Wind Energy Course for Electrical Engineering

Posted By: Free butterfly

Wind Energy Course for Electrical Engineering: Learn the Fundamentals of Wind Energy Systems With Step By Step Examples Without Any Previous Knowledge by Ahmed Mahdy
English | 2022 | ISBN: N/A | ASIN: B0B4FFKMF6 | 234 pages | PDF | 12 Mb

"Complete 2022 Wind Energy Course for Electrical Engineering"
The only course out there with everything you need to know about Wind Energy from A to Z
Throughout the course you will learn:<ul class="a-unordered-list a-vertical">
  • Types of wind turbines.
  • Rotor solidity and selection of the number of rotor blades.
  • Gearbox in wind turbines.
  • The power extracted by the turbine from the wind.
  • Betz limit and maximum rotor efficiency.
  • Factors affecting wind speed and density.
  • Applied force on the wind turbine, torque coefficient, and the importance of the TSR.
  • Wind turbine generator characteristics.
  • Effect of the rotor diameter and generator size on power.
  • Wind turbines spacing.
  • Wind farm feasibility study.
  • Weibull and Rayleigh probability density functions.
  • Determination of Weibull parameters.
  • Determination of Weibull parameters using the graphical method.
  • Aerodynamics of wind turbines.
  • Pitch-controlled wind turbines.
  • Passive stall controlled wind turbines.
  • Active stall controlled wind turbines.
  • Maximum power point tracking in wind turbines.
  • Tip speed ratio (TSR) control.
  • Optimal torque control (OT) MPPT algorithm.
  • Power signal feedback (PSF) control.
  • Perturbation and observation (P&O) or hill-climb searching (HCS).
  • Electricity generation using wind turbines.
  • Permanent magnet synchronous generator (PMSG).
  • Wound rotor synchronous generator (WRSG).
  • Doubly-fed induction generator (DFIG).
  • Brushless permanent magnet DC generator (PMDC).
  • Squirrel-cage induction generator.
  • Wound rotor induction generator.
  • Tubular steel wind turbine tower.
  • Lattice wind turbine tower.
  • Concrete wind turbine tower.
  • Hybrid wind turbine tower.
  • Brakes in the wind turbine.
  • Rotor brakes in the wind turbine.
  • Pitch drive or aerodynamic brakes in the wind turbine.

  • After Taking This Course, You Will Be Able To
  • Understand everything about wind energy systems such as the basic components, factors affecting the wind generation, the different probability distribution functions used to represent wind data, and wind feasibility study.
  • Understand different types of control systems used in the wind turbine and the different types of electrical generators utilized.
  • You will be able to simulate the wind turbine system in both ETAP and MATLAB programs.

  • If you've been looking for ONE COURSE with in-depth insight into Wind Energy, take this course.

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