interest to academic
researchers, R&D engineers and graduate students in power
systems who wish to learn the core principles, methods, algorithms,
and applications of the WAMS.
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