The line currents of three single phase rectifiers/converters are shown below. For each Figure: Name all the possible types of power circuits such as rectifiers and/or converters and their associated load types such as resistors, resistors/inductors combinations, and/or highly inductive loads that could generate these waveforms. Let a = 30°, determine of the displacement power factor and compare the results. (b) 1,(1) 1₂(1) 0 ha hy na 2TT a+π a+2π TT wt a TT -la -la Fig (c) Fig (a) Fig (b) Yote: Each Figure may represent multiple types of rectifiers and converters with the verities of different types of loads. 0 Is(t) الب → wt

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The line currents of three single phase rectifiers/converters are shown below. For each Figure:
(a)
Name all the possible types of power circuits such as rectifiers and/or converters and their associated load types
such as resistors, resistors/inductors combinations, and/or highly inductive loads that could generate these
waveforms.
Let a = 30°, determine of the displacement power factor and compare the results.
(b)
Is(t)
la
NA M NA
2TT
a+2π
a
TT
a
0
TT
-la
-la
-la
Fig (a)
1,(1)
0
wt
اليا
Is(t)
0
wt
Fig (b)
Fig (c)
Note: Each Figure may represent multiple types of rectifiers and converters with the verities of different types of loads.
Transcribed Image Text:The line currents of three single phase rectifiers/converters are shown below. For each Figure: (a) Name all the possible types of power circuits such as rectifiers and/or converters and their associated load types such as resistors, resistors/inductors combinations, and/or highly inductive loads that could generate these waveforms. Let a = 30°, determine of the displacement power factor and compare the results. (b) Is(t) la NA M NA 2TT a+2π a TT a 0 TT -la -la -la Fig (a) 1,(1) 0 wt اليا Is(t) 0 wt Fig (b) Fig (c) Note: Each Figure may represent multiple types of rectifiers and converters with the verities of different types of loads.
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