Ultimate Wind Energy Course for Electrical Engineering

所在平台: Udemy

课程主页: https://www.udemy.com/course/wind-energy-course/

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课程名称:电气工程终极风能课程 概述:“电气工程终极风能课程”是唯一一门涵盖风能从头到尾所需知识的课程。在本课程中,您将学习以下内容: - 风力发电机的类型 - 旋翼坚固度与叶片数量选择 - 风力发电机中的齿轮箱 - 发电机从风中提取的功率 - Betz极限与最大旋翼效率 - 影响风速和密度的因素 - 风力发电机的受力、扭矩系数及转速比的重要性 - 风力发电机发电特性 - 旋翼直径与发电机尺寸对功率的影响 - 风力发电机的间距 - 风电场的可行性研究 - Weibull与Rayleigh概率密度函数 - Weibull参数的确定方法及图形法 - 风力发电机的空气动力学 - 各种风力发电机的控制类型(如自适应桨距、被动和主动失速控制) - 风力发电机的最大功率点跟踪技术 - 电力生成使用各种类型的发电机(如永磁同步发电机、双馈感应发电机等) - 风力发电机塔架类型(如钢管塔、格架塔、混凝土塔等) - 风力发电机的刹车系统 通过本课程,您将能够深入了解风能系统的基本组成、影响风能发电的因素、不同的概率分布函数以及风电场可行性研究的知识。同时,您将掌握风力发电机中的各种控制系统和电气发电机类型,能够在ETAP和MATLAB程序中模拟风力发电系统。作为额外赠品,您还将获得231页的风能课程幻灯片,供您复习和参考。 如果您在寻找一门全面深入了解风能的课程,请参加本课程。

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"Ultimate Wind Energy Course for Electrical Engineering"The only course out there with everything you need to know about Wind Energy from A to ZThroughout the course, you will learn: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.Simulation of a wind turbine system using the ETAP program.MATLAB simulation of the wind turbine.Cp plotting and lookup table in MATLAB.MPPT in MATLAB Simulink.After Taking This Course, You Will Be Able ToUnderstand everything about wind energy systems, such as the basic components, factors affecting wind generation, the different probability distribution functions used to represent wind data, and wind feasibility study.Understand different control systems used in the wind turbine and the types of electrical generators utilized.You will be able to simulate the wind turbine system in both ETAP and MATLAB programs.Bonus Gift:You will also get the slides for the Wind Energy Course for those who are interested in them or have them as a revision for themselves231 Pages of Wind Energy Course Slides.Take this course if you've been looking for ONE COURSE with in-depth insight into Wind Energy.

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