Ultimate Electrical Power System Engineering Masterclass

所在平台: Udemy

课程主页: https://www.udemy.com/course/ultimate-electrical-power-system-engineering-masterclass/

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课程名称:终极电力系统工程大师班 课程概述: 欢迎参加我们的“终极电力系统工程大师班”课程。在本课程中,您将全面学习电力系统分析,从电力系统的基本原理开始,逐步深入到单相和三相电力系统的设计和建模,涵盖发电机、变压器及输电线路等各种电力系统组件的设计,最后进行完整的电力系统研究,例如潮流分析和电力系统故障分析。因此,本课程将成为您在电力工程领域(电力系统分析)的全面指南。 课程结构: 1. 电力系统结构概述 - 电力的发电、输电、配电和消耗 - 如何绘制电力系统的单线图(SLD) 2. 基本电气工程概念复习 - 电力系统中不同类型的电力 - 复杂功率、功率三角形和功率因数定义 - 功率因数校正 - 电力系统中的复杂功率流 3. 三相系统的完整研究 - 三相系统的必要性 - 三相供电和负荷 - 不同的三相连接方式(星-星)、(星-三角)、(三角-星)、(三角-三角) - 3线与4线三相系统之间的差异 - 线路电流与相电流及电压的关系 - 三相系统中的功率分析 - 三相电路中的功率因数改善 4. 发电机建模及特性 - 交流发电机的结构与工作原理 - 主要与圆柱转子发电机的对比 - 电力系统中的发电机模型 - 发电机的相量图及特性 - 同步发电机的性能参数与功率角曲线 5. 变压器及其在电力系统中的运用 - 变压器的结构与工作原理 - 变压器的等效电路 - 变压器测试 - 变压器的效率与调节 - 三相变压器的类型与连接 - 三相变压器的每相模型 6. 输电线建模及性能评估 - 架空线路与地下电缆(UGC)的比较 - 输电线路的建模与性能 - 短线、中线和长线模型 - 无损输电线路 - 突发阻抗负载(SIL) 7. 每单位系统的重要性 - 每单位概念及计算 - 绘制每单位反应图 - 基础的改变 - 实际电力系统的数值示例 8. 完整的潮流分析 - 潮流研究的概念与重要性 - 潮流分析中的定义 - 电力系统母线类型 - Ybus的形成 - 近似方法与迭代方法的负荷潮流分析 - 高斯-赛德尔法 - 功率流与损耗分析 - 实际电力系统的数值示例 9. 故障分析 - 电力故障的定义、原因、类型与后果 - 完整的对称故障分析(使用德尔塔和Zbus) - 对称分量与序列网络 - 完整的非对称故障分析(使用德尔塔和Zbus) 10. 实际项目(使用MATLAB进行) - 项目1 - 独立同步发电机 - 项目2 - 连接到电网的同步发电机 - 项目3 - 三相变压器仿真 - 项目4 - 输电线设计 - 项目5 - MATLAB中的潮流研究 - 项目6 - MATLAB中的故障分析 如果您在寻找关于电力系统分析工程的全面课程,涵盖电力系统建模、设计和分析,那么您来对地方了!

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Hi and welcome everyone to our course "Ultimate Electrical Power System Engineering Masterclass"In this course, you are going to learn everything about power system analysis starting from the power system basics and fundamentals of single phase and three phase electric systems moving to designing and modelling different power system components such as: generators, transformers, and transmission lines, ending with a complete power system studies such as load flow studies and power system faults analysis. Thus, this course will be your complete guide in one of the main areas of power engineering: ( power system analysis )The course is structured as follows:Firstly, an overview on the power system structure is illustrated through the following topics:Generation, transmission, distribution, and consumption of electric powerHow to draw a single line diagram (SLD) of any power systemThen, the next topic will be about a review on basic electrical engineering concepts to be a quick refresh for you. The following topics will be covered:Different types of powers in power systemComplex power, power triangle, and power factor definitionspower factor correction Complex power flow in any power systemThen, a complete study of three phase systems is introduced since 99% of practical electric networks are actually three phase systems. Thus, three phase circuits are explained in depth through the following topics:Why we need three phase systems?Three phase supply and load Different 3-ph connections (star-star), (star-delta), (delta-star), (delta-delta) Difference between (3-wire) and (4-wire) 3-ph systemsThe relations between line and phase currents and voltagesPower analysis in 3-ph systemsPower factor improvement in 3-ph circuitsThen, you are going to learn the modelling and characteristics of generators in power systems starting from the operation and construction of alternators moving to measuring the performance indices of synchronous generators. The following topics will be covered:Construction and operation of alternatorsSalient pole vs. Cylindrical rotor generatorsGenerator model in power systemsGenerator phasor diagram and characteristicsGenerator performance parametersPower angle curve of synchronous generatorsThe next topic is about transformers and their use in power systems. We are going to discuss how the transformers work and their importance in power systems through the following outlines:Construction and operation of transformersTransformer equivalent circuitTests performed on transformersTransformer efficiency and regulationThree-phase transformer types and connectionsPer phase model of three phase transformerAfter that, we are going to a complete modelling of different types of transmission lines with assessing the transmission line performance in electric networks through the following topics:Overhead lines vs. Under ground cables (UGC)Transmission line modelling and performanceShort, medium, and long line modelsLossless transmission linesSurge impedance loading (SIL)Now, after modelling and analyzing different power system components, lets move to the per unit system and learn the concept and importance of per unit in power system analysis through the following outlines:Concept of per unitPer unit calculationsHow to draw per unit reactance diagramChange of baseNumerical examples on practical power systemsThen, we are going to a complete power flow analysis where we are going to know the electrical parameters for any power system under any operating conditions. The following topics are discussedConcept and importance of power flow studyDefinitions in power flow analysisTypes of power system busesFormation of YbusApproximate methodIterative methods for load flow analysisGauss-Seidal methodPower flows and losses analysisDC power flow methodNumerical examples on practical power systemsThen, a complete fault analysis is performed on power systems to find the fault current, bus voltages and line current during the fault. All these outlines are discussedDefinition, causes, types, and consequences of electric faultsComplete symmetrical fault analysis using thevenin and ZbusSymmetrical components and sequence networksComplete unsymmetrical fault analysis using thevenin and ZbusFinally, after the complete analysis of power system, practical projects are performed on MATLAB related to power systems as follows:Project 1 - Stand alone synchronous GeneratorProject 2 - Synchronous Generator connected to the gridProject 3 - Simulation of 3-ph transformersProject 4 - Transmission line designProject 5 - Power flow study in MATLABProject 6 - Fault analysis in MATLABSo, if you are Looking for a COMPREHENSIVE course about Electrical power system analysis engineering for power system modelling, design and analysis ? If your answer is YES, then you're definitely in the right place.

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