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Power Electronic System Design: Linking Differential Equations, Linear Algebra, and Implicit Functions

Autor Keng C. Wu
en Limba Engleză Paperback – 22 iun 2021
Power Processing Circuits Design seamlessly infuses important mathematical models and approaches into the optimization of power processing circuits and linear systems. The work unites a constellation of challenging mathematical topics centered on differential equations, linear algebra and implicit functions, with multiple perspectives from electrical, mathematical and physical viewpoints, including power handling components, power filtering and power regulation. Power applications covered encompass first order RC and RL, second order RLC circuits with periodic drives, constant current source, close-loop feedback practices, control loop types, linear regulator, switch-mode regulator and rotation control.

  • Outlines the physical meaning of differential forms and integral forms in designing circuits for power applications
  • Delivers techniques to set up linear algebraic matrix representations of complex circuits
  • Explores key approaches obtaining steady state and describes methods using implicit functions for close-loop representation
  • Describes how to implement vector representation of rotational driving sources
  • Supplemented by MATLAB implementations
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Specificații

ISBN-13: 9780323885423
ISBN-10: 032388542X
Pagini: 405
Ilustrații: Approx. 300 illustrations
Dimensiuni: 152 x 229 x 22 mm
Greutate: 0.54 kg
Editura: ELSEVIER SCIENCE

Public țintă

Primary: Early career power and electrical engineers interested in the use of mathematics to design power processing solutions, component selections, and performance verification in power engineering applications.
Secondary: Researchers and practitioners in power systems and electrical engineering interested in power electronics-enabled electric power distribution systems and smart grids.

Cuprins

1. Capacitor and Inductor2. First Order Circuits3. Current Source4. Second Order5. Gain Blocks6. Feedback Approaches7. Control Practices8. Linear Regulator9. Switch-mode DC/DC converters10. AC drives, rectification and inductive loads11. Rotation, Three Phase Synthesis, and Space Vector Concepts