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Open PowerWorld Simulator case Problem 6.58, which models a seven bus system using the de power flow approximation. Bus 7 is the system slack. The real power generation/load at each bus is as shown, while the per unit reactance of each of the lines (on a 100 MVA base) is as shown in yellow on the one-line.
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6.4 The Power-Flow Problem 325 6.5 Power-Flow Solution by Gauss–Seidel 331 6.6 Power-Flow Solution by Newton–Raphson 334 6.7 Control of Power Flow 343 6.8 Sparsity Techniques 349 6.9 Fast Decoupled Power Flow 352 6.10 The ''''DC'''' Power Flow 353 6.11 Power-Flow Modeling of Wind Generation 354 Design Projects 1–5 366 CHAPTER 7
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Power System Analysis and Design J. Duncan Glover, Mulukutla S. Sarma, Thomas Overbye, Adam Birchfield. the line in Problem 5.14 delivers 900 MW at unity power factor and at 475 kV . Calculate: (a) the sending-end voltage, (b) the sending-end current, (c) the sending-end power factor, (d) the full-load line losses, and (e) the percent
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Chapter 5 Transmission Lines:Steady-State Operation; Chapter 6 Power Flows; Chapter 7 Symmetrical Faults; Chapter 8 Symmetrical Components; Chapter 9 Unsymmetrical Faults ; Chapter 10 System Protection; Chapter 11 Transient Stability; Chapter 12 Power System Controls; Chapter 13 Transmission Lines : Transient Operation; Chapter 14 Power
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