• Lecture Automatic control systems technology - Lesson 10: The laplace transform

    Lecture Automatic control systems technology - Lesson 10: The laplace transform

    Lecture Automatic control systems technology - Lesson 10: The laplace transform. After this presentation you will be able to: explain how the Laplace transform relates to the transient and sinusoidal responses of a system; convert time functions into the Laplace domain; use Laplace transforms to convert differential equations into algebraic equations; take the Inverse Laplace transform and find the time response of a system;... Please refer to...

     19 p ctuet 27/12/2023 12 0

  • Lecture Automatic control systems technology - Lesson 8: Modeling physical systems with linear differential equations

    Lecture Automatic control systems technology - Lesson 8: Modeling physical systems with linear differential equations

    Lecture Automatic control systems technology - Lesson 8: Modeling physical systems with linear differential equations. After this presentation you will be able to: explain what a differential equation is and how it can represent dynamics in physical systems; identify linear and non-linear differential equations; identify homogeneous and non-homogenous differential equations;... Please refer to the content of document.

     34 p ctuet 27/12/2023 11 0

  • Lecture Automatic control systems technology - Lesson 11: Solving mechanical system dynamics using laplace transforms

    Lecture Automatic control systems technology - Lesson 11: Solving mechanical system dynamics using laplace transforms

    Lecture Automatic control systems technology - Lesson 11: Solving mechanical system dynamics using laplace transforms. After this presentation you will be able to: draw a free body diagram of a translational mechanical system; write a differential equation that describes the position of a mechanical system as it varies in time; use Laplace transforms to convert differential equations into algebraic equations;... Please refer to the content of...

     14 p ctuet 27/12/2023 8 0

  • Lecture Automatic control systems technology - Lesson 1: Introduction to control systems technology

    Lecture Automatic control systems technology - Lesson 1: Introduction to control systems technology

    Lecture Automatic control systems technology - Lesson 1: Introduction to control systems technology. After this presentation you will be able to: explain the function of an automatic control system; identify a block diagram representation of a physical system; explain the difference between an open loop and closed loop control system;... Please refer to the content of document.

     28 p ctuet 27/12/2023 9 0

  • Lecture Automatic control systems technology - Lesson 3: Operational amplifier circuits in analog control

    Lecture Automatic control systems technology - Lesson 3: Operational amplifier circuits in analog control

    Lecture Automatic control systems technology - Lesson 3: Operational amplifier circuits in analog control. After this presentation you will be able to: list the characteristics of an ideal Operational Amplifier (OP AMP) circuit; identify and utilize fundamental OP AMP circuits to amplify and signals; use OP AMP circuits to reduce inter-stage loading effects in sensor circuits;... Please refer to the content of document.

     27 p ctuet 27/12/2023 10 0

  • Lecture Automatic control systems technology - Lesson 4: Scaling linear sensors and transducers

    Lecture Automatic control systems technology - Lesson 4: Scaling linear sensors and transducers

    Lecture Automatic control systems technology - Lesson 4: Scaling linear sensors and transducers. After this presentation you will be able to: develop mathematical relationships for a sensor that has a linear output; convert linear mathematical equations into block diagrams that represent sensor scaling circuits; adjust the output range of a sensor using operational amplifier circuits;... Please refer to the content of document.

     24 p ctuet 27/12/2023 9 0

  • Lecture Automatic control systems technology - Lesson 5: Mathematical models of electrical control system components

    Lecture Automatic control systems technology - Lesson 5: Mathematical models of electrical control system components

    Lecture Automatic control systems technology - Lesson 5: Mathematical models of electrical control system components. After this presentation you will be able to: identify types of subsystems found in control systems; list the characteristics of electrical subsystems; write mathematical models for electrical characteristics; solve for steady-state electrical quantities using given mathematical modeling equations;... Please refer to the content...

     15 p ctuet 27/12/2023 11 0

  • Lecture Automatic control systems technology - Lesson 2: Performance of control systems

    Lecture Automatic control systems technology - Lesson 2: Performance of control systems

    Lecture Automatic control systems technology - Lesson 2: Performance of control systems. After this presentation you will be able to: explain what constitutes good control system performance; identify controlled, uncontrolled, and unstable control system response; analyze measurement error in measurement sensors; determine sensor response;... Please refer to the content of document.

     30 p ctuet 27/12/2023 9 0

  • Lecture Automatic control systems technology - Lesson 14: Transfer functions of DC motors

    Lecture Automatic control systems technology - Lesson 14: Transfer functions of DC motors

    Lecture Automatic control systems technology - Lesson 14: Transfer functions of DC motors. After this presentation you will be able to: write the transfer function for an armature controlled dc motor; write a transfer function for a dc motor that relates input voltage to shaft position; represent a mechanical load using a mathematical model;... Please refer to the content of document.

     28 p ctuet 27/12/2023 11 0

  • Lecture Automatic control systems technology - Lesson 13: Effects of negative feedback on system disturbances

    Lecture Automatic control systems technology - Lesson 13: Effects of negative feedback on system disturbances

    Lecture Automatic control systems technology - Lesson 13: Effects of negative feedback on system disturbances. After this presentation you will be able to: reduce a block diagram with multiple inputs using superposition theory; explain how negative feedback reduces the effects of system disturbances with a proportional controller; interpret step-response time plots;... Please refer to the content of document.

     20 p ctuet 27/12/2023 12 0

  • Lecture Automatic control systems technology - Lesson 22: Determining control stability using bode plots

    Lecture Automatic control systems technology - Lesson 22: Determining control stability using bode plots

    Lecture Automatic control systems technology - Lesson 22: Determining control stability using bode plots. After this presentation you will be able to: list the control stability criteria for open loop frequency response; identify the gain and phase margins necessary for a stable control system; use a bode plot to determine if a control system is stable or unstable;... Please refer to the content of document.

     15 p ctuet 27/12/2023 10 0

  • Lecture Automatic control systems technology - Lesson 20: Process characteristics-2nd order lag process

    Lecture Automatic control systems technology - Lesson 20: Process characteristics-2nd order lag process

    Lecture Automatic control systems technology - Lesson 20: Process characteristics-2nd order lag process. After this presentation you will be able to: describe typical 2nd order lag models found in control systems; write mathematical formulas for 2nd order lag process models; compute the parameters of this process model; identify the Bode plots of this process model;... Please refer to the content of document.

     23 p ctuet 27/12/2023 11 0

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