You are tasked to design a dc power supply that operates from a single-phase ac supply (50Hz) with source inductance of 1.5mH/phase. It is required to supply a dc load (resistive) with 55A at 322 Volt. Assume infinite inductive filtering and the use of power diodes with a forward voltdrop of 0.7V. Consider the bridge converter topology and specify the following design parameters, 30) the loss in voltage due to commutation overlap; 31) the r.m.s. ac supply voltage required; 32) the overlap angle; 33) the transformer utilisation factor; 34) the rectification efficiency of the converter; 35) the dc current rating of the rectifier diodes; 36) the r.m.s. current rating of the rectifier dio
You are tasked to design a dc power supply that operates from a single-phase ac supply (50Hz) with source inductance
of 1.5mH/phase. It is required to supply a dc load (resistive) with 55A at 322 Volt. Assume infinite inductive filtering and
the use of power diodes with a forward voltdrop of 0.7V. Consider the bridge converter topology and specify the following
design parameters,
30) the loss in voltage due to commutation overlap;
31) the r.m.s. ac supply voltage required;
32) the overlap angle;
33) the transformer utilisation factor;
34) the rectification efficiency of the converter;
35) the dc current rating of the rectifier diodes;
36) the r.m.s. current rating of the rectifier diodes;
37) the form factor of the diode current;
38) the peak repetitive forward current rating of the rectifier diodes;
39) the peak repetitive reverse voltage rating of the rectifier diodes.
![You are tasked to design a dc power supply that operates from a single-phase ac supply (50HZ) with source inductance
of 1.5mH/phase. It is required to supply a dc load (resistive) with 55A at X6 Volt. Assume infinite inductive filtering and
the use of power diodes with a forward voltdrop of 0.7V. Consider the bridge converter topology and specify the following
design parameters,
30) the loss in voltage due to commutation overlap;
31) the r.m.s. ac supply voltage required;
32) the overlap angle;
33) the transformer utilisation factor;
34) the rectification efficiency of the converter;
35) the dc current rating of the rectifier diodes;
36) the r.m.s. current rating of the rectifier diodes;
37) the form factor of the diode current;
38) the peak repetitive forward current rating of the rectifier diodes;
39) the peak repetitive reverse voltage rating of the rectifier diodes.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F174ec0e8-b9e5-4a1e-9314-c0a97d280cee%2F4819c7af-7f68-4802-b085-ba93b1c5201b%2Foyq5mn_processed.png&w=3840&q=75)
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