trying2pass
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- Mar 12, 2009
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T1: 240MVA Delta/Y 45KV:345KV
T2: 210MVA Y/Y 345KV:138KV
T3: 180MVA Y/Delta 132KV:13.6KV
Region 1 includes the ground, voltage source Vg, and primary of T1.
Region 2 includes the secondary of T1 and primary of T2 with an impedance of Z12 between them.
Region 3 includes the secondary of T2 and primary of T3 with an impedance of Z12 between them.
Region 4 includes the secondary of T3 and a load of 8 ohms, and ground.
3.18 states => Choosing a base of 240MVA (three phase) and 345 KV (L-L) in Region 2. What is the per unit impedance of the load?
I understood how they solved it except one part. Getting the base voltage at Region 4. They used 345(138/345)(13.6/132) = 14.22KV. From there they found the base impedance and then the per unit value of the load impedance.
3.19 states =>Choosing a base of 240MVA (three phase) and 138KV (L-L) in Region 3. Generator volt chosen as reference. Load current is .06 with an angle -10.35 pu. What is complex power delivered by generator?
On this one, they go the base voltage on Region1 as 138(345/138)(45/345) = 45KV.
Anyway, can someone explain to me how the base voltage conversion work? There is also problem 3.20 and 3.21 that does the voltage conversion, but I feel like it was done different each time.
Please help!! :sharkattack:
Thanks in advance.
T2: 210MVA Y/Y 345KV:138KV
T3: 180MVA Y/Delta 132KV:13.6KV
Region 1 includes the ground, voltage source Vg, and primary of T1.
Region 2 includes the secondary of T1 and primary of T2 with an impedance of Z12 between them.
Region 3 includes the secondary of T2 and primary of T3 with an impedance of Z12 between them.
Region 4 includes the secondary of T3 and a load of 8 ohms, and ground.
3.18 states => Choosing a base of 240MVA (three phase) and 345 KV (L-L) in Region 2. What is the per unit impedance of the load?
I understood how they solved it except one part. Getting the base voltage at Region 4. They used 345(138/345)(13.6/132) = 14.22KV. From there they found the base impedance and then the per unit value of the load impedance.
3.19 states =>Choosing a base of 240MVA (three phase) and 138KV (L-L) in Region 3. Generator volt chosen as reference. Load current is .06 with an angle -10.35 pu. What is complex power delivered by generator?
On this one, they go the base voltage on Region1 as 138(345/138)(45/345) = 45KV.
Anyway, can someone explain to me how the base voltage conversion work? There is also problem 3.20 and 3.21 that does the voltage conversion, but I feel like it was done different each time.
Please help!! :sharkattack:
Thanks in advance.