Circuit Analysis & Network Theory:Base of Electrical Circuit

所在平台: Udemy

课程主页: https://www.udemy.com/course/circuit-analysis-network-theory-base-of-electrical-circuit/

课程评论:没有评论

第一个写评论        关注课程

课程简介

Coursera 上的《电路分析与网络理论:电气工程基础》课程,由拥有15年以上经验的电子与通信设计工程师 Hitesh Dholakiya 教授主讲。 **课程概述:** 本课程旨在为学生提供电气电路分析的基础知识和高级技术,涵盖从基本网络理论到复杂的交流分析参数。通过详细的讲解和丰富的实例,学生将能够解决各类电路问题。课程内容全面,适用于电子与通信、电气、仪表、硬件工程、电路设计等多个专业领域的学生。 **核心主题:** * **网络理论基础:** 介绍网络理论、源的分类、电荷、电流、电磁场、电势、功率、能量、基尔霍夫定律、对偶原理、分压分流法则以及电阻、电感、电容基本元件。 * **等效电阻分析:** Delta-Star 转换,Star-Delta 转换,等效电阻计算,对称性和等势节点。 * **点标记法:** 在电感分析中的应用,包括点标记与极性识别,串并联等效电感计算。 * **网孔分析与节点分析:** 讲解网孔分析、超网孔分析、节点分析、超节点分析及其应用。 * **电源变换:** 电源的等效变换及其在电路分析中的应用。 * **电路定理:** 详尽讲解了戴维南定理、诺顿定理、密尔曼定理、最大功率传输定理、叠加定理、倒易定理,并包含相关示例,涉及独立源和受控源。 * **KVL、KCL、节点分析与网孔分析:** 结合例题深入理解这些基本分析方法。 * **直流电路与交流电路分析:** 涵盖直流电源功率、交流电路功率(包括功率三角形)以及交流分析参数,如谐振、带宽和品质因数。 * **瞬态分析:** RL和RC电路的瞬态响应,以及初始和最终条件分析。 * **拉普拉斯变换:** 拉普拉斯变换的性质、公式、瞬态响应、等效阻抗以及传递函数应用。 * **二端口网络:** 二端口网络的参数、性质、转换及应用。 * **图论在电路分析中的应用:** 图论术语、关联矩阵及方程,并提供相关实例。 * **相量图:** 在电路分析中的应用与实例。 **课程收获:** 完成本课程后,学生将能够熟练掌握直流和交流电路的分析方法,解决从中等到高级别的电路问题,为深入学习电气工程专业知识打下坚实基础。

课程评论(0条)

