For a transmission line with length L, characteristic impedance Zo, and propagation constant ẞ, find the following network parameters. (a) S-parameter (b) ABCD parameter L Port 1 ZO,B Port 2
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- 30) In a lightly loaded long distance EHV lines, line loading is and has a power factor: (A) Capacitive, lagging. (B) Capacitive, leading (C) Inductive, lagging (D) Inductive, leading. please contact me in whatsapp +962782974574The VSWR on an 50-Ohm transmission line is 5. The distance between successive voltageminima is 80 cm while the distance from the load to the first minimum is 30 cm. What are thereflection coefficient and load impedance7. In the circuit below write the loop equations and set up (not solve) the matrix equation for the load current. Wiso 150 75 28 100
- High voltage engineering subject2. A three-phase transmission line has parameters Xc-6 k 2, R-3.25 2 and X₁-25 92, and delivers 300 MW to a load with both ends of the line at 230 kV. Draw a pi equivalent per-phase circuit of the line. On a per-phase basis, calculate the active power delivered to the load, the reactive power of the line and the active power delivered by the source. Based on these calculations can the equivalent circuit be simplified further?1) A 60-Hz, ...-km, three-phase overhead transmission line has a series impedance z = 0.8431L79.04 ohm/km and a shunt admittance y = 5.105 × 106 L90 S/km. The load at the receiving end is 125 MW at unity power factor and at 215 KVLL. Determine the voltage, current, real and reactive power at the sending end and the percent voltage regulation of the line for nominal pi network. (Please determine the length of the transmission line within the specified limits: 150-220 km. By considering the length value you determined yourself, solve the question.)
- consider a transmission line with zl=3.346+j77.299 ohm assume that sb=100mva and vb=735kv find the per unit impedance convert the impedance using a new base of 200 mva and 345 kvFor an NN square matrix A, in (N1) steps, the technique of Gauss elimination can transform into an ____________ matrix.Consider a 3-bus system of the reactive network in Figure below where bus-bar 1 is slack. Use Gauss-Seidel method to determine the voltage at bus 2 and bus 3. Compute the power at bus 1, the line flow and line loss. V₁ = 2.520° $₁ Z12 = j0.2 Z13 = j0.5 V₂ V3 S₂ = j5 S3 = j2
- AY-connected load consisting of three equal impedances of ZL = 22 230° N has a terminal line to line voltage of 4.4 kV. The impedance of each of the three lines connecting the load to a bus at a substation is ZTL = 1.4 Z75° N. Find the line-to-line voltage at the substation bus. Insert the magnitude in kV of the line-to-line voltage at the substation bus below:Please solve all showing all the steps in detailA 345-kV transmission line has a series impedance of (4 + j60) Q and a shunt admittance of j2 x 10-3 S. Using 100 MVA and the line voltage as base values, calculate the per-unit impedance and per-unit admittance of the line.