Concept explainers
Find the Thevenin equivalent to the left of the load Z in the circuit of Fig. 13.87.
Calculate the Thevenin equivalent to the left side of load Z in the coupled coils circuit.
Answer to Problem 18P
The Thevenin equivalent circuit parameters are
Explanation of Solution
Given data:
Refer to Figure 13.87 in the textbook for the circuit with coupled coils.
Calculation:
To the Thevenin’s voltage, open-circuit the impedance Z. Then, the current
Modify the Figure 13.87 by convert the circuit into the frequency domain and convert the coupled inductors into their dependent source equivalent. The modified circuit as shown in Figure 1.
Apply Kirchhoff's voltage law to the loop 1 contains current
Substitute 0 for
Modify the Equation as follows.
Write the expression for the open-circuit voltage.
Substitute
Consider the expression for the Thevenin voltage.
Substitute
Modify the Figure 1 by short-circuiting the load side contains current
From Figure 2, consider that the loops 1 and 2 contain the currents
Apply Kirchhoff's voltage law to the loop 1 in Figure 1.
Apply Kirchhoff's voltage law to the loop 2 in Figure 1.
Write equations (1) and (2) in matrix form as follows.
Write the MATLAB code to solve the equation (3).
A = [(4+j*7) -(4+j*11);-(4+j*11) (4+j*28)];
B = [440; 0];
I = inv(A)*B
The output in command window:
I =
61.069 - 121.926i
14.369 - 54.571i
From the MATLAB output, the currents
And
The short-circuit current
Substitute
Write the expression for Thevenin’s equivalent impedance.
Substitute
Conclusion:
Thus, the Thevenin equivalent circuit parameters are
Want to see more full solutions like this?
Chapter 13 Solutions
Fundamentals of Electric Circuits
- نقطة واحدة In the breakdown region, a -2 zener didoe behaves like a source ............ c. constant resistance O a. constant voltage b. constant current d. none of the above Oarrow_forwardFundamentals of Electrical Engineering 2020/2021 na ea Dr. Yaseen H. Tahir Example: Find the voltage Vo in the circuit in Figure belownin 2 kn 3 kN 41, Vs 10 mA 4 k2 Solution: wongs.senlo vleoleyy son bas s) 2 llaw es (s be ) amioq soni2 Jutoeu o ei noitsion A vlgne Jaum ow aglowondnu or gniniomotob of obno nl getlov oln adi to teianoo isdi disq boeolo oniolab otanolenadT e ul deq sdl ou n ov ( anielsb o ba 1 b we 62 g s 1o darrow_forwardWhich one of the following trnasformer having 1:1 turns ratio? O Auto transformer O Potential trnasformer O Current transformer O Isolation transforemrarrow_forward
- In the DC/DC converter below, all the elements are ideal and the output capacity is large enough. The coil current is also continuous. L = 400 yH, fsw = 4 kHz, Vs = 850 V and Vo = It is 1000 V. Since the power transferred to the load resistor is 500 kW, calculate the ripple value of the coil current. ip icarrow_forwardfor the circuit shown below If v_in=5 sin2m10t then corner frequency will be ......Hz 1 UF 2 k Ohm 1 k Ohim 050 060 070 080 vinarrow_forwardMechanical Engineering Course, Electrical Subject!arrow_forward
- Fundamentals of Electrical Engineering 2020/2021 Dr. Yaseen H. Tahir Example: Rind the current lo in the network in Figure below. 6 kN エY 2V. V,, 12 kn V3 12 kn 6 kN Sv, 6 V Solution:bebni ghaonil (1-V mdh lleas eldong aidtsloo ab etlov sbon oors19ionnos (1- onib oi beriupon s il own bon ow(E-Vs.) asbon oerit asdowor o sonie lobo sd to sno worlomoa ti terb sion oanoups insbgobn pobrogabri onil ow st lo ono i noisu oistane ien tobianoo J enlov shon sh ani b eben +12 Aindarrow_forwardDraw the average model of the boost converter, clearly label the voltage port voltage, voltage port current, current port voltage, and current port current, as well as the transformer, turns ratio interms of duty cycle d(t)arrow_forward50 ww j20 100/60 V -J42 Figure 13.13 For Practice Prob. 13.2.arrow_forward
- Introductory Circuit Analysis (13th Edition)Electrical EngineeringISBN:9780133923605Author:Robert L. BoylestadPublisher:PEARSONDelmar's Standard Textbook Of ElectricityElectrical EngineeringISBN:9781337900348Author:Stephen L. HermanPublisher:Cengage LearningProgrammable Logic ControllersElectrical EngineeringISBN:9780073373843Author:Frank D. PetruzellaPublisher:McGraw-Hill Education
- Fundamentals of Electric CircuitsElectrical EngineeringISBN:9780078028229Author:Charles K Alexander, Matthew SadikuPublisher:McGraw-Hill EducationElectric Circuits. (11th Edition)Electrical EngineeringISBN:9780134746968Author:James W. Nilsson, Susan RiedelPublisher:PEARSONEngineering ElectromagneticsElectrical EngineeringISBN:9780078028151Author:Hayt, William H. (william Hart), Jr, BUCK, John A.Publisher:Mcgraw-hill Education,