AC steady-state analysis, three-phase networks, and complex power (brief review). Per-unit system. Practical transformer equivalent circuits. AC power transmission-lines: parameters; equivalent circuits; and steady-state operation. Power flow with transfer limits in balanced three-phase systems. Network power flow problem with solution by numerical methods. Symmetrical components: analysis including sequence networks for three-phase systems. Fault analysis.
Spring | Summer | Fall | ||
---|---|---|---|---|
(Session 1) | (Session 2) | |||
2023 |
Power Engineering Analysis (3c)
|
Power Engineering Analysis (3c)
|
||
2022 | ||||
2021 |
Power Engineering Analysis (3c)
|
|||
2020 |
Power Engineering Analysis (3c)
|
|||
2019 |
Power Engineering Analysis (3c)
|
|||
2018 |
Power Engineering Analysis (3c)
|
|||
2017 |
Power Engineering Analysis (3c)
|
|||
2016 |
Power Engineering Analysis (3c)
|
|||
2015 |
Power Engineering Analysis (3c)
|
|||
2014 |
Power Engineering Analysis (3c)
|
|||
2013 |
Power Engineering Analysis (3c)
|
|||
2012 |
Power Engineering Analysis (3c)
|
|||
2011 |
Power Engineering Analysis (3c)
|
|||
2010 |
Power Engineering Analysis (3c)
|
|||
2009 | ||||
2008 | ||||
2007 | ||||
2006 | ||||
2005 | ||||
2004 | ||||
2003 | ||||
2002 | ||||
2001 | ||||
2000 | ||||
1999 | ||||
1998 |