Integrated grey relational analysis and multi objective grey linear programming for sustainable electricity generation planning

Malekpoor, Hanif, Chalvatzis, Konstantinos ORCID: https://orcid.org/0000-0001-9829-7030, Mishra, Nishikant, Zafeirakis, Dimitrios and Song, Malin (2018) Integrated grey relational analysis and multi objective grey linear programming for sustainable electricity generation planning. Annals of Operations Research, 269 (1-2). 475–503. ISSN 0254-5330

[thumbnail of Malekpoor_etal_AnnOperRes_2018_269_475]
Preview
PDF (Malekpoor_etal_AnnOperRes_2018_269_475) - Published Version
Available under License Creative Commons Attribution.

Download (1MB) | Preview
[thumbnail of Accepted manuscript]
Preview
PDF (Accepted manuscript) - Accepted Version
Download (809kB) | Preview

Abstract

Sustainable energy generation is a key feature in sustainable development and among various sources of energy electricity due to some unique characteristics seems particularly important. Optimising electricity generation mix is a highly complex task and requires consideration of numerous conflicting criteria. To deal with uncertainty of experts’ opinions, inaccuracy of the available data and including more factors, some of which are difficult to quantify, in particular for environmental and social criteria, we applied Grey Relational Analysis (GRA) with grey linguistic, and grey interval values to obtain the rank of each system. Then the obtained ranking were used as coefficients for a Multi Objective Decision Making (MODM) problem, aimed to minimize the cost, import dependencies and emissions as well as maximizing the share of generation sources with better ranking. Due to existence of interval variables Multi Objective Grey Linear Programming (MOGLP) method was used to solve the problem. Our results for the UK as a case study suggest increased role for all low carbon energy technologies and sharp reduction in the use of coal and oil. We argue that the integrated GRA-MOGLP approach provides an effective tool for the evaluation and optimisation of complex sustainable electricity generation planning. It is particularly promising in dealing with uncertainty and imprecisions which reflect real-life scenarios in planning processes.

Item Type: Article
Uncontrolled Keywords: sustainable planning,electricity generation,modm,interval linear programming,gra,moglp
Faculty \ School: Faculty of Social Sciences > Norwich Business School
University of East Anglia Research Groups/Centres > Theme - ClimateUEA
Depositing User: Pure Connector
Date Deposited: 26 May 2017 05:06
Last Modified: 22 Oct 2022 02:42
URI: https://ueaeprints.uea.ac.uk/id/eprint/63615
DOI: 10.1007/s10479-017-2566-4

Downloads

Downloads per month over past year

Actions (login required)

View Item View Item