Question

QUESTION 5. (a) Think of any power engineering software of your choice and explain how you can you use it in your masters re
0 0
Add a comment Improve this question Transcribed image text
Answer #1

oto bust and flexible Computational foundations a my choice, is Here i am considering MATLAB, Researchers in Engineering andVersion of your MATLAB code. & Simulink projects. (6) Share your results with colleagues or you can creatie includes your cod(6) Effect of neutral impedence on Zero sequence network: The impedence offered by the system to the flow of Zero sequence cuA (c) Given data Generator : 50MVA, 20kv,x = x15x2 = 206,180 = 7.5-4. motor : 40mVA, 20 kV, =29= x2= 20). Xo = 107, X0=5.1.for motor, (xpu) new kpu) old Х (MVA) new (MVAold 50 0-25p. = 0.2 X 40 single line diagram of the abover netwoth is, tom jon

Add a comment
Know the answer?
Add Answer to:
QUESTION 5. (a) Think of any power engineering software of your choice and explain how you...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Consider the 4-bus power system shown in Fig. 1. The system parameters are given below: 50 MVA, 2...

    Please show all the clearly step Y11 ist j30 and Y44 isnt -j12.85 Consider the 4-bus power system shown in Fig. 1. The system parameters are given below: 50 MVA, 20 kV, X-2090 40 MVA, 20 kV, X-20%, X, = 5% 50 MVA, 20 kV Δ /110 kV Ý, X= 1090 50 MVA, 20 kV MI 10 kV Ý, X= 10% Xi-24.2 Ω Generator G: Motor M: Transformer T1 : Transformer T2 : Transmission line: 3 4 T2 nu)M Fig....

  • QUESTION 5 a) Define the Per Unit system and list three (3) main reasons of using Per Unit system...

    Per unit calculation QUESTION 5 a) Define the Per Unit system and list three (3) main reasons of using Per Unit systemm. (5 marks) b) A three-bus power with two generator system is shown in figure Q2 (b). The 3-phase power and line-line voltage ratings are given below Ti T2 J40 2 Gi G2 j25 Ω 25 Ω Ty Figure Q2 (b) GI: 750 MVA, 18 kV, X 7% G2: 750 MVA, 18 kV, X-15% Motor: 1500 MVA, 20 kV,...

  • The following are the answers: Autumn 2013 T1 G1 5 kV 50 MVA 5/20 kV 50...

    The following are the answers: Autumn 2013 T1 G1 5 kV 50 MVA 5/20 kV 50 MVA 20 kV 50 MVA X 0.1 p.u Figure A13 In the system shown, per-unit series equivalent impedances are shown for each element. Before a balanced 3-phase fault occurs in the location shown, the pre-fault current is at its rated value at 90 % lagging power factor flowing from generator G1 The generator is operating at full voltage. How much current in kA is...

  • A single line diagram of a power system is shown in Fig. 2. The system data with equipment ratings and assumed sequence reactances are given the following table. The neutrals of the generator and A-Y...

    A single line diagram of a power system is shown in Fig. 2. The system data with equipment ratings and assumed sequence reactances are given the following table. The neutrals of the generator and A-Y transformers are solidly grounded. The motor neutral is grounded through a reactance Xn 0.05 per unit on the motor base. Assume that Pre-fault voltage is takin as VF-1.0 ,0° per unit and Pre- fault load current and Δ-Y transformer phase shift are neglected In the...

  • Please answer the following question, box your answers, and show all work!! Thank you. 2 -...

    Please answer the following question, box your answers, and show all work!! Thank you. 2 - The three-phase power and line-line ratings of the electric power system shown in Figure 2 are given below. T T2 V Line 2 Vm G M Figure 2 One-line diagram for problem 2 60 MVA 20 kV 50 MVA 20/200 kV 50 MVA 200/20 kV 200 kV 43.2 MVA 18 kV TI: T: Line: M: X=9% X=10% X=10% Z=120+j2002 X=8% a) Draw an impedance...

  • note that 1) single phase system 2) base values at transmission line circuit A 100 MVA,...

    note that 1) single phase system 2) base values at transmission line circuit A 100 MVA, 12 kV Single-phase generator has a sub transient reactance of 20%. The generator supplies a two synchronous motors over 25-km transmission line having transformers at both ends. The motors, all rated 6.0 kV, 66 MVA and 50 MVA for Mi and M2, respectively. For both motors X" = 15%. The single phase transformer T is rated 150 MVA, 132/12 kV with leakage reactance of...

  • QUESTION 2. (a) A portion of a power system consists of two generators in parallel, connected...

    QUESTION 2. (a) A portion of a power system consists of two generators in parallel, connected to a step-up transformer that links them with a 220-kV transmission line. The ratings of these components are as shown below: Generator GI: 10 MVA, 12 percent reactance Generator G2: 5 MVA, 8 percent reactance Transformer: 15 MVA, 6 percent reactance Transmission line: (4+j60) 22, 220kV where the percent reactances are computed on the basis of individual component ratings. Draw the per-unit impedance diagram...

  • A 7-bus power system with three generators, six transformers, and seven transmission lines is shown in...

    A 7-bus power system with three generators, six transformers, and seven transmission lines is shown in Figure Q1. The per-unit reactances for the generators and transfomers are based on their rated voltage and expressed in percentage. When a three-phase fault occurs at bus 5; three transmission lines, namely L4, L5, and L6, are disconnected from the power system. By taking the base apparent power of 100 MVA and the rated voltage of generator G1 as the reference, determine the per-unit...

  • Fig Qshows the one-line diagram of a three-phase power system. As shown in Fig. Q3. the...

    Fig Qshows the one-line diagram of a three-phase power system. As shown in Fig. Q3. the two zones are connected by a 400 MVA, 240-kV/24-kV, Ý-A three phase transformer. The Y-A three phase transfonmer has an equivalent series impedance of ZTH - 1.2 + j1.6n per phase referred to the high voltage side (primary side). The three-phase power system can be studied with per unit quantities using base values of S-500 MVA and 240 kV in zone 1. By using...

  • can you calculating this question and explain why? thanks The ratings and sequence reactances of the components for...

    can you calculating this question and explain why? thanks The ratings and sequence reactances of the components for the power system shown in Figure 2 are given in Table 1. The pre-fault voltage is 1/0° per unit (pu). Bus 8 L3 Bus 1 T1 Bus 4 T2 Bus 2 Bus 5 L1 L2 G1 Bus 3 T3 Bus 7 Bus 6 D.6975 Figure Draw the per unit impedance sequence networks and determine the per unit (a) Thevenin impedances of the...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT