Find the overall impedance for the following: P= 1000 W, pf = 0.8(leading), Vrms = 220 V The overall impedance is (| | + ( [____ ])) Q.
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HANDWRITTEN SOLUTION NO
![Find the overall impedance for the following:
P= 1000 W, pf = 0.8(leading), Vrms = 220 V
The overall impedance is (|
| + ( [____
])) Q.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8a01361c-8bc3-4277-9417-3d7425e22e27%2Ffd4bd1c1-e307-4a05-a3f4-80ef0684b89b%2Fw3kxtzr_processed.jpeg&w=3840&q=75)
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- The load flow data for the sample power system are given below. The voltage magnitude at bus 2 is to be maintained at 1.04 p.u.Determine the set of load flow equations at the end of first iteration by using N-R method. Impedance for sample system Bus Code Impedances line charging admittance 1-2 0.08 + j0.24 0.0 1-3 0.02 + j0.06 0.0 2-3 0.06 + j0.18 0.0 Schedule of generation and loads: Bus Code Assured Voltages Generation Load…The circuit shown is a negative impedance converter. Determine the impedance looking in: z= VI/II general Z_L= R and if Z_L= 1 /jwc .The load flow data for the sample power system are given below. The voltage magnitude at bus 2 is to be maintained at 1.04 p.u.Determine the set of load flow equations at the end of first iteration by using N-R method. Impedance for sample system Bus Code 1-2 1-3 2-3 Schedule of generation and loads: Impedances 0.08 + j0.24 line charging admittance 0.0 0.02 + j0.06 0.0 0.06 + j0.18 0.0 Bus Code Assured Voltages Generation Load MW MVAR MW MVAR 1 1.06 + j0.0 0 0 0 2 1.0 + j0.0 0.2 0.0 0.0 0.0 3 1.0 + j0.0 0 0 0.6 0.25
- Figure P11.20 A 480/-120° V 480/0° V + B 480/120° VThe figure shows a 500-kV (line-to-line voltage) transmission line linking two systems. The theoretical maximum power that can be transferred from System A to System B is 5,000 MW, which occurs when the power angle 8 = 90°. The line current is then proportional to (VA - VB) The reactive power losses (Mvar) in the transmission line during this transfer would be most nearly: Wond O A. 1,667 O B.. 3,333 O C. 5,000 O D. 10,000 Know EQUIVALENT SYSTEM A VA= 500 28 KV m XL = 50 Ω EQUIVALENT SYSTEM B VB = 500 40⁰ kV OFrom, the given [Ybus] below, Find a). Eliminate firstly node 3 and then node 4 by using Kron Reduction method,calculate the new [Ybus]. b). Find the new [Z]. c). Find the equivalent circuit of the new 2-bus system.
- use Smith chartQ4/A 2000 MW control area I is interconnected with a 10000 MW area 2. The 2000 MW area has the system parameters as R=2.0 Hz/p.u. MW; D = 0.01 p.u. MW/Hz. Area 2 has the same parameters, but on a base of 10000 MW. A 20 MW load increase takes place in area 1. Find static frequency drop and tie-line power change.please help
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