The per-unit equivalent circuit of two transformers T a and T b connected in parallel, with the same nominal voltage ratio and the same reactan of 0.1 per unit on the same base, is shown in Figure 3.43. Transformer T b has a voltage-magnitude step-up toward the load of 1.05 times that of T a (that is, the tap on the secondary winding of T b is set to 1.05). The load is represented by 0.8 + j 0.6 per unit at a voltage V 2 = 1 .0 / 0 ° per unit. Determine the complex power in per unit transmitted to the load through each transformer, comment on how the transformers share the real and reactive powers.
The per-unit equivalent circuit of two transformers T a and T b connected in parallel, with the same nominal voltage ratio and the same reactan of 0.1 per unit on the same base, is shown in Figure 3.43. Transformer T b has a voltage-magnitude step-up toward the load of 1.05 times that of T a (that is, the tap on the secondary winding of T b is set to 1.05). The load is represented by 0.8 + j 0.6 per unit at a voltage V 2 = 1 .0 / 0 ° per unit. Determine the complex power in per unit transmitted to the load through each transformer, comment on how the transformers share the real and reactive powers.
Solution Summary: The author explains the complex power in per unit supplied to the load through each transformer and the process of sharing real and reactive powers by transformer.
The per-unit equivalent circuit of two transformers
T
a
and
T
b
connected in parallel, with the same nominal voltage ratio and the same reactan of 0.1 per unit on the same base, is shown in Figure 3.43. Transformer
T
b
has a voltage-magnitude step-up toward the load of 1.05 times that of
T
a
(that is, the tap on the secondary winding of
T
b
is set to 1.05). The load is represented by
0.8
+
j
0.6
per unit at a voltage
V
2
=
1
.0
/
0
°
per unit. Determine the complex power in per unit transmitted to the load through each transformer, comment on how the transformers share the real and reactive powers.
Find the step response of each of the transfer functions shown in Eqs. (4.62) through (4.64) and compare them. [Shown in the image]Book: Norman S. Nise - Control Systems Engineering, 6th EditionTopic: Chapter-4: Time Response, Example 4.8Solve the math with proper explanation. Please don't give AI response. Asking for a expert verified answer.
2. With respect to the circuit shown in Figure 2 below
V2
-R1
R2
R4
w
R3
R5
Figure 2: DC Circuit 2
a. Using Ohm's and Kirchhoff's laws calculate the current flowing through R3
and so determine wattage rating of R3.
b. Verify your results with simulations.
Note: you must use the values for the components in Table 2.
Table 2
V2
(Volts)
R1 (KQ)
R2 (KQ)
R3 (KQ)
R4 (KQ)
R5 (KQ)
9
3.3
5
10
6
1
3.3
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