Descriptions
Control Analysis Using Python for Grid-Connected Converters In this course, you will learn how to use Python to represent a grid-connected converter as a closed-loop transfer function. Python packages can be used to design controllers and analyze the behavior of the final closed-loop system for steady-state performance and stability. The analysis results are verified using simulations performed using Python. This course is primarily aimed at power electronics engineers who are struggling to implement controls for their converter systems, as most control courses do not have a specific reference to power electronics. This course is a control course created by a power electronics engineer for other power electronics engineers. All software used in the course is free and open source, so students do not need to purchase any software licenses after enrolling in the course. The course describes in detail the Python functions and packages that can be used for control system design and analysis.
What you will learn
- Basic network calculations such as frequency estimation
- Basic control theory
- Introduction to the Python Control Package
- Representation of the transfer function for a system
- Closed-loop systems, feedback paths and controllers
- Using Bode diagrams to interpret system transfer functions
- Stability analysis using Bode diagrams
- Reference frame transformation
- Controller design using Bode plots
- Simulation of controlled systems with Python
- Basics of single-phase converters
- Switching strategies for single-phase converters
- Controller design for a grid-connected converter
Who is this course suitable for?
- Bachelor and Master students in electrical engineering and electronics
- Technicians and hardware engineers in the field of energy technology
Specifying control analysis with Python for grid-connected converters
- Editor: Udemy
- Teacher: Shiv Kumar Iyer
- Language: English
- Level: Intermediate
- Number of courses: 140
- Duration: 33 hours and 8 minutes
Contents of the control analysis with Python for grid-connected converters
Requirements
- Basic electrical network laws
- Laplace transformation and frequency response of systems
- Simulating circuits with Python Power Electronics
- Basic Python, Numpy and Matplotlib
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Subtitles: English
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