Question

5. [20 points) The feedback control of a DC motor is implemented so that the rotational position of the motor shaft y(t), in

0 0
Add a comment Improve this question Transcribed image text
Answer #1

given data: dryct) a yct) 2 + 3oyct) - 30x14) Î1 Î ply Laplace transform yes) + 11 syes) +30 y(s) = 30xls) yes) (3 + 115 +30)Note: If anything berong in Answer please leave a comment t will do it again Correctly. Thank you (²)

Add a comment
Know the answer?
Add Answer to:
5. [20 points) The feedback control of a DC motor is implemented so that the rotational...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Laplace Analysis of the Permanent Magnet Brushed DC Motor and the right final answer should be...

    Laplace Analysis of the Permanent Magnet Brushed DC Motor and the right final answer should be like this A permanent magnet brushed DC motor (the type of motor that spins when connected to a constant voltage) can be described by the simplified model tö+) = Kv, where o is the angle of the motor shaft, v is the voltage applied to the motor, 7 is a positive constant known as the motor time constant, and K is a positive constant...

  • 2. (20 points) A field controlled DC motor model is given below where eaſt) is an...

    2. (20 points) A field controlled DC motor model is given below where eaſt) is an applied input voltage, ia(t) is the armature current, Ra and La are the armature resistance and inductance, respectively, e(t) is a back (or counter) emf (electro-motive force) le (t) = K w here K is a motor (torque) constant, t(t) is the torque generated by the motor, w(t) is the angular velocity, 0(t) is the angular position, J represents the rotor inertia and load...

  • A simple but practical feedback control system is shown below. It is a positioning system or posi...

    please solve this problem with detail description. A simple but practical feedback control system is shown below. It is a positioning system or position servo for a large video satellite antenna modeled as a mass having a large moment of inertia, J. An output potentiometer measures the output shaft position, converting the position to a proportional voltage according to vo-Kye. where, e is the output shaft angle in radians and vo is the output potentiometer voltage; Kp is the constant...

  • Problem 51: (25 points) Figure 5 is an example of a feedback control system that is designed to r...

    Problem 51: (25 points) Figure 5 is an example of a feedback control system that is designed to regulate the angular position θ(t) of a motor shaft to a desired value θr(t). The signal e(t) represents the error between the measured shaft angle θ(t) and the desired shaft angle θ (t). The Laplace transforms ofa,(t), θ(t), and e(t) are denoted as ΘR(s), θ(s), and E(s), respectively. The control gains Ki and K2 are chosen by the control engineer to achieve...

  • Consider the DC motor-driven wheeled mobile robot shown in figure, in which m is the mass...

    Consider the DC motor-driven wheeled mobile robot shown in figure, in which m is the mass of the wheeled mobile robot, r is the radius of the driving wheel, and T is the torque delivered to the wheeled mobile robot by the DC motor. For simplicity, the motion is restricted to one spatial dimension. The figure also shows the simplified drive system, including the equivalent electrical circuit of the DC motor, the gears, and the driving wheel. The motor parameter...

  • Problem-5 (20 pts): Consider the DC servo motor shown in Figure-5. Assume that the input of the s...

    Problem-5 (20 pts): Consider the DC servo motor shown in Figure-5. Assume that the input of the system is the applied armature voltage ea and the output is the load shaft position θ2. Assume also the following numerical values for the components: Ra-) Armature winding resistance = 0.2Ω La → Armature winding inductance = 0.1 mH Kb-) Back emf constant 0.05 Vs/rad K > Motor torque constant 0.06 Nm/A Jr Moment of inertia of the rotor of the motor =...

  • 2. The block diagram below model a simple DC motor for speed control application. Input V(s)...

    2. The block diagram below model a simple DC motor for speed control application. Input V(s) is the desired speed in voltage, and the output Y(s) is the actual speed. Tachogenerator, H, convert the actual speed to corresponding voltage. Amplifier Motor and gears X() 5 Ls +R Tachogenerator H The following parameters are known about the system: Amplifier gain: A=2; Motor inductance: L=5H Tachogenerator gain: H=0.15; Determine the following: The system transfer function The value of the motor resistance, R,...

  • Problem 2: (30 points) A mode ontrolled DC motor is she l or is shown below....

    Problem 2: (30 points) A mode ontrolled DC motor is she l or is shown below. The em 2: (30 points) A model of an armature contro aller, here modeled as a rigid body with mass load attached to the rotor of the motor is a prope is transmitted to the propeller through a shaft moment of inertia IL. The rotation of the rotor with torsional damping constant br. The proper eller motion generate a further load TL due to...

  • 2-a)-RLC components connected in series in a circuit supplied by a variable dc voltage can be described by the following differential equations: di(t) wherei@ is the loop current and V1(t) İs the vol...

    2-a)-RLC components connected in series in a circuit supplied by a variable dc voltage can be described by the following differential equations: di(t) wherei@ is the loop current and V1(t) İs the voltage drop across the inductor.+' The voltage drop across the resistor is given by Ohm's law vR(t) R i(t) and the voltage drop across the capacitor vc(t) is given by i(t) dt For a series circuit ye)t vit)t velt) v(t) where v(t) is applied voltage: Figure 3: RLC...

  • The questions are at the bottom. I posted this previously without the information at the top and ...

    The questions are at the bottom. I posted this previously without the information at the top and the answer was missing some key information. Consider the electromechanical dynamic system shown in Figure 1(a). It consists of a cart of mass m moving without slipping on a linear ground track. The cart is equipped with an armature-controlled DC motor, which is coupled to a rack and pinion mechanism to convert the rotational motion to translation and to create the driving force...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT