Pearson eText for Electrical Engineering: Principles & Applications -- Instant Access (Pearson+)
Pearson eText for Electrical Engineering: Principles & Applications -- Instant Access (Pearson+)
7th Edition
ISBN: 9780137562855
Author: Allan Hambley
Publisher: PEARSON+
bartleby

Concept explainers

Question
Book Icon
Chapter 16, Problem 16.1P
To determine

It is necessary to reduce the voltage applied to an induction motor as the frequency is reduced from the rated value. Explain why this is so.

Expert Solution & Answer
Check Mark

Answer to Problem 16.1P

To keep the ratio of voltage to frequency constant, it is necessary to reduce the voltage applied to an induction motor as the frequency is reduced from the rated value.

Explanation of Solution

Given Information:

It is necessary to reduce the voltage applied to an induction motor as the frequency is reduced from the rated value.

Consider the EMF equation for the induction motor:

  E=4.44ϕK.T.f

where

  E=Induced EMF in the induction motorϕ=Average airgap fluxK=Winding constantT=Number of turns per phasef=Frequency

Therefore, the induced EMF is directly proportional to flux and frequency:

  Eϕf

Now, if the frequency is reduced, the magnitude of the induced EMF will also be reduced such that to maintain constant airgap flux.

Consider the applied voltage to the induction motor is V, such that, this applied voltage V is directly proportional to induced EMF E, i.e.,

  EV

Therefore, if the frequency is reduced to maintain the constant flux in the air gap, there must be a proportional reduction in the magnitude of the applied voltage.

If the applied voltage is not reduced in proportion to the frequency, it results in excessive motor currents which may cause damage to the motor. Due to this, losses increase, and therefore, the efficiency of the motor is reduced.

So, it is necessary to reduce the voltage applied to an induction motor as the frequency is reduced from the rated value.

Conclusion:

It can be concluded that it is necessary to reduce the voltage applied to an induction motor as the frequency is reduced from the rated value to maintain constant flux in the airgap.

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
2. (35 points) Use you program to investigative properties of a four step linear pathway. Just extend the model given in question 1 to include an additional two species x2 and x3. You can assume simple irreversible mass-action kinetic on each reaction. I recommend you use the following values for the rate constants: 1 = 0.6; k2 = 1.8; k3 = 0.5; k40.04. This will enable you to more easily answer the following questions. You can also assume that the input is the source X and you can set its value to one. You may find that the plot of the phase change at x3 is broken at -180 degrees because it wraps around. To avoid this you can use the method: phase = np.unwrap(phase) to make sure the phase plot is continuous. [10] i) Compute and show the Bode plots for x1, x2 and x3 with respect to the input Xo. [5] ii) Do you see a pattern with the maximum phase shifts as you move from x₁ to x3? [10] iii) Can you explain this pattern? [5] iv) What would you predict would be the maximum phase shift for…
Please answer all The zombies showed up while you were sleeping!  The zombie alarm you built goes off as they open the door.  You jolt awake to see an alpha-zombie charging through the door.  The alphas are zombies that turned all of the zombies in its army.  If you can take down this one zombie, all the others pouring into the room should fall as well.  Luckily, your group was prepared for this eventuality.  Another member of your team has constructed the zombie shocker circuit shown in Figure 5, using some batteries for the voltage source, some rusty metal for the resistors and a coil of wire for the inductor.  The switch is just you pulling apart two wires to open the circuit (while holding them by their insulated sheaths).   1. Construct the circuit shown in Figure 15 in the Circuit JS simulator.   2. Start the simulation with switch SW1 in the closed position.  You’ve been charging this circuit all night, so you’ll want to let the circuit run for a while (roughly 30 seconds at max…
Please answer all questions 1. Calculate the values of the following without using Circuit JS. Assume the circuit has reached steady state. Show these calculations: a) Voltage across and current through C1. b) Voltage across and current through L1. c) Voltage across and current through R5. 2. Construct the circuit in the Circuit JS simulator [1]. 3. Perform a simulation and determine the following values. Record them. Allow the circuit to reach steady state. a) Voltage across and current through C1. b) Voltage across and current through L1. c) Voltage across and current through R5. 4. Include a screen shot of the simulator window (including showing the values listed above).  5. Answer the following questions: a) In a DC circuit, what does a capacitor look like? b) In a DC circuit, what does an inductor look like?

Chapter 16 Solutions

Pearson eText for Electrical Engineering: Principles & Applications -- Instant Access (Pearson+)

Knowledge Booster
Background pattern image
Electrical Engineering
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, electrical-engineering and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Power System Analysis and Design (MindTap Course ...
Electrical Engineering
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:Cengage Learning