Udemy - Introduction to Control Systems for Engineers

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[ CourseLala.com ] Udemy - Introduction to Control Systems for Engineers
  • Get Bonus Downloads Here.url (0.2 KB)
  • ~Get Your Files Here ! 1. Introduction and Background Information
    • 1. Introduction - Time Response of 1st Order Systems.mp4 (224.8 MB)
    • 1. Introduction - Time Response of 1st Order Systems.srt (67.9 KB)
    • 1.1 Lecture1.pdf (99.6 KB)
    • 2. Second Order Systems and Higher Order Systems.mp4 (178.0 MB)
    • 2. Second Order Systems and Higher Order Systems.srt (60.2 KB)
    • 2.1 Lecture2.pdf (245.6 KB)
    • 3. Understanding System Response and Using Block Diagrams.mp4 (199.3 MB)
    • 3. Understanding System Response and Using Block Diagrams.srt (76.0 KB)
    • 3.1 Lecture3.pdf (502.8 KB)
    • 4. Working with Block Diagrams - Block Diagram Reduction.mp4 (279.5 MB)
    • 4. Working with Block Diagrams - Block Diagram Reduction.srt (67.5 KB)
    • 4.1 Lecture4.pdf (479.8 KB)
    2. Basic Concepts in Control Design
    • 1. Using Feedback Control with just a simple gain K.mp4 (278.9 MB)
    • 1. Using Feedback Control with just a simple gain K.srt (62.2 KB)
    • 1.1 Lecture5.pdf (60.9 KB)
    • 2. Controller Stability.mp4 (191.6 MB)
    • 2. Controller Stability.srt (63.6 KB)
    • 2.1 Lecture6.pdf (103.4 KB)
    • 3. Routh Hurwitz and Steady-State Error.mp4 (173.0 MB)
    • 3. Routh Hurwitz and Steady-State Error.srt (55.9 KB)
    • 3.1 Lecture7.pdf (105.2 KB)
    • 4. Steady-State Error.mp4 (204.9 MB)
    • 4. Steady-State Error.srt (69.8 KB)
    • 4.1 Lecture8.pdf (130.1 KB)
    • 5. Controller Sensitivity.mp4 (174.2 MB)
    • 5. Controller Sensitivity.srt (56.0 KB)
    • 5.1 Lecture9.pdf (84.7 KB)
    3. Control Design via Root Locus (Contains Exam 1 and Solution)
    • 1. Lecture 10 Notes.html (0.1 KB)
    • 1.1 Lecture10 filled.pdf (1.0 MB)
    • 1.2 Lecture10.pdf (42.2 KB)
    • 2. Intro to the Root Locus.mp4 (219.2 MB)
    • 2. Intro to the Root Locus.srt (58.1 KB)
    • 2.1 Lecture11.pdf (166.7 KB)
    • 3. Root Locus Design (SEE ATTACHED EXAM 1 - SOLUTION IS GIVEN ON NEXT LECTURE).mp4 (206.3 MB)
    • 3. Root Locus Design (SEE ATTACHED EXAM 1 - SOLUTION IS GIVEN ON NEXT LECTURE).srt (63.3 KB)
    • 3.1 Exam1.pdf (69.9 KB)
    • 3.2 Lecture12.pdf (90.5 KB)
    • 4. Root Locus Design of a Proportional-Derivative (PD) Controller (EXAM 1 ANSWERS!).mp4 (203.0 MB)
    • 4. Root Locus Design of a Proportional-Derivative (PD) Controller (EXAM 1 ANSWERS!).srt (62.1 KB)
    • 4.1 Lecture13.pdf (140.0 KB)
    • 5. Root Locus Design of a Proportional-Integral (PI) Controller.mp4 (206.1 MB)
    • 5. Root Locus Design of a Proportional-Integral (PI) Controller.srt (66.5 KB)
    • 5.1 Lecture14.pdf (93.9 KB)
    • 6. PID Control using Root Locus.mp4 (220.3 MB)
    • 6. PID Control using Root Locus.srt (72.6 KB)
    • 6.1 Lecture15.pdf (61.6 KB)
    4. Using the Frequency Domain to Understand Response and Design Control Systems
    • 1. Understanding Frequency Response.mp4 (158.5 MB)
    • 1. Understanding Frequency Response.srt (56.2 KB)
    • 1.1 Lecture16.pdf (76.4 KB)
    • 2. Sketching Bode Plots.mp4 (215.4 MB)
    • 2. Sketching Bode Plots.srt (78.9 KB)
    • 2.1 Lecture17.pdf (99.4 KB)
    • 3. Working with Bode Plots.mp4 (212.5 MB)
    • 3. Working with Bode Plots.srt (70.9 KB)
    • 3.1 Lecture18.pdf (103.8 KB)
    • 4. More with Bode Plots (notes only).html (0.1 KB)
    • 4.1 Lecture19.pdf (56.1 KB)
    • 5. Lead and Lag Controller Design.mp4 (201.2 MB)
    • 5. Lead and Lag Controller Design.srt (71.4 KB)
    • 5.1 Lecture20.pdf (262.9 KB)
