Power Systems Engineering and Mathematics International Series of Monographs in Electrical Engineering – PDF/EPUB Version Downloadable
$49.99
Author(s): U. G. Knight
Publisher: Pergamon
ISBN: 9780080166032
Edition:
Power Systems Engineering and Mathematics investigates the application of mathematical aids, particularly the techniques of resource planning, to some of the technical-economic problems of power systems engineering. Topics covered include the process of engineering design and the use of computers in system design and operation; power system planning and operation; time scales and computation in system operation; and load prediction and generation capacity. This volume is comprised of 13 chapters and begins by outlining the stages in the synthesis of designs (or operating states) for engineering systems in general, as well as some of the mathematical techniques that can be used. The next chapter relates these stages to power system design and operation, indicating the principal factors that determine a power system’s viable and economic expansion and operation. The problem of choosing the standards for transmission and distribution plants is then considered, together with the choice of generation (“”plant mix””) to meet the total requirement and the sequence of studies and decisions required in system operation. The remaining chapters deal with security assessment, scheduling of a generating plant, and the dispatching of generation. This book is intended for engineers and managers in the electricity supply industry, advanced students of electrical engineering, and workers in other industries with interest in resource allocation problems.
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Power Systems Engineering and Mathematics International Series of Monographs in Electrical Engineering – PDF/EPUB Version Downloadable
$49.99
Author(s): U. G. Knight
Publisher: Pergamon
ISBN: 9780080182940
Edition:
International Series of Monographs in Electrical Engineering, Volume 3: Power Systems Engineering and Mathematics focuses on the principles, methodologies, and approaches employed in power systems engineering and mathematics. The publication first elaborates on engineering design and mathematical programming, power system planning and operation, and frequently used analytical techniques. Discussions focus on transient and steady-state stability, power flows and voltage, stages in system operation, transition from planning to operation, stages in system planning and design, objectives of system planning, application of computers in system design and operation, and engineering design. The text then tackles standardization studies for network plant, generation expansion studies, network configuration studies, and probability and planning. The manuscript explores the dispatching of generation, scheduling of generating plant, and load prediction and generation capacity. Topics include reliability analysis in network planning, risk and uncertainty in investment decisions, prediction of demand, optimum maintenance programming, and security assessment against excessive voltage changes. The publication is a valuable source of data for engineers and researchers interested in power systems engineering and mathematics.
