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1 ELECTRICAL TECHNOLOGY EET 103/4  Define and explain sine wave, frequency, amplitude, phase angle, complex number  Define, analyze and calculate impedance,

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Presentation on theme: "1 ELECTRICAL TECHNOLOGY EET 103/4  Define and explain sine wave, frequency, amplitude, phase angle, complex number  Define, analyze and calculate impedance,"— Presentation transcript:

1 1 ELECTRICAL TECHNOLOGY EET 103/4  Define and explain sine wave, frequency, amplitude, phase angle, complex number  Define, analyze and calculate impedance, inductance, phase shifting  Explain and calculate active power, reactive power, power factor  Define, explain, and analyze Ohm’s law, KCL, KVL, Source Transformation, Thevenin theorem.

2 2 (CHAPTER 15) SERIES AND PARALLEL AC CIRCUITS

3 3 15.8 Parallel ac Networks  In a parallel ac network the total impedance or admittance is determined, then the source current is determined by Ohm’s law: where;

4 4 15.8 Parallel ac Networks where; and; By Ohm’s law;

5 5 15.8 Parallel ac Networks Power to the network; where  T is the phase difference between E and I. By Kircchoff’s current law;

6 6 15.8 Parallel ac Networks R-LR-L Time domain: Phasor (frequency) domain:

7 7 15.8 Parallel ac Networks R-LR-L

8 8 R-LR-L

9 9 R-LR-L

10 10 15.8 Parallel ac Networks R-LR-L Admittance diagram;

11 11 15.8 Parallel ac Networks R-LR-L

12 12 15.8 Parallel ac Networks R-LR-L (KCL)

13 13 15.8 Parallel ac Networks R-LR-L Phasor diagram; Power;

14 14 15.8 Parallel ac Networks R-LR-L Power factor;

15 15 15.8 Parallel ac Networks R-CR-C Time domain: Phasor (frequency) domain:

16 16 15.8 Parallel ac Networks R-CR-C

17 17 15.8 Parallel ac Networks R-CR-C Admittance diagram;

18 18 15.8 Parallel ac Networks R-CR-C

19 19 15.8 Parallel ac Networks R-CR-C

20 20 15.8 Parallel ac Networks R-CR-C

21 21 15.8 Parallel ac Networks R-CR-C (KCL)

22 22 15.8 Parallel ac Networks R-CR-C Phasor diagram;

23 23 15.8 Parallel ac Networks R-CR-C Waveform;

24 24 15.8 Parallel ac Networks R-CR-C Power factor; Power;

25 25 15.9 Current Divider Rule The basic format for the current divider rule in ac circuits is exactly the same as that for dc circuits; that is, for two parallel branches with impedances Z 1 and Z 2 :

26 26 15.9 Current Divider Rule Example 15.17 Using current divider rule, find the current through each branch:

27 27 15.9 Current Divider Rule Example 15.17 – solution

28 28 15.9 Current Divider Rule Example 15.17 – solution (cont’d) By current divider rule;

29 29 15.9 Current Divider Rule Example 15.17 – solution (cont’d) By current divider rule;


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