    • 6. Understanding Time Delay.mp4 (185.4 MB)
    • 6. Understanding Time Delay.srt (72.2 KB)
    • 6.1 Lecture21.pdf (57.8 KB)
    • 7. Understanding Stability in the Frequency Domain.mp4 (97.7 MB)
    • 7. Understanding Stability in the Frequency Domain.srt (38.8 KB)
    • 7.1 Lecture22.pdf (45.6 KB)
    • 8. Review of Frequency Domain Topics (EXAM 2 HERE).mp4 (102.1 MB)
    • 8. Review of Frequency Domain Topics (EXAM 2 HERE).srt (41.1 KB)
    • 8.1 Exam2.pdf (85.4 KB)
    • 8.2 Lecture23.pdf (33.7 KB)
    5. Modern Control Design with State-Space and Beyond
    • 1. Introduction to State Space Systems.mp4 (87.6 MB)
    • 1. Introduction to State Space Systems.srt (25.2 KB)
    • 1.1 Lecture24.pdf (68.7 KB)
    • 10. Optimal Control.mp4 (161.8 MB)
    • 10. Optimal Control.srt (64.4 KB)
    • 10.1 Lecture33.pdf (73.3 KB)
    • 11. Review of Current Control techniques and research.mp4 (207.8 MB)
    • 11. Review of Current Control techniques and research.srt (66.3 KB)
    • 11.1 Controls Review Problems and Answers.pdf (627.0 KB)
    • 11.2 Lecture34a.pdf (316.2 KB)
    • 2. State Space and Transfer Function models.mp4 (166.0 MB)
    • 2. State Space and Transfer Function models.srt (55.3 KB)
    • 2.1 Lecture25.pdf (101.0 KB)
    • 3. Controllability and Observability (Notes only).html (0.1 KB)
    • 3.1 Lecture26.pdf (104.8 KB)
    • 4. State Space Controller Design.mp4 (194.3 MB)
    • 4. State Space Controller Design.srt (72.7 KB)
    • 4.1 Lecture27.pdf (93.5 KB)
    • 5. Exam 2 Solution and Observer Design.mp4 (205.1 MB)
    • 5. Exam 2 Solution and Observer Design.srt (67.0 KB)
    • 6. More with Observer Design.mp4 (128.9 MB)
    • 6. More with Observer Design.srt (43.7 KB)
    • 7. Introduction to Digital Control (Notes Only).html (0.1 KB)
    • 7.1 Lecture30.pdf (78.2 KB)
    • 8. Understanding System Response with Digital Systems.mp4 (163.9 MB)
    • 8. Understanding System Response with Digital Systems.srt (54.1 KB)
    • 8.1 Lecture31.pdf (56.5 KB)
    • 9. Designing Controllers with Digital Systems.mp4 (200.1 MB)
    • 9. Designing Controllers with Digital Systems.srt (75.3 KB)
    • 9.1 Lecture32.pdf (78.4 KB)
    • Bonus Resources.txt (0.3 KB)

Description

Introduction to Control Systems for Engineers



MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Genre: eLearning | Language: English + srt | Duration: 34 lectures (22h 14m) | Size: 3.34 GB
An Introduction to BOTH classical and modern control with MATLAB
What you'll learn:
This course is designed for engineering students or engineers that want to learn more about the basics of control systems.

Requirements
In order to fully appreciate this class, you should have a background of dynamics and differential equations. But even with just some knowledge of physics you will do OK.

Description
This course covers everything an Introduction to Controls Course should cover and much more. I will clearly explain to you control systems from the most basic ideas to where we currently are in research. I cover a huge range of topics including: system response, root-locus, bode plots, nyquist, state-space, digital control, optimal control. I use MATLAB in the course to help you learn!

Who this course is for
Engineering students or anyone interested in learning more about controls.

https://CourseLala.com



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Udemy - Introduction to Control Systems for Engineers


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5.5 GB
seeders:13
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Udemy - Introduction to Control Systems for Engineers


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