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http://ir.futminna.edu.ng:8080/jspui/handle/123456789/12325
Title: | Hybridized Continuous-Repeated Power Flow (HCR-PF) for Electric Power Transfer Capability determination. |
Authors: | Ahmad, Abubakar Sadiq M. N., Nwohu Saidu, Muslim A.U, Abraham U., Abdullahi |
Keywords: | Available Power Transfer Continuation Power Flow Repeated Power Flow and contigency |
Issue Date: | 1-Sep-2015 |
Citation: | Ahmad Abubakar Sadiq, M. Nwohu , M. Saidu , U. Abraham and U. Abdullahi “ Hybridized Continuous-Repeated Power Flow (HCR-PF) for Electric Power Transfer Capability determination” International Engineering Conference (IEC), Federal University of Technology, Minna. 1st – 3rd, Sept. 2015. Pp 555 to 566 |
Abstract: | The ability to accurately and rapidly assess the capabilities of the transmission grid is a key concept in the restructuring of the electric power industry. This paper presents Hybridized Continuation-Repeated Power Flow (HCR-PF) for ATC computation. Results of IEEE 9 bus IEEE 30 bus test systems were presented and comparisons were made with other methods. HCR-PF is seen to provide a good alternative to determine ATC. Single line outage (N-1) criterion is used to simulate the effect of line outage on ATC values thereby identifying overload transmission facility. Network response method for results interpretation of ATC is considered appropriate since it takes into consideration the response of the entire network to a given transfer direction. Although any limitation may be considered independently for simulation purposes, in practice any of the limiting constraints can be the most severe, depending on system base case and steady state variables. |
Description: | International Engineering Conference (IEC) 2015 Paper. |
URI: | http://repository.futminna.edu.ng:8080/jspui/handle/123456789/12325 |
Appears in Collections: | Telecommunication Engineering |
Files in This Item:
File | Description | Size | Format | |
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Hybridized Continuous-Reated Power Flow (HCR-PF) for Electric Power Transfer Capability determination.pdf | 3.31 MB | Adobe PDF | View/Open |
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