Question 2 (10 marks) N 1 (Slack) 2 j0.04 p.u. Px=1.2 p.u. Q2 = 0.5 p.u. P2 = 0.8 p.u. Q = 0.2 p.u. V =1.0 p.u. 30.035 p
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Question 2 (10 marks) N 1 (Slack) 2 j0.04 p.u. Px=1.2 p.u. Q2 = 0.5 p.u. P2 = 0.8 p.u. Q = 0.2 p.u. V =1.0 p.u. 30.035 p
Question 2 (10 marks) N 1 (Slack) 2 j0.04 p.u. Px=1.2 p.u. Q2 = 0.5 p.u. P2 = 0.8 p.u. Q = 0.2 p.u. V =1.0 p.u. 30.035 p.u. 10.025 p.u. 3 Vs=1.04 p.u P = 1.3 p.u. Figure Q2 a) State TWO (2) assumptions made to Newton Raphson load flow technique that leads to the Fast Decoupled load flow technique. [CO1-P01:01] (3 marks) b) Convert all impedances from the impedance diagram shown in Figure Q2 to the admittance and sketch the admittance diagram. [CO2-P02:C3] (4 marks) c) Identify the variables Vk, Ok, Pk, and Qk from the Figure Q2 for bus of k=1, 2, 3. [CO2-PO2:C4) (3 marks)
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