Investigation of the Usefulness of the PowerWorld Simulator Program: Developed by "Glover, Overbye & Sarma" in the Solution of Power System Problems
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About this ebook
Dr. Hidaia Mahmood Alassouli
I am Dr. Hidaia Mahmood Mohamed Alassouli. I completed my PhD degree in Electrical Engineering from Czech Technical University by February 2003, and my M. Sc. degree in Electrical Engineering from Bahrain University by June 1995. I completed also one study year of most important courses in telecommunication and computer engineering courses in Islamic university in Gaza. So, I covered most important subjects in Electrical Engineering, Computer Engineering and Telecommunications Engineering during my study. My nationality is Palestinian from Gaza Strip.I obtained a lot of certified courses in MCSE, SPSS, Cisco (CCNA), A+, Linux.I worked as Electrical, Telecommunicating and Computer Engineer in a lot of institutions. I worked also as a computer networking administrator. I had considerable undergraduate teaching experience in several types of courses in many universities. I handled teaching the most important subjects in Electrical and Telecommunication and Computer Engineering. I could publish a lot of papers a top-tier journals and conference proceedings, besides I published a lot of books in Publishing and Distribution houses.I wrote a lot of important Arabic articles on online news websites. I also have my own magazine website that I publish on it all my articles: http://www.anticorruption.000space.comI am an Author publishing books on kdp.amazon.comand many other book stores such as Google, Apple.com, writinglife.kobo.com, Lulu.com, feiyr.com, blurb.com, bookrix.com, barnesandnoble.com, notionpress.com, ingramspark.com and others . My personal website: http://www.hidaia-alassouli.000space.comMy Amazon Author Central: https://www.amazon.com/-/e/B07BH5HS7LEmail: [email protected]
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Investigation of the Usefulness of the PowerWorld Simulator Program - Dr. Hidaia Mahmood Alassouli
1. Introduction:
The objective of this project is to investigate the usefulness of the power system simulator PowerWorld program developed by "Glover, Overbye &Sarma". The results obtained from the power simulator program were presented for different case studies. The following power system network was used in this study. The system consists from 6 buses. Area 1 includes bus 1-5 while Bus 6 will be part of Area 1 in some case studies, or will form separate area 2 in other case studies for comparison purpose. Note that the Available Transfer Capability (ATC) analysis add-on which determines the maximum MW transfer possible between two parts of a power system without violating any limits, and the voltage adequacy and stability tool (VAST) add-on that can solve multiple power flow solutions in order to generate a PV curve for a particular transfer or a QV curve at a given bus, was not studied here because we don’t have yet VAST add-on and the ATC add-on packages.
2. Theory Related To Project:
2.1 Load frequency control:
The turbine governor control eliminated the rotor acceleration and deceleration following a load changes during normal operation. However there is a steady state frequency error . One of the objective of load frequency control is to return the to zero.
In power system consisting of interconnected areas, each area agrees to export or import a scheduled amount of power through a transmission line connections or tie line to neighboring area. Thus , a second objective is to have each area absorb its own load during normal operation. This is achieved by maintaining the net tie line line power flow out of each area at it is scheduled value
The following summarizes the the two basic LFC objectives for an interconnection power system:
Following a load change, each area should assist in returning the steady ate frequency error to zero
Each area should maintain the net tie line power flow out of the area at its scheduled value in order for the area to absorb its own load
2.2 Economic Dispatch:
The previous section described how LFC adjusts the reference power settings of the turbine governors in an area to control frequency and the net tie line power flow out of the area. This section describes how the real power output of the controlled generating unit in the area is selected to meet a given load and minimize the total operating costs in the area. This is the economic dispatch.