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This timely book examines the significant challenges and possible
solutions for enabling efficient modernization of electric power
systems. It addresses rapidly changing electricity infrastructure
needs and technical requirements and provides a practical
introduction to the past, present, and future of energy efficiency
and power quality concepts. The book also looks at recent
developments in custom power conditioners that help
improve the performance of transmission and distribution systems,
ensure reliability, and reduce costs. Modernization of
Electric Power Systems is a valuable resource for practicing
engineers, students, and researchers interested in exploring and
implementing energy efficiency and power quality in modern energy
systems with renewables.Â
In an era of increasing contributions from intermittent renewable
resources, energy storage is becoming more important to ensure a
resilient and reliable electricity supply. Energy Storage at
Different Voltage Levels presents the technology, integration and
market aspects of energy storage in the various generation,
transmission, distribution, and customer levels of the grid.
Starting with a comprehensive overview of energy storage
technologies and their emerging codes and standards, the book
discusses energy storage capacity requirements in electricity mix
scenarios at different levels; energy storage in microgrids; energy
storage in electricity markets; the role of storage in transmission
investment deferral and management of future planning uncertainty;
sizing of battery energy storage for end user application under
time of use pricing; evaluation of multiple storage benefits and
optimization of energy storage operations in distribution networks;
use and role of flywheel energy storage systems; forecasting and
optimization for multi-purpose application of energy storage
systems to deliver grid services (a case study of the smarter
network storage project); and optimal coordination between
generation and storage under uncertainties. Also included are
country-specific case studies from Romania, Italy and Turkey.
Decision Making Applications in Modern Power Systems presents an
enhanced decision-making framework for power systems. Designed as
an introduction to enhanced electricity system analysis using
decision-making tools, it provides an overview of the different
elements, levels and actors involved within an integrated framework
for decision-making in the power sector. In addition, it presents a
state-of-play on current energy systems, strategies, alternatives,
viewpoints and priorities in support of decision-making in the
electric power sector, including discussions of energy storage and
smart grids. As a practical training guide on theoretical
developments and the application of advanced methods for practical
electrical energy engineering problems, this reference is ideal for
use in establishing medium-term and long-term strategic plans for
the electric power and energy sectors.
Uncertainties in Modern Power Systems combines several aspects of
uncertainty management in power systems at the planning and
operation stages within an integrated framework. This book provides
the state-of-the-art in electric network planning, including
time-scales, reliability, quality, optimal allocation of
compensators and distributed generators, mathematical formulation,
and search algorithms. The book introduces innovative research
outcomes, programs, algorithms, and approaches that consolidate the
present status and future opportunities and challenges of power
systems. The book also offers a comprehensive description of the
overall process in terms of understanding, creating, data
gathering, and managing complex electrical engineering applications
with uncertainties. This reference is useful for researchers,
engineers, and operators in power distribution systems.
Classical and Recent Aspects of Power System Optimization presents
conventional and meta-heuristic optimization methods and algorithms
for power system studies. The classic aspects of optimization in
power systems, such as optimal power flow, economic dispatch, unit
commitment and power quality optimization are covered, as are
issues relating to distributed generation sizing, allocation
problems, scheduling of renewable resources, energy storage, power
reserve based problems, efficient use of smart grid capabilities,
and protection studies in modern power systems. The book brings
together innovative research outcomes, programs, algorithms and
approaches that consolidate the present state and future challenges
for power.
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