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Optimal Power Flow Using FACTS Devices: Soft Computing Techniques
develops intelligent algorithms to analyze optimal power flow (OPF)
and to enhance the power transfer capability of the transmission
line with reduced congestion. By providing elaborate studies on
FACTS devices and by using soft computing metaheuristics algorithms
such as Firefly, Cuckoo, Flower Pollination, and others., this book
enables readers to know about algorithms in real-time power system
applications and damping of subsynchronous resonance (SSR)
oscillations. Key features of this book include: Offers
comprehensive review of FACTS devices and the importance of soft
computing techniques for solving OPF. Describes the various
problems associated with power system operation and control.
Addresses issues of SSR in power systems and proposes soft
techniques for SSR analysis in power systems. Demonstrates of the
importance of SSR and congestion management using intelligent FACTS
devices as part of OPF. Covers power systems’ reliability,
quality, cost-effectiveness, effects on customer goodwill, and
pollution limits, including the deregulation of markets and
different intelligent controllers. Optimal Power Flow Using FACTS
Devices: Soft Computing Techniques is aimed at researchers and
professionals in the field of power systems.
Optimal Power Flow Using FACTS Devices: Soft Computing Techniques
develops intelligent algorithms to analyze optimal power flow (OPF)
and to enhance the power transfer capability of the transmission
line with reduced congestion. By providing elaborate studies on
FACTS devices and by using soft computing metaheuristics algorithms
such as Firefly, Cuckoo, Flower Pollination, and others., this book
enables readers to know about algorithms in real-time power system
applications and damping of subsynchronous resonance (SSR)
oscillations. Key features of this book include: Offers
comprehensive review of FACTS devices and the importance of soft
computing techniques for solving OPF. Describes the various
problems associated with power system operation and control.
Addresses issues of SSR in power systems and proposes soft
techniques for SSR analysis in power systems. Demonstrates of the
importance of SSR and congestion management using intelligent FACTS
devices as part of OPF. Covers power systems' reliability, quality,
cost-effectiveness, effects on customer goodwill, and pollution
limits, including the deregulation of markets and different
intelligent controllers. Optimal Power Flow Using FACTS Devices:
Soft Computing Techniques is aimed at researchers and professionals
in the field of power systems.
This book provides comprehensive insight into the fault detection
techniques implemented for photovoltaic (PV) panels. It includes
studies related to predictive maintenance needed to improve the
performance of the solar PV systems using Artificial Intelligence
(AI) techniques. The readers gain knowledge on the fault
identification algorithm and the significance of all such
algorithms in real-time power system applications. Gives detailed
overview of fundamental concepts of fault diagnosis algorithm for
solar PV system Explains AC and DC side of the solar PV
system-based electricity generation with real-time examples Covers
effective extraction of the energy from solar radiation Illustrates
artificial intelligence techniques for detecting the faults
occurring in the solar PV system Includes MATLAB (R) based
simulations and results on fault diagnosis including case studies
This book is aimed at researchers, professionals and graduate
students in electrical engineering, artificial intelligence,
control algorithms, energy engineering, photovoltaic systems,
industrial electronics.
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