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Control System Engineering: From Basic To Advanced Concepts - Panter - 21.01.2025 ![]() Control System Engineering: From Basic To Advanced Concepts Published 1/2025 MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz Language: English | Size: 49.50 GB | Duration: 27h 33m Learn Basics, Transfer Function, Block Diagram, SFG, Root Locus, PID Controller, Polar, Nyquist, Bode Plot, State Space What you'll learn Introduction to Control Systems Transfer Function Block Diagram Signal Flow Graph Mathematical Modeling of Mechanical System Time & Frequency Response Analysis Routh Stability Root Locus PID Controllers Polar Plot Nyquist Plot Bode Plot State Space Analysis Compensator Requirements No prior knowledge required Description This Control System Engineering course covers all the basic fundamentals of Control System Engineering.Here Prof. Hitesh Dholakiya has covered all the topics of Control System Engineering with the following outlines:1. Introduction to Control Systems:Open Loop System, Closed Loop System, Comparison of Open Loop System and Closed Loop System, Feedback in Control System, Effects of Feedback in Control System.2. Transfer Function:Basics of Transfer Function, Transfer Function from Differential Equation, Transfer Function of RC & RL Circuits (High Pass Filter and Low Pass Filter), Transfer Function and Oder of System, Transfer Function of Electrical Network.3. Block Diagram:Basics of Block Diagram, Block Diagram Reduction Rules, Examples of Block Diagram Reduction Rules.4. Signal Flow Graph:Terminologies and Rules of Signal Flow Graph, Mason Gain Formula of Signal Flow Graph, Mason Gain Formula Solved Examples, Block Diagram to Signal Flow Graph Conversion.5. Mathematical Modeling of Mechanical System:Mathematical Modelling of Mechanical System, Mechanical System, Electrical System, Force Voltage Analogy, Force Current Analogy, Torque Voltage Analogy, Torque Current Analogy, Examples of Mathematical Modelling of Mechanical System.6. Time & Frequency Response Analysis:Test Signals, Steady State Error, Static Error Constants, Steady State Error with Unit Step Input, Unit Ramp Input and Unit Parabolic Input, Order and Type of System, Time Response Analysis, Unit Impulse Response of 1st Order System, Unit Step Response of 1st Order System, Unit Ramp Response of 1st Order System, Nature of Roots with 2nd Order System, Unit Step Response of 2nd Order System with Under-Damped, Critically Damped, and Over Damped System, Rise Time, Peak Time, Maximum Peak Overshoot, Settling Time, Initial and Final Value Theorem, Frequency Response Analysis, Resonance Frequency, Resonance Peak, and Bandwidth of 2nd Order System, Examples of Time Response & Frequency Response Analysis.7. Routh Stability:Stability Criteria of Control System, Routh Stability Criteria of Control System with Special Case I, II, and Oscillatory Conditions.8. Root Locus:Root Locus Basics and Rules, Root Locus Examples.9. PID Controllers ![]() Students (Engineering, Diploma, Science),Professionals in Electrical/Electronics Industries,Hobbyist,Research Scholars,Project Developers,Automation Field Experts ![]() Download from RapidGator Download from Keep2Share Premium Links |