Time-scale Modeling of Dynamic Networks with Applications to Power Systems

Time-scale Modeling of Dynamic Networks with Applications to Power Systems PDF Author: Joe H. Chow
Publisher: Springer
ISBN:
Category : Computers
Languages : en
Pages : 236

Book Description


Time-Scale Modeling of Dynamic Networks with Applications to Power Systems

Time-Scale Modeling of Dynamic Networks with Applications to Power Systems PDF Author: J. H. Chow
Publisher:
ISBN: 9783662168172
Category :
Languages : en
Pages : 236

Book Description


Systems and Control Theory for Power Systems

Systems and Control Theory for Power Systems PDF Author: Joe H. Chow
Publisher: Springer Science & Business Media
ISBN: 9780387944388
Category : Computers
Languages : en
Pages : 436

Book Description
The articles in this volume cover power system model reduction, transient and voltage stability, nonlinear control, robust stability, computation and optimization and have been written by some of the leading researchers in these areas. This book should be of interest to power and control engineers, and applied mathematicians.

Time-scale Modelling of Dynamic Networks with Applications to Power Systems

Time-scale Modelling of Dynamic Networks with Applications to Power Systems PDF Author: J. H. Chow
Publisher:
ISBN:
Category :
Languages : en
Pages : 218

Book Description


Time-Scale Modeling of Dynamic Networks with Applications to Power Systems

Time-Scale Modeling of Dynamic Networks with Applications to Power Systems PDF Author: J.H. Chow
Publisher: Springer
ISBN:
Category : Computers
Languages : en
Pages : 236

Book Description


Applied Mathematics for Restructured Electric Power Systems

Applied Mathematics for Restructured Electric Power Systems PDF Author: Joe H. Chow
Publisher: Springer Science & Business Media
ISBN: 0387234713
Category : Technology & Engineering
Languages : en
Pages : 345

Book Description
Applied Mathematics for Restructured Electric Power Systems: Optimization, Control, and Computational Intelligence consists of chapters based on work presented at a National Science Foundation workshop organized in November 2003. The theme of the workshop was the use of applied mathematics to solve challenging power system problems. The areas included control, optimization, and computational intelligence. In addition to the introductory chapter, this book includes 12 chapters written by renowned experts in their respected fields. Each chapter follows a three-part format: (1) a description of an important power system problem or problems, (2) the current practice and/or particular research approaches, and (3) future research directions. Collectively, the technical areas discussed are voltage and oscillatory stability, power system security margins, hierarchical and decentralized control, stability monitoring, embedded optimization, neural network control with adaptive critic architecture, control tuning using genetic algorithms, and load forecasting and component prediction. This volume is intended for power systems researchers and professionals charged with solving electric and power system problems.

Power System Modeling, Computation, and Control

Power System Modeling, Computation, and Control PDF Author: Joe H. Chow
Publisher: John Wiley & Sons
ISBN: 1119546877
Category : Technology & Engineering
Languages : en
Pages : 664

Book Description
Provides students with an understanding of the modeling and practice in power system stability analysis and control design, as well as the computational tools used by commercial vendors Bringing together wind, FACTS, HVDC, and several other modern elements, this book gives readers everything they need to know about power systems. It makes learning complex power system concepts, models, and dynamics simpler and more efficient while providing modern viewpoints of power system analysis. Power System Modeling, Computation, and Control provides students with a new and detailed analysis of voltage stability; a simple example illustrating the BCU method of transient stability analysis; and one of only a few derivations of the transient synchronous machine model. It offers a discussion on reactive power consumption of induction motors during start-up to illustrate the low-voltage phenomenon observed in urban load centers. Damping controller designs using power system stabilizer, HVDC systems, static var compensator, and thyristor-controlled series compensation are also examined. In addition, there are chapters covering flexible AC transmission Systems (FACTS)—including both thyristor and voltage-sourced converter technology—and wind turbine generation and modeling. Simplifies the learning of complex power system concepts, models, and dynamics Provides chapters on power flow solution, voltage stability, simulation methods, transient stability, small signal stability, synchronous machine models (steady-state and dynamic models), excitation systems, and power system stabilizer design Includes advanced analysis of voltage stability, voltage recovery during motor starts, FACTS and their operation, damping control design using various control equipment, wind turbine models, and control Contains numerous examples, tables, figures of block diagrams, MATLAB plots, and problems involving real systems Written by experienced educators whose previous books and papers are used extensively by the international scientific community Power System Modeling, Computation, and Control is an ideal textbook for graduate students of the subject, as well as for power system engineers and control design professionals.

Power System Coherency and Model Reduction

Power System Coherency and Model Reduction PDF Author: Joe H. Chow
Publisher: Springer Science & Business Media
ISBN: 1461418038
Category : Technology & Engineering
Languages : en
Pages : 308

Book Description
"Power System Coherency and Model Reduction" provides a comprehensive treatment for understanding interarea modes in large power systems and obtaining reduced-order models using the coherency concept and selective modal analysis method. Both linear and nonlinear analysis methods are covered. This is a reference book for researchers interested in interarea oscillations and model reduction, and power engineers in developing reduced models for power system studies and control design.

Proceedings of the Ninth Power Systems Computation Conference

Proceedings of the Ninth Power Systems Computation Conference PDF Author: Cascais Portugal
Publisher: Elsevier
ISBN: 1483101053
Category : Computers
Languages : en
Pages : 1005

Book Description
Proceedings of the Ninth Power Systems Computation Conference

Power System Dynamics and Stability

Power System Dynamics and Stability PDF Author: Peter W. Sauer
Publisher: John Wiley & Sons
ISBN: 111935577X
Category : Technology & Engineering
Languages : en
Pages : 374

Book Description
Classic power system dynamics text now with phasor measurement and simulation toolbox This new edition addresses the needs of dynamic modeling and simulation relevant to power system planning, design, and operation, including a systematic derivation of synchronous machine dynamic models together with speed and voltage control subsystems. Reduced-order modeling based on integral manifolds is used as a firm basis for understanding the derivations and limitations of lower-order dynamic models. Following these developments, multi-machine model interconnected through the transmission network is formulated and simulated using numerical simulation methods. Energy function methods are discussed for direct evaluation of stability. Small-signal analysis is used for determining the electromechanical modes and mode-shapes, and for power system stabilizer design. Time-synchronized high-sampling-rate phasor measurement units (PMUs) to monitor power system disturbances have been implemented throughout North America and many other countries. In this second edition, new chapters on synchrophasor measurement and using the Power System Toolbox for dynamic simulation have been added. These new materials will reinforce power system dynamic aspects treated more analytically in the earlier chapters. Key features: Systematic derivation of synchronous machine dynamic models and simplification. Energy function methods with an emphasis on the potential energy boundary surface and the controlling unstable equilibrium point approaches. Phasor computation and synchrophasor data applications. Book companion website for instructors featuring solutions and PowerPoint files. Website for students featuring MATLABTM files. Power System Dynamics and Stability, 2nd Edition, with Synchrophasor Measurement and Power System Toolbox combines theoretical as well as practical information for use as a text for formal instruction or for reference by working engineers.