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- 3. Which one of the following method uses weak coupling between reactive power and voltage angle?. A. Newton - Raphson Method B. Decoupled Method C. Gauss-Seidal MethodThe figure below shows the one-line diagram of a simple three-bus power system withgeneration at bus 1. The voltage at bus 1 is V1 = 1.0∠0°per unit. The scheduledloads on buses 2 and 3 are marked on the diagram. Line impedances are marked inper unit on a 100 MVA base.(a) Using Gauss-Seidel method and initial estimates of ?2(0) = 1.0 + ?0, ?3(0) = 1.0 + ?0, determine V2and V3. Perform two iterations.(b) If after several iterations the bus voltages converge to?2 = 0.90 − ?0.10 pu?3 = 0.95 − ?0.05 pudetermine the line flows and line losses and the slack bus real and reactive power.Load characteristic of DC generator is a graph between Il and Vt. True or False
- What are the advantages of applying droop function to the control of distributed generations (DGs)? Why is droop control the most widely applied microgrid control strategy? Why is the droop control function similar to that of a synchronous generator?For the system in Figure 4 with given generation and load dispatch determine the voltages after two itterations of Gauss-Seidel method. Assume the initial voltage to be 1.01 at angle of 0◦ pu at bus 1, 1.015 at angle of 0◦ pu at bus 2, and 1.0 at angle of 0◦ pu at bus 3. All line impedances are in per unit on a common base, and charging is neglected. Take base power of 100 MVA.For the power system of Figure Q4.1, all per unit quantities have been calculated using a common base. The generator delivers power ??∞=1 ??.??. at a lagging power factor of ????????=0.93. i) Calculate the internal voltage of the generator, the maximum electrical power that the generator can deliver to the system during the steady state operation and the steady state rotor angle, ??0, of the generator.ii)A three-phase fault occurs at busbar 3 and it is cleared by simultaneously disconnecting lines 13 and 23. Following the fault clearing, the system continues to operate with only line 12 in service. Determine the new steady state rotor angle, ??1, of the generator and the maximum power the generator can deliver to the system post fault.iii)Assuming that the post fault condition is small disturbance stable and that there is no negative interaction among system controllers, calculate the critical clearing angle, ??????, at which the fault should be cleared to ensure the generator reaches…
- -8Ia + 6Ib = -2 5Ib + 15Ic = -8 6Ia - 13Ib + 5Ic = 4 Solve Using Gauss Seidel MethodThe transmission power is 30DBM.it looses 2DB per km. The noise level increase 1 DB per km . Reciever require the SNR to be 3DB what is the maximum transmission distnace on this line? Note: Correct and detailed answer will be Upvoted else downvoted. Thank you!Which of the following is true in the phasor diagrams drawn according to the ohmic, inductive and capacitive operating states of the round pole synchronous generator a) Due to the voltage Efd, the excitation current is large in capacitive operation and small in ohmic operation b) Due to the voltage Efd, the excitation current is large in ohmic operation and small in inductive operation c) Due to the voltage Efd, the excitation current is small in capacitive operation and large in inductive operation. d) Due to the voltage Efd, the excitation current is large in capacitive operation and small in inductive operation.
- A long shunt generator delivers 25kW at 220V. The shunt, series and armature resistances are 50ohms, 0.02ohms, and 0.05ohms respectively, calculate the generated emf.1- Static synchronous compensator (STATCOM) for powe factor improvement. 2- What is penalty factor? Derive the expression for the penalty factor in economic load dispatch.How did 2 + j8ohms become 2 + 2 + j8ohms and then 8.9 ∠63.4? Like what did you do and why?