ELECTRIC POWER AND ENERGY DISTRIBUTION SYSTEMS: MODELS, METHODS, AND APPLICATIONS
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Electric Power and Energy Distribution Systems
Provides a comprehensive introduction to today’s electric power distribution systems, perfect for advanced students and industry professionals
Due to growth of renewable resources and advances in information technology, electric power distribution systems have undergone significant changes over the past fifteen years. The expansion of technologies such as consumer rooftop solar panels, electric vehicles, smart energy storage, and automated metering infrastructure make planning and operating power distribution systems challenging. Integration of advanced technologies at the distribution level is critical for realizing higher efficiency, reliability, resiliency, and flexibility.
Electric Power and Energy Distribution Systems: Models, Methods, and Applications provides comprehensive coverage of the key aspects of conventional and emerging distribution systems, including modeling, methodologies, analysis, planning, economics, distribution automation, reliability, grounding, protection, power quality, and distributed energy resources. Written by experts with decades of experience in academia and industry, this textbook integrates theory and practice to present a well-balanced treatment of topics relevant to modern electric power distribution systems. Detailed chapters address modeling of distribution system components, load characteristics and optimal selection of devices, microgrids and other types of energy resources, the challenges associated with the planning and operation of distribution systems, and more.
Covers a wide range of both legacy and contemporary issues supported by rigorous analysis and practical insights
Provides in-depth examination of outage management, voltage control, system restoration, and other operational functions
Features real-world case studies of distribution automation functions in urban and rural power systems
Discusses technologies for distributed energy resources (DER) with a focus on wind, solar, and battery storage
Describes fundamental economics in the context of power distribution systems, such as the impact of tariffs on selling electricity to consumers of different types
Explains the architecture of distribution system protection, including fuses, reclosers, overcurrent relays, and grounding practices
The ideal textbook for advanced undergraduate and first-year graduate courses, Electric Power and Energy Distribution Systems: Models, Methods, and Applications is also an excellent reference for professionals with limited prior knowledge about distribution systems.
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ELECTRIC POWER SYSTEMS WITH RENEWABLES: SIMULATIONS USING PSS®E
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Electric Power Systems with Renewables
Concise, balanced, and fundamentals-based resource providing coverage of power system operation and planning, including simulations using PSS®E software
Electric Power Systems with Renewables provides a comprehensive treatment of various topics related to power systems with an emphasis on renewable energy integration into power systems. The updated use cases and methods in the book build upon the climate change science and renewables currently being integrated with the grid and the ability to manage resilience for electrifying transportation and related power systems as societies identify more ways to move towards a carbon-free future.
Simulation examples and software support are provided by integrating the educational version of PSS®E. The newly revised edition includes new topics on the intelligent use of PSS®E simulation software, presents a short introduction to Python (a widely used software in the power industry), and provides new examples and back-of-the-chapter homework problems to further aid in information retention.
Written by two highly qualified authors with significant experience in the field, Electric Power Systems with Renewables also contains information on:
Electric energy and the environment, covering hydro power, fossil-fuel based power plants, nuclear power, renewable energy, and distributed generation (DG)
Power flow in power system networks covers basic power flow equations, the Newton-Raphson procedure, sensitivity analysis, and a new remote bus voltage control concept
Transformers and generators in power systems, covering basic principles of operation, a simplified model, and per-unit representation
High voltage DC (HVDC) transmission systems-current-link, and voltage-link systems
Associated with this textbook, there is a website from which the simulation files can be downloaded for use in PSS®E and Python. It also contains short videos to simplify the use of these software. This website will be regularly updated.
Electric Power Systems with Renewables serves as a highly useful textbook for both undergraduate and graduate students in Electrical and Computer Engineering (ECE). It is also an appropriate resource for students outside of ECE who have the prerequisites, such as in mechanical, civil, and chemical engineering. Practicing engineers will greatly benefit with its industry-relevant approach to meet the present-day needs.
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