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所在平台: Udemy |
课程主页: https://www.udemy.com/course/matlab-app-design-for-electrical-and-electronics-concepts/
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**MATLAB App 设计在电气与电子工程中的应用** 本课程旨在通过 MATLAB App 的设计,让学习者深入理解电气与电子工程的实际应用。课程强调虚拟仿真在工程领域的潜力,旨在培养工程师解决实际问题的能力,搭建代码知识与核心工程概念之间的桥梁,并为工程师进行实际工程问题的虚拟分析做好准备。 **课程内容概览:** 课程将从 MATLAB App 的介绍及其结构入手,随后通过具体案例展示 App 开发过程: * **基础计算器 App 开发** * **基尔霍夫电流定律 (KCL) App 开发:** 涵盖 KCL 基本理论、Simulink 模型建构及 App 验证。 * **基尔霍夫电压定律 (KVL) App 开发:** 涵盖 KVL 基本理论、Simulink 模型建构及 App 验证。 * **叠加定理 App 开发:** 涵盖叠加定理基本理论、Simulink 模型建构及 App 验证。 * **戴维南定理 App 开发:** 涵盖戴维南定理基本理论、Simulink 模型建构及 App 验证。 * **正弦波形 App 开发:** 涵盖正弦波形基本理论、代码实现及 App 设计。 * **正弦电源谐波问题 App 开发:** 涵盖谐波问题理论、代码实现及 App 设计。 * **串联 RLC 谐振概念 App 开发:** 涵盖串联 RLC 谐振理论、代码实现及 App 设计。 * **功率因数改善概念 App 开发:** 涵盖功率因数改善理论、Simulink 模型建构及 App 设计。 * **三相感应电动机启动与换向 App 开发:** 涵盖电机启动与换向理论、Simulink 模型建构及 App 设计。 * **变压器负载与效率理解 App 开发:** 涵盖变压器负载与效率理论、Simulink 模型建构及 App 设计。 * **直流并联电动机调速理解 App 开发:** 涵盖直流电机调速理论、Simulink 模型建构及 App 设计。 * **半波、全波及桥式整流器理解 App 开发:** 涵盖整流器理论、Simulink 模型建构及 App 设计。 通过本课程的学习,您将能够熟练运用 MATLAB App 设计工具,将理论知识转化为直观的工程应用,提升在解决复杂工程问题时的效率和能力。
Importance of MATLAB App in Engineering prospectives::• To educate the real-time engineering applications in virtual mode• To nurture engineers for tackling real-time engineering applications• To establish a bridge between knowledge of codes and core• To ready engineers for virtual investigation of real-time engineering problemsWhat we learn in this course::Introduction1. About MATLAB APP and its structure2. App development for basic calculator3. App development for Kirchhoff current law3.1 Basic theory about KCL3.2 Simulink model development for KCL3.3 App design for KCL verification4. App development for Kirchhoff voltage law4.1 Basic theory about KVL4.2 Simulink model development for KVL4.3 App design for KVL verification5. App development for Superposition theorem5.1 Basic theory about Superposition theorem5.2 Simulink model development for Superposition theorem5.3 App design for Superposition theorem verification6. App development for Thevenin theorem6.1 Basic theory about Thevenin theorem6.2 Simulink model development for Thevenin theorem6.3 App design for Thevenin theorem verification7. App development for Sinusoidal waveform7.1 Basic theory about Sinusoidal waveform7.2 Code development for Sinusoidal waveform representation7.3 App design for Sinusoidal waveform representation8. App development for harmonics issue with sinusoidal supply8.1 Basic theory about harmonics issue with Sinusoidal supply8.2 Code development for harmonics issue with Sinusoidal supply8.3 App design for harmonics issue with Sinusoidal waveform supply9. App development for series RLC resonance concepts9.1 Basic theory about series RLC resonance concepts9.2 Code development for series RLC resonance concepts9.3 App design for series RLC resonance concepts10. App development for power factor improvement concepts10.1 Basic theory about power factor improvement concepts10.2 Simulink model development for power factor improvement concepts10.3 App design for power factor improvement concepts11. App development for three phase induction motor starting and reversing concepts11.1 Basic theory about three phase induction motor starting and reversing concepts11.2 Simulink model development for three phase induction motor starting and reversing concepts11.3 App design for three phase induction motor starting and reversing concepts12. App development for understanding transformer loading and efficiency concepts12.1 Basic theory about understanding transformer loading and efficiency concepts12.2 Simulink model development for transformer loading and efficiency concepts12.3 App design for transformer loading and efficiency concepts13. App development for understanding DC shunt motor speed control concepts13.1 Basic theory about understanding DC shunt motor speed control concepts13.2 Simulink model development for DC shunt motor speed control concepts13.3 App design for DC shunt motor speed control concepts14. App development for understanding half wave, full wave, and bridge rectifier concepts14.1 Basic theory about understanding half wave, full wave, and bridge rectifier concepts14.2 Simulink model development for half wave, full wave, and bridge rectifier concepts14.3 App design for half wave, full wave, and bridge rectifier concepts