This project work titled IMPLEMENTATION OF UNIFIED POWER FLOW CONTROLLER (UPFC) FOR IMPROVEMENT OF VOLTAGE STABILITY IN A CONGESTED ELECTRIC NETWORK has been deemed suitable for Final Year Students/Undergradutes in the Electrical & Electronics Department. However, if you believe that this project work will be helpful to you (irrespective of your department or discipline), then go ahead and get it (Scroll down to the end of this article for an instruction on how to get this project work).
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Format: MS WORD
| Chapters: 1-5
| Pages: 69
IMPLEMENTATION OF UNIFIED POWER FLOW CONTROLLER (UPFC) FOR IMPROVEMENT OF VOLTAGE STABILITY IN A CONGESTED ELECTRIC NETWORK
ABSTRACT
As the demand of electricity from an already congested network increases, ensuring voltage stability across the network becomes challenging. One approach in ensuring system stability is to attain system redundancy but their economic and ecological limitations to this. A more cost effective means would involve the use of existing network component and incorporate less expensive scheme and policies to maintain reliable system operation. Flexible alternating Current Transmission System (FACTS) such as the Unified Power Flow Controller (UPFC) are devices incorporated to achieve improvement in overall system performance such s increasing transmission line flows, minimizing losses, and improving voltage profile across the network buses.
ABSTRACT
As the demand of electricity from an already congested network increases, ensuring voltage stability across the network becomes challenging. One approach in ensuring system stability is to attain system redundancy but their economic and ecological limitations to this. A more cost effective means would involve the use of existing network component and incorporate less expensive scheme and policies to maintain reliable system operation. Flexible alternating Current Transmission System (FACTS) such as the Unified Power Flow Controller (UPFC) are devices incorporated to achieve improvement in overall system performance such s increasing transmission line flows, minimizing losses, and improving voltage profile across the network buses.
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