Least loss contract in deregulated power system using relative electrical distance (RED) concept

In the earlier vertically integrated power system, the mechanism of competitive transmission pricing did not exist because of circumscribed utilization of power within a territory. But in the present deregulated environment, generation and transmission businesses have been separated and bilateral po...

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Main Authors: P.K. Hota, A.P. Naik
Format: Article
Language:English
Published: SpringerOpen 2018-12-01
Series:Journal of Electrical Systems and Information Technology
Online Access:http://www.sciencedirect.com/science/article/pii/S2314717218300072
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spelling doaj-09a53b53c6544aeab91ac7e010f30cb02020-11-25T01:18:43ZengSpringerOpenJournal of Electrical Systems and Information Technology2314-71722018-12-0153502525Least loss contract in deregulated power system using relative electrical distance (RED) conceptP.K. Hota0A.P. Naik1Department of Electrical Engineering, Veer Surendra Sai University of Technology (VSSUT), Burla, India; Corresponding author.Department of Electrical Engineering, Bhadrak Institute of Engineering and Technology, Bhadrak, IndiaIn the earlier vertically integrated power system, the mechanism of competitive transmission pricing did not exist because of circumscribed utilization of power within a territory. But in the present deregulated environment, generation and transmission businesses have been separated and bilateral power contracts between them become a major outlay. Transmission pricing based on least and fair loss allocation predominates in fixing the power contracts. This paper proposes a new loss allocation formula based on actual physical flow of active power drawn by the different loads in a system. It is applied to a referred six-bus system to prove its fairness over two widely used methods such as proportional ratio (pro-rata) and incremental transmission loss (ITL). It is proved that generation scheduling based on RED produces least loss in the system. Using the proposed formula along with RED concept, the least loss contracts for IEEE-14 and IEEE-30 bus systems have been worked out. To demonstrate the least loss contract, three cases of generation scheduling have been taken; out of which generation scheduling based on RED is taken as desired generation scheduling due to its minimum loss production and two other cases are randomly selected. It is found that, in comparison to standard case, the total transmission charges is reduced to 28% in the case of IEEE-14 bus system and 28.4% in the case of IEEE-30 bus system while considering the RED based generation scheduling. The detail transmission charges for individual loads along with the comparison figures of whole system have been properly evaluated and presented for two system cases to justify the feasibility of least loss contract using RED concept. Keyword: Transmission charge, MW-MILE, Loss allocation, Transmission cost matrix, Least loss contracthttp://www.sciencedirect.com/science/article/pii/S2314717218300072
collection DOAJ
language English
format Article
sources DOAJ
author P.K. Hota
A.P. Naik
spellingShingle P.K. Hota
A.P. Naik
Least loss contract in deregulated power system using relative electrical distance (RED) concept
Journal of Electrical Systems and Information Technology
author_facet P.K. Hota
A.P. Naik
author_sort P.K. Hota
title Least loss contract in deregulated power system using relative electrical distance (RED) concept
title_short Least loss contract in deregulated power system using relative electrical distance (RED) concept
title_full Least loss contract in deregulated power system using relative electrical distance (RED) concept
title_fullStr Least loss contract in deregulated power system using relative electrical distance (RED) concept
title_full_unstemmed Least loss contract in deregulated power system using relative electrical distance (RED) concept
title_sort least loss contract in deregulated power system using relative electrical distance (red) concept
publisher SpringerOpen
series Journal of Electrical Systems and Information Technology
issn 2314-7172
publishDate 2018-12-01
description In the earlier vertically integrated power system, the mechanism of competitive transmission pricing did not exist because of circumscribed utilization of power within a territory. But in the present deregulated environment, generation and transmission businesses have been separated and bilateral power contracts between them become a major outlay. Transmission pricing based on least and fair loss allocation predominates in fixing the power contracts. This paper proposes a new loss allocation formula based on actual physical flow of active power drawn by the different loads in a system. It is applied to a referred six-bus system to prove its fairness over two widely used methods such as proportional ratio (pro-rata) and incremental transmission loss (ITL). It is proved that generation scheduling based on RED produces least loss in the system. Using the proposed formula along with RED concept, the least loss contracts for IEEE-14 and IEEE-30 bus systems have been worked out. To demonstrate the least loss contract, three cases of generation scheduling have been taken; out of which generation scheduling based on RED is taken as desired generation scheduling due to its minimum loss production and two other cases are randomly selected. It is found that, in comparison to standard case, the total transmission charges is reduced to 28% in the case of IEEE-14 bus system and 28.4% in the case of IEEE-30 bus system while considering the RED based generation scheduling. The detail transmission charges for individual loads along with the comparison figures of whole system have been properly evaluated and presented for two system cases to justify the feasibility of least loss contract using RED concept. Keyword: Transmission charge, MW-MILE, Loss allocation, Transmission cost matrix, Least loss contract
url http://www.sciencedirect.com/science/article/pii/S2314717218300072
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AT apnaik leastlosscontractinderegulatedpowersystemusingrelativeelectricaldistanceredconcept
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