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This book presents the state-of-the-art approach for transmission
line protection schemes for smart power grid. It provides a
comprehensive solution for real-time development of numerical
relaying schemes for future power grids which can minimize cascade
tripping and widespread blackout problems prevailing all around the
world. The book also includes the traditional approach for
transmission line protection along with issues and challenges in
protection philosophy. It highlights the issues for sheltering
power grid from unwanted hazards with very fundamental approach.
The book follows a step-by-step approach for resolving critical
issues like high impedance faults, power swing detection and
auto-reclosing schemes with adaptive protection process. The book
also covers the topic of hardware solution for real-time
implementation of auto-reclosing scheme for transmission line
protection schemes along with comparative analysis with the
recently developed analytical approach such as Artificial Neural
Network (ANN), Support Vector Machine (SVM) and other machine
learning algorithms. It will be useful to researchers and industry
professionals and students in the fields of power system
protection.
This book provides a comprehensive overview of protection schemes
used for power transformers and describes the internal fault
conditions and external abnormalities that may disrupt the
operation of a power transformer. It also highlights the issues of
current protective schemes, which pose several challenges in terms
of the detection of internal faults and abnormalities, including
computational burden, reduced accuracy, difficulty to implement,
increased cost, computational complexity, impermeability to high
resistance faults (HRF), and malfunction in conditions like
cross-country fault. To address these problems, the book develops
an effective novel transformer protection scheme that can eliminate
all the said difficulties using an innovative algorithm. Given its
scope, it is a useful resource for researchers and practitioners
working in the field of power system protection, allowing them to
design novel protection schemes, and providing insights into the
hardware validation of developed technique.
This book presents the state-of-the-art approach for transmission
line protection schemes for smart power grid. It provides a
comprehensive solution for real-time development of numerical
relaying schemes for future power grids which can minimize cascade
tripping and widespread blackout problems prevailing all around the
world. The book also includes the traditional approach for
transmission line protection along with issues and challenges in
protection philosophy. It highlights the issues for sheltering
power grid from unwanted hazards with very fundamental approach.
The book follows a step-by-step approach for resolving critical
issues like high impedance faults, power swing detection and
auto-reclosing schemes with adaptive protection process. The book
also covers the topic of hardware solution for real-time
implementation of auto-reclosing scheme for transmission line
protection schemes along with comparative analysis with the
recently developed analytical approach such as Artificial Neural
Network (ANN), Support Vector Machine (SVM) and other machine
learning algorithms. It will be useful to researchers and industry
professionals and students in the fields of power system
protection.
This book provides a comprehensive overview of protection schemes
used for power transformers and describes the internal fault
conditions and external abnormalities that may disrupt the
operation of a power transformer. It also highlights the issues of
current protective schemes, which pose several challenges in terms
of the detection of internal faults and abnormalities, including
computational burden, reduced accuracy, difficulty to implement,
increased cost, computational complexity, impermeability to high
resistance faults (HRF), and malfunction in conditions like
cross-country fault. To address these problems, the book develops
an effective novel transformer protection scheme that can eliminate
all the said difficulties using an innovative algorithm. Given its
scope, it is a useful resource for researchers and practitioners
working in the field of power system protection, allowing them to
design novel protection schemes, and providing insights into the
hardware validation of developed technique.
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