课程详情

Welcome to the comprehensive course on Circuit Analysis & Network Theory, where we delve deep into the fundamental principles and advanced techniques essential for understanding and analyzing electrical circuits. From basic network theory to intricate AC analysis parameters, this course on Circuit Analysis & Network Theory offers a meticulous exploration of every aspect. Prof. Hitesh Dholakiya is an Electronics and Communication Design Engineer with over 15 years of experience in the core Electronics/Electrical domain as well as in the Antenna/RF/Communication field. With a passion for teaching and a wealth of industry knowledge, Prof. Hitesh Dholakiya is dedicated to helping students achieve their academic and professional goals in the Circuit Analysis & Network Theory domain.After completing this course on Circuit Analysis & Network Theory students can be able to solve basic to advanced circuit problems. This Circuit Analysis & Network Theory course comprehensively covers all the concepts of Circuit Theory for major branches like Electronics and Communication, Electrical, Instrumentation Engineering, Hardware Engineering, Circuit Designer, and many others.This course on Circuit Analysis & Network Theory covers the following topics with ample supportive examples in great detail.1 Fundamentals of Network Theory2 Equivalent Resistance in Circuit Analysis3 Dot convention in Circuit Analysis4 Mesh Analysis and Nodal Analysis in Electrical Network5 Source Transformation in Circuit Analysis6 Thevenin Theorem in Electrical Network7 Norton's Theorem in Electrical Network8 Millman's Theorem in Electrical Network9 Maximum Power Transfer Theorem in Electrical Network10 Super Position Theorem in Electrical Network11 KVL, KCL, Nodal, and Mesh in Electrical Network12 Power in DC Sources in Electrical Network13 Reciprocity Theorem in Electrical Network14 Transient Response with Time analysis in Circuit and Network15 Initial and final conditions in Circuit and Network16 Laplace transform in Electrical Network17 Two Port Network in Electrical Network18 Graph Theory in Electrical Network19 Phasor Diagram in Electrical Network20 Power In AC Circuits 21 AC Analysis Parameters in Electrical NetworkExplore every facet of DC and AC circuit analysis with meticulous attention to detail.Here are the detailed topics covered in every Chapter of Circuit Analysis & Network Theory course.Certainly! Here's a restructured version of the Circuit Analysis & Network Theory course outline for better readability and organization:1. Fundamentals of Network Theory - Introduction to Network Theory - Network Synthesis and Applications - Ideal and Practical Sources - Classification of Networks - Electric Charge, Current, EMF, and Potential - Battery Selection for Circuits - Power and Energy - Kirchhoff's Laws - Duality Principle - Voltage and Current Divider Rules - Basic Electrical Elements: Resistor, Inductor, and Capacitor2. Equivalent Resistance in Circuit Analysis - Delta to Star Conversion - Star to Delta Conversion - Equivalent Resistance Examples - Symmetry and Equipotential Nodes in Equivalent Resistance3. Dot convention in Circuit Analysis - Electrical Parameters of Inductor - Dot Convention and Polarity Identification - Equivalent Inductor in Series and Parallel - Examples using Dot Convention4. Mesh Analysis and Nodal Analysis in Electrical Network - Mesh Analysis and Supermesh Analysis - Nodal Analysis and Supernode Analysis - Examples using Mesh and Nodal Analysis5. Source Transformation in Circuit Analysis - Source Transformation - Network Manipulation Rules - Examples6. Thevenin's Theorem in Electrical Network - Thevenin's Theorem and Examples - Thevenin's Theorem with Dependent Sources - Thevenin's Theorem with Independent Sources7. Norton's Theorem in Electrical Network - Norton's Theorem and Examples - Norton's Theorem with Dependent Sources - Norton's Theorem with Independent Sources8. Millman's Theorem in Electrical Network - Millman's Theorem and Examples9. Maximum Power Transfer Theorem in Electrical Network - Maximum Power Transfer Theorem - Examples10. Superposition Theorem in Electrical Network - Superposition Theorem and Examples11. KVL, KCL Nodal and Mesh Analysis in Network Theory - Examples of KVL, KCL, Nodal, and Mesh Analysis12. Power in DC Sources - Power Concepts and Examples13. Reciprocity Theorem in Network Theory - Reciprocity Theorem and Examples14. Transient Response with Time analysis in Circuit and Network - Transient Response of RL and RC Circuits - Examples15. Initial and final conditions in Circuit and Network - Initial and Final Conditions in Circuits - Examples16. Laplace transform in Electrical Network - Laplace Transform Properties and Formulas - Transient Response and Equivalent Impedance - Applications and Transfer Function17. Two Port Network in Electrical Network - Parameters and Properties - Conversion and Examples18. Graph Theory in Electrical Network - Applications and Terminologies - Incidence Matrix and Equations - Examples19. Phasor Diagram in Electrical Network - Phasor Diagrams for Circuits - Examples20. Power in AC Circuits - Power Concepts and Triangles - Examples21. AC Analysis Parameters in Electrical Network - Resonance, Bandwidth, and Quality Factor - ExamplesEnroll now and take the first step toward mastering Circuit Analysis & Network Theory! Join Our Community of students who have transformed their careers with our expert-led course on Circuit Analysis & Network Theory! So, Get ready to embark on a transformative journey into the heart of Electrical and Electronics Engineering. See you in the Circuit Analysis & Network Theory course! You're going to love it! Thank You...

课程标签

0人关注该课程

主题相关的课程