Answered step by step
Verified Expert Solution
Question
1 Approved Answer
Q2. (60) An AC high voltage test generator, with resonant transformer technique, having a total inductance of LT=L1+L2=287.8 mH is seen in fig. 2.
Q2. (60) An AC high voltage test generator, with resonant transformer technique, having a total inductance of LT=L1+L2=287.8 mH is seen in fig. 2. Using this generator, a test object having a capacitor Ceq=C-220 pF is to be tested to measure the breakdown voltage of the test object. At resonance frequency, the output voltage of the generator is measured as v(t) = 0.8 sin (40000nt -), MV. (MV: MegaVolt). a) (15) Determine the resonance frequency fo (Hz) of the generator. Write down the output voltage phasor Ve b) (25) If the total resistive losses of the system due to the transformer coil is given as R=r1+r2=120 Ohm, find the secondary voltage phasor V of the generator at the resonance frequency. Write the secondary voltage in time-domain, i.e. v(t). c) (20) Find the secondary current phasor I and its time-domain corresponding. Find the secondary power P, supplied by the transformer to the circuit. a.c. Vp supply ele Vsh.v. (a) Fig. 2. 4 Ro (b) 12 21 Lo L C
Step by Step Solution
★★★★★
3.42 Rating (161 Votes )
There are 3 Steps involved in it
Step: 1
1 a Given since frequency remains transformer Also D Vsecondary vc 000 Sn 40000rit I 4 ...Get Instant Access to Expert-Tailored Solutions
See step-by-step solutions with expert insights and AI powered tools for academic success
Step: 2
Step: 3
Ace Your Homework with AI
Get the answers you need in no time with our AI-driven, step-by-step assistance
Get Started