in alysis, set Start Frequency and End Frequency to 60 Hz, select Linear; set Total points to 1, click OK, then click the Run icon. When the simulation window opens, click View/Output File, then scroll until you find the answers indicated in Figure 17-33. As indicated, the magnitude of the current, IM(V_PRINTI), is 3.280 X 102 = 328 A, the same as we computed in Example 17-8. Now connect a 306-1.1,F capacitor across the load between points x-x, then run the simulation again. Note that source current drops to 286 A as predicted in Example 17-8.
1PR INT
600 V ri Vde
FREQ TM (V_PR INT1)1P(V_PRINT1) 6.000E+01 • 3.280E+02 —4.212E+01
FIGURE 17-33 Investigating power factor correction using PSpice.
R3 2.88 • L2 5.73 m H
E
8
in alysis, set Start Frequency and End Frequency to 60 Hz, select Linear; set Total points to 1, click OK, then click the Run icon. When the simulation window opens, click View/Output File, then scroll until you find the answers indicated in Figure 17-33. As indicated, the magnitude of the current, IM(V_PRINTI), is 3.280 X 102 = 328 A, the same as we computed in Example 17-8. Now connect a 306-1.1,F capacitor across the load between points x-x, then run the simulation again. Note that source current drops to 286 A as predicted in Example 17-8. 1PR INT 600 V ri Vde FREQ TM (V_PR INT1)1P(V_PRINT1) 6.000E+01 • 3.280E+02 —4.212E+01 FIGURE 17-33 Investigating power factor correction using PSpice. R3 2.88 • L2 5.73 m H E 8
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