What happens when the solar PV plant absorbs reactive energy from the grid where it required not to do so by governing standards?
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What happens when the solar PV plant absorbs reactive energy from the grid where it required not to do so by governing standards?
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- Briefly explain environmental issues in regard to thermal power plantsA welding power source must not be used continuously in long time without care. The rated duty cycle is fixed for safe use of welding power source without burned out of insulator. When a power source of a rated output 350A and a rated duty cycle 60% is used at 300A, calculate the allowable duty cycle of Plasma Arc Welding (PAW) machine.Explain the concept of power quality in electrical systems and the potential issues that can arise, such as voltage sags, harmonics, and flicker.
- 222What are the types of Converter Topologies in PV System?(5) Primary AC Source Transformer Secondary AC/DC Full-wave Rectifier Capaictor in Non- linear Load Figure 6 Analyse different methods of harmonics mitigation to eliminate the harmonic, which you have identify in above power system circuit. You can use harmonic filters, K or equivalent transformers or oversized neutral method depending upon the harmonic sources.
- An RLC series circuit connected to a 110 – volt and 50 – cycle AC source, contains the following series resistances and reactances: R1 = 10 ohm, R2 = 15, R3 = 5 ohms, XL1 = 20 ohms, XL2 = 25 ohms, XC = 40 ohms. Find the following: a.) EQUIVALENT REACTANCE b.) TOTAL IMPEDANCE c.) VOLTAGE DROP ACROSS THE CAPACITOR d.) TOTAL INDUCTANCE IN MILLIHENRY e.) TOTAL CURRENT f.) REACTIVE POWER g.) REAL POWER DRAW THE PHASOR DIAGRAM IF POSSIBLE AND ROUND OFF TO FOUR DECIMAL PLACESA series resistance – capacitance (R – C) circuit is connected to 230 – volt, 50 cycle AC source. The current through the resistor is 45.45 A and the power taken by the circuit is 5,000 watts. Compute the following: 1.) Power factor angle 2.) Circuit impedance 3.) Ohmic value of the resistorGiven the center-tap fullwave rectifier circuit shown 220V 60Hz (+2) 220V:Es1-0-Es2 Es1 E$2 D1 D2 RL The transformer is rated 220V:12V-0-12V (Es1=Es2=12V) and the average current through the load RL is 400mA. Determine: (a) Average value, RMS value, and frequency of load voltage VRL. (b) Power dissipated by the load RL. (c) Average current and PIV of each diode.