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Electric power system stability --- Lyapunov functions --- 621.315 --- Liapunov functions --- Functions, Liapunov --- Differential equations --- Stability of electric power systems --- Transients (Electricity) --- Electric power systems --- Transmission of electric energy. Power distribution and telecommunication lines. Conductors. Insulating materials. Accessories. Design, construction of lines --- Control --- Electric power system stability. --- Lyapunov functions. --- 621.315 Transmission of electric energy. Power distribution and telecommunication lines. Conductors. Insulating materials. Accessories. Design, construction of lines
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Electric power system stability. --- Electric machinery, Synchronous --- Electric power systems --- Réseaux électriques (Energie) --- Réseaux électriques (Energie) --- Mathematical models. --- Control. --- Stabilité --- Régulation
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Electric power systems --- Oscillations --- Réseaux électriques (Energie) --- Testing --- Essais --- Réseaux électriques (Energie)
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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, a 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 MATLAB TM files. Power System Dynamics and Stability: With Synchrophasor Measurement and Power System Toolbox, Second Edition combines theoretical as well as practical information for use as a text for formal instruction or for reference by working engineers.
Electric power system stability. --- Electric machinery, Synchronous --- Electric power systems --- Mathematical models. --- Control.
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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, a 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 MATLAB TM files. Power System Dynamics and Stability: With Synchrophasor Measurement and Power System Toolbox, Second Edition combines theoretical as well as practical information for use as a text for formal instruction or for reference by working engineers.
Electric power system stability. --- Electric machinery, Synchronous --- Electric power systems --- Mathematical models. --- Control.
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Electronics --- Electrical engineering --- elektrische energie --- engineering --- elektronica
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