= Lab Simulation Activity

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Pleasse Please help me, Many time I ask for solve this Questions please, I want to solve all the questions, without quoting and without plagiarism, I want the solution in MS Word, I do not want handwriting.

onle b & c

Task 4: Lab Simulation Activity
A DC motor is a class of rotary electrical machines that converts direct current electrical energy into
mechanical energy. The most common types rely on the forces produced by magnetic fields. Given the DC
motor shown in figure 1A with the given parameters listed below, and with an equivalent transfer shown
in figure 1B.
Given the values below: (different values for different sets)
Ja=5kg-m2, Da=3 N-m s/rad, JL=700 kg-m2, DL=800 N-m s/rad, N1=290, N2=580, K_t/R_a =10 and k_b=1.
Do the following:
b. Write an m-script to determine its closed loop time response
C.
Write a reflection on the transient time response and steady state response.
Transcribed Image Text:Task 4: Lab Simulation Activity A DC motor is a class of rotary electrical machines that converts direct current electrical energy into mechanical energy. The most common types rely on the forces produced by magnetic fields. Given the DC motor shown in figure 1A with the given parameters listed below, and with an equivalent transfer shown in figure 1B. Given the values below: (different values for different sets) Ja=5kg-m2, Da=3 N-m s/rad, JL=700 kg-m2, DL=800 N-m s/rad, N1=290, N2=580, K_t/R_a =10 and k_b=1. Do the following: b. Write an m-script to determine its closed loop time response C. Write a reflection on the transient time response and steady state response.
Motor
N1
E,(s)
Ja, Da
N2
DL
Figure 1A
KL
(RJm)
Om(s)
Ea(s)
E, s[s+(Dm+)
S|s +
Ra
Figure 1B
Transcribed Image Text:Motor N1 E,(s) Ja, Da N2 DL Figure 1A KL (RJm) Om(s) Ea(s) E, s[s+(Dm+) S|s + Ra Figure 1B